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首页> 外文期刊>Journal of Materials Engineering and Performance >Processing Parameter Effects on Residual Stress and Mechanical Properties of Selective Laser Melted Ti6Al4V
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Processing Parameter Effects on Residual Stress and Mechanical Properties of Selective Laser Melted Ti6Al4V

机译:加工参数对选择激光熔化Ti6Al4V的剩余应力和机械性能的影响

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Selective laser melting (SLM) process is characterized by large temperature gradients resulting in high levels of residual stress within the additively manufactured metallic structure. SLM-processed Ti6Al4V yields a martensitic microstructure due to the rapid solidification and results in a ductility generally lower than a hot working equivalent. Post-process heat treatments can be applied to SLM components to remove in-built residual stress and improve ductility. Residual stress buildup and the mechanical properties of SLM parts can be controlled by varying the SLM process parameters. This investigation studies the effect of layer thickness on residual stress and mechanical properties of SLM Ti6Al4V parts. This is the first-of-its kind study on the effect of varying power and exposure in conjunction with keeping the energy density constant on residual stress and mechanical properties of SLM Ti6Al4V components. It was found that decreasing power and increasing exposure for the same energy density lowered the residual stress and improved the % elongation of SLM Ti6Al4V parts. Increasing layer thickness resulted in lowering the residual stress at the detriment of mechanical properties. The study is 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:选择性激光熔化(SLM)工艺的特征在于,温度梯度大,导致含有高水平的残余应力,在含有加剧制造的金属结构中。 SLM处理的Ti6Al4V由于快速凝固而产生马氏体微观结构,并且导致通常低于热工作量的延展性。后工艺热处理可以应用于SLM组分以除去内置的残余应力并改善延展性。通过改变SLM工艺参数,可以控制残余应力堆积和SLM部件的机械性能。本研究研究了层厚度对SLM Ti6Al4V部件残余应力和机械性能的影响。这是一致研究不同功率和曝光的效果,与保持能量密度恒定对SLM Ti6Al4V部件的残余应力和机械性能的影响。结果发现,相同能量密度的电力和曝光率的增加降低了残余应力并改善了SLM Ti6Al4V部件的%伸长率。增加层厚度导致损害机械性能的残余应力降低。该研究基于详细的实验分析以及使用ABAQUS理解该过程的底层物理的过程的有限元模拟。

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