研究目的
Investigating the development of a 3D heat transfer model with adaptive meshing technique to simulate L-PBF of multiple tracks and layers in a computationally efficient manner, and proposing a novel generalized heat source model based on a non-dimensional analysis.
研究成果
An adaptive remeshing framework along with a novel heat source model is developed and validated against experimental observations for an efficient 3D heat transfer modelling of the L-PBF process. The proposed framework provides a significant computational speedup and can give critical process information like transient temperature, cooling rate, melt pool size and shape.
研究不足
The conduction heat transfer based analysis neglects the convective transport of heat inside the melt pool and depends significantly on the presumed heat source model. The model is inept to predict voids in deposited builds that evolve due to entrapment of gases.