Dynamic Thermal Stresses in a Finite Circular Plate with a Penny-Shaped Crack Generated by Impulsive Heating

N. Sumi
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引用次数: 3

Abstract

A solution is presented for the stress-wave response of a partially transparent finite elastic circular plate with a penny-shaped crack subjected to impulsive electromagnetic radiation. The radiation is assumed to occur at a constant rate for the duration of the pulse, to be deposited with a radial Gaussian distribution and to diminish exponentially with distance from the exposed surface of the plate. The development of the analysis is based on the equations of uncoupled dynamic thermoelasticity with heat conduction neglected. The numerical procedure employs explicit finite difference approximations with second-order accuracy based on the integration of the governing equations along the bicharacteristics. Numerical calculations are carried out for the dynamic behavior of the thermal stresses and the stress intensity factors, and the results are shown in figures.
脉冲加热产生的带有便士裂纹的有限圆板的动态热应力
给出了带便士形裂纹的部分透明有限弹性圆板在脉冲电磁辐射作用下的应力波响应解。假设辐射在脉冲持续时间内以恒定速率发生,以径向高斯分布沉积,并随着距离板暴露表面的距离呈指数递减。分析的发展是基于不耦合的动态热弹性方程,忽略热传导。数值计算过程采用基于控制方程沿双特征积分的二阶精度的显式有限差分近似。对热应力的动态特性和应力强度因子进行了数值计算,计算结果如图所示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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