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Effect of scanning strategies on residual stress and mechanical properties of Selective Laser Melted Ti6A14V

机译:扫描策略对选择性激光熔炼Ti6A14V残余应力和力学性能的影响

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AbstractDuring the Selective Laser Melting (SLM) process large temperature gradients can form, generating a mismatch in elastic deformation that can lead to high levels of residual stress within the additively manufactured metallic structure. Rapid melt pool solidification causes SLM processed Ti6Al4V to form a martensitic microstructure with a ductility generally lower than a hot working equivalent. Currently post-process heat treatments can be applied to SLM components to remove in-built residual stress and improve ductility.This study examined the effect of scanning strategy (scan vector lengths and scan vector rotation) and rescanning strategy on residual stress formation and mechanical properties of SLM Ti6Al4V parts. 90° alternating scanning strategy resulted in the lowest residual stress build-up for SLM Ti6Al4V parts built on both the standard and modified Renishaw platforms using a modulated Nd-YAG fiber laser. Scanning strategy did not show any direct correlation with mechanical properties. Re-scanning with 150% energy density resulted in 33.6% reduction in residual stress but the effect on mechanical properties was detrimental and samples failed prematurely. The study was based on detailed experimental analysis along with Finite Element simulation of the process using ABAQUS to understand the underlying physics of the process.
机译: 摘要 在选择性激光熔化(SLM)过程中,可能会形成较大的温度梯度,从而导致弹性变形不匹配,从而导致在增材制造的金属中产生高水平的残余应力结构体。快速的熔池凝固导致SLM处理的Ti6Al4V形成马氏体微观结构,其延性通常低于热加工等效物。当前,可以对SLM组件进行后处理热处理,以消除内置的残余应力并提高延展性。 此研究研究了扫描策略(扫描矢量长度和扫描矢量旋转)和重新扫描策略对SLM Ti6Al4V零件的残余应力形成和力学性能的影响。 90°交替扫描策略使使用调制Nd-YAG光纤激光器在标准和改良雷尼绍平台上制造的SLM Ti6Al4V零件的残余应力最小。扫描策略未显示与机械性能有任何直接关系。用150%的能量密度进行重新扫描可减少33.6%的残余应力,但对机械性能的影响是有害的,并且样品过早失效。该研究基于详细的实验分析以及使用ABAQUS对过程进行有限元模拟,以了解过程的基本物理原理。

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