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Pandora’s Box–Influence of Contour Parameters on Roughness and Subsurface Residual Stresses in Laser Powder Bed Fusion of Ti-6Al-4V

机译:Pandora的框对粗糙度和地下残余应力的轮廓参数的盒子影响,Ti-6Al-4V的激光粉床融合

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摘要

The contour scan strategies in laser powder bed fusion (LPBF) of Ti-6Al-4V were studied at the coupon level. These scan strategies determined the surface qualities and subsurface residual stresses. The correlations to these properties were identified for an optimization of the LPBF processing. The surface roughness and the residual stresses in build direction were linked: combining high laser power and high scan velocities with at least two contour lines substantially reduced the surface roughness, expressed by the arithmetic mean height, from values as high as 30 µm to 13 µm, while the residual stresses rose from ~340 to about 800 MPa. At this stress level, manufactured rocket fuel injector components evidenced macroscopic cracking. A scan strategy completing the contour region at 100 W and 1050 mm/s is recommended as a compromise between residual stresses (625 MPa) and surface quality (14.2 µm). The LPBF builds were monitored with an in-line twin-photodiode-based melt pool monitoring (MPM) system, which revealed a correlation between the intensity quotient I2/I1, the surface roughness, and the residual stresses. Thus, this MPM system can provide a predictive estimate of the surface quality of the samples and resulting residual stresses in the material generated during LPBF.
机译:在优惠券水平上研究了Ti-6AL-4V激光粉末融合(LPBF)的轮廓扫描策略。这些扫描策略确定了表面素质和地下残余应力。鉴定了与这些性质的相关性以进行LPBF处理的优化。构建方向上的表面粗糙度和残余应力链接:将高激光功率和高扫描速度与至少两个轮廓线组合,基本上减小由算术平均高度表示的表面粗糙度,从高达30μm至13μm的值,而残余的压力从〜340升至约800 MPa。在这种应力水平上,制造的火箭燃料喷射器部件显现了宏观裂缝。建议使用100W和1050mm / s的轮廓区域的扫描策略作为残余应力(625MPa)和表面质量(14.2μm)之间的折衷。通过基于在线双光电二极管的熔池监测(MPM)系统监测LPBF构建,其揭示了强度推源I2 / I1,表面粗糙度和残余应力之间的相关性。因此,该MPM系统可以提供样品的表面质量的预测估计,并产生在LPBF期间产生的材料中的残余应力。

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