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The Influence of Laser Defocusing in Selective Laser Melted IN 625

机译:激光散焦在625中熔化的选择性激光熔化的影响

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摘要

Laser defocusing was investigated to assess the influence on the surface quality, melt pool shape, tensile properties, and densification of selective laser melted (SLMed) IN 625. Negative (−0.5 mm, −0.3 mm), positive (+0.3 mm, +0.5 mm), and 0 mm defocusing distances were used to produce specimens, while the other process parameters remained unchanged. The scanning electron microscopy (SEM) images of the melt pools generated by different defocusing amounts were used to assess the influence on the morphology and melt pool size. The mechanical properties were evaluated by tensile testing, and the bulk density of the parts was measured by Archimedes’ method. It was observed that the melt pool morphology and melting mode are directly related to the defocusing distances. The melting height increases while the melting depth decreases from positive to negative defocusing. The use of negative defocusing distances generates the conduction melting mode of the SLMed IN 625, and the alloy (as-built) has the maximum density and ultimate tensile strength. Conversely, the use of positive distances generates keyhole mode melting accompanied by a decrease of density and mechanical strength due to the increase in porosity and is therefore not suitable for the SLM process.
机译:研究了激光散焦以评估对表面质量,熔融池形,拉伸性能的影响和选择性激光熔化(SLMED)的致密化在625.负(-0.5mm,-0.3mm),阳性(+0.3mm,+ 0.5毫米)和0毫米的散焦距离用于产生样品,而其他工艺参数保持不变。通过不同的散核量产生的熔池的扫描电子显微镜(SEM)图像用于评估对形态和熔池尺寸的影响。通过拉伸检测评价机械性能,通过Archimedes的方法测量部件的堆积密度。观察到熔融池形态和熔化模式与散焦距离直接相关。熔化高度增加,而熔化深度从正到负散焦减小。负散焦距离的使用产生625中的SLMED的导通熔化模式,并且合金(竣工)具有最大密度和极限拉伸强度。相反,使用正距离产生钥匙孔模式熔点,该熔点伴随着密度和机械强度的降低,由于孔隙率的增加,因此不适合于SLM过程。

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