首页> 外文会议>Asia-Pacific Symposium on Engineering Plasticity and Its Applications(AEPA 2004) pt.2; 20040922-26; Shanghai(CN) >Research on Deformation Characteristic of AZ31 Mg Alloy and its Constitutive Equations
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Research on Deformation Characteristic of AZ31 Mg Alloy and its Constitutive Equations

机译:AZ31镁合金的变形特性及其本构方程的研究

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摘要

Superplasticity of polycrystalline metallic materials is a phenomenon which shows hundreds to thousands of percents of large plastic deformation without necking in a steady state of low stress, when the uni-axial tensile loading is done in some special thermo-mechanical conditions (some limited ranges of properly high temperature and low strain rate). The main mechanism of superplastic phenomenon is the grain boundary sliding, while the main mechanism of usual plastic deformation is the trans-granular sliding. In this research, the possibility of superplastic deformation in a magnesium alloy (AZ31Mg alloy) was experimentally investigated, because generally speaking, the magnesium alloy whose atomic structure is hexagonal does not have enough formability in a form of trans-granular sliding mechanism. In this paper, the detail of experimental results are shown and discussed. Moreover, the constitutive equations of Mg alloy are proposed on the basis of the experimental results. These results may be useful for the engineering application of Mg alloy with ultra-light weight.
机译:多晶金属材料的超塑性是一种现象,当在某些特殊的热机械条件下(单轴的某些有限范围内)进行单轴拉伸载荷时,在低应力的稳定状态下,数百倍至数千%的大塑性变形不会缩颈。适当的高温和低应变率)。超塑性现象的主要机制是晶界滑动,而通常塑性变形的主要机制是跨颗粒滑动。在该研究中,通过实验研究了镁合金(AZ31Mg合金)中超塑性变形的可能性,因为通常来说,原子结构为六边形的镁合金没有足够的可变形性,而这种变形是跨颗粒滑动机制的形式。在本文中,详细显示和讨论了实验结果。此外,根据实验结果,提出了镁合金的本构方程。这些结果可能对超轻镁合金的工程应用有用。

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