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首页> 外文期刊>International Journal for Numerical Methods in Engineering >An element-free analysis of mechanical and thermal buckling of functionally graded conical shell panels
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An element-free analysis of mechanical and thermal buckling of functionally graded conical shell panels

机译:功能梯度圆锥壳面板的机械和热屈曲的无元素分析

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This paper presents a mechanical and thermal buckling analysis of metal and ceramic functionally graded conical shell panels using the element-free kp-Ritz method. The formulation is based on the first-order shear deformation shell theory, which accounts for the transverse shear strains and rotary inertia, and mesh-free kernel particle functions are employed to approximate the two-dimensional displacement fields. The effective material properties of the functionally graded conical shell panels are assumed to be smooth and continuous through their thickness direction, and are determined according to a power-law distribution of the volume fractions of their constituents. Convergence studies are performed in terms of the number of nodes, and comparisons between the current solutions and those reported in the literature are provided to verify the accuracy of the proposed method. Three types of functionally graded conical shell panels, Al/ZrO_2, SUS304/Si_3N_4, and Al_2O_3/Ti-6Al-4V are selected for study, and the effects of the volume fraction, boundary condition, semi-vertex angle, length-to-thickness ratio, and temperature-dependent material properties on the buckling strength are discussed in detail.
机译:本文介绍了使用无元素kp-Ritz方法对金属和陶瓷功能梯度圆锥壳板进行的机械和热屈曲分析。该公式基于一阶剪切变形壳理论,该理论考虑了横向剪切应变和旋转惯性,并采用无网格的核粒子函数来近似二维位移场。假定功能梯度圆锥形外壳面板的有效材料属性在其厚度方向上是平滑且连续的,并根据其成分的体积分数的幂律分布确定。根据节点数进行收敛研究,并提供当前解决方案与文献报道的比较,以验证所提出方法的准确性。选择三种类型的功能梯度锥形壳板Al / ZrO_2,SUS304 / Si_3N_4和Al_2O_3 / Ti-6Al-4V,并研究其体积分数,边界条件,半顶点角,详细讨论了厚度比和与温度有关的材料特性对屈曲强度的影响。

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