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Thermo-elastoplastic analysis without cells by triple-reciprocity BEM

机译:通过三重互惠BEM的无细胞的热弹性塑料分析

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In general, internal cells are required to solve thermo-elastoplastic problems using a conventional boundary element method (BEM). However, in this case, the merit of BEM, which is the easy preparation of data, is lost. The conventional multiple-reciprocity boundary element method (MRBEM) cannot be used to solve the elastoplasticity problems, because the distribution of initial strain or initial stress cannot be determined analytically. In this paper, we show that two-dimensional thermo-elastoplasticity problems can be solved without the use of internal cells, by using the triple-reciprocity boundary element method and a thin plate spline. An initial strain formulation is adopted and the initial strain distribution is interpolated using boundary integral equations and a thin plate spline. A new computer program was developed and applied to several problems.
机译:通常,需要使用常规边界元法(BEM)来解决内部细胞来解决热弹性问题。但是,在这种情况下,BEM的优点是易于准备数据,丢失。常规的多递比边界元法(MRBEM)不能用于解决弹性塑性问题,因为不能分析地确定初始应变或初始应力的分布。在本文中,我们表明,通过使用三相互补边界元件和薄板样条,可以在不使用内部电池的情况下解决二维热弹性塑性问题。采用初始应变配方,使用边界整体方程和薄板样条内插初始应变分布。开发了一个新的计算机程序并应用于几个问题。

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