首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation of electrochemical post-processing procedure for Ti-6Al-4V lattice structure manufactured by direct metal laser sintering (DMLS)
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Investigation of electrochemical post-processing procedure for Ti-6Al-4V lattice structure manufactured by direct metal laser sintering (DMLS)

机译:直接金属激光烧结制造的Ti-6AL-4V晶格结构电化学后处理程序的研究(DMLS)

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摘要

Additive manufacturing has become very popular nowadays to create complex geometries that cannot be achieved by any other manufacturing processes. The purpose of this study is to investigate and characterize the electrochemical polishing and chemical etching methods as a post-process treatment to improve the surface finish of lattice structures made from Ti-6Al-4V manufactured by direct metal laser sintering (DMLS). A lattice sample is designed with external and internal struts to compare the influence of the post-processing on different features. The post-processing parameters are studied via the Taguchi method. This work will provide critical information on the surface and geometrical characterization as well as the post-process treatment of a Ti-6Al-4V lattice. The metrological data will be analyzed to determine how the post-process treatment affects the surface finish, considering the final roughness and geometrical integrity of lattice samples. It is found that the material removal rate was more important at the edges, specifically on the external features. It was also confirmed that the average roughness is linked to the material removal for both processes. The more material is removed from the parts, the better the surface finish. It is also found that the etching process helps the electrochemical polishing go deeper inside the geometry.
机译:尽管如此,添加剂制造已经变得非常流行,以创造任何其他制造过程无法实现的复杂几何形状。本研究的目的是研究和表征电化学抛光和化学蚀刻方法作为过程后处理,以改善由直接金属激光烧结(DMLS)制造的Ti-6Al-4V制成的晶格结构的表面光洁度。晶格样品采用外部和内部支柱设计,以比较后处理对不同特征的影响。通过Taguchi方法研究后处理参数。这项工作将提供有关表面和几何表征的关键信息以及Ti-6Al-4V格子的过程后处理。考虑到晶格样品的最终粗糙度和几何完整性,将分析计量数据以确定如何影响表面光洁度的表面光洁度。发现材料去除速率在边缘更重要,特别是在外部特征上。还证实,平均粗糙度与两种方法的材料一起结合。从部件中取出越多,表面光洁度越好。还发现蚀刻工艺有助于电化学抛光在几何形状内更深。

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