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Powder removal from Ti-6Al-4V cellular structures fabricated via electron beam melting

机译:通过电子束熔化从Ti-6Al-4V蜂窝结构中去除粉末

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摘要

Direct metal fabrication systems like electron beam melting (EBM) and direct metal laser sintering (also called selective laser melting) are gaining popularity. One reason is the design and fabrication freedom that these technologies offer over traditional processes. One specific feature that is of interest is mesh or lattice structures that can be produced using these powder-bed systems. One issue with the EBM process is that the powder trapped within the structure during the fabrication process is sintered and can be hard to remove as the mesh density increases. This is usually not an issue for the laser-based systems since most of them work at a low temperature and the sintering of the powder is less of an issue. Within the scope of this project, a chemical etching process was evaluated for sintered powder removal using three different cellular structures with varying mesh densities. All meshes were fabricated via EBM using Ti6Al4V Footnote Information powder. The results are promising, but the larger the structures, the more difficult it is to completely remove the sintered powder without affecting the integrity of the mesh structure.
机译:直接金属制造系统(例如电子束熔化(EBM)和直接金属激光烧结(也称为选择性激光熔化))越来越受欢迎。原因之一是这些技术相对于传统工艺提供的设计和制造自由度。令人关注的一个特定特征是可以使用这些粉末床系统生产的网状或格子状结构。 EBM工艺的一个问题是,在制造过程中滞留在结构内的粉末会被烧结,并且随着筛网密度的增加而难以去除。对于基于激光的系统而言,这通常不是问题,因为它们中的大多数都在低温下工作,而粉末的烧结则不再是问题。在该项目的范围内,对化学蚀刻工艺进行了评估,以使用三种不同网格密度的不同蜂窝结构来去除烧结粉末。使用Ti6Al4V Footnote Information粉末通过EBM制造所有网格。结果是有希望的,但是结构越大,在不影响网状结构完整性的情况下完全除去烧结粉末越困难。

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