首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Numerical investigation of plastic flow and residual stresses generated in hydroformed tubes
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Numerical investigation of plastic flow and residual stresses generated in hydroformed tubes

机译:液压成型管中塑性流动和残余应力的数值研究

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During tube hydroforming process, the friction conditions between the tube and the die have a great importance on the material plastic flow and the distribution of residual stresses of the final component. Indeed, a three-dimensional finite element model of a tube hydroforming process in the case of square section die has been performed, using dynamic and static approaches, to study the effect of the friction conditions on both plastic flow and residual stresses induced by the process. First, a comparative study between numerical and experimental results has been carried out to validate the finite element model. After that, various coefficients of friction were considered to study their effect on the thinning phenomenon and the residual stresses distribution. Different points have been retained from this study. The thinning is located in the transition zone cited between the straight wall and the corner zones of hydroformed tube due to the die-tube contact conditions changes during the process. In addition, it is clear that both die-tube friction conditions and the tube bending effects, which occurs respectively in the tube straight wall and corner zones, are the principal causes of the obtained residual stresses distribution along the tube cross-section.
机译:在管换热过程中,管和模具之间的摩擦条件对最终组分的材料塑料流量和残留应力的分布非常重要。实际上,使用动态和静态方法进行了在方形截面模具的情况下的管换热过程的三维有限元模型,研究了摩擦条件对过程引起的塑性流动和残余应力的影响。首先,已经进行了数值和实验结果之间的比较研究以验证有限元模型。之后,考虑各种摩擦系数来研究它们对稀释现象和残余应力分布的影响。本研究保留了不同的分数。由于管管接触条件在该过程中改变,稀疏位于液压管的直线壁和升压管的角区之间引用的过渡区。另外,显然,管芯管摩擦条件和分别发生在管直壁和角区的管弯曲效果,是所得残余应力沿管横截面分布的主要原因。

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