Raking process for Powder Bed Fusion of Ti-6Al-4V alloy Powder Analyzed by Discrete Element Method

M. Okugawa, Y. Isono, Yuichiro Koizumi, T. Nakano
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Abstract

In order to avoid the formation of defects in additive manufacturing (AM) by powder bed fusion (PBF) process, it is crucial to understand the relationship between the quality of powder bed and a powder spreading process. In this study, the in fl uences of conditions of powder raking process on the densities and homogeneity of powder bed have been examined by computer simulation using Discrete Element Method (DEM) and experiment of powder bed formation using a blade-type spreader for Ti ­ 6Al ­ 4V powder by way of example. The results were analyzed with a special focus on the e ff ects of the relative size of powder particles with respect to the gap between the blade and the build platform. It has been clearly shown that the gap needs to be larger than the upper bound of the distribution of powder particles diameter to obtain a high-density powder bed. The DEM simulation indicated that the blade can sweep even powder particles that are not in direct contact with the blade when the powder particles are in a close-packed tetragonal con fi guration. This is the probable reason for the experimental fact that powder particles smaller than half of the gap are suitable for PBF. [doi:10.2320 / matertrans.MT-MLA2022010]
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用离散元法分析了Ti-6Al-4V合金粉末床熔炼的烧结过程
为了避免粉末床熔合(PBF)增材制造(AM)过程中缺陷的形成,了解粉末床质量与粉末扩散过程之间的关系至关重要。本文采用离散元法(DEM)进行了计算机模拟,并通过实例进行了Ti - 6Al - 4V粉末的叶片式铺粉机成粉实验,研究了制粉工艺条件对粉末床密度和均匀性的影响。结果进行了分析,特别关注粉末颗粒相对于叶片和构建平台之间的间隙的相对尺寸的影响。已经清楚地表明,要获得高密度粉床,间隙需要大于粉末颗粒直径分布的上界。数值模拟结果表明,当粉末颗粒呈紧密排列的四边形构型时,叶片甚至可以扫过与叶片不直接接触的粉末颗粒。这可能是实验证明小于间隙一半的粉末颗粒适合于PBF的原因。[doi:10.2320 / matertrans.]MT-MLA2022010]
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来源期刊
Keikinzoku/Journal of Japan Institute of Light Metals
Keikinzoku/Journal of Japan Institute of Light Metals Materials Science-Metals and Alloys
CiteScore
0.40
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发文量
65
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