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A discussion of fracture mechanisms in heterogeneous materials by means of configurational forces in a phase field fracture model

机译:利用相场断裂模型中的构型力讨论异质材料的断裂机理

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摘要

Composite materials are designed in order to combine the favorable properties of their components. For technical applications of these materials the determination of their effective material and fracture mechanical properties is of great interest. The study of fracture of heterogeneous composite materials, which is a necessary first step in order to derive effective fracture mechanical properties, is a difficult topic since macroscopic failure is usually accompanied by various fracture events on the microstructural scale. Finite element implementations of phase field fracture models enable the simulation of complex fracture scenarios as they occur in fracturing of heterogeneous materials. An adaption of the configurational force concept from linear elastic fracture mechanics to the phase field model provides more insight into the mechanisms underlying the evolution of fracture. In this work this ansatz is used to study the interplay between local crack driving forces and the evolution of fracture. Furthermore, the effects of the microstructure on macroscopically measurable quantities like the far field J-integral are analyzed in representative examples comprising continuously modulated as well as layered structures with varying stiffness and varying cracking resistance. (C) 2016 Elsevier B.V. All rights reserved.
机译:设计复合材料是为了结合其组件的良好性能。对于这些材料的技术应用,确定其有效材料和断裂机械性能非常重要。研究异质复合材料的断裂是获得有效断裂力学性能所必需的第一步,这是一个困难的课题,因为宏观破坏通常伴随着微观结构尺度的各种断裂事件。相场裂缝模型的有限元实现方式使得能够模拟复杂裂缝场景,因为这些场景发生在异质材料的破裂中。从线性弹性断裂力学到相场模型的构造力概念的适应性提供了对断裂演化基础的更多了解。在这项工作中,该ansatz用于研究局部裂纹驱动力与断裂演化之间的相互作用。此外,在代表性示例中分析了微观结构对宏观可测量量(如远场J积分)的影响,这些示例包括具有不断变化的刚度和变化的抗裂性的连续调制以及分层结构。 (C)2016 Elsevier B.V.保留所有权利。

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