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Splitting Rolling Simulated by Reproducing Kernel Particle Method

机译:再生核粒子法模拟分裂轧制

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During splitting rolling simulation, re-meshing is necessary to prevent the effect of severe mesh distortion when the conventional finite element method is used. However, extreme deformation cannot be solved by the finite element method in splitting rolling. The reproducing kernel particle method can solve this problem because the continuum body is discretized by a set of nodes, and a finite element mesh is unnecessary, and there is no explicit limitation of mesh when the metal is split. To ensure stability in the large deformation elastoplastic analysis, the Lagrange material shape function was introduced. The transformation method was utilized to impose the essential boundary conditions. The splitting rolling method was simulated and the simulation results were in accordance with the experimental ones in the literature.
机译:在劈分轧制模拟过程中,当使用常规的有限元方法时,必须进行重新啮合以防止严重的网格变形。然而,分体轧制中的有限变形方法不能解决极端变形。再生核粒子方法可以解决此问题,因为连续体由一组节点离散化,并且不需要有限元网格,并且在拆分金属时对网格没有明显限制。为了确保大变形弹塑性分析的稳定性,引入了拉格朗日材料形状函数。利用变换方法施加基本边界条件。对分流轧制方法进行了仿真,仿真结果与文献中的实验结果相符。

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