Space-time hp finite elements for heat evolution in laser-based additive manufacturing

11/30/2021
by   Philipp Kopp, et al.
0

The direct numerical simulation of metal additive manufacturing processes such as laser powder bed fusion is challenging due to the vast differences in spatial and temporal scales. Classical approaches based on locally refined finite elements combined with time-stepping schemes can only address the spatial multi-scale nature and provide only limited scaling potential for massively parallel computations. We address these shortcomings in a space-time Galerkin framework where the finite element interpolation also includes the temporal direction. In this setting, we construct four-dimensional meshes that are locally refined towards the laser spot and allow for varying temporal accuracy depending on the position in space. By splitting the mesh into conforming time slabs, we recover a stepwise solution to solve the space-time problem locally in time at this slab; additionally, we can choose time-slab sizes significantly larger than classical time-stepping schemes. As a result, we believe this setting to be well suited for large-scale parallelization. In our work, we use a continuous Galerkin-Petrov formulation of the nonlinear heat equation with an apparent heat capacity model to account for the phase change. We validate our approach by computing the AMB2018-02 benchmark, where we obtain an excellent agreement with the measured melt pool shape. Using the same setup, we demonstrate the performance potential of our approach by hatching a square area with a laser path length of about one meter.

READ FULL TEXT

page 3

page 7

page 8

page 9

page 13

page 14

research
06/14/2019

Accuracy and performance of phase change and latent heat models in metal additive manufacturing process simulation

This work proposes a thermal finite element model for the simulation of ...
research
10/25/2021

A spatiotemporal two-level method for high-fidelity thermal analysis of laserpowder bed fusion

Numerical simulation of the laser powder bed fusion (LPBF) procedure for...
research
06/14/2019

On phase change and latent heat models in metal additive manufacturing process simulation

This work proposes an extension of phase change and latent heat models f...
research
06/03/2022

Time-Continuous and Time-Discontinuous Space-Time Finite Elements for Advection-Diffusion Problems

We construct four variants of space-time finite element discretizations ...
research
08/06/2021

Adaptive space-time BEM for the heat equation

We consider the space-time boundary element method (BEM) for the heat eq...
research
12/08/2022

Interpolation Operators for parabolic Problems

We introduce interpolation operators with approximation and stability pr...

Please sign up or login with your details

Forgot password? Click here to reset