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Theorical and experimental determination of the forming limit diagram for the AISI 304 stainless steel

机译:AISI 304不锈钢成形极限图的理论和实验确定

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The theoretical prediction and the experimental validation of the forming limit curve (FLC) have been made for the AISI304 stainless steel during linear strain paths. The Marciniak-Kuczynski (M-K) method has been used in the theoretical prediction. For the calculation, the Hill'48 yield criterion has been used. For the experimental survey of the forming limit curve (FLC) we have used: non-grooved tension specimens simulating a uniaxial tension strain path; grooved tension specimens simulating a strain path ranging between uniaxial tension and plane strain and also circular specimens to reach a path representing biaxial tension. The circular specimens were submitted to the biaxial expansion through the bulge test. To determine the strain values at the necking moment we used Zurich number 5 method. Using a heterogeneity factor of 0.955 an optimal adjustment of the theoretically predicted forming limit curve was achieved with that one obtained experimentally.
机译:对于AISI304不锈钢在线性应变路径下的成形极限曲线(FLC)进行了理论预测和实验验证。 Marciniak-Kuczynski(M-K)方法已用于理论预测中。为了进行计算,使用了Hill'48屈服准则。对于成形极限曲线(FLC)的实验调查,我们使用了:模拟单轴拉伸应变路径的非开槽拉伸试样;开槽的拉力试样模拟了单轴拉力和平面应变之间的应变路径,圆形试样也达到了代表双轴拉力的路径。通过凸出试验使圆形试样经受双轴膨胀。为了确定颈缩时的应变值,我们使用了苏黎世5号方法。使用0.955的异质性因子,可以通过实验获得的理论值对理论预测的成形极限曲线进行最佳调整。

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