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Sheet metal forming limit prediction based on plastic deformation energy

机译:基于塑性变形能的钣金成形极限预测

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摘要

For sheet metals, the endurance to fracture under different strain paths may be different. Based on plastic deformation energy, the sheet metal forming limit is calculated, and the relationship model between maximum allowable integral value of the general plastic work criterion and the strain path is built. In addition, the strain-hardening exponent, anisotropy coefficient and the initial thickness of the material are also taken into account to consider their effects on forming limit. In order to simplify the process of parameter determination, only uniaxial tension test is used to calculate the material property parameters and necessary limit strain, and the expression of the criterion is determined finally. Then the limit strains under other strain paths between uniaxial tension to equi-biaxial tension are predicted by the criterion combined with numerical simulation of the forming process. The criterion is also applied to limit strain prediction under bilinear strain path.
机译:对于钣金,在不同应变路径下的断裂承受力可能会有所不同。基于塑性变形能,计算出钣金成形极限,建立了通用塑性工作准则的最大允许积分值与应变路径的关系模型。另外,还考虑了应变硬化指数,各向异性系数和材料的初始厚度,以考虑它们对成形极限的影响。为了简化参数确定过程,仅采用单轴拉伸试验计算材料性能参数和必要的极限应变,最后确定准则的表达式。然后通过准则结合成形过程的数值模拟,预测了单轴拉力与等双轴拉力之间其他应变路径下的极限应变。该标准还适用于双线性应变路径下的极限应变预测。

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