全新正版图书 激光火工品技术鲁建存国防工业出版社9787118122596人天图书专营店

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全新正版图书 激光火工品技术鲁建存国防工业出版社9787118122596人天图书专营店

全新正版图书 激光火工品技术鲁建存国防工业出版社9787118122596人天图书专营店

$54.50

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目  录
目 录 第1章 激光火工品技术发展.................................................................................................. 1 1.1 国外研究状况................................................................................................................. 1 1.2 国内研究情况.................................................................................................................. 6 1.3 国内外差距...................................................................................................................... 8 第2章 激光火工品作用机理................................................................................................ 12 2.1 激光起爆作用机理分析................................................................................................... 12 2.1.1 光冲量对的作用................................................................................................... 13 2.1.2 光化学反应对的作用............................................................................................ 13 2.1.3 电击穿对的影响................................................................................................... 14 2.1.4 冲击波对的作用................................................................................................... 14 2.1.5 热分解反应对的作用............................................................................................ 15 2.2 激光热起爆机理............................................................................................................. 15 2.2.1 激光热起爆过程分析................................................................................................... 15 2.2.2 激光热起爆临界能量计算............................................................................................ 18 2.3 激光爆炸箔起爆机理...................................................................................................... 25 2.3.1 EBW起爆和LEBW起爆.............................................................................................. 25 2.3.2 LEBW起爆能量的转变................................................................................................. 26 2.3.3 多孔含能药粉的LEBW模型........................................................................................ 27 2.4 激光冲击片起爆机理...................................................................................................... 28 2.5 光化学起爆机理............................................................................................................. 32 2.5.1 试验现象与结果.......................................................................................................... 32 2.5.2 反应机理模型分析....................................................................................................... 35 2.5.3 DACP的光化学起爆..................................................................................................... 37 2.6 激光起爆数值模拟................................................................................................... 39 2.6.1 数学模型..................................................................................................................... 40 2.6.2 计算结果与讨论.......................................................................................................... 41 2.7 激光点火机理................................................................................................................. 43 2.7.1 激光点火过程.............................................................................................................. 44 2.7.2 激光点火理论分析..................................................................................................... 45 2.7.3 点在激光作用下的飞行时间质谱........................................................................... 47 2.8 激光点火的数值模拟...................................................................................................... 48 2.8.1 TiKClO4等激光点火模拟............................................................................................. 49 2.8.2 MgNaNO3激光点火数值模拟....................................................................................... 56 2.8.3 FeS激光点火数值模拟................................................................................................ 62 2.8.4 BKNO3激光点火数值模拟........................................................................................... 70 2.8.5 火炮激光点火的数值............................................................................................ 74 第3章 激光器..................................................................................................................... 77 3.1 固体激光器.................................................................................................................... 79 3.1.1 固体激光工作物质....................................................................................................... 79 3.1.2 自由振荡固体激光技术................................................................................................ 84 3.1.3 调Q激光技术............................................................................................................. 96 3.2 气体激光器.................................................................................................................... 99 3.2.1 He-Ne激光器............................................................................................................... 99 3.2.2 CO2激光器................................................................................................................. 100 3.2.3 等离子体激光技术..................................................................................................... 104 3.3 半导体激光器............................................................................................................... 105 3.3.1 半导体激光器工作原理.............................................................................................. 105 3.3.2 激光火工品系统用半导体激光器.............................................................................. 125 第4章 光学元器件............................................................................................................. 133 4.1 光纤............................................................................................................................. 133 4.1.1 光纤结构、分类、光传播与参数................................................................................ 133 4.1.2 激光能量传输用光纤.................................................................................................. 139 4.2 光缆及其连接............................................................................................................... 152 4.2.1 光缆.......................................................................................................................... 152 4.2.2 光纤接头................................................................................................................... 153 4.2.3 光缆组件................................................................................................................... 156 4.2.4 光缆连接................................................................................................................... 158 4.3 合束器与分束器........................................................................................................... 163 4.3.1 合束器....................................................................................................................... 163 4.3.2 分束器....................................................................................................................... 164 4.4 光开关......................................................................................................................... 172 4.4.1 机械机电式光开关.................................................................................................... 172 4.4.2 电光开关................................................................................................................... 176 4.4.3 声光开关................................................................................................................... 176 4.4.4 固体磁光开关............................................................................................................ 