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41.
42.
进行了两类压剪加载实验:(1)利用石英的平面正碰撞产生压剪加载的实验,采用电磁质速法测试装药试件内部不同质点的运动情况,分析炸药装药中发生化学反应的可能性;(2)在压剪炮上采用平行倾斜碰撞产生压剪加载的实验,观测炸药装药爆炸的可能性。由实验可以看出:在亚爆轰状态的压缩加载应力条件下,剪切的联合作用对炸药的起爆起到敏化作用,适当比例的压剪加载造成更加敏感的炸药起爆响应。文中给出了起爆响应规律和响应机制的实验分析。 相似文献
43.
本文对目前常规破甲弹发展陷入低谷的原因进行了分析、找出了提高破甲威力的突破口,然后从材料、实验和理论角度对采用贫铀——U~(238)作药型罩提高破甲威力的可行性进行了研究。 相似文献
44.
采用先进测试系统,对氮化铅、硝化棉、梯恩梯和黑索金火炸药静电感度分别进行了定性测量和定量测量,得出了相对静电感度值和实际静电感度值,并对其进行了对比分析。 相似文献
45.
充电法在复合材料静电测试中的问题 总被引:2,自引:0,他引:2
按照GJB2605-96中有关静电衰减性能测试的要求,自制了复合材料静电衰减性能测试装置。用这套测试装置对9种不同结构的复合材料进行了实验研究。研究表明,利用充电法测试材料静电衰减性能时,由于电容效应,测试结果不能正确反映被测材料的静电性能。 相似文献
46.
本文利用静电信号高压电极自身作为传感器的屏蔽电极,使屏蔽深度与仪器灵敏度要求相一致,并使输入端接收的电荷量与被测电位成正比关系,而获得被测电位数值,提出“信号自屏蔽电荷耦合”原理,并从理论上和实验上论述了原理的正确性和先进性。利用此原理研制成ZPD-l型静电电位动态测试仪,该仪器与美制263型高速静电表、日本MH型人体静电电位仪等先进仪器相比,具有输入电阻高(>10~(14)Ω)、动态特性好,抗干扰能力强、高电压非线性失真小等特点。 相似文献
47.
修奇 《中国人民武装警察部队学院学报》2008,24(8):59-61
爆炸危险环境建筑物防雷由于其“特殊性”倍受电气工程技术人员关注。结合相关雷电理论,从接闪器、引下线、接地装置几个方面对爆炸危险环境建筑物防雷设施选择和布置进行了论述。 相似文献
48.
《防务技术》2022,18(10):1863-1874
The research of LEFP (linear explosive forming projectile) is of great value to the development of new warhead due to its excellent performance. To further improve the damage ability of the shaped charge warhead, a special shell overhanging structure was designed to increase the charge based on the traditional spherical charge, in which case the crushing energy of LEFP could be guaranteed. LS-DYNA was used to simulate different charge structures obtained by changing the number of detonation points, the length of shell platform, the radius of curvature and the thickness of liner. The RSM (response surface model) between the molding parameters of LEFP and the structural parameters of charge was established. Based on RSM model, the structure of shaped charge was optimized by using multi-objective genetic algorithm. Meanwhile, the formation process of jet was analyzed by pulsed X-ray photography. The results show that the velocity, length-diameter ratio and specific kinetic energy of the LEFP were closely related to the structural parameters of the shaped charge. After the optimization of charge structure, the forming effect and penetration ability of LEPP had been significantly improved. The experimental data of jet velocity and length were consistent with the numerical results, which verifies the reliability of the numerical results. 相似文献
49.
Thermal safety of modular charge which is fed into and retained in the chamber after gun fires consecutively is first investigated with cook-off method.A two-dimensional cook-off model of modular charge in gun chamber is established and the cook-off process of modular charge in gun chamber is numerically simulated.Then the effects of module number and firing condition on charge thermal safety are evaluated by researching the cook-off response characteristics of modules.The results show that,under conditions of different module numbers the cook-off responses all occur on the module closest to the boundary of missile,and the single-base propellants located at the inner surface of cartridge ignite first.When the number of loaded module changes from 1 to 6,the cook-off response temperatures vary little,only in a small range of 478.1 K-482.4 K.The cook-off response times decrease logarithmically in the range of 211.2 s-166.7 s with the increasing length of residual air gap in gun chamber.The simulation results are well matched with the experimental data.Furthermore,different firing conditions have great influence on the cook-off response time,minor influence on the initial response position and little in-fluence on the response temperature.Under the three conditions of consecutive 32 launches with 5 rounds/min,43 launches with 1 round/min,and 41 launches with different firing frequencies,the cook-off response temperatures are 479.2 K,481.1 K and 479.9 K respectively and the response times are 709.2 s,211.2 s and 214.4 s respectively.The response position is near the middle area of the inner cartridge surface in the former condition and near the right area in the latter two conditions. 相似文献
50.
《防务技术》2022,18(12):2181-2189
An adverse effect resulting from explosive mine blasts is the production of toxic nitrogen oxides (NO and NO2) and carbon monoxide (CO). The empirical measurements of the concentration of toxic gases showed that it depends not only on the composition of an explosive and properties of its ingredients but also on several other parameters, such as volume of blasting chamber, explosive charge mass and design, confinement characteristics, surrounding atmosphere, etc. That explains why measured concentrations of toxic gases reported in literature significantly differ.In this paper, we discuss the possibility of theoretical prediction of the concentration of toxic gases by thermochemical equilibrium calculation applying two models: ideal detonation model and deflagration model. It can be demonstrated that thermochemical calculations can provide a good estimation of the measured concentrations and reproduce experimentally obtained effects of additives on the production of toxic gases. It was also found that the ideal detonation model applies to heavily confined explosive charges, while the deflagration model is more suitable for low detonation velocity explosives with light confinement. 相似文献