起爆药

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  • Primary explosive;percussion powder
起爆药起爆药
  1. D·E共沉淀起爆药的性能及应用

    The Properties and Application of D . E Coprecipitating Primary Explosive

  2. 浅谈K·D复盐起爆药生产中的结晶控制

    Crystallization Control in the Production of K · D Double Salt Primary Explosive

  3. 钝化燃烧法销毁废K·D复盐起爆药

    The Destruction of Waste K · D Initial Complex Salt Explosive by Dull-Combustion Method

  4. K·K无起爆药雷管侧向起爆导爆管可靠性研究

    Study on the Side Initiated Reliability of Nonel Tube by K · K Non-priming Explosive Detonator

  5. 用二硫化钼降低K·D复盐起爆药摩擦感度的研究

    A Research on Reduction of Friction Sensitivity of K · D Double Salt Primary Explosive Using Molybdenum Disulfide

  6. CP起爆药的电子结构与热分解规律

    The Electronic Structure and Decomposion Mechanism of the Primary Explosive CP

  7. 根据试验数据,探讨了K·D起爆药摩擦感度与碱式苦味酸铅含量的关系。

    This paper discusses the relationship between the friction sensitivity of K · D primary explosive based on test data .

  8. 文中介绍了用钝化燃烧法销毁废K·D复盐起爆药时存在的爆燃现象和危险残留物等安全隐患,并提出了可靠的解决办法。

    When destroying the waste K · D complex salt initial explosive by dull-combustion method , and put forwards dull-combustion method , which is credible ways .

  9. 现行民爆器材中普遍使用的雷管是有起爆药雷管,K·K无起爆药雷管是在现有雷管基础上的一次创新。

    Detonators that are now generally being used in industrial explosive materials contain priming explosive . K · K non priming explosive detonator is an innovation based on existing detonators .

  10. 本文主要研究SY起爆药线性装药技术以及装药后的性能测试。

    This thesis studied the miniaturized linear charge technology with SY primary explosive and property test of charged .

  11. 现在针对K·D复盐起爆药重金属废水的处理工艺虽然能使出水达到国家相应的排放标准,但是处理工艺选择性差,有可能造成二次污染,并不是最佳的选择。

    Though the wastewater of K-D double salt primary explosive can reach the relevant effluent standard , the selectivity of present treatment technic is low and may bring secondary pollution and is not a optimal choice .

  12. 研究结果表明,用KG作点火药、GTG起爆药作为普通纸壳火雷管的装药是可行的。

    The obtained results verified that the plain paper shell detonators are usable and reliable with KG ignition composition and GTG primary explosive .

  13. 采用添加剂将起爆药和猛炸药包覆在一起,优选了溶液的反应温度、PH值、搅拌速度与反应时间等合成工艺参数,以便改进它们的物理化学性能并改善它们的起爆性能。

    The high explosive coated with DDNP by using additive and optimal synthesis technological parameters such as solution reaction temperature , PH value , stirring speed and reaction time in order to improve their physicochemical properties and the initiation performance .

  14. 该文介绍了K·K无起爆药雷管的结构与传爆过程,测试了其点火延迟时间、侧向与轴向爆炸后能量输出情况,提出了作导爆管雷管使用时必须注意的一些问题。

    This paper introduces structure and detonation propagating of K · K non priming explosive detonator . The initiation delay time , axial and side exported energy were tested , which should be paid attention during the use of nonel tube detonator .

  15. GTG起爆药性能研究

    Research on the Primary Explosive GTG

  16. 当RDX含量为30%时,微起爆药的5s爆发点为180.4℃,活化能Ea为100.2kJ/mol。

    Second delay time test of minimized primary explosive is 180.4 ℃ and the activation energy is 100.2kJ/mol when the RDX content is 25 % .

  17. 根据(电子)最易跃迁原理(PET)可预测αPb(N3)2的感度较大,适合于作起爆药使用。

    Consequently , α Pb ( N 3 ) 2 is expected to be sensitive explosives , according to the " principle of the easiest transition " . It is thus suitable to be used as an initiating high explosive .

  18. 本文从实验上研究小型脉冲YAG激光引爆或引燃起爆药的可能性;在理论上,从激光热引爆的机理简述了激光引燃或引爆的判据。

    This paper studies experimentally the probability with a feeble YAG laser pulse to detonate or ignite the primary high explosive , and describes briefly the criteria of laser ignition or detonation from the point of view of the theory of laser heat detonation mechanism .

  19. 结果表明:采用NHN起爆药可克服DDNP起爆药带来的污染严重问题,生产工艺合理、产品性能安全可靠。

    Result demonstrated that the NHN primary explosive can overcome the problem of pollution produced by DDNP , the produce process is reasonable , and the performance of product is safe and reliable .

  20. 本文通过文献及实际工作的调研、分析,对比了络合物起爆药硝酸肼镍与DDNP的性能,认为硝酸肼镍性能优良,完全可以取代DDNP。

    By means of looking up the related literatures , as well as investigating and analyzing the actual condition , the author holds that the properties of nitro-nickel is more excellent than those of DDNP so that nitro-nickel can completely replace DDNP .

  21. 冲击飞片式无起爆药电雷管试产质量分析

    Analysis on the quality of production test of flying plate detonator

  22. 起爆药的结晶控制技术与单晶培养

    Crystal Control and Single Crystal Culturing of the Primary Explosives

  23. 酸碱度对起爆药质量的影响

    Influence of Acidity and Alkalinity on Quality of Primary Explosives

  24. 单质起爆药本质安全连续自动化生产技术

    Research on Continuous Automated Production Intrinsically Safety Technology of Unitary Detonating Powder

  25. 无起爆药非电延期雷管的研制

    The Development of Non-Electric ms Delay Detonator Without Primar Explosive

  26. 八种起爆药急性毒性及皮肤刺激作用的探讨

    The Discussion of Acute Poison and Skin in Irritation of Eight Initial Explosives

  27. 起爆药废水处理工艺研究

    The Technique Research on the Primary Explosive Wastewater Treatment

  28. 非电传爆系统无起爆药传爆接头的性能研究

    The Performance of Detonating Connector with Non-primary Explosive in Non-electric Detonation Transfer System

  29. 充气膜吸收技术回收起爆药废水中叠氮化物研究

    Azide Recovery from Wastewater of Primary Explosive Using Gas Filled Membrane Absorption Technology

  30. 简易飞片式无起爆药雷管冲击波输出影响因素的探索

    Investigation on the Shock Wave Output or Non-primary Explosive Detonators with Simple Flying Plate