176 4.4.5激光驱动烟火光开关................................................................................................... 177 4.4.6 MEMS光开关............................................................................................................ 178 4.5 耦合元件...................................................................................................................... 187 4.5.1 聚焦类耦合元件......................................................................................................... 187 4.5.2 窗口类耦合元件......................................................................................................... 188 4.6 通用光学元件............................................................................................................... 189 4.6.1 玻璃基片................................................................................................................... 189 4.6.2 介质膜片................................................................................................................... 189 4.6.3 干涉滤光片................................................................................................................ 189 4.6.4 角锥.......................................................................................................................... 189 4.7 光衰减器...................................................................................................................... 190 4.7.1光缆衰减器................................................................................................................. 190 4.7.2 光衰减器................................................................................................................... 190 4.7.3 光学分束器................................................................................................................ 190 第5章 激光能量传输与控制............................................................................................... 193 5.1 光纤耦合传输............................................................................................................... 193 5.1.1 光纤耦合方式............................................................................................................ 193 5.1.2 光纤耦合的空间效应.................................................................................................. 194 5.1.3 光纤耦合条件............................................................................................................ 195 5.1.4 光纤耦合效率的影响因素........................................................................................... 195 5.1.5 光纤连接器对耦合效率的影响分析............................................................................. 199 5.2 激光火工品系统光能传输............................................................................................. 0 5.2.1 激光能量传输规律..................................................................................................... 0 5.2.2 温度对光缆器件的耦合传输效率影响......................................................................... 2 5.2.3 光缆弯曲半径对传输损耗的影响................................................................................ 6 5.2.4 激光波长对光缆耦合效率的影响................................................................................ 9 5.2.5 光纤端面角度对耦合效率的影响................................................................................ 210 5.2.6 光纤端面间隙对耦合效率的影响................................................................................ 211 5.2.7 光纤轴偏离对耦合效率的影响.................................................................................... 213 5.2.8 振动对光缆连接耦合效率的影响................................................................................ 214 5.2.9 激光火工品系统光缆传输效率数学模型...................................................................... 214 5.2.10 光缆传输数学模型的优化处理.................................................................................. 215 5.2.11 光纤分束器件耦合传输规律...................................................................................... 217 5.3 激光能量隔断控制........................................................................................................ 223 5.3.1 光开关隔断控制技术.................................................................................................. 223 5.3.2 激光能量光开关的常温传输效率与导通时间............................................................... 224 5.3.3 激光能量光开关的高低温传输效率............................................................................. 225 5.3.4 能量型光开关传输效率数学模型................................................................................ 225 5.4 光缆耦合与传输损伤.................................................................................................... 225 5.4.1 耦合与传输损伤现象探讨........................................................................................... 225 5.4.2 光纤端面损伤机理..................................................................................................... 227 5.4.3 光纤端面损伤研究..................................................................................................... 229 5.4.4 抗烧蚀光缆接头研究.................................................................................................. 231 5.5 激光能量传输、控制与损伤规律................................................................................... 231 5.5.1 光缆传输规律............................................................................................................ 231 5.5.2 光纤分束器的分束传输规律....................................................................................... 232 5.5.3 能量型光开关传输与隔断规律.................................................................................... 232 5.5.4 光纤器件的损伤规律.................................................................................................. 232 第6章 激光起爆技术......................................................................................................... 234 6.1 固体激光引爆.................................................................................................... 234 6.1.1 传统的激光起爆.............................................................................................. 234 6.1.2的激光感度...................................................................................................... 236 6.1.3 紫外激光引爆.................................................................................................. 242 6.1.4 新型的激光起爆.............................................................................................. 244 6.2固体激光直接起爆.................................................................................................. 248 6.2.1 激光直接起爆过程.............................................................................................. 248 6.2.2 激光参数对起爆的影响分析................................................................................ 249 6.2.3激光起爆的高速摄影分析..................................................................................... 251 6.2.4单晶体的激光起爆............................................................................................... 255 6.2.5 掺杂活物质的激光起爆.................................................................................... 256 6.3 激光爆炸箔起爆........................................................................................................... 261 6.3.1 激光爆炸箔起爆过程.................................................................................................. 262 6.3.2激光爆炸箔起爆低密度........................................................................................ 263 6.3.3 激光爆炸箔起爆BNCP与CL - 的DDT过程.................................................... 267 6.3.4 激光烧蚀毛玻璃表面起爆.................................................................................... 273 6.3.5 低能激光两段法起爆........................................................................................... 277 6.4 激光飞片起爆............................................................................................................... 280 6.4.1激光飞片起爆过程...................................................................................................... 282 6.4.2 激光飞片起爆的关键技术........................................................................................... 284 6.4.3 光纤传输激光驱动飞片起爆高比表面积的太安.................................................... 