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首页> 外文期刊>International journal of mechanics and materials in design >Dynamic analysis of a functionally graded thick truncated cone with finite length
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Dynamic analysis of a functionally graded thick truncated cone with finite length

机译:有限长度的功能梯度厚截锥的动力学分析

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In this article dynamic analysis of a functionally graded thick truncated cone with finite length under axisymmetric internal impact loading is studied. The cone is made of a combined ceramic-metal material and the material composition varying continuously along its thickness according to the power law distribution. Finite Element Method based on Rayleigh-Ritz energy formulation and Newmark direct integration methods are applied to find the responses in time and space domain. The time histories of displacements, stresses, wave propagation in two directions and natural frequencies for various values of volume fraction exponent and semi-vertex angle of the cone for a cone with clamped end conditions have been studied. The results obtained in the present paper are compared with the result of an infinite FG thick hollow cylinder.
机译:在本文中,对轴对称内部冲击载荷下具有有限长度的功能梯度厚截头圆锥体进行了动力分析。圆锥体由陶瓷-金属复合材料制成,其材料成分根据幂律分布沿其厚度连续变化。应用基于瑞利-里兹能量公式的有限元法和纽马克直接积分法在时空范围内寻找响应。研究了端部受约束的圆锥体的体积分数指数和半顶点角的各种值的位移,应力,在两个方向和自然频率上的位移,应力,波传播的时间历史。将本文获得的结果与无限FG厚空心圆柱体的结果进行比较。

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