基于键合的周动力学建模研究进展

Duanfeng Han, Yiheng Zhang, Qing Wang, W. Lu, Bin Jia
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引用次数: 29

摘要

周期动力学理论是一种用空间积分方程代替微分方程的非局部无网格方法,在不连续面分析中显示出良好的适用性和可靠性。此外,基于键的周动力学方法具有物理意义明确、数值计算简单可靠等特点,在该领域得到了广泛的应用。然而,该方法仅使用单个弹性“弹簧”来描述材料点之间的相互作用,从而导致泊松比固定,计算效率相对较低等固有问题。因此,本文的目的是总结各种基于键的周动力学建模方法,特别是那些克服了泊松比限制的方法,考虑了二维薄板的剪切变形和弯曲和三维各向异性复合材料的建模,以及探索与有限元方法的耦合。本综述将确定这些方法的优缺点,并为研究人员在周动力学理论的发展提供一个起点。
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The review of the bond-based peridynamics modeling
Peridynamics theory is a nonlocal meshless method that replaces differential equations with spatial integral equations, and has shown good applicability and reliability in the analysis of discontinuities. Further, with characteristics of clear physical meaning and simple and reliable numerical calculation, the bond-based peridynamics method has been widely applied in the field. However, this method describes the interaction between material points simply using a single elastic “spring”, and thus leads to a fixed Poisson’s ratio, relatively low computational efficiency and other inherent problems. As such, the goal of this review paper is to provide a summary of the various methods of bond-based peridynamics modeling, particularly those that have overcome the limitations of the Poisson’s ratio, considered the shear deformation and modeling of two-dimensional thin plates for bending and three-dimensional anisotropic composites, as well as explored coupling with finite element methods. This review will determine the advantages and disadvantages of such methods and serve as a starting point for researchers in the development of peridynamics theory.
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来源期刊
Journal of Micromechanics and Molecular Physics
Journal of Micromechanics and Molecular Physics Materials Science-Polymers and Plastics
CiteScore
3.30
自引率
0.00%
发文量
27
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