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Discontinuous zone free element method with variable condensation and applications in thermal-stress analysis of functionally graded material structures with cracks

机译:具有可变凝结和在功能分级材料结构的可变凝结和应用中的可变区分和应用,具有裂缝的功能渐变材料结构

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In this paper, a new solution approach of using Free Element Method (FrEM) is proposed to solve thermal-mechanical problems consisting of composite materials and cracks. In this approach, the computational domain of the problem is discretized into multi-zones and in each zone a set of local nodes are generated. At the local nodes of each zone, the high order free elements are used to collocate the governing differential equations, and at the interface nodes of adjacent zones the balance (conservative) conditions are employed to set up the global system of equations according to the connectivity of each zone's local nodes with respect to the defined global nodes. To improve the ability of the proposed zonal FrEM in solving large-scale problems, the physical variables within each zone are condensed to the boundary variables of the zone through an ingenious equation solving technique. To simulate the discontinuity of the fluxes/tractions at corners and cracks meeting by different zones or on the outer boundaries with jumped fluxes/tractions, a discontinuous zone technique is proposed at these places by defining multiple nodes at the same corner. A number of numerical examples including cracks and functionally graded materials (FGMs) are analyzed to verify the correctness and efficiency of the proposed method. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种使用自由元素法(FREM)的新解决方案方法,以解决由复合材料和裂缝组成的热机械问题。在这种方法中,问题的计算域被离散到多区域,并且在每个区域中生成一组本地节点。在每个区域的本地节点处,使用高阶无序元素来构接控制微分方程,并且在相邻区域的界面节点处,采用余额(保守)条件根据连接根据连接建立全局方程式系统每个区域的本地节点相对于定义的全局节点。为了提高所提出的Zonal FREM在解决大规模问题方面,每个区域内的物理变量通过巧妙的方程求解技术凝结到区域的边界变量。为了模拟各个区域或跳跃助焊剂/牵引的拐角和裂缝在角落和裂缝的不连续性,通过在同一角落处定义多个节点来在这些地方提出不连续区域技术。分析了许多数值示例,包括裂缝和功能梯度材料(FGM)以验证所提出的方法的正确性和效率。 (c)2020 elestvier有限公司保留所有权利。

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