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Effect of Strain-Rate on Forming Limit Strain of Aluminum Alloy and Mild Steel Sheets Under Strain Path Change

机译:应变率对应变路径变化下铝合金和温和钢板形成极限应变的影响

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摘要

The aim of this study is to show the effect of the strain-rate on the forming limit strain of an aluminum alloy A5052 sheet and a mild steel sheet SPCC. Biaxial stretching test was carried out. The prescribed strain path was linear path or that with directional change in straining. The sheet was pre-strained by uniaxial tension in the latter path. The deformation speed was set to be quasi-static or high speed whose strain-rate was about 300 /s using the dedicated high speed stretching device. The forming limit strain of the A5052 sheet for the linear strain path was larger in the high speed stretching than that under the quasi-static condition. For the case with strain path change the forming limit strain was further large. This may be due to the softening phenomenon which occurs by aging treatment, because the stretching experiment was conducted about two weeks after the pre-straining operation. On the other hand, the forming limit strain of the SPCC under the high speed condition was smaller than that under the quasi-static condition in the linear strain path. This is attributed to the decreased strain hardening exponent when the strain-rate increases. Further, in the equi-biaxial stretching of the pre-strained specimen, large difference of the forming limit strain between the deformation speeds was found. It is concluded that A5052 aluminum alloy sheet has a good adaptability to high speed forming, on the other hand, attention should be paid in increasing the forming speed of SPCC.
机译:本研究的目的是展示应变率对铝合金A5052片材的成形极限应变和温和钢板SPCC的影响。进行双轴拉伸试验。规定的应变路径是线性路径,或者具有拉紧的方向变化。在后一条路径中,通过单轴张力预紧张。变形速度设定为准静态或高速,其应变速率使用专用的高速拉伸装置约为300 /秒。用于线性应变路径的A5052片材的成形限位应变在高速拉伸中的高速拉伸比在准静态条件下方更大。对于具有应变路径的情况,形成限位应变进一步大。这可能是由于老化处理发生的柔软现象,因为在预拉伸操作之后大约两周进行拉伸实验。另一方面,在高速条件下的SPCC的成形限制应变小于线性应变路径中的准静态条件下的形成极限应变。这归因于应变率增加时的应变硬化指数降低。此外,在预束性样本的等双轴拉伸中,发现了变形速度之间的成形极限应变的大差异。得出结论,A5052铝合金板材对高速形成的良好适应性,另一方面,应注意增加SPCC的成形速度。

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