English

Optimization of process parameters in additive manufacturing based on the finite element method

Numerical Analysis 2025-01-29 v1 Numerical Analysis

Abstract

A design optimization framework for process parameters of additive manufacturing based on finite element simulation is proposed. The finite element method uses a coupled thermomechanical model developed for fused deposition modeling from the authors' previous work. Both gradient-based and gradient-free optimization methods are proposed. The gradient-based approach, which solves a PDE-constrained optimization problem, requires sensitivities computed from the fully discretized finite element model. We show the derivation of the sensitivities and apply them in a projected gradient descent algorithm. For the gradient-free approach, we propose two distinct algorithms: a local search algorithm called the method of local variations and a Bayesian optimization algorithm using Gaussian processes. To illustrate the effectiveness and differences of the methods, we provide two-dimensional design optimization examples using all three proposed algorithms.

Keywords

Cite

@article{arxiv.2310.15525,
  title  = {Optimization of process parameters in additive manufacturing based on the finite element method},
  author = {Jingyi Wang and Panayiotis Papadopoulos},
  journal= {arXiv preprint arXiv:2310.15525},
  year   = {2025}
}
R2 v1 2026-06-28T12:59:49.128Z