拓扑优化
刚度
残余应力
组分(热力学)
平滑的
材料科学
拓扑(电路)
过程(计算)
结构工程
选择性激光熔化
残余物
机械工程
计算机科学
有限元法
工程类
复合材料
算法
物理
电气工程
操作系统
热力学
微观结构
计算机视觉
作者
Felipe Klein Fiorentin,B.M.A. de Oliveira,J. C. R. Pereira,José A.F.O. Correia,Abílio M.P. De Jesus,Filippo Berto
标识
DOI:10.3221/igf-esis.55.09
摘要
The main goal of the present research is to propose an integrated methodology to address the fatigue performance of topology optimized components, produced by additive manufacturing. The main steps of the component design will be presented, specially the methods and parameters applied to the topology optimization and the post-smoothing process. The SIMP method was applied in order to obtain a lighter component and a suitable stiffness for the desired application. In addition, since residual stresses are intrinsic to every metallic additive manufacturing process, the influence of those stresses will be also analyzed. The Laser Powder Bed Fusion was numerically simulated aiming at evaluating the residual stresses the workpiece during the manufacturing process and to investigate how they could influence the fatigue behavior of the optimized component. The effect of the built orientation of the workpiece on the residual stresses at some selected potential critical points are evaluated. The final design solution presented a stiffness/volume ratio nearly 6 times higher when compared to the initial geometry. By choosing the built orientation, it is possible impact favorably in the fatigue life of the component.
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