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基于普通状态的近场动力学对多晶材料中颗粒断裂的建模

Modelling of Granular Fracture in Polycrystalline Materials Using Ordinary State-Based Peridynamics.

作者信息

Zhu Ning, De Meo Dennj, Oterkus Erkan

机构信息

Department of Naval Architecture, Ocean and Marine Engineering, University of Strathclyde, Glasgow G4 0LZ, UK.

出版信息

Materials (Basel). 2016 Dec 2;9(12):977. doi: 10.3390/ma9120977.

Abstract

An ordinary state-based peridynamic formulation is developed to analyse cubic polycrystalline materials for the first time in the literature. This new approach has the advantage that no constraint condition is imposed on material constants as opposed to bond-based peridynamic theory. The formulation is validated by first considering static analyses and comparing the displacement fields obtained from the finite element method and ordinary state-based peridynamics. Then, dynamic analysis is performed to investigate the effect of grain boundary strength, crystal size, and discretization size on fracture behaviour and fracture morphology.

摘要

在文献中首次开发了一种基于普通状态的近场动力学公式,用于分析立方多晶材料。与基于键的近场动力学理论不同,这种新方法的优点是对材料常数不施加约束条件。通过首先考虑静态分析并比较从有限元方法和普通状态近场动力学获得的位移场来验证该公式。然后,进行动态分析以研究晶界强度、晶体尺寸和离散化尺寸对断裂行为和断裂形态的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b23/5456998/dfc29e724471/materials-09-00977-g001.jpg

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