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Simulation of Steady Laser Hardening by an Arbitrary Lagrangian Eulerian Method

机译:Ardrary Lagrangian Eulerian方法模拟稳态激光硬化

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One of the most practical methods for simulation of steady state thermal processing is the Arbitrary Lagrangian-Eulerian method.Each calculation step is split into two phases.In the first phase,the Lagrangian phase,the element mesh remains attached to the material.The evolution of the state variables is monitored and the state at the end of the phase is calculated.In the second phase,the Eulerian phase,the mesh is,broadly speaking,restored to its original position with respect to a window attached to the moving heat source.The mesh is not restored to its exact original position,but some allowance is made perpendicular to the flow direction in order to capture movement of the free surfaces.In this paper a finite element model for Lagrangian simulation of thermo-mechanical processes with phase transformations is combined with a second order discontinuous Galerkin method for modeling of Eulerian advection.
机译:模拟稳态热处理的最实用方法之一是任意拉格朗日 - 欧拉方法。将计算步骤分成两个阶段。在第一阶段,拉格朗日阶段,元素网格保持附着在材料上。进化监视状态变量,并计算相位末端的状态。在第二阶段,欧拉阶段,网格逐渐讲话,恢复到其原始位置,相对于连接到移动热源的窗口。网格没有恢复到其确切的原始位置,但是一些允许垂直于流动方向,以捕获自由表面的运动。本文采用了采用相变热机械工艺的拉格朗日模拟的有限元模型结合了二​​阶不连续的Galerkin方法,用于欧拉平流的建模。

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