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Analysis of crack problems in functionally graded materials under thermomechanical loading using graded finite elements

机译:使用分级有限元在热机械荷载下功能分级材料的裂纹问题分析

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This paper represents a comprehensive study of the fracture behaviour of linear elastic isotropic functionally graded materials (FGMs) subjected to mechanical and thermal loading. For this purpose, an improved graded 9-node quadrilateral finite element which includes the variation of elastic (Young's modulus and Poisson's ratio) and thermal properties (coefficient of thermal expansion and heat conductivity) at the element level is developed. The performance of the new element in conducting thermomechanical fracture analysis is evaluated by conducting a set of simulations to compare the fracture parameters in FGMs with sharp material and temperature gradients against those with mild material and temperature gradients. The reliability of the proposed element is verified by comparing with existing solutions. The thermomechanical coupling and its influence on the coupled modes of fracture which originates from the material gradient in FGMs are investigated. The influence of the steady-state temperature distribution, as well as the material gradient on the crack tip local fields and fracture parameters, such as stress intensity factors, mode mixity, and energy release rate, are studied. More importantly, it was found that compared with conventional homogeneous finite elements the current model is more reliable for modelling crack problems in FGMs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文代表了对机械和热负荷进行线性弹性各向同性功能梯度材料(FGM)的裂缝行为的综合研究。为此目的,开发了一种改进的分级9节点四边形有限元,其包括弹性(幼小模量和泊松比)的变化和元件水平的热性质(热膨胀系数和导热系数)。通过进行一组模拟来评估导电热机械骨折分析中的新元素的性能,以将骨折参数与温和的材料和温度梯度的温度梯度进行尖锐的材料和温度梯度比较FGMS中的断裂参数。通过与现有解决方案进行比较来验证所提出的元素的可靠性。研究了对FGM中源自FGMS中材料梯度的骨折耦合模式的热机械耦合及其影响。研究了稳态温度分布的影响,以及裂缝尖端局部场和裂缝参数的材料梯度,例如应力强度因子,模式混合和能量释放率。更重要的是,发现与传统的均匀有限元相比,当前模型更可靠,以便在FGM中建模裂纹问题。 (c)2020 elestvier有限公司保留所有权利。

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