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A closed-form analytical solution for residual stresses due to the bending of bilayer sheets

机译:由于双层板材弯曲而闭合的残余应力的分析解决方案

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摘要

Bending is a conventional manufacturing process of sheet forming. This process induces reasonable residual stress through the thickness. Prediction of this residual stress profile is more difficult in bilayer sheet bending due to different material properties and thickness of layers. In this article, the residual stress distribution will be derived analytically for a bilayer sheet. The induced stress profile due to loading and released stress after unloading has been derived by integration along with the thickness. Also, the neutral axis movement due to non-uniform plastic deformation has been involved in the solution. The stress distribution has been derived analytically for elastic-perfect plastic, elastic-linear plastic and elastic-power law hardening material behavior. The results obtained from the proposed equation are compared by a finite element analysis. The finite element analysis contains bending a bilayer sheet to a specified curvature radius by a three-roll bending process. Comparing the results of the analytical solution and finite element analysis shows good agreement. The location of the neutral axis and the maximum of residual stresses in the thickness have been predicted very well with the proposed equation.
机译:弯曲是片材形成的传统制造过程。该过程诱导通过厚度的合理的残余应力。由于不同的材料特性和层的厚度,双层板弯曲中的预测更困难。在本文中,将分析用于双层片材的残留应力分布。由于卸载后引起的诱导应力曲线引起的负载和释放应力是通过与厚度的整合来源的。而且,溶液中涉及由于不均匀的塑性变形引起的中性轴运动。对于弹性完美的塑料,弹性线性塑料和弹性 - 动力法淬火材料行为,已经通过分析推导出应力分布。通过有限元分析比较了从所提出的等式获得的结果。通过三辊弯曲工艺,有限元分析包含弯曲到指定曲率半径的双层片。比较分析解决方案的结果和有限元分析显示良好的一致性。通过所提出的等式预测,中性轴的位置和厚度的最大残余应力。

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