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塑性炸药
相关语句
  plastic explosive
     Determination of Sensitivity of Plastic Explosive Containing Insensitve Explosives
     含钝感炸药的塑性炸药配方感度研究(英文)
短句来源
     Conclusion The coating effect to the plastic explosive with RDX particle size (40~64) μm is better, and the mechanical sensitivity is lower.
     结论 选择粒度为 ( 4 0~ 6 4 )μm目的主体炸药制备的塑性炸药 ,包覆性能较好 ,机械感度较低
短句来源
  plastic explosives
     Study about the Effect of RDX Particle Size on the Coating of Plastic Explosives and Its Mechanical Sensitivity
     RDX粒度对某塑性炸药包覆和机械感度性能的影响
短句来源
     Aim The influence of RDX particle size in plastic explosives on the effect of coating and mechanical sensitivity is studied.
     目的 讨论 RDX粒度对塑性炸药包覆及感度性能的影响 .
短句来源
     Methods Experiment of plastic explosives with different particle size are used to analyze and research the coating surface and the mechanical sensitivity.
     方法 以不同粒度的主体炸药制备塑性炸药后进行表面包覆、机械感度比较 .
短句来源
  “塑性炸药”译为未确定词的双语例句
     The experimental results show this additive decrease the impact and friction sensitivity without worsening another parameters.
     实验表明NTO可降低撞击和摩擦感度,并对其他性能产生不大影响。 这 说明低感或钝感炸药的加入是降低塑性炸药感度的有效方法。
短句来源
     A mixing explosive was made with a special proportion of aluminum nitrate,carbamide and explosive. It was similar to plastic-type explosive.
     利用硝酸铝、尿素和炸药为原料,通过研究配比出一种类似塑性炸药的混合炸药,引爆此混合炸药,爆轰完毕得到了纳米-αAl2O3粉体。
短句来源
  相似匹配句对
     Emulsified Explosives
     乳化炸药
短句来源
     An Interface Chemistry Study on Heat-Resisting PBX Explosives
     对高分子塑性耐热炸药的界面化学研究
短句来源
     RIGID PLASTIC DEFORMATION OF A SPHERE DRIVEN BY AN EXPLOSIVE
     炸药爆轰产物驱动刚塑性球壳的加速运动
短句来源
     PLASTIC DEFORMATION IN STEELS
     钢的塑性形变
短句来源
     PLASTIC SHEET EXPLOSIVE
     塑料板状炸药
短句来源
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  plastic explosive
It is shown that a variation of the composition of the explosive (TNT, plastic explosive, TG 50/50 alloy) of a given thickness changes the distance from the vertex of the dihedral angle to the surface at which the charge was placed.
      
The limiting resistance of the specimens subjected to the gliding detonation of a TP-83 plastic explosive through a polyurethane-foam layer and also to the gliding and normal detonations of a NIL-1 low-density explosive is examined.
      
Effect of Shock-Wave Loading Conditions on the Behavior of a PETN-Based Plastic Explosive
      
The paper reports results of investigation of the spallation and initiation of an explosive transformation in the plastic explosive formulation TP-83 under shock-wave loading.
      
The lower G, the greater the longevity of the rails relative to the bolt holes.3.The scheme of loading with a plastic explosive with two-sided simultaneous axisymmetric blast initiation with a detonating fuse is optimal.
      
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  plastic explosives
Principles of application of extrusion technology for the formation of charges of industrial plastic explosives are considered, including analysis of extruder operation and modeling of extrusion process.
      
NQR device for detecting plastic explosives, mines, and drugs
      
We describe a NQR device to detect plastic explosives, mines, and drugs and discuss design considerations.
      
We describe NQR devices for detecting plastic explosives, mines and drugs.
      
The plastic explosives could not be checked by the X-ray detecting device.
      
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  plastic bonded explosive
The results of simulations are compared to the experimental values for the SEMTEX?1A plastic bonded explosive.
      
Thermal analysis of pure RDX and its plastic bonded explosive (PBX) with hydroxyl terminated polybutadiene (HTPB) has been undertaken using TG-DTG and DTA techniques.
      


Aim The influence of RDX particle size in plastic explosives on the effect of coating and mechanical sensitivity is studied. Methods Experiment of plastic explosives with different particle size are used to analyze and research the coating surface and the mechanical sensitivity. Results The finer principal explosive particle size will receive the better plastic explosive coating effect and the lower sensitivity. Conclusion The coating effect to the plastic explosive with RDX particle size (40~64) μm is better,...

Aim The influence of RDX particle size in plastic explosives on the effect of coating and mechanical sensitivity is studied. Methods Experiment of plastic explosives with different particle size are used to analyze and research the coating surface and the mechanical sensitivity. Results The finer principal explosive particle size will receive the better plastic explosive coating effect and the lower sensitivity. Conclusion The coating effect to the plastic explosive with RDX particle size (40~64) μm is better, and the mechanical sensitivity is lower.

目的 讨论 RDX粒度对塑性炸药包覆及感度性能的影响 .方法 以不同粒度的主体炸药制备塑性炸药后进行表面包覆、机械感度比较 .结果 由于粘结剂含量多 ,RDX的粒度较小时也容易包覆且机械感度较低 .结论 选择粒度为 ( 4 0~ 6 4 )μm目的主体炸药制备的塑性炸药 ,包覆性能较好 ,机械感度较低

In order to obtain low sensitive high explosive formulation. Plastic explosive based on hexogen and octogen were investigated. 3-nitro-l ,2,4-triazol-5-one (NTO) was used as an additive. The experimental results show this additive decrease the impact and friction sensitivity without worsening another parameters.

采用低感、钝感炸药NTO、NGU作为添加剂,获得了以RDX、HMX为基的低感高能炸药配方,研究了 NTO、NUG对其撞击和摩擦感度的影响。实验表明NTO可降低撞击和摩擦感度,并对其他性能产生不大影响。这 说明低感或钝感炸药的加入是降低塑性炸药感度的有效方法。

The thermal stability of a new plastic bonded explosive PBX-HKF composed of main explosives (HMX and potassium picrate), plasticizer and binder, has been studied by an accelerating rate calorimeter. The curves of thermal decomposition temperature and pressure versus time,self-heating rate and pressure versus temperature were obtained. According to adiabatic theory, the activation energy E_a=337.32 kJ·mol~(-1) and pre-exponential factor 9.32E34 s~(-1) are obtained. The decomposition history and safety of PBX-HKF...

The thermal stability of a new plastic bonded explosive PBX-HKF composed of main explosives (HMX and potassium picrate), plasticizer and binder, has been studied by an accelerating rate calorimeter. The curves of thermal decomposition temperature and pressure versus time,self-heating rate and pressure versus temperature were obtained. According to adiabatic theory, the activation energy E_a=337.32 kJ·mol~(-1) and pre-exponential factor 9.32E34 s~(-1) are obtained. The decomposition history and safety of PBX-HKF were analysed. It is indicated that the new plastic bonded explosive possesses very good.

采用加速量热仪(ARC)研究了一种由HMX、苦味酸钾、增塑剂、粘结剂组成的新型PBX HKF炸药的热稳定性,得到了塑性炸药样品在绝热条件下热分解温度和压力随时间的变化曲线以及自热速率、分解气体产物压力随温度的变化曲线,分析了在绝热条件下热分解反应动力学,计算了表观活化能Ea为337. 32kJ·mol-1,指前因子A为9. 32E34s-1。结果表明所测试的PBX HKF具有良好的热稳定性。

 
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