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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >A fracture mechanics model for a crack problem of functionally graded materials with stochastic mechanical properties
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A fracture mechanics model for a crack problem of functionally graded materials with stochastic mechanical properties

机译:具有随机力学性能的功能梯度材料裂纹问题的断裂力学模型

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摘要

This study aimed to develop a method to build a 'bridge' between the macro fracture mechanics model and stochastic micromechanics-based properties so that the macro fracture mechanics model can be expanded to the fracture mechanics problem of functionally graded materials (FGMs) with stochastic mechanical properties. An analytical fracture mechanics model is developed to predict the stress intensity factors (SIFs) in FGMs with stochastic uncertainties in phase volume fractions. Considering the stochastic description of the phase volume fractions, a micromechanics-based method is developed to derive the explicit probabilistic characteristics of the effective properties of the FGMs so that the stochastic mechanical properties can be combined with the macro fracture mechanics model. A thought for choosing the samples efficiently is proposed so that the stable probabilistic characteristic of SIFs can be obtained with a very small sample size. The probability density function of SIFs can be determined by developing a histogram from the generated samples. The present method may provide a thought to establish an analytical model for the crack problems of FGMs with stochastic properties.
机译:这项研究旨在开发一种在宏观断裂力学模型和基于随机微力学的特性之间建立“桥梁”的方法,以便可以将宏观断裂力学模型扩展到具有随机力学的功能梯度材料(FGM)的断​​裂力学问题。属性。建立了分析断裂力学模型来预测FGM中的应力强度因子(SIF),且相体积分数具有随机不确定性。考虑到相体积分数的随机描述,开发了一种基于微力学的方法来导出FGMs有效特性的显式概率特征,以便可以将随机力学特性与宏观断裂力学模型相结合。提出了一种有效选择样本的想法,以便可以在非常小的样本量下获得SIF的稳定概率特性。 SIF的概率密度函数可以通过从生成的样本中绘制直方图来确定。本方法可以为建立具有随机特性的FGM裂纹问题的解析模型提供思路。

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