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Evaluation of residual stress in stainless steel 316L and Ti6Al4V samples produced by selective laser melting - This paper investigates the residual stress distribution in SLM-made parts and suggests thermal gradient control strategies

机译:选择性激光熔化产生的不锈钢316L和Ti6Al4V样品中的残余应力的评估-本文研究了SLM制成零件中的残余应力分布,并提出了热梯度控制策略

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摘要

Selective laser melting (SLM) has great potential in additive manufacturing because it enables the production of full-density complex parts with the desired inner structure and surface morphology. High temperature gradients as a result of the locally concentrated energy input lead to residual stresses, crack formation and part deformation during processing or after separation from the supports and the substrate. In this study, an X-ray diffraction technique and numerical simulation were used for investigating the residual stress in SLM samples fabricated from stainless steel 316L and Ti6Al4Valloy. Conclusions regarding directions and values of stresses in SLM objects are given.
机译:选择性激光熔化(SLM)在增材制造中具有巨大潜力,因为它可以生产具有所需内部结构和表面形态的全密度复杂零件。由于局部集中的能量输入而导致的高温梯度会导致在加工过程中或与支撑物和基材分离后的残余应力,裂纹形成和零件变形。在这项研究中,使用X射线衍射技术和数值模拟研究了由316L和Ti6Al4Valloy不锈钢制成的SLM样品中的残余应力。给出了有关SLM对象应力方向和值的结论。

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