有限元法
转化(遗传学)
沉积(地质)
相(物质)
粒子(生态学)
粒子法
应用数学
机械
材料科学
数学
牙石(牙科)
结构工程
工程类
数学分析
物理
地质学
化学
边值问题
海洋学
古生物学
基因
牙科
生物化学
医学
量子力学
沉积物
作者
Markus Schewe,Isabelle Noll,Thorsten Bartel,Andreas Menzel
标识
DOI:10.1016/j.cma.2025.117730
摘要
The present paper establishes a simulation framework for modelling the deposition and solidification of steel melt in Directed Energy Deposition with a Laser Beam (DED-LB) by using the Particle Finite Element Method (PFEM). Unlike traditional finite element methods, the remeshing framework makes it possible to resolve the interaction between molten metal and substrate upon deposition, solidification and cooling, which provides a framework for accurately predicting residual stresses and distortion in the final part. The material model incorporates a liquid–solid phase transformation described by phase fractions, allowing for a precise definition of transformation stretches, latent heat and fundamental changes in the constitutive behaviour, whereas a purely temperature dependent phase evolution keeps the numerical cost manageable. While focusing on a two-dimensional (2d) simulation for simplicity and observability of the mesh adaptation, the methodology is extensible to a 3d setting. Key advancements include refined remeshing techniques of the connection zone and a large strain melt and solidification material model. The simulation results demonstrate the potential of the proposed framework for capturing critical aspects of DED-LB processes, laying the basis for extensive process simulations.
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