288 6.4.4 激光引爆驱动飞片起爆....................................................................................... 296 6.5 半导体激光起爆技术.................................................................................................... 297 6.5.1 半导体激光引爆CP............................................................................................ 298 6.5.2 半导体激光起爆BNCP....................................................................................... 298 6.5.3 激光焦点大小与加热速率对微量BNCP发火判据的影响............................................. 299 6.5.4 半导体激光快速起爆CP与BNCP....................................................................... 303 6.5.5 半导体激光起爆DACP....................................................................................... 306 6.5.6 半导体激光起爆HMX................................................................................................ 307 6.5.7 半导体激光引爆非密闭RDX.............................................................................. 312 6.6 激光设计........................................................................................................... 316 6.6.1 光纤耦合激光设计........................................................................................... 316 6.6.2 自聚焦激光设计.............................................................................................. 318 6.6.3 薄膜光学起爆结构设计.............................................................................................. 3 6.7 激光爆炸螺栓技术........................................................................................................ 322 6.7.1 单路激光驱动爆炸螺栓.............................................................................................. 322 6.7.2 双路激光驱动爆炸螺栓.............................................................................................. 325 第7章 激光点火技术......................................................................................................... 328 7.1 烟的激光点火........................................................................................................ 328 7.1.1固体激光引燃烟................................................................................................... 329 7.1.2气体激光引燃烟................................................................................................... 332 7.1.3 半导体激光引燃烟.............................................................................................. 339 7.1.4 纳米含能材料的闪光照射点火.................................................................................... 351 7.2 剂的激光点火........................................................................................................ 352 7.2.1 固体剂的激光点火.............................................................................................. 352 7.2.2 液体剂激光脉冲点火........................................................................................... 360 7.3 火炮发射装药的激光点火............................................................................................. 362 7.3.1 单根光纤多点点火..................................................................................................... 363 7.3.2 火炮的激光多点点火.................................................................................................. 364 7.3.3 激光多点点火系统结构设计与试验........................................................................... 366 7.4 激光点火器设计........................................................................................................ 369 7.4.1 输入光纤式激光点火器设计....................................................................................... 370 7.4.2 微透镜式激光点火器设计........................................................................................... 373 7.4.3自聚焦透镜式激光点火器设计..................................................................................... 375 7.4.4 激光隔板点火器设计.................................................................................................. 377 7.5 激光点火微推冲技术.................................................................................................... 383 第8章 激光火工品............................................................................................................. 389 8.1 激光.................................................................................................................. 389 8.1.1 光学窗口式激光.............................................................................................. 389 8.1.2 透镜式激光..................................................................................................... 399 8.1.3 光纤耦合式激光.............................................................................................. 406 8.1.4 激光爆炸箔..................................................................................................... 415 8.1.5 激光飞片......................................................................................................... 417 8.1.6 其它结构形式激光........................................................................................... 4 8.2 激光点火器.................................................................................................................. 422 8.2.1 光学窗口式激光点火器.............................................................................................. 422 8.2.2 透镜式激光点火器..................................................................................................... 425 8.2.3 光纤耦合式激光点火器.............................................................................................. 427 8.3 动力源激光火工品........................................................................................................ 432 8.3.1激光推销器................................................................................................................. 432 8.3.2 激光拔销器................................................................................................................ 433 8.3.3 光机定序器................................................................................................................ 434 8.3.4 光纤缆切断装置......................................................................................................... 434 8.3.5 激光点火驱动的阀门.................................................................................................. 435 8.3.6 激光点火的推冲器..................................................................................................... 436 8.3.7 激光爆炸螺栓............................................................................................................ 436 8.3.8 激光驱动烟火光开关.................................................................................................. 437 8.3.9 激光点火的子弹......................................................................................................... 438 第9章 激光火工品系统...................................................................................................... 440 9.1 激光火工品系统设计.................................................................................................... 440 9.1.1 设计要求................................................................................................................... 440 9.1.2 计算方法的应用....................................................................................................... 441 9.1.3 激光火工系统的组成与能设计................................................................................ 441 9.2 激光起爆系统............................................................................................................... 443 9.2.1 固体激光起爆系统..................................................................................................... 443 9.2.2 烟火泵激光起爆系统.................................................................................................. 455 9.2.3 半导体激光起爆系统.................................................................................................. 458 9.3 激光点火系统............................................................................................................... 473 9.3.1 固体激光点火系统..................................................................................................... 473 9.3.2 烟火泵激光点火系统.................................................................................................. 