Review of Peridynamics: Theory, Applications, and Future Perspectives

G. Ladányi, V. Gonda
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引用次数: 2

Abstract

The modelling and simulation of material degradations, particularly fractures in solids of different lengths and time scales, remains challenging despite the numerous approaches that have been developed. In this review, the focus is set on research work concerned with a very promising non-local method: peridynamic modelling. With this approach, continuous phenomena may be described, and the complete evolution (i.e., initiation, propagation, branching, or coalescence) of cracks and other discontinuities can be followed in solids in an integrated framework. Evaluating the large number of publications on this topic, the authors chose to present concisely the key concepts, applications, and results in identifying possible future paths: the incorporation of mechanics of large deformations and material nonlinearities, and the development of high-efficiency peridynamic solvers. This review does not intersect with recent relevant reviews, which reflects its significance to readers.
周动力学综述:理论、应用和未来展望
尽管已经开发了许多方法,但材料降解的建模和模拟,特别是不同长度和时间尺度的固体裂缝,仍然具有挑战性。在这篇综述中,重点是关于一个非常有前途的非局部方法的研究工作:周动力学建模。通过这种方法,可以描述连续现象,并且可以在一个集成框架中跟踪固体中裂纹和其他不连续的完整演化(即,起始,扩展,分支或合并)。评估了大量关于这一主题的出版物,作者选择简要地介绍了确定可能的未来路径的关键概念,应用和结果:大变形和材料非线性力学的结合,以及高效周动力学求解器的发展。这篇综述没有与最近的相关综述交叉,这反映了它对读者的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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