复合材料圆柱壳在热冲击和温和热场作用下的动力与振动响应

S. Mousavi, M. Rahmani, M. Mirzarahimi, S. M. Moghadas
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引用次数: 3

摘要

本文研究了热冲击载荷和热场作用下正交各向异性复合材料圆柱壳的振动和动力响应。问题是,壳体最初位于第一个温度,和一些张力造成的一个温和的热场,然后圆柱体的表面温度突然增加。运动的偏导数方程是与热方程耦合的形式。首先,利用Hamilton原理推导了运动方程,其中采用了一阶剪切理论并考虑了Sanders的应变位移关系。然后,用龙格-库塔四阶方法求解了包括运动方程和能量方程在内的方程组。本文研究了长度、温度、厚度和半径参数对固有频率和中间层位移的影响。结果表明,外部温度的升高降低了系统的固有频率,增大了系统的位移。同时,对径向跃迁的结果与前人的研究结果进行了评价,发现与前人的研究结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Dynamic and Vibration Response of Composite Cylindrical Shell Under Thermal Shock and Mild Heat Field
In this article, the vibration and dynamic response of an orthotropic composite cylindrical shell under thermal shock loading and thermal field have been investigated. The problem is that the shell is initially located at a first temperature, and some tension caused by a mild heat field is created, then the surface temperature of the cylinder suddenly increases. The partial derivative equations of motion are in the form of couplings with the heat equations. First, the equations of motion are derived by the Hamilton principle, here first-order shear theory and considering strain-shift relations of Sanders are used. Then, the equation system including the equations of motion and energy equations by the Runge–Kutta fourth-order methodare solved. In this study, the effects of length, temperature, thickness and radius parameters on natural frequencies and intermediate layer displacement are investigated. The results show that the increase in external temperature decreases the natural frequency and increases the displacement of the system. Also, the results of radial transitions were evaluated with previous studies and it was found that it is in good agreement with the results of previous papers.
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