478 9.3.3 半导体激光点火系统.................................................................................................. 481 9.3.4 激光隔板点火系统..................................................................................................... 484 9.4 动力源激光火工品系统................................................................................................. 486 9.4.1 激光点火驱动推销器系统........................................................................................... 487 9.4.2 激光点火驱动拔销器系统........................................................................................... 487 9.4.3 激光点火驱动阀门系统.............................................................................................. 487 9.4.4 激光点火驱动爆炸螺栓系统....................................................................................... 488 第10章 激光火工品系统自诊断技术.................................................................................. 491 10.1 系统光路检测概述...................................................................................................... 491 10.2 自诊断技术原理.......................................................................................................... 492 10.2.1 激光火工品系能分析......................................................................................... 492 10.2.2 激光火工品系统自诊断工作原理.............................................................................. 493 10.2.3 光检测信号流程....................................................................................................... 493 10.2.4 反射信号................................................................................................................. 496 10.2.5 自检率与时间的函数关系.................................................................................. 497 10.3 系统自诊断技术.......................................................................................................... 497 10.3.1 内置式自检系统....................................................................................................... 497 10.3.2 外置式自诊断系统................................................................................................... 504 10.3.3 单波长自诊断.......................................................................................................... 509 10.3.4 双波长单光纤自诊断................................................................................................ 510 10.3.5 双波长双光纤自检测技术......................................................................................... 511 10.3.6 光致发光自诊断系统................................................................................................ 512 10.3.7 编码调制式自诊断技术............................................................................................ 512 10.3.8 高灵敏度自动检测技术............................................................................................ 523 10.4 激光火工品自诊断设计............................................................................................... 529 10.4.1板窗口式激光、点火器自诊断.................................................................... 529 10.4.2 凸透镜式激光自诊断..................................................................................... 529 10.4.3 球透镜式激光自诊断..................................................................................... 530 10.4.4 光致发光式激光自诊断.................................................................................. 530 10.4.5 自聚焦激光火工品自诊断......................................................................................... 531 10.5 多路自诊断激光火工品系统........................................................................................ 535 10.5.13路自诊断激光火工品系统....................................................................................... 535 10.5.2 多路数字式自诊断激光火工品系统......................................................................... 536 第11章 与可靠技术............................................................................................. 540 11.1 激光火工品系统的............................................................................................ 541 11.1.1 分析.............................................................................................................. 541 11.1.2 保险与解除保险....................................................................................................... 545 11.1.3 半导体激光起爆系统的设计........................................................................... 559 11.2 激光火工品系统的可靠............................................................................................ 564 11.2.1 可靠检测.............................................................................................................. 564 11.2.2 系统能与可靠技术的发展.................................................................................. 567 11.2.3 激光多路点火系统的冗余设计.................................................................................. 573 11.2.4 激光火工品系统的可靠分析.................................................................................. 575 11.2.5 半导体激光起爆系统的可靠计算........................................................................... 575 11.3 激光起爆系统的可靠模拟........................................................................................ 581 11.3.1 激光起爆系统及其可靠影响因素......................................................................... 581 11.3.2 激光起爆系统可靠建模....................................................................................... 582 11.3.3 系统可靠模拟计算及结果分析............................................................................... 583 11.3.4 分析与讨论.............................................................................................................. 586 11.4 半导体激光起爆系统的环境与作用可靠试验.................................................. 586 11.5 激光火工品的质量保证............................................................................................... 586 11.5.1 激光火工品组装环境要求......................................................................................... 586 11.5.2 质量一致要求....................................................................................................... 587 第12章 激光火工品试验与检测......................................................................................... 589 12.1 激光火工品实验仪器与设备........................................................................................ 589 12.1.1 激光源..................................................................................................................... 589 12.1.2 检测仪器................................................................................................................. 591 12.1.3 试验设备................................................................................................................. 599 12.1.4 工艺设备................................................................................................................. 601 12.2 光学参数测量............................................................................................................. 603 12.2.1 光谱分析与测量....................................................................................................... 603 12.2.2 激光脉冲宽度测量................................................................................................... 606 12.2.3 激率能量测定.................................................................................................. 609 12.2.4 光纤缆传输效率测量................................................................................................ 610 12.2.5 分束器耦合传输效率测定......................................................................................... 612 12.2.6OTDR测量............................................................................................................... 613 12.2.7 光束观察分析.......................................................................................................... 615 12.2.8 非接触干涉测量....................................................................................................... 616 12.2.9 自聚焦透镜镀膜能试验......................................................................................... 616 12.2.10 光开关参数测定..................
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  图书基本信息
图书名称 全新正版图书 激光火工品技术鲁建存国防工业出版社9787118122596人天图书专营店 作者 鲁建存
定价 220.0 出版社 国防工业出版社
ISBN 9787118122596 出版日期 2021-11-01
版次 1 开本

