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Drilling process and resulting surface properties of Inconel 718 alloy fabricated by Selective Laser Melting Additive Manufacturing

机译:通过选择性激光熔化添加剂制造制造的Inconel 718合金的钻井过程和所得到的表面性质

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One of the challenges is to produce holes with expected dimensional accuracy in metal additive manufacturing.Although post-processing is usually carried out for the additively manufactured components but improving the quality of the holes produced through additive manufacturing seems to be requirement.Otherwise,it is difficult to obtain expected quality for the holes in metal components.Therefore,this study focuses on drilling operation of Inconel 718 alloy fabricated by selective laser melting additive manufacturing.Specimens fabricated by selective laser melting(SLM)were drilled using carbide drill bit under various drilling conditions including cutting speed and feed values.The measured outputs were surface quality of drilled hole,surface topography,surface and subsurface microhardness,and microstructure.Obtained results were compared with the results from wrought Inconel 718.This study showed that drilling process helps to improve the surface quality of additively manufactured Inconel 718 by reducing the surface roughness.Besides,increased feed rate results in work hardening effect on the hole surface and eventually microhardness of surface and subsurface increases notably.
机译:其中一个挑战是在金属添加剂制造中产生具有预期尺寸精度的孔。尽管后处理通常用于加瘾制造的部件,但通过添加剂制造产生的孔的质量似乎是要求。否则,它是难以获得金属部件中孔的预期质量。因此,本研究侧重于通过选择性激光熔化添加剂制造制造的Inconel 718合金的钻孔操作。使用各种钻井的碳化物钻头钻出通过选择性激光熔化(SLM)制造的三种。包括切割速度和饲料值的条件。测量的输出是钻孔的表面质量,表面形貌,表面和地下显微性,以及微观结构。与锻造Inconel 718的结果进行了比较了结果。这项研究表明,钻井过程有助于改善瘾地制造的摄入的表面质量通过降低表面粗糙度,NEL 718.基础,增加的进料速率导致工作硬化对孔表面的硬化效应,并且最终的表面和地下的微硬度显着增加。

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