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Thermal shock resistance of functionally gradient solid cylinders

机译:功能梯度固体圆柱体的抗热震性

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摘要

In this paper, an analysis of the transient thermo-mechanical behavior of a solid cylinder of functionally gradient material (FGM) under the convective boundary condition is presented theoretically. The analytical formula of the unsteady temperature distribution is derived by using the separation-of-variables method and hence the maximum thermal stress attained at the surface of the FGM solid cylinder as well as its time of occurrence can be calculated. Based on a local tensile stress criterion, the expression of critical temperature change ΔT_c leading to the local tensile strength at the surface, which is designated as the thermal shock resistance parameter for FGM solid cylinder, is obtained. The effects of the radial distributions of thermo-physical properties on the thermal shock resistance of the FGM solid cylinder are investigated via numerical calculations in contrast to homogeneous solid cylinder, from which some suggestions on design of FGM solid cylinders with high thermal shock resistance are put forward.
机译:在理论上,对流边界条件下功能梯度材料(FGM)的固体圆柱体的瞬态热力学行为进行了分析。非稳态温度分布的解析公式是通过变量分离法得出的,因此可以计算出FGM实心圆柱体表面达到的最大热应力及其发生时间。基于局部拉伸应力准则,获得了导致表面局部拉伸强度的临界温度变化ΔT_c的表达式,该表达式被指定为FGM实心圆柱体的抗热震性参数。通过数值计算,研究了热物理性质的径向分布对FGM实心圆柱体抗热震性的影响,与均质实心圆柱体相比,提出了一些具有高抗热震性的FGM实心圆柱体的设计建议。向前。

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