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目  录
目 录 第1章 激光火工品技术发展.................................................................................................. 1 1.1 国外研究状况................................................................................................................. 1 1.2 国内研究情况.................................................................................................................. 6 1.3 国内外差距...................................................................................................................... 8 第2章 激光火工品作用机理................................................................................................ 12 2.1 激光起爆作用机理分析................................................................................................... 12 2.1.1 光冲量对的作用................................................................................................... 13 2.1.2 光化学反应对的作用............................................................................................ 13 2.1.3 电击穿对的影响................................................................................................... 14 2.1.4 冲击波对的作用................................................................................................... 14 2.1.5 热分解反应对的作用............................................................................................ 15 2.2 激光热起爆机理............................................................................................................. 15 2.2.1 激光热起爆过程分析................................................................................................... 15 2.2.2 激光热起爆临界能量计算............................................................................................ 18 2.3 激光爆炸箔起爆机理...................................................................................................... 25 2.3.1 EBW起爆和LEBW起爆.............................................................................................. 25 2.3.2 LEBW起爆能量的转变................................................................................................. 26 2.3.3 多孔含能药粉的LEBW模型........................................................................................ 27 2.4 激光冲击片起爆机理...................................................................................................... 28 2.5 光化学起爆机理............................................................................................................. 32 2.5.1 试验现象与结果.......................................................................................................... 32 2.5.2 反应机理模型分析....................................................................................................... 35 2.5.3 DACP的光化学起爆..................................................................................................... 37 2.6 激光起爆数值模拟................................................................................................... 39 2.6.1 数学模型..................................................................................................................... 40 2.6.2 计算结果与讨论.......................................................................................................... 41 2.7 激光点火机理................................................................................................................. 43 2.7.1 激光点火过程.............................................................................................................. 44 2.7.2 激光点火理论分析..................................................................................................... 45 2.7.3 点在激光作用下的飞行时间质谱........................................................................... 47 2.8 激光点火的数值模拟...................................................................................................... 48 2.8.1 TiKClO4等激光点火模拟............................................................................................. 49 2.8.2 MgNaNO3激光点火数值模拟....................................................................................... 56 2.8.3 FeS激光点火数值模拟................................................................................................ 62 2.8.4 BKNO3激光点火数值模拟........................................................................................... 70 2.8.5 火炮激光点火的数值............................................................................................ 74 第3章 激光器..................................................................................................................... 77 3.1 固体激光器.................................................................................................................... 79 3.1.1 固体激光工作物质....................................................................................................... 79 3.1.2 自由振荡固体激光技术................................................................................................ 84 3.1.3 调Q激光技术............................................................................................................. 96 3.2 气体激光器.................................................................................................................... 99 3.2.1 He-Ne激光器............................................................................................................... 99 3.2.2 CO2激光器................................................................................................................. 100 3.2.3 等离子体激光技术..................................................................................................... 104 3.3 半导体激光器............................................................................................................... 105 3.3.1 半导体激光器工作原理.............................................................................................. 105 3.3.2 激光火工品系统用半导体激光器.............................................................................. 125 第4章 光学元器件............................................................................................................. 133 4.1 光纤............................................................................................................................. 133 4.1.1 光纤结构、分类、光传播与参数................................................................................ 133 4.1.2 激光能量传输用光纤.................................................................................................. 139 4.2 光缆及其连接............................................................................................................... 152 4.2.1 光缆.......................................................................................................................... 152 4.2.2 光纤接头................................................................................................................... 153 4.2.3 光缆组件................................................................................................................... 156 4.2.4 光缆连接................................................................................................................... 158 4.3 合束器与分束器........................................................................................................... 163 4.3.1 合束器....................................................................................................................... 163 4.3.2 分束器....................................................................................................................... 164 4.4 光开关......................................................................................................................... 172 4.4.1 机械机电式光开关.................................................................................................... 172 4.4.2 电光开关................................................................................................................... 176 4.4.3 声光开关................................................................................................................... 176 4.4.4 固体磁光开关............................................................................................................ 176 4.4.5激光驱动烟火光开关................................................................................................... 177 4.4.6 MEMS光开关............................................................................................................ 178 4.5 耦合元件...................................................................................................................... 187 4.5.1 聚焦类耦合元件......................................................................................................... 187 4.5.2 窗口类耦合元件......................................................................................................... 188 4.6 通用光学元件............................................................................................................... 189 4.6.1 玻璃基片................................................................................................................... 189 4.6.2 介质膜片................................................................................................................... 189 4.6.3 干涉滤光片................................................................................................................ 189 4.6.4 角锥.......................................................................................................................... 189 4.7 光衰减器...................................................................................................................... 190 4.7.1光缆衰减器................................................................................................................. 190 4.7.2 光衰减器................................................................................................................... 190 4.7.3 光学分束器................................................................................................................ 190 第5章 激光能量传输与控制............................................................................................... 193 5.1 光纤耦合传输............................................................................................................... 193 5.1.1 光纤耦合方式............................................................................................................ 193 5.1.2 光纤耦合的空间效应.................................................................................................. 194 5.1.3 光纤耦合条件............................................................................................................ 195 5.1.4 光纤耦合效率的影响因素........................................................................................... 195 5.1.5 光纤连接器对耦合效率的影响分析............................................................................. 199 5.2 激光火工品系统光能传输............................................................................................. 