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Meshless methods with application to metal forming

机译:无网格方法在金属成型中的应用

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摘要

In recent years, a new family of computational methods has emerged. The so-called meshless or mesh-free methods have been investigated and used by many researchers for treating a large variety of engineering problems, involving usually large displacements as encountered for example in forming process simulations. The main advantage of meshless methods is the fact that the interpolation accuracy is not significantly affected by the nodal distribution. Nevertheless, a troublesome task in these techniques is the imposition of essential boundary conditions, as in general the Kronecker delta property is not satisfied. Despite of several techniques have been proposed to overcome this problem, an appealing alternative technique which allows to circumvent this difficulty lies in the use of the natural neighbor interpolation (NEM). This paper focuses on the description and analysis of the natural element method, and its application for simulating some forming processes involving large displacements as well as fixed or moving discontinuities.
机译:近年来,出现了一系列新的计算方法。许多研究人员已经研究并使用了所谓的无网格或无网格方法来处理各种工程问题,这些问题通常涉及较大的位移,例如在成型过程仿真中遇到的位移。无网格方法的主要优点是,插值精度不受节点分布的影响很大。然而,这些技术中一个麻烦的任务是施加基本边界条件,因为通常不满足Kronecker delta属性。尽管已经提出了几种技术来克服该问题,但是允许克服该困难的吸引人的替代技术在于使用自然邻居内插(NEM)。本文着重于对自然要素方法的描述和分析,及其在模拟一些涉及大位移以及固定或移动不连续性的成形过程中的应用。

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