首页> 外文会议>International Pyrotechnics Seminar >An Analysis and Discussion of Certain Problems connected with Physicochemical Stability and Compatibility of Explosive Materials Used in Initiation-Ignition/Explosive Trains of Fusing Systems on the basis of NATO Standardization Documents
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An Analysis and Discussion of Certain Problems connected with Physicochemical Stability and Compatibility of Explosive Materials Used in Initiation-Ignition/Explosive Trains of Fusing Systems on the basis of NATO Standardization Documents

机译:基于北约标准化文献的融合系统启动点火/爆炸训练中使用的爆炸材料与爆炸材料相关性的分析与探讨

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This paper is dedicated to an analysis and discussion on measurement, determination and requirements regarding physicochemical stability and compatibility properties, including ageing and thermal parameters and characterization of high energetic materials used in ignition/explosive trains of fusing systems on the basis of NATO Standardization Agreements (STANAGs) and Allied Ordnance Publications (AOPs). This group of high energetic materials comprises the following explosives used in fusing systems: primary explosives (e.g. lead and silver azides) lead/booster explosives (e.g. tetryl) and pyrotechnic compositions (including black powder) applied in pyrotechnic delayers, self-destruction devices, ignition impulse augmenting and transferring charges (e.g. detonating/incendiary cups, squibs, primers). Above presented approach in respect to physicochemical stability and compatibility testing of high energetic materials used in fusing systems should support process of selection, development and tailoring of test methods, parameters and assessment criteria concerning these materials which finally decide about safety and reliability functioning of fusing systems in military ammunition.
机译:本文专用于测量,判定和要求的分析和讨论关于物理化学稳定性和相容性性质,包括老化和热参数和在点火中使用高能材料的表征北约标准化协议的基础上熔合系统的/炸药列车( STANAGs)和联合军械出版物(高级氧化)。该组的高能材料包括在熔合系统中使用的下列炸药:初级炸药(例如铅和银叠氮化物)铅/升压爆炸物(例如特屈儿)和烟火组合物(包括黑色粉末)在烟火延迟器,自毁的装置施加,点火脉冲增广和转移电荷(例如起爆/燃烧杯,爆管,引物)。如上关于物理化学稳定性和在融合系统应支持选择,发展的过程和测试方法,参数和评价标准有关的这些材料最终决定对安全和可靠性融合系统的功能定制用于高能材料的相容性测试提出的方法在军用弹药。

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