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Effect of Scanning Routes on the Stress and Deformation of Overhang Structures Fabricated by SLM

机译:扫描路径对SLM制造的悬挑结构应力和变形的影响

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摘要

Selective laser melting (SLM) is a promising manufacturing method for the construction of complicated precision parts. However, deformation of the overhang during the fabrication process and post treatment is still a common problem. In this paper, the effect of the scanning route on the residual stress and deformation of fabricated AlSi10Mg overhang specimens by SLM was investigated. Different scanning routes for the overhang including longitudinal direction, transverse direction, and the alternation between these two scanning routes in consecutive layers were studied by experiments within this study. Numerical simulation was utilized to measure the stress of the specimens while deformation prediction was used for the different scanning routes. Both the experimental and simulated results showed that the scanning route had a substantial influence on the residual stress and deformation of the specimens. The longitudinal scanning resulted in significant upward bending deformation of the overhang as it was cut from the baseplate. However, there was less deformation for the overhangs fabricated by transverse and alternating scanning routes. A transverse scanning route is helpful for the reduction of residual stress in the longitudinal direction and the corresponding deformation.
机译:选择性激光熔化(SLM)是一种用于制造复杂精密零件的有前途的制造方法。然而,在制造过程和后处理过程中悬突的变形仍然是普遍的问题。本文研究了扫描路径对SLM制备的AlSi10Mg悬垂试样残余应力和变形的影响。本研究通过实验研究了悬突的不同扫描路径,包括纵向,横向以及这两个扫描路径在连续层中的交替。数值模拟用于测量样品的应力,而变形预测用于不同的扫描路径。实验和仿真结果均表明,扫描路径对样品的残余应力和变形有很大影响。纵向扫描导致突出部分从底板上切下时出现明显的向上弯曲变形。但是,通过横向和交替扫描路径制造的悬垂物变形较小。横向扫描路径有助于减少纵向残余应力和相应的变形。

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