0 5.2.1 激光能量传输规律..................................................................................................... 0 5.2.2 温度对光缆器件的耦合传输效率影响......................................................................... 2 5.2.3 光缆弯曲半径对传输损耗的影响................................................................................ 6 5.2.4 激光波长对光缆耦合效率的影响................................................................................ 9 5.2.5 光纤端面角度对耦合效率的影响................................................................................ 210 5.2.6 光纤端面间隙对耦合效率的影响................................................................................ 211 5.2.7 光纤轴偏离对耦合效率的影响.................................................................................... 213 5.2.8 振动对光缆连接耦合效率的影响................................................................................ 214 5.2.9 激光火工品系统光缆传输效率数学模型...................................................................... 214 5.2.10 光缆传输数学模型的优化处理.................................................................................. 215 5.2.11 光纤分束器件耦合传输规律...................................................................................... 217 5.3 激光能量隔断控制........................................................................................................ 223 5.3.1 光开关隔断控制技术.................................................................................................. 223 5.3.2 激光能量光开关的常温传输效率与导通时间............................................................... 224 5.3.3 激光能量光开关的高低温传输效率............................................................................. 225 5.3.4 能量型光开关传输效率数学模型................................................................................ 225 5.4 光缆耦合与传输损伤.................................................................................................... 225 5.4.1 耦合与传输损伤现象探讨........................................................................................... 225 5.4.2 光纤端面损伤机理..................................................................................................... 227 5.4.3 光纤端面损伤研究..................................................................................................... 229 5.4.4 抗烧蚀光缆接头研究.................................................................................................. 231 5.5 激光能量传输、控制与损伤规律................................................................................... 231 5.5.1 光缆传输规律............................................................................................................ 231 5.5.2 光纤分束器的分束传输规律....................................................................................... 232 5.5.3 能量型光开关传输与隔断规律.................................................................................... 232 5.5.4 光纤器件的损伤规律.................................................................................................. 232 第6章 激光起爆技术......................................................................................................... 234 6.1 固体激光引爆.................................................................................................... 234 6.1.1 传统的激光起爆.............................................................................................. 234 6.1.2的激光感度...................................................................................................... 236 6.1.3 紫外激光引爆.................................................................................................. 242 6.1.4 新型的激光起爆.............................................................................................. 244 6.2固体激光直接起爆.................................................................................................. 248 6.2.1 激光直接起爆过程.............................................................................................. 248 6.2.2 激光参数对起爆的影响分析................................................................................ 249 6.2.3激光起爆的高速摄影分析..................................................................................... 251 6.2.4单晶体的激光起爆............................................................................................... 255 6.2.5 掺杂活物质的激光起爆.................................................................................... 256 6.3 激光爆炸箔起爆........................................................................................................... 261 6.3.1 激光爆炸箔起爆过程.................................................................................................. 262 6.3.2激光爆炸箔起爆低密度........................................................................................ 263 6.3.3 激光爆炸箔起爆BNCP与CL - 的DDT过程.................................................... 267 6.3.4 激光烧蚀毛玻璃表面起爆.................................................................................... 273 6.3.5 低能激光两段法起爆........................................................................................... 277 6.4 激光飞片起爆............................................................................................................... 280 6.4.1激光飞片起爆过程...................................................................................................... 282 6.4.2 激光飞片起爆的关键技术........................................................................................... 284 6.4.3 光纤传输激光驱动飞片起爆高比表面积的太安.................................................... 288 6.4.4 激光引爆驱动飞片起爆....................................................................................... 296 6.5 半导体激光起爆技术.................................................................................................... 297 6.5.1 半导体激光引爆CP............................................................................................ 298 6.5.2 半导体激光起爆BNCP....................................................................................... 298 6.5.3 激光焦点大小与加热速率对微量BNCP发火判据的影响............................................. 299 6.5.4 半导体激光快速起爆CP与BNCP....................................................................... 303 6.5.5 半导体激光起爆DACP....................................................................................... 306 6.5.6 半导体激光起爆HMX................................................................................................ 307 6.5.7 半导体激光引爆非密闭RDX.............................................................................. 312 6.6 激光设计........................................................................................................... 316 6.6.1 光纤耦合激光设计........................................................................................... 316 6.6.2 自聚焦激光设计.............................................................................................. 318 6.6.3 薄膜光学起爆结构设计.............................................................................................. 3 6.7 激光爆炸螺栓技术........................................................................................................ 322 6.7.1 单路激光驱动爆炸螺栓.............................................................................................. 322 6.7.2 双路激光驱动爆炸螺栓.............................................................................................. 325 第7章 激光点火技术......................................................................................................... 328 7.1 烟的激光点火........................................................................................................ 328 7.1.1固体激光引燃烟................................................................................................... 329 7.1.2气体激光引燃烟................................................................................................... 332 7.1.3 半导体激光引燃烟.............................................................................................. 339 7.1.4 纳米含能材料的闪光照射点火.................................................................................... 351 7.2 剂的激光点火........................................................................................................ 352 7.2.1 固体剂的激光点火.............................................................................................. 352 7.2.2 液体剂激光脉冲点火........................................................................................... 360 7.3 火炮发射装药的激光点火............................................................................................. 362 7.3.1 单根光纤多点点火..................................................................................................... 363 7.3.2 火炮的激光多点点火.................................................................................................. 364 7.3.3 激光多点点火系统结构设计与试验........................................................................... 366 7.4 激光点火器设计........................................................................................................ 369 7.4.1 输入光纤式激光点火器设计....................................................................................... 370 7.4.2 微透镜式激光点火器设计........................................................................................... 373 7.4.3自聚焦透镜式激光点火器设计..................................................................................... 375 7.4.4 激光隔板点火器设计.................................................................................................. 377 7.5 激光点火微推冲技术.................................................................................................... 383 第8章 激光火工品............................................................................................................. 389 8.1 激光.................................................................................................................. 389 8.1.1 光学窗口式激光.............................................................................................. 389 8.1.2 透镜式激光..................................................................................................... 399 8.1.3 光纤耦合式激光.............................................................................................. 406 8.1.4 激光爆炸箔..................................................................................................... 415 8.1.5 激光飞片......................................................................................................... 417 8.1.6 其它结构形式激光........................................................................................... 4 8.2 激光点火器.................................................................................................................. 422 8.2.1 光学窗口式激光点火器.............................................................................................. 422 8.2.2 透镜式激光点火器..................................................................................................... 425 8.2.3 光纤耦合式激光点火器.............................................................................................. 