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A Robust Numerical Procedure for the Thermomechanical Flow Simulation of Friction Stir Welding Process Using an Adaptive Element-Free Galerkin Method

机译:一种使用自适应元素Galerkin方法的摩擦搅拌焊接工艺热机械流动模拟的稳健数值

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摘要

A meshfree modeling technique of material flow in the three-dimensional multiphysics thermomechanical friction stir welding process is presented. In this numerical model, the discretization in space is derived by the Element-Free Galerkin method using a Lagrangian meshfree convex approximation. The discrete thermal and mechanical equations are weakly coupled as the time advances using a forward difference scheme. A mortar contact algorithm is employed to model the stirring effect and heat generation due to frictional contact. Heat conductance between contacting bodies is considered as a function of contact pressure. A two-way adaptive procedure is introduced to the coupled thermomechanical system to surpass potential numerical problems associated with the extensive material deformation and spatial discretization. In each adaptive phase, a consistent projection operation utilizing the first-order meshfree convex approximation is performed to remap the solution variables. Finally, a three-dimensional multiphysics thermomechanical coupled friction stir welding problem is analyzed to demonstrate the effectiveness of the present meshfree numerical procedure.
机译:介绍了三维多体机械热机械摩擦搅拌焊接工艺中材料流量的网格非网上建模技术。在该数值模型中,空间的离散化由使用拉格朗日网格普通凸面近似的无元素的Galerkin方法导出。由于使用前向差分方案的时间进步,离散的热和机械方程弱耦合。采用砂浆接触算法来模拟由于摩擦接触而产生的搅拌效果和发热。接触体之间的导热率被认为是接触压力的函数。双向自适应程序被引入到热机械耦合系统超越与广泛的物质的变形和空间离散相关的潜在的数值问题。在每个自适应阶段中,执行利用一阶网格映射近似的一致投影操作以重新映射溶液变量。最后,三维多物理热机械耦合摩擦搅拌焊接的问题进行分析,以证明本发明无网格数值程序的有效性。

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