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1)  composite industrial explosive
工业混合炸药
1.
A composite industrial explosive based on waste propellant and emulsion explosive was presented.
利用乳化炸药的基本配方与工艺,在乳化炸药的混拌(敏化)工序中将废弃火药和乳化炸药混合,制备工业混合炸药
2)  composite explosive
混合炸药
1.
Formulation design of metal-bearing composite explosive based on genetic algorithm
基于遗传算法的含金属混合炸药配方设计
2.
The research achievements in composite explosives,solid rocket propellants and gun propellants are summarized and discussed.
回顾了CL-20在应用领域内的研究进展,介绍了军用含能化合物实用性的标准、CL-20在混合炸药、推进剂、发射药中的应用特点及应用成果。
3.
The effect of nano-Al_2O_3 on critical initiation pressure of HMX/nano- Al_2O_3 is studied using copper-manganese piezo-gauge testing pressure and small scale gap test (SSGT), and the effect of nanometer Al_2O_3 on composite explosive mechanics of explosion are discussed, density of HMX/nano-Al_2O_3 (98/2) is 90% of theory density.
 采用锰铜测压法和小隔板实验(SSGT)测试了纳米Al2O3对HMX临界起爆压力影响,对纳米Al2O3在混合炸药中的作用机理进行了探讨,混合炸药的配比HMX/纳米Al2O3为98∶2,密度为90%理论密度。
3)  composite explosives
混合炸药
1.
The performance and applications of some insensitive composite explosives are introduced,including PAX formulations based on DNAN,MNX-194 melt-casting explosive,wax-binded,AFX-757,PBXN-109,PBXIH-135,PAX-2A,PAX-3 and PBX based on TATB.
介绍了美国研究发展的几种不敏感混合炸药,包括以DNAN基PAX系列炸药、以蜡为添加剂的MNX-194等熔铸炸药、AFX-757、PBXN-109、PBXIH-135、PAX-2A、PAX-3以及TATB基等高聚物黏结炸药的性能和应用情况。
2.
Based on the ideal composite explosive proposed in this paper, the quantitative relation between detonation velocity of ideal composite explosive Did and detonation velocity D and mass fraction W, of pure explosive was discovered, and a new method was developed that can be used to predict the detonation velocity of composite explosives.
根据化学热力学原理和爆轰学原理 ,建立了“理想混合炸药”模型 ,发现理想混合炸药的爆速Did与纯组分炸药的爆速Di 和质量分数Wi 之间存在着定量关系 :1Did =W1 D1+ W2D2+… + WmDm= iWiDi据此发展了一种计算混合炸药爆速的新方法 。
4)  industrial explosive
工业炸药
1.
Obsolete propellant as main composition made into industrial explosives has prominent merits.
在几种再利用途径中,将发射药作为主要组分制成工业炸药具有突出的优点,其中直接将报废发射药灌注成型为工业炸药,由于过程安全、操作简单、无“三废”排放,能大批量地利用报废发射药,因而成为现阶段安全有效利用报废发射药的一条最优途径。
2.
Compared with other several kind recycle ways,the method which uses obsolete energetic materials as main composition of industrial explosive has obvious superiority that it can take full advantage of safety, low manufacture cost, simple process, no p.
与其它几种再利用途径相比 ,将其作为主要组分制成工业炸药具有突出的优点 ,这一途径能使含能材料特有的燃烧和爆炸性质得到充分利用 ,处理过程安全、操作简单、无三废排放、产品性能好 ,处理成本低 ,利于实现工业化 ,是大规模处理和利用废弃含能材料的较优途
3.
Some viewpoints on the equation of state about the detonation products are summarized and discussed,by calculating several industry explosive detonation parameter and comparing the practical tested explosive detonation parameter in which utilization Multi-equation method computation rate of detonation velocity takes the calculation value of the industrial explosive ideal detonation velocity.
总结了关于爆轰产物状态方程的几种观点,通过计算几种工业炸药爆轰参数并与实验值作比较,其中运用多方方程*方法计算的爆速值作为炸药的理想爆速计算值DM。
5)  industrial explosives
工业炸药
1.
The determination result could be the basis of designing the formula of industrial explosives with TNT as one component.
测定结果显示有毒气体的含量为350L·kg-1~360L·kg-1,可为以梯恩梯为装药组分的工业炸药配方设计提供依据。
2.
This paper gives an analysis of notable key factors of safety evaluation on industrial explosives production process.
分析了工业炸药生产系统安全评价中应注意的关键性因素。
3.
This paper has briefly introduced the types and consumption of industrial explosives used in USA,Japan and China after War Ⅱ, and analyzed the reason that the output of various industrial explosives changes in different historical periods.
文章简要介绍了二战后美国、日本、中国工业炸药的品种及消耗量 ,并分析了不同历史时期各个炸药品种产量变化的原因。
6)  industry explosive
工业炸药
1.
Study on the influence factors of the explode performance of industry explosive;
影响工业炸药爆炸性能的因素探究
2.
A few of promoting agents are added to industry explosives for sensitizing the ammonium nitrate(AN) according to the theory of industrial explosives.
根据工业炸药理论的原理,添加少量表面活性剂,实现对硝酸铵的敏化。
补充资料:混合炸药
分子式:
CAS号:

性质:由两种或两种以上物质组成的能发生爆炸变化的混合物,也称爆炸混合物。由单质炸药及添加剂或氧化剂、可燃剂及添加剂按适当比例混制而成。绝大多数实际应用的炸药都是混合炸药,品种极多,有多种分类方法。按用途可分为军用和民用(工业)两大类,但有些混合炸药系军民兼用。在设计军用混合炸药时,应着重考虑其爆炸性能、安定性、感度、机械强度及加工成型性能,在设计民用混合炸药时,除要求一定的爆炸性能外,更应强调其经济性和使用上的方便及安全。

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