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Interconnection of Structural Characteristics with Dynamic Properties of A5083 Aluminum Alloy

机译:A5083铝合金的结构特性与动态性能的相互联系。

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摘要

—In this work, the resistance of high-strain rate deformation and fracture during shock-wave compression of aluminum alloy A5083 previously obtained in two structural states by torsion under high pressure or dynamic pressing is studied. It is shown by electron microscopy that sub-microcrystalline structures differ in the size of grain–subgrains, dislocation density, and ratio of low-angle and high-angle boundaries. It is established that, at the same grain size, the sub-microcrystalline alloy exhibits higher dynamic properties, and after dynamic pressing, it has higher spall strength.
机译:—在这项工作中,研究了先前在两种结构状态下通过高压或动态压力下的扭转获得的铝合金A5083在冲击波压缩过程中的高应变率变形和断裂的阻力。电子显微镜显示,亚微晶结构在晶粒-亚晶粒的尺寸,位错密度以及低角度和高角度边界的比率方面有所不同。可以确定的是,在相同的晶粒尺寸下,亚微晶合金具有更高的动态性能,并且在动态压制之后,其具有更高的剥落强度。

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  • 来源
    《Inorganic materials: applied research》 |2019年第1期|168-173|共6页
  • 作者单位

    Mikheev Institute of Metal Physics Ural Branch Russian Academy of Sciences;

    Mikheev Institute of Metal Physics Ural Branch Russian Academy of Sciences|Ural Federal University;

    Institute of Problems of Chemical Physics|National Research Tomsk State University;

    Russian Federal Nuclear Center—All-Russian Research Institute of Technical Physics;

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