The effects of varying wall thickness on the surface roughness of Ti-6Al-4V by electron beam powder bed fusion

IF 2 3区 材料科学 Q2 ENGINEERING, MECHANICAL Surface Topography: Metrology and Properties Pub Date : 2023-09-04 DOI:10.1088/2051-672X/acf67c
Lucas C B Carolo, Robert E Cooper O, M. F. de Oliveira, Jorge V L da Silva
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Abstract

While the electron beam powder bed fusion (EB-PBF) process is recognized for generating parts with high surface roughness, the impact of wall thickness remains relatively understudied and shows inconsistent literature results. This study addresses this gap by performing a full factorial Design of Experiments (DoE) to examine Ti-6Al-4V specimen surfaces built in three distinct orientations (vertical, upskin, and downskin) and six wall thickness levels (0.5, 1.0, 2.0, 2.5, 3.0, and 4.0 mm). Findings reveal orientation-dependent effects of wall thickness on surface roughness, particularly for thicknesses below 1.0 mm. Vertical surfaces show increased roughness with decreasing wall thickness, in which 0.5 mm-thick specimens exhibited the highest Ra roughness values. In contrast, no particular trend was observed for upskin surfaces, with 0.5 mm specimens displaying roughness values comparable to the 2.0 to 4.0 mm range of specimens. Yet, downskin surfaces of 0.5 mm specimens showed significantly lower Ra roughness compared to their thicker counterparts, a trend opposite of that of vertical surfaces. These behaviors may relate to scanning strategies and electron beam parameters, particularly when building smaller cross-sectional areas.
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不同壁厚对电子束粉末床熔合Ti-6Al-4V表面粗糙度的影响
虽然电子束粉末床熔合(EB-PBF)工艺被认为可以产生高表面粗糙度的零件,但壁厚的影响研究相对较少,并且文献结果不一致。本研究通过执行全因子实验设计(DoE)来检查Ti-6Al-4V样品表面在三个不同的方向(垂直,上表皮和下表皮)和六个壁厚水平(0.5,1.0,2.0,2.5,3.0和4.0 mm)来解决这一差距。研究结果揭示了壁厚对表面粗糙度的定向影响,特别是厚度低于1.0 mm的壁厚。垂直表面粗糙度随壁厚的减小而增大,其中0.5 mm厚样品的Ra粗糙度值最高。相比之下,在皮肤表面上没有观察到特别的趋势,0.5 mm样品显示的粗糙度值与2.0至4.0 mm范围的样品相当。然而,与较厚的样品相比,0.5 mm样品的下表皮表面显示出明显较低的Ra粗糙度,这与垂直表面的趋势相反。这些行为可能与扫描策略和电子束参数有关,特别是在构建较小的横截面积时。
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来源期刊
Surface Topography: Metrology and Properties
Surface Topography: Metrology and Properties Materials Science-Materials Chemistry
CiteScore
4.10
自引率
22.20%
发文量
183
期刊介绍: An international forum for academics, industrialists and engineers to publish the latest research in surface topography measurement and characterisation, instrumentation development and the properties of surfaces.
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