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STUDY ON RUBBER COMPOSITE ARMOR ANTI-SHAPED CHARGE JET PENETRATION

机译:橡胶复合铠装抗形电荷喷射渗透的研究

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The process of rubber composite armor anti-shaped charge jet (SCJ) penetration was divided into four parts based on jet deformation that occurred when the SCJ penetrated the rubber composite armor. Results on the interference speed interval, interference frequency, and surplus penetration capability of the SCJ with the rubber composite armor were derived based on the stress wave and Kelvin–Helmholtz instability theory. The effects of rubber layer thickness and dip angle of the armor for the composite armor anti-SCJ penetration were studied through theoretical, X-ray, and depth of penetration experiments. The results showed that when the dip angle was at 60° and the rubber layer thickness was in the range of 3 mm to 3.5 mm, the rubber composite armor seriously disturbed the stability of the SCJ. Thus, the rubber composite armor was found to have the best protection capabi l i ty under these speci f ications.
机译:橡胶复合铠装抗形电荷射流(SCJ)渗透的过程基于SCJ穿透橡胶复合铠装时发生的喷射变形。结果基于应力波和Kelvin-Helmholtz不稳定理论导出SCJ的干扰速度间隔,干扰频率和SCJ的剩余穿透能力。通过理论,X射线和渗透实验深度研究了复合铠装抗SCJ渗透的橡胶层厚度和倾斜角的影响。结果表明,当浸渍角在60°时,橡胶层厚度在3mm至3.5mm的范围内时,橡胶复合盔甲严重扰乱了SCJ的稳定性。因此,发现橡胶复合铠装具有在这些规格F的内容下具有最佳保护的Capabi L I Ty。

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