Parts Diamond Burnishing Process Regimes optimization Made of INCONEL 718 Alloy via Selective Laser Sintering Method

Y. Vyshnepolskyi, D. Pavlenko, D. Tkach, Yaroslav Dvirnyk
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引用次数: 5

Abstract

To expand the area of parts made of non-compact alloys application, it is proposed to use one of the local surfaceplastic deformation methods- diamond slide burnishing (DSB). The peculiarities of local surface plastic deformation by DSB of parts made of heat-resistant alloy INCONEL 71S based on nickel obtained by selective laser sintering (SLS) have been investigated. The optimal modes of DSB parts have been determined based on the degree of their influence on the parameters of quality and microhardness of the surface layer. The regularities of changes in the studied parameters of roughness and microhardness have been established depending on various parameters of DSB. It has been found that to obtain the minimum roughness and maximum microhardness of the surface layer, the cumulative effect of burnishing parameters should be considered. The influence of DSB modes on the structure of the parts surface layer which is obtained by SLS has been shown. Based on the analysis of Pareto diagrams, the significance of the DSB parameters with respect to their effect on the roughness and microhardness of the surface layer of the samples obtained by SLS has been established. Using the Box Wilson steep ascent method, the optimal modes of parts DSB have been established. It has been found that the optimal modes of DSB are the burnishing force of 0.25 kN, the feed rate is 0.1 mm/rev, and the radius of the DSB sphere is 2.5 mm.
选择性激光烧结INCONEL 718合金零件金刚石抛光工艺体系优化
为了扩大非致密合金零件的应用范围,提出了一种局部表面塑性变形方法——金刚石滑动抛光(DSB)。研究了选择性激光烧结镍基耐热合金INCONEL 71S零件在DSB作用下局部表面塑性变形的特点。根据其对表面质量参数和显微硬度参数的影响程度,确定了DSB零件的最佳模态。根据DSB的不同参数,建立了粗糙度和显微硬度的变化规律。研究发现,为了获得表层最小的粗糙度和最大的显微硬度,应考虑抛光参数的累积效应。研究了DSB模态对SLS得到的零件表层结构的影响。通过对Pareto图的分析,建立了DSB参数对SLS所得样品表层粗糙度和显微硬度影响的显著性。采用Box Wilson陡坡上升法,建立了零件DSB的最优模态。研究结果表明:抛光力为0.25 kN,进给速度为0.1 mm/rev, DSB球面半径为2.5 mm是DSB的最佳工作模式。
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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