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Multipole BEM for 3-D elasto-plastic contact with friction

机译:多极BEM,用于3D弹塑性摩擦接触

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摘要

The analysis of 3-D elasto-plastic contact with friction is a highly nonlinear problem. The elements in the contact and plastic zones should be refined to obtain accurate information about the real size, displacement, and traction in the contact zone. However, the increase in the number of degrees of freedom is limited when traditional boundary element method (BEM) is used with the larger memory size and long CPU time required for the solution procedure. This paper describes the additional mathematical friction model to the 3-D elastic multipole BEM to develop a 3-D elasto-plastic contact multipole BEM. Numerical tests show that with this new method, the needed computer memory size is only 2% of the traditional BEM model with friction, which erases large-scale computing with refined meshes and improves the computational accuracy.
机译:3-D弹塑性接触摩擦的分析是一个高度非线性的问题。接触区和塑料区中的元件应进行精修,以获得有关接触区中实际尺寸,位移和牵引力的准确信息。但是,当使用传统的边界元素方法(BEM)且求解过程所需的内存容量更大且CPU时间较长时,自由度数量的增加受到限制。本文介绍了3-D弹性多极BEM的附加数学摩擦模型,以开发3-D弹塑性接触多极BEM。数值测试表明,使用这种新方法,所需的计算机内存大小仅为传统BEM模型(带摩擦)的2%,从而消除了使用精炼网格进行的大规模计算并提高了计算精度。

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