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11.
《防务技术》2022,18(11):1979-1999
A quasi-isentropic study on the process of driving a cylinder with aluminized explosives was carried out to examine the influence of the aluminum (Al) reaction rate on cylinder expansion and the physical parameters of the detonation products. Based on the proposed quasi-isentropic hypothesis and relevant isentropic theories, the characteristic lines of aluminized explosives driving a cylinder were analyzed, and a quasi-isentropic model was established. This model includes the variation of the cylinder wall velocity and the physical parameters of the detonation products with the Al reaction degree. Using previously reported experimental results, the quasi-isentropic model was verified to be applicative and accurate. This model was used to calculate the physical parameters for cylinder experiments with aluminized cyclotrimethylenetrinitramine explosives with 15.0 % and 30.0 % Al content. The results show that this quasi-isentropic model can be used not only to calculate the cylinder expansion rule or Al reaction degree, but also to calculate the physical parameters of the detonation products in the process of cylinder expansion. For explosives with 15.0 % and 30.0 % Al, 24.3 % and 18.5 % of the Al was found to have reacted at 33.9 μs and 34.0 μs, respectively. The difference in Al content results in different reaction intensity, occurrence time, and duration of two forms of reaction (diffusion and kinetic) between the Al powder and the detonation products; the post-detonation burning reaction between the Al powder and the detonation products prolongs the positive pressure action time, resulting in a continuous rise in temperature after detonation.  相似文献   
12.
《防务技术》2020,16(1):217-224
Experiments on shaped charge penetration into high and ultrahigh strength steel-fiber reactive powder concrete (RPC) targets were performed in this paper. Results show that the variation of penetration depth and crater diameter with concrete strength is different from that of shaped charge penetration into normal strength concrete (NSC). The crater diameter of RPC is smaller than that of NSC penetrated by the shaped charge. The jet particles are strongly disturbed and hardly reach the crater bottom because they pass through the narrow channel formed by jet penetration into the RPC. The effects of radial drift velocity and gap effects of jet particles for a shaped charge penetration into RPC target are discussed. Moreover, a theoretical model is presented to describe the penetration of shaped charge into RPC target. As the concrete strength increases, the penetration resistance increases and the entrance crater diameter decreases. Given the drift velocity and narrow crater channel, the low-velocity jet particles can hardly reach the crater bottom to increase the penetration depth. Moreover, the narrow channel has a stronger interference to the jet particles with increasing concrete strength; hence, the gap effects must be considered. The drift velocity and gap effects, which are the same as penetration resistance, also have significant effects during the process of shaped charge penetration into ultrahigh-strength concrete. The crater profiles are calculated through a theoretical model, and the results are in good agreement with the experiments.  相似文献   
13.
Cu粉粒径及含量对Ni/MH电池负极放电性能的影响   总被引:2,自引:0,他引:2  
为了提高Ni/MH电池中储氢电极的放电性能,以电解Cu粉为充填材料与活性物质混合制备电极,研究Cu粉粒径及含量对电极性能的影响。研究发现,Cu粉粒径越小,含量越高,电极的放电容量、高倍率放电性能、及在低温和高温下的放电能力均提高,且Cu充填电极的性能优于Ni充填电极。Cu充填电极中析氢反应的交换电流密度较大,过电势较小,说明其电催化活性好,电极反应阻力小。SEM分析发现,充放电循环后的Cu充填电极,其储氢合金颗粒表面覆盖着一层细小Cu颗粒和丝状物,这是电极性能提高的主要原因。  相似文献   
14.
In order to improve the energy level of fuel air explosive(FAE) with delayed secondary igniters, high energetic metal powders were added to liquid fuels mainly composed of ether and isopropyl nitrate. Metal powders' explosive properties and reaction mechanisms in FAE were studied by high-speed video, pressure test system, and infrared thermal imager. The results show that compared with pure liquid fuels, the shock wave overpressure, maximum surface fireball temperature and high temperature duration of the mixture were significantly increased after adding high energetic metal powder. The overpressure values of the liquid-solid mixture at all measuring points were higher than that of the pure liquid fuels. And the maximum temperature of the fireball was up to 1700 ℃, which was higher than that of the pure liquid fuels. After replacing 30%of aluminum powder with boron or magnesium hydride, the shock wave pressure of the mixture was further increased. The high heat of combustion of boron and the hydrogen released by magnesium hydride could effectively increase the blast effect of the mixture. The improvement of the explosion performance of boron was better than magnesium hydride. It shows that adding high energetic metal powder to liquid fuels can effectively improve the explosion performance of FAE.  相似文献   
15.
以三维碳纤维织物和廉价的硅树脂为原料,采用先驱体转化工艺制备3D G/Si-O-C材料,考察了浸渍液中添加SiC填料对材料微观结构、力学性能和抗氧化性能影响.结果表明:添加适量的SiC填料有助于减少基体孔隙,改善界面结合,从而提高材料的力学性能;而SiC含量过高时,容易在材料内部形成闭孔,从而导致材料力学性能下降.当SiC微粉含量为18.2%时,材料具有最好的力学性能,弯曲强度和断裂韧度分别为421.3MPa和13.0 MPa·m1/2;而材料的抗氧化性能随着SiC微粉含量的增加而增加,当SiC微粉含量为25.0%时,材料的弯曲强度保留率最高,达到了89.5%.  相似文献   
16.
通过对火工品装药计量板的模型分析 ,利用模糊控制技术实现对装药计量板的自动控制。采用近似推理方法的ARMCE简化算法实现了模糊控制器的设计 ,并进行了模拟仿真验证。结果表明该控制方案对解决火工品装药计量板的自动控制这一“瓶颈”问题是有效的。  相似文献   
17.
针对计算机房及电子设备房的火灾进行了分析,就计算机房及电子设备房的环境条件进行对比,对目前较广泛采用的几种自动灭火系统装置及其灭火剂的性能、环保等几个方面,进行了阐述和比较,希望对消防部队的日常监督检查提供参考依据。  相似文献   
18.
通过热力学分析和计算,讨论等径球(椭球)与均匀分布不等径球(椭球)的体心正方堆积的烧结体积和表面能的变化,包括华东烧结模型中膨胀机制和收缩机制,对烧结体总表面能变化的作用和影响,发现随着烧结过程的进行,烧结收缩机制逐渐占主导地位。  相似文献   
19.
采用一种新的碳纤维自分散工艺和专用分散设备制备出了掺量达胶结材质量8%的碳纤维增强活性粉末混凝土;研究了碳纤维掺量对活性粉末混凝土的力学性能影响规律。实验结果表明,在碳纤维掺量高时,活性粉末混凝土的力学性能受碳纤维掺量和水胶比两个因素共同作用。  相似文献   
20.
在合成粉末涂料聚酯树脂的配方中,重点研究了催化剂、抗氧剂、酸值、醇的损失对聚酯树脂玻璃化温度的影响,并将合成产品进行表征,主要性能指标与美国同类产品接近。  相似文献   
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