427 8.3 动力源激光火工品........................................................................................................ 432 8.3.1激光推销器................................................................................................................. 432 8.3.2 激光拔销器................................................................................................................ 433 8.3.3 光机定序器................................................................................................................ 434 8.3.4 光纤缆切断装置......................................................................................................... 434 8.3.5 激光点火驱动的阀门.................................................................................................. 435 8.3.6 激光点火的推冲器..................................................................................................... 436 8.3.7 激光爆炸螺栓............................................................................................................ 436 8.3.8 激光驱动烟火光开关.................................................................................................. 437 8.3.9 激光点火的子弹......................................................................................................... 438 第9章 激光火工品系统...................................................................................................... 440 9.1 激光火工品系统设计.................................................................................................... 440 9.1.1 设计要求................................................................................................................... 440 9.1.2 计算方法的应用....................................................................................................... 441 9.1.3 激光火工系统的组成与能设计................................................................................ 441 9.2 激光起爆系统............................................................................................................... 443 9.2.1 固体激光起爆系统..................................................................................................... 443 9.2.2 烟火泵激光起爆系统.................................................................................................. 455 9.2.3 半导体激光起爆系统.................................................................................................. 458 9.3 激光点火系统............................................................................................................... 473 9.3.1 固体激光点火系统..................................................................................................... 473 9.3.2 烟火泵激光点火系统.................................................................................................. 478 9.3.3 半导体激光点火系统.................................................................................................. 481 9.3.4 激光隔板点火系统..................................................................................................... 484 9.4 动力源激光火工品系统................................................................................................. 486 9.4.1 激光点火驱动推销器系统........................................................................................... 487 9.4.2 激光点火驱动拔销器系统........................................................................................... 487 9.4.3 激光点火驱动阀门系统.............................................................................................. 487 9.4.4 激光点火驱动爆炸螺栓系统....................................................................................... 488 第10章 激光火工品系统自诊断技术.................................................................................. 491 10.1 系统光路检测概述...................................................................................................... 491 10.2 自诊断技术原理.......................................................................................................... 492 10.2.1 激光火工品系能分析......................................................................................... 492 10.2.2 激光火工品系统自诊断工作原理.............................................................................. 493 10.2.3 光检测信号流程....................................................................................................... 493 10.2.4 反射信号................................................................................................................. 496 10.2.5 自检率与时间的函数关系.................................................................................. 497 10.3 系统自诊断技术.......................................................................................................... 497 10.3.1 内置式自检系统....................................................................................................... 497 10.3.2 外置式自诊断系统................................................................................................... 504 10.3.3 单波长自诊断.......................................................................................................... 509 10.3.4 双波长单光纤自诊断................................................................................................ 510 10.3.5 双波长双光纤自检测技术......................................................................................... 511 10.3.6 光致发光自诊断系统................................................................................................ 512 10.3.7 编码调制式自诊断技术............................................................................................ 512 10.3.8 高灵敏度自动检测技术............................................................................................ 523 10.4 激光火工品自诊断设计............................................................................................... 529 10.4.1板窗口式激光、点火器自诊断.................................................................... 529 10.4.2 凸透镜式激光自诊断..................................................................................... 529 10.4.3 球透镜式激光自诊断..................................................................................... 530 10.4.4 光致发光式激光自诊断.................................................................................. 530 10.4.5 自聚焦激光火工品自诊断......................................................................................... 531 10.5 多路自诊断激光火工品系统........................................................................................ 535 10.5.13路自诊断激光火工品系统....................................................................................... 535 10.5.2 多路数字式自诊断激光火工品系统......................................................................... 536 第11章 与可靠技术............................................................................................. 540 11.1 激光火工品系统的............................................................................................ 541 11.1.1 分析.............................................................................................................. 541 11.1.2 保险与解除保险....................................................................................................... 545 11.1.3 半导体激光起爆系统的设计........................................................................... 559 11.2 激光火工品系统的可靠............................................................................................ 564 11.2.1 可靠检测.............................................................................................................. 564 11.2.2 系统能与可靠技术的发展.................................................................................. 567 11.2.3 激光多路点火系统的冗余设计.................................................................................. 573 11.2.4 激光火工品系统的可靠分析.................................................................................. 575 11.2.5 半导体激光起爆系统的可靠计算........................................................................... 575 11.3 激光起爆系统的可靠模拟........................................................................................ 581 11.3.1 激光起爆系统及其可靠影响因素......................................................................... 581 11.3.2 激光起爆系统可靠建模....................................................................................... 582 11.3.3 系统可靠模拟计算及结果分析............................................................................... 583 11.3.4 分析与讨论.............................................................................................................. 586 11.4 半导体激光起爆系统的环境与作用可靠试验.................................................. 586 11.5 激光火工品的质量保证............................................................................................... 586 11.5.1 激光火工品组装环境要求......................................................................................... 586 11.5.2 质量一致要求....................................................................................................... 587 第12章 激光火工品试验与检测......................................................................................... 589 12.1 激光火工品实验仪器与设备........................................................................................ 589 12.1.1 激光源..................................................................................................................... 589 12.1.2 检测仪器................................................................................................................. 591 12.1.3 试验设备................................................................................................................. 599 12.1.4 工艺设备................................................................................................................. 601 12.2 光学参数测量............................................................................................................. 603 12.2.1 光谱分析与测量....................................................................................................... 603 12.2.2 激光脉冲宽度测量................................................................................................... 606 12.2.3 激率能量测定.................................................................................................. 609 12.2.4 光纤缆传输效率测量................................................................................................ 610 12.2.5 分束器耦合传输效率测定......................................................................................... 612 12.2.6OTDR测量............................................................................................................... 613 12.2.7 光束观察分析.......................................................................................................... 615 12.2.8 非接触干涉测量....................................................................................................... 616 12.2.9 自聚焦透镜镀膜能试验......................................................................................... 616 12.2.10 光开关参数测定..................
商品详情
  图书基本信息
图书名称 全新正版图书 激光火工品技术鲁建存国防工业出版社9787118122596人天图书专营店 作者 鲁建存
定价 220.0 出版社 国防工业出版社
ISBN 9787118122596 出版日期 2021-11-01
版次 1 开本

