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首页> 外文期刊>Journal of Materials Processing Technology >Influence of strain-rate sensitivity on necking and instability in sheet metal forming
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Influence of strain-rate sensitivity on necking and instability in sheet metal forming

机译:应变率敏感性对钣金成形中颈缩和不稳定性的影响

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摘要

Analytical closed form solutions based on a linear perturbation analysis are obtained to predict limit strains for rate sensitive materials. A closed form solution, independent of the choice of yield criterion, is first obtained for the negative minor strain regime of the forming limit diagram (FLD). The Von Mises yield criterion is invoked next, and the limit strains corresponding to the positive minor strain regime of the FLD are obtained. Predictions from the analytical model are then compared to experimental observations. It is noted that the effective limit strain is enhanced by strain rate sensitivity of the material. It is also observed that the effective limit strain is not influenced by the prior strain path, but rather by the instantaneous strain rate ratio in the final stage of the quasi-stable deformation.
机译:获得基于线性摄动分析的解析闭合形式解,以预测速率敏感材料的极限应变。对于成形极限图(FLD)的负较小应变方案,首先获得与屈服准则的选择无关的封闭形式的解决方案。接下来调用冯·米塞斯屈服准则,并获得与FLD的正次要应变制度相对应的极限应变。然后将分析模型的预测结果与实验观察结果进行比较。注意,有效极限应变通过材料的应变速率敏感性增强。还可以观察到,有效极限应变不受先验应变路径的影响,而受到准稳态变形最后阶段的瞬时应变率之比的影响。

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