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Comparison of high‐intensity sound and mechanical vibration for cleaning porous titanium cylinders fabricated using selective laser melting

机译:比较使用选择性激光熔化制造的清洁多孔钛圆筒的高强度声音和机械振动

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摘要

Orthopedic components, such as the acetabular cup in total hip joint replacement, can be fabricated using porous metals, such as titanium, and a number of processes, such as selective laser melting. The issue of how to effectively remove loose powder from the pores (residual powder) of such components has not been addressed in the literature. In this work, we investigated the feasibility of two processes, acoustic cleaning using high‐intensity sound inside acoustic horns and mechanical vibration, to remove residual titanium powder from selective laser melting‐fabricated cylinders. With acoustic cleaning, the amount of residual powder removed was not influenced by either the fundamental frequency of the horn used (75 vs. 230 Hz) or, for a given horn, the number of soundings (between 1 and 20). With mechanical vibration, the amount of residual powder removed was not influenced by the application time (10 vs. 20 s). Acoustic cleaning was found to be more reliable and effective in removal of residual powder than cleaning with mechanical vibration. It is concluded that acoustic cleaning using high‐intensity sound has significant potential for use in the final preparation stages of porous metal orthopedic components. © 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 117–123, 2017.
机译:可以使用多孔金属(例如钛)和许多工艺(例如选择性激光熔化)制造整形外科组件,例如进行全髋关节置换的髋臼杯。文献中没有解决如何有效地从这些组分的孔(残留粉末)中除去松散粉末的问题。在这项工作中,我们研究了两种方法的可行性,即使用声号筒内的高强度声音进行声波清洗以及机械振动,以从选择性激光熔融加工的气缸中去除残留的钛粉。通过声学清洁,去除的残留粉末量不受所用喇叭的基本频率(75与230 Hz)的影响,或者对于给定的喇叭,发声的数量(1至20之间)都不会影响。在机械振动的情况下,去除的残留粉末量不受施加时间的影响(10 vs. 20 s)。发现声学清洁比通过机械振动清洁更可靠,更有效地去除残留粉末。结论是,使用高强度声音进行声波清洗在多孔金属骨科部件的最终制备阶段具有很大的潜力。 ©2015 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,105B:117–123,2017年。

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