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Thermoelastic analysis of surface cracks in FGMs hollow cylinders using the interaction energy integral method

机译:使用相互作用能量整体法测定FGMS中空圆柱体表面裂缝的热弹性分析

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The present work is focused on the analysis of surface cracks in functionally graded hollow cylinders subjected to thermal loading. The interaction energy integral is deployed in the finite element framework and an un-coupled thermo-mechanical analysis is carried out to extract the mixed-mode stress intensity factors (SIFs). The effective thermal and mechanical properties, as well as the critical energy release rate of the graded material, are obtained resorting to micro-mechanics models. Material gradation is considered in both radial and axial directions. The obtained results allow to elucidate the role played by material gradation profile on the severity of surface cracks and can therefore be effectively used in the design of FGMs hollow cylinders.
机译:本作本作的重点是在经过热负荷的功能渐变空心圆柱体中的表面裂缝分析。 在有限元框架中部署相互作用能量积分,并进行未耦合的热机械分析以提取混合模式应力强度因子(SIFS)。 获得了有效的热和机械性能,以及渐变材料的临界能量释放速率,并获得了微型力学模型。 在径向和轴向上考虑材料灰度。 所获得的结果允许阐明材料灰度分布在表面裂缝的严重程度上发挥的作用,因此可以有效地用于FGMS中空圆柱的设计。

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