On accurate time integration for temperature evolutions in additive manufacturing

Q1 Mathematics
Stefan Kollmannsberger, Philipp Kopp
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引用次数: 5

Abstract

We investigate two numerical challenges in thermal finite element simulations of laser powder bed fusion (LPBF) processes. First, we compare the behavior of first- and second-order implicit time-stepping schemes on a fixed domain. While both methods yield comparable accuracies in the pre-asymptotic regime, the second-order method eventually outperforms the first-order method. However, the oscillations present in the pre-asymptotic range of the second-order method can render it less suitable for simulating LPBF processes. Then, we consider sudden domain extensions resulting from subsequently adding new layers of material with ambient temperature. We model this extension on the continuous level in an energy conservative manner. The discontinuities introduced here reduce the convergence order for both time-stepping schemes to 0.75. First and second order accuracy could only be achieved by strongly grading the time-steps towards the domain expansion.

Abstract Image

增材制造温度演变的精确时间积分研究
本文研究了激光粉末床熔合(LPBF)过程热有限元模拟中的两个数值问题。首先,我们比较了一阶和二阶隐式时间步进格式在固定域上的行为。虽然两种方法在前渐近区域产生相当的精度,但二阶方法最终优于一阶方法。然而,二阶方法的前渐近范围内存在振荡,使得它不太适合模拟LPBF过程。然后,我们考虑了由于随后在环境温度下添加新材料层而导致的突然域扩展。我们以能量守恒的方式在连续水平上对这种扩展进行建模。这里引入的不连续将两种时间步进方案的收敛阶降低到0.75。一阶和二阶精度只能通过向域展开方向强烈分级时间步来实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
GAMM Mitteilungen
GAMM Mitteilungen Mathematics-Applied Mathematics
CiteScore
8.80
自引率
0.00%
发文量
23
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