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首页> 外文期刊>EPJ Web of Conferences >Mechanical properties at high strain-rate of lead core and brass jacket of a NATO 7.62 mm ball bullet
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Mechanical properties at high strain-rate of lead core and brass jacket of a NATO 7.62 mm ball bullet

机译:北约7.62毫米球形子弹的铅芯和黄铜护套在高应变率下的机械性能

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Numerical simulations are now an actual option in order to try to reproduce and understand the mechanical response in components subjected to extreme loading conditions, like in a ballistic impact. A correct materials calibration is therefore necessary in order to extract the materials parameters. In this work the simple and widely used Johnson-Cook model was used to analyse the experimental data obtained for the characterization of the bullet materials. The bullet under investigation is a full metal jacket ball, with a lead-antimony alloy core and a brass jacket. The experimental tests cover a wide range in strain-rate, starting from quasi-static tests up to high dynamic tests performed on a standard Split Hopkinson Pressure Bar setup. In general, there is a great lack in strain-rate sensitivity and failure data. Pure lead is very soft and ductile, so antimony is used to give greater hardness and strength. The results of this study show a significant strain-rate influence for this alloy that can be associated with the presence of the lead-antimony phases and their structures. Also in case of the brass the results showed significant strain-rate sensitivity in the material response.
机译:数值模拟现在是一个实际的选择,目的是试图重现和理解承受极端载荷条件(如弹道冲击)的部件的机械响应。因此,为了提取材料参数,必须进行正确的材料校准。在这项工作中,使用了简单且广泛使用的Johnson-Cook模型来分析获得的用于表征子弹材料的实验数据。调查中的子弹是一个全金属外套球,带有铅锑合金芯和黄铜外套。从准静态测试到在标准Split Hopkinson压力棒设置上执行的高动态测试,实验测试涵盖了广泛的应变率。通常,非常缺乏应变速率敏感性和失效数据。纯铅非常柔软且易延展,因此使用锑可以提高硬度和强度。这项研究的结果表明,该合金具有显着的应变率影响,这可能与铅-锑相及其结构有关。同样在黄铜的情况下,结果在材料响应中显示出显着的应变率敏感性。

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