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Effects of Liquid Parameters on Liquid-Filled Compartment Structure Defense Against Metal Jet

机译:液体参数对金属喷射液填充隔室结构防御的影响

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摘要

The effect of liquid parameters on the defense capability of the liquid-filled compartment structure (LFCS) of a shaped charge jet (SCJ) is quantified using dimension analysis of experiments on the reduced depth of SCJ penetration, which is disturbed via the LFCS with different liquids. The effects of three parameters, namely, liquid density, sound velocity and dynamic viscosity, on LFCS defense for SCJ are discussed quantitatively. Dynamic viscosity exerts the most important effect on LFCS disturbance of SCJ penetration, followed by liquid density. Meanwhile, sound velocity causes a negligible effect on LFCS disturbance of SCJ when the hole diameter in LFCSs are short. LFCSs offer excellent protection as they can significantly reduce the penetration capability of SCJ. Thus, LFCSs can be used as a new kind of armor for defense against SCJ.
机译:利用实验的尺寸分析对SCJ渗透深度的尺寸分析进行量化,通过对SCJ渗透深度的尺寸分析来定量液体参数对液体填充泳池结构(LFC)的防御能力的影响。通过不同的LFC扰乱液体。定量讨论了三个参数,即液体密度,声速和动态粘度对SCJ的LFC防御的影响。动态粘度对LFCS对SCJ渗透的扰动产生最重要的影响,其次是液体密度。同时,当LFCSS中的孔直径短时,声速导致SCJ的LFC扰动的效果可忽略不计。 LFCSS提供优异的保护,因为它们可以显着降低SCJ的渗透能力。因此,LFCS可以用作对SCJ进行防御的新型装甲。

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