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Experimental investigation on the feasibility of dry and cryogenic machining as sustainable strategies when turning Ti6A14V produced by Additive Manufacturing

机译:干法和低温加工作为增材制造生产的Ti6A14V时可持续策略的可行性的实验研究

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The performances of the cutting fluids have recently been under investigation to drive machining operations towards cleaner and more sustainable targets. Several efforts are being made to test new formulations of coolants and to implement cooling strategies alternative to standard flooding. Cryogenic cooling seems to be an efficient solution to enhance the process sustainability when machining difficult to-cut metals, such as nickel, cobalt and titanium alloys. Among its several advantages, no contaminants are left on the chips and workpieces, hence reducing the chips disposal costs and limiting skin and breath diseases for the machine tool operators. Furthermore, in case of production of surgical prostheses, it can help reducing the cleaning steps before the final sterilization. The present work investigates the feasibility of using dry cutting and cryogenic cooling in semi-finishing turning of the Ti6AI4V titanium alloy produced by the Additive Manufacturing technology known as Electron Beam Melting when compared to standard flood cooling. For this purpose, the effects of the cutting speed and feed rate on the tool wear, surface integrity, and chip morphology were investigated as a function of the applied cooling strategy. The experimental findings show that the cryogenic cooling assures better performances than dry and wet machining by reducing the tool wear, improving the surface finish and the chip breakability, whereas dry cutting provokes more surface defects and severe tool wear. Therefore, from an environmental point of view, cryogenic machining can represent a sustainable process for manufacturing surgical prostheses made of AM titanium alloys. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近正在研究切削液的性能,以推动加工操作朝着更清洁,更可持续的目标发展。为了测试冷却剂的新配方并实施替代标准注水的冷却策略,正在做出一些努力。当加工难切削的金属(例如镍,钴和钛合金)时,低温冷却似乎是提高工艺可持续性的有效解决方案。在其众多优点中,切屑和工件上没有残留污染物,因此降低了切屑处理成本,并为机床操作员减少了皮肤和呼吸道疾病。此外,在生产外科假体的情况下,它可以帮助减少最终灭菌之前的清洁步骤。与标准的溢流冷却相比,本工作研究了通过干式切削和低温冷却在通过增材制造技术(称为电子束熔化)生产的Ti6Al4V钛合金的半精加工车削中的可行性。为此,根据所应用的冷却策略,研究了切削速度和进给速度对刀具磨损,表面完整性和切屑形态的影响。实验结果表明,低温冷却通过减少工具磨损,改善表面光洁度和切屑断裂性,确保了比干式和湿式加工更好的性能,而干式切削则引起更多的表面缺陷和严重的工具磨损。因此,从环境角度来看,低温加工可以代表一种可持续的过程,用于制造AM钛合金制成的外科假体。 (C)2016 Elsevier Ltd.保留所有权利。

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