Effect of surface remelting on the characteristics of IN718 components fabricated using laser powder directed energy deposition

IF 1.5 Q2 ENGINEERING, MULTIDISCIPLINARY
Raja S Thanumoorthy, Satyajeet Vijay Jadhav, R Oyyaravelu, Srikanth Bontha, Balan A S S
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引用次数: 0

Abstract

Laser Powder Directed Energy Deposition (LP-DED) fabricated components exhibit poor surface finish, necessitating additional post-processing steps prior to their practical application. Enhancing the surface quality of additively manufactured IN718 specimens through conventional post-processing methods is particularly challenging, given the material’s poor machinability and the complexity of the fabricated components. The current study is centered on comprehending the impact of Laser Surface Remelting (LSR) on the surface properties of Laser Powder Directed Energy Deposited (LP-DED) IN718 material. To gain insights into how remelting influences surface characteristics, remelting was carried out using various sets of parameters. The remelted zone exhibited a refined grain structure, leading to increased hardness. Moreover, significant reductions in surface roughness and residual stress were observed in the remelted samples. Regression analysis indicated that laser power played a pivotal role, with positive impact on surface finish and depth of influence but a negative impact on residual stress and hardness. Therefore, considering all the comparison metrics, remelting using laser power of 150 W and a scan speed of 1140 mm min−1 were found to yield optimal surface conditions.
表面重熔对使用激光粉末定向能沉积技术制造的 IN718 部件特性的影响
激光粉末定向能量沉积(LP-DED)制造的部件表面光洁度较差,因此在实际应用之前必须进行额外的后处理步骤。由于 IN718 材料的机加工性能较差,而且制造的部件非常复杂,因此通过传统的后处理方法提高加成型 IN718 试样的表面质量尤其具有挑战性。当前研究的重点是理解激光表面重熔(LSR)对激光粉末定向能沉积(LP-DED)IN718 材料表面特性的影响。为了深入了解重熔是如何影响表面特性的,我们使用不同的参数进行了重熔。重熔区呈现出精细的晶粒结构,从而提高了硬度。此外,重熔样品的表面粗糙度和残余应力也明显降低。回归分析表明,激光功率起着关键作用,对表面粗糙度和影响深度有积极影响,但对残余应力和硬度有消极影响。因此,考虑到所有比较指标,使用 150 W 的激光功率和 1140 mm min-1 的扫描速度进行重熔可获得最佳表面条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Engineering Research Express
Engineering Research Express Engineering-Engineering (all)
CiteScore
2.20
自引率
5.90%
发文量
192
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