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Research on adiabatic shear failure character of pure copper and aluminum bronze based on empirical electron theory

机译:基于经验电子理论的纯铜和铝青铜绝热剪切破坏特性研究

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The valence electron structure (VES) parameters affecting adiabatic shearing failure under high speed impact load using split Hopkinson pressure bar (SHPB) were studied by empirical electron theory (EET) of solids and molecules. There is a problem of multiple solutions about VES parameters in EET. The statistics values of VES parameters related to adiabatic shearing sensitivity were calculated to substitute for the most probable value among the multiple solutions according to the view that the microstate statistics values can reflect the macro physical quantity. The research shows that the adiabatic shearing sensitivity is growing with the rise of the statistics value of bond energy of the strongest covalent bond, and is decreasing with the rise of the statistics value of the lattice electron number. The statistics value of bond energy of the strongest covalent bond in aluminum bronze (QAl9-4) is larger than that in pure copper, and the statistics value of the lattice electron number in QAl9-4 is smaller than that in pure copper. Therefore, QAl9-4 is prone to adiabatic shearing failure, and the grains were only elongated due to the large deformation for pure copper without any adiabatic shear band (ASB). It is of great significance for the selection and design of material with different adiabatic shearing sensitivity to research the effect of alloy elements on adiabatic shearing sensitivity from the electronic structure perspective.
机译:利用固体和分子的经验电子理论(EET),研究了使用分裂霍普金森压力棒(SHPB)影响高速冲击载荷下绝热剪切破坏的价电子结构(VES)参数。 EET中存在关于VES参数的多种解决方案的问题。根据微观状态统计值可以反映宏观物理量的观点,计算了与绝热剪切敏感性有关的VES参数的统计值,以替代多种解决方案中最可能的值。研究表明,绝热剪切敏感性随着最强共价键的键能统计值的增加而增加,而随着晶格电子数统计值的增加而减小。铝青铜(QAl9-4)中最强的共价键的键能的统计值大于纯铜,而QAl9-4中的晶格电子数的统计值小于纯铜。因此,QAl9-4容易发生绝热剪切破坏,并且仅由于纯铜的大变形而没有任何绝热剪切带(ASB),晶粒才被拉长。从电子结构的角度研究合金元素对绝热剪切敏感性的影响,对于选择具有不同绝热剪切敏感性的材料具有重要意义。

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