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Hypervelocity penetration against mechanical properties of target materials

机译:抗靶材料力学性能的超高速渗透

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This paper study the mechanical properties behavior of metal plates against hypervelocity penetration caused by shaped charge. Five different materials were used as target specimen fabricated from welded stacks of material plates, namely Rolled Homogeneous Armor (RHA), Hardox-500, mild steel, aluminum and brass. Specimens had undergone an initial monolithic test consist of tensile tests and microstructure observations, followed by series of hydrodynamics penetration blast tests using shape charge mechanism. Results from blast test shows that the least penetrated specimen is RHA (58mm) followed by Hardox-500 (92 mm), mild steel (110 mm), Brass (155 mm) and aluminum 238 mm). Comparing these with the specimen yield strength from the tensile test results shows that Hardox-500 has higher yield strength (S_y) followed by RHA, mild steel, brass and aluminum, which are 1370 MPa, 1320 MPa, 280,221 respectively, which are not inversely proportional to the penetration. However, the ultimate tensile strength (S_(ut)) where the RHA were the highest followed by Hardox-500, mild steel, brass and aluminum, were inversely proportional with the depth of penetration. The penetration results also show consistence relation with energy absorption.
机译:本文研究了金属板对成形电荷引起的超胶质渗透的力学性能行为。五种不同的材料被用作由焊接叠层的材料板制成的目标样品,即轧制均匀铠装(RHA),硬酷毒500,低碳钢,铝和黄铜。试样经过初始单片试验,包括拉伸试验和微观结构观察,然后使用形状电荷机构一系列的流体动力学渗透爆破试验。爆炸试验结果表明,最渗透性的样品是RHA(58mm),然后是硬毒硅-500(92mm),低碳钢(110mm),黄铜(155mm)和铝238mm)。与拉伸试验结果的试样屈服强度比较表明,硬糖醛酸钠-500具有较高的屈服强度(S_Y),然后是RHA,低碳钢,黄铜和铝,分别是1370MPa,1320MPa,280,221,这不相反与渗透成比例。然而,RHA最高的最终拉伸强度(S_(UT)),其次是高硬币-500,低碳钢,黄铜和铝,与渗透深度成反比。渗透结果还显示了与能量吸收的一致关系。

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