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Sensitivity analysis of stamping processes using various friction models appropriate for non-stationary contact problems

机译:使用适用于非平稳接触问题的各种摩擦模型对冲压过程进行灵敏度分析

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This paper looks at the sensitivity of thickness to variation of friction. The models of friction used are: the classic Amontons-Coulomb; a nonlinear pressure-dependent model proposed by Wriggers, vu Van and Stein; and a velocity-dependent model proposed by Molinari, Estrin and Mercier. They are coded in FORTRAN for use with finite element program ABAQUS. The contact problem is then formulated in the total Lagrangian formulation for contact between an elastic-plastic body and rigid tools. The variational (weak) form of the formulation is given and this is discretized by finite element method. To test and compare the models, one common metal forming processes is simulated: deep drawing of a square-cup. The sensitivity graphs showing each of the three friction models together is given at the end. One other conclusion although not major part of this work is that Amonton-Coulomb is not the best model suited for contact conditions in metal forming processes, because Wriggers et al. model and Molinari et al. model provide better results for modelling bends and corners.
机译:本文着眼于厚度对摩擦变化的敏感性。使用的摩擦模型是:经典的Amontons-Coulomb; Wriggers,vu Van和Stein提出的非线性压力相关模型;由Molinari,Estrin和Mercier提出的速度相关模型。它们在FORTRAN中编码,可与有限元程序ABAQUS一起使用。然后,在总的拉格朗日公式中制定接触问题,以使弹塑性体与刚性工具接触。给出了配方的变型(弱)形式,并通过有限元方法将其离散化。为了测试和比较模型,模拟了一种常见的金属成型过程:对方形杯进行深冲。最后给出了一起显示三个摩擦模型的灵敏度图。尽管不是这项工作的主要部分,但另一个结论是,由于Wriggers等人的研究,Amonton-Coulomb并不是适用于金属成型过程中接触条件的最佳模型。模型和Molinari等。模型可以为弯曲和拐角建模提供更好的结果。

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