基于cad平台的选择性激光熔化模拟工艺优化设计方法

E. Dalpadulo, F. Pini, F. Leali
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引用次数: 0

摘要

基于粉末床融合工艺的增材制造使最终用途功能性金属部件的构建成为可能,使设计几何复杂性的几个级别成为可能。然而,印刷过程会导致材料和形状缺陷,残余应力和最终部件的诱导变形,这主要是由用于选择性熔化金属粉末的强而不均匀的电源相关的高热梯度引起的。本文总结了减少或防止这些影响的技术。基于使用CAD平台进行产品工艺设计的更广泛的增材制造设计方法是本研究的基础。具体来说,本工作提出了一种设计方法来预测缺陷并改进工业化子阶段。考虑了基于激光的粉末床熔融技术,并进行了选择性激光熔化过程仿真的实现和验证,以支持该方法。提出了两个案例研究。前者通过CAD平台论证了仿真实现的可行性。后者将仿真结果与实验数据进行了对比验证,为进一步的方法应用提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CAD-platform-based Process optimization Design Method by Selective Laser Melting Simulation
Additive Manufacturing based on Powder Bed Fusion processes enables the construction of end-use functional metal components, making it feasible to design several level of geometrical complexity. Nevertheless, the printing process leads to material and shape defects, residual stress and induced distortions on final components that mainly are caused by the high thermal gradients associated to the intense and nonuniform power energy sources used to selectively melt metal powders. In this paper, techniques to reduce or prevent these effects are summarized. The more broadly Design for Additive Manufacturing approach based on the use on CAD platforms for product-process design is the backbone upon this research is based on. Specifically, the work presents a design method to predict drawbacks and improve the industrialization subphase. Laser-based Powder Bed Fusion technique is considered and the implementation and validation of the Selective Laser Melting process simulation is performed in order to support the method. Two case studies are presented. The former demonstrates the simulation implementation feasibility through a CAD platform. The latter validates the simulation results compared to experimental data for further method application.
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