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Asymmetric Hardening Behavior of AZ31B Magnesium Alloy Sheet with Large Strain at Various Strain Rates

机译:AZ31B镁合金板在各种应变率下大应变的不对称硬化行为

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摘要

This paper investigates asymmetric hardening behavior of the magnesium alloy sheet of AZ31B at different strain rates when deformation is large. Tensile tests are carried out at the quasi-static state of 0.001 s(-1) and the intermediate strain rate of 100 s(-1) utilizing the Instron 5583 and the high speed material testing machine (HSMTM), respectively. Compression tests are conducted at the strain rate of 0.001 s(-1) and 100 s(-1) using a jig fixture mounted on the testing machines to change the loading direction into the opposite direction. A compression testing method is developed to obtain compressive properties with large strain, which includes the attachment of a fork-type clamping device and the design of specimen dimensions to achieve large strain without buckling during the test. Experimental results reveal the asymmetric behavior showing that the tensile yield stress is much larger than the compressive one at both strain rates. The difference between the flow stress level in tension and compression becomes larger when the strain rate is higher. The compressive hardening behavior is very much different from the tensile hardening behavior showing that the compressive flow stress increases remarkably as the deformation proceeds while the tensile flow stress asymptotes to a certain value.
机译:本文在变形大量较大时研究AZ31B镁合金片的不对称硬化行为。使用Instron 5583和高速材料测试机(HSMTM)分别以0.001 s(-1)的准静态状态和100s(-1)的中间应变速率进行拉伸试验。使用安装在试验机上的夹具固定装置以0.001 s(-1)和100s(-1)的应变速率进行压缩测试,以将装载方向改变为相反方向。开发了一种压缩测试方法以获得具有大应变的压缩性能,包括叉型夹紧装置的附接和试样尺寸的设计,以在测试期间实现大应变而不会屈曲的情况下没有屈曲。实验结果揭示了不对称的行为,表明拉伸屈服应力远大于施加率的压缩率。当应变速率较高时,张力和压缩中的流量应力水平之间的差异变大。与拉伸硬化行为相比,压缩硬化行为非常不同,表明压缩流量应力显着随着变形的而导致的,而抗拉流应力渐近呈一定值。

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