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Finite element predictions of residual stresses in cold-formed sections

机译:冷弯型材残余应力的有限元预测

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Residual stresses in cold-formed sections may play a significant role in determining their behavior and strength. Laboratory measurements of residual stresses by destructive methods are not only time-consuming but also of limited accuracy. This paper describes a finite element-based method for predicting residual stresses in press-braked thin-walled sections, which overcomes these difficulties. The method offers a powerful tool for exploring the effect of different forming parameters on the magnitude and distribution of residual stresses so that these forming parameters can be optimized. In this method, the effects of coiling and uncoiling are accounted for analytically, with the resulting residual stresses specified as initial stresses in a subsequent finite element simulation of cold bending. Numerical results from this method are shown to agree closely with laboratory measurements, demonstrating the validity and accuracy of the method. The present method provides residual stress distributions over the cross-section as well as across the thickness, and also explains why residual stresses may differ considerably in otherwise identical sections.
机译:冷弯型材中的残余应力可能在决定其行为和强度方面起重要作用。通过破坏性方法对残余应力进行实验室测量不仅费时,而且准确性有限。本文介绍了一种基于有限元的方法来预测压弯薄壁截面中的残余应力,从而克服了这些困难。该方法为探索不同成形参数对残余应力的大小和分布的影响提供了强大的工具,从而可以优化这些成形参数。在这种方法中,解析和解释了盘绕和开卷的影响,在随后的冷弯有限元模拟中,将产生的残余应力指定为初始应力。结果表明,该方法的数值结果与实验室测量值非常吻合,证明了该方法的有效性和准确性。本方法提供了横截面以及整个厚度上的残余应力分布,并且还解释了为什么残余应力在其他相同部分可能会显着不同。

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