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Delivery Details:

  • Estimates: Standard shipping within the US typically takes 3-7 business days. These are estimates and not guarantees.

  • Shipping Restrictions: We ship to all 50 states, Washington, DC, U.S. territories, and APO/FPO/DPO addresses. Shipping options vary based on the delivery address.

  • Remote Areas: Shipments to remote areas may incur additional charges or require pickup from a nearby shipping partner’s location.

Shipping Confirmation:

You will receive a shipping confirmation email with a tracking number as soon as your order is dispatched. If you do not receive this email immediately, please be assured that your items will arrive within the estimated delivery window provided at checkout.

Order Modifications:

If you need to cancel or modify your order, please contact our customer support immediately.

Issues with Delivery:

If your order shows as delivered but you have not received it, please contact the shipping carrier directly to resolve the issue. For persistent problems, contact our customer service at cs@everymarket.com.

Customer Support:

Our team is available 24/7 to assist you with any questions or concerns regarding your order. We are committed to ensuring a smooth shopping experience.

Return & Refund Policy Overview

Please review our return and refund policies below to ensure a smooth transaction process.

Return Policy

  • Duration: You have 30 days from receiving your item to initiate a return.

  • Condition: Items must be unworn, unwashed, with original tags and packaging intact.

  • Shipping Costs: Customers are responsible for return shipping costs.

  • Packaging: Ensure returned items are well-packaged to avoid damage during transit.

  • Tracking: Use a trackable and insured shipping method as we are not liable for items lost or damaged on return.

  • Initiating a Return: Contact us at cs@everymarket.com to start your return. We will provide a return shipping label and instructions upon approval. Returns without prior approval will not be accepted.

How to Return

  • Method: Returns must be sent back by mail to the address provided in the return instructions.

Return Label

  • Defective Products: Return labels are provided for defective items.

  • Non-Defective Returns: Customers are responsible for obtaining their return shipping label.

Product Conditions for Return

  • Eligible Products: Returns are only accepted for items in new condition.

Nonreturnable Items

Certain items are not eligible for return:

  • Electronic devices after 30 days (e.g., computers, laptops, Kindles)

  • Gift cards, prepaid game cards

  • Perishable goods, live insects, some jewelry, some health and personal care items

  • Customized or personalized products

  • Items with special shipping restrictions

Refund Policy

  • Window: Eligible products may be returned within 30 days of delivery for a refund.

  • Refund Method: Refunds are processed to the original payment method or as store credit for items purchased with gift cards.

  • Processing Time: Refunds are processed within 3-5 business days after we receive the return; please allow additional time for shipping and bank processing.

Claims

Inspect your order upon arrival and report any defects, damages, or incorrect items immediately to allow us to address the issue. For claims, contact our support team with details of the issue.

Exchange Policy

For the quickest service, return your original item and place a new order for the desired product once your return is accepted.

Return Address

EveryMarket Customer Service 2101 E Terra Ln, O'Fallon, MO 63366

Customer Support

Available 24/7 for any questions or assistance needed:

  • Phone: +1 636-312-5925

  • Email: cs@everymarket.com

 

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