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Effect of wire cathode surface hydrophilia when using a travelling wire in wire electrochemical micro machining

机译:钢丝电化学微加工中使用移动钢丝时,钢丝阴极表面亲水性的影响

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摘要

Wire electrochemical micro machining (WEMM) is receiving considerable attention in the production of metal micro structures because it produces smooth, burr-free surfaces without heat damaged layer and the tool is not worn out. As the machining gap is so small in WEMM, the process of mass transport is important, and its consideration becomes necessary when attempting to improve productivity and processing quality. The travelling wire method has been used in previous studies to enhance mass transport in WEMM. However, the ability of the travelling wire was underutilized because wire cathodes with smooth surfaces were used. Tungsten wires with rough surfaces have better hydrophilia than those with smooth surfaces, which is good for enhancing mass transport. In this paper, tungsten wire with a rough surface is prepared using chemical etching, and is adopted as the cathode in cobalt base alloy machining. The influence of the smoothness and hydrophilia of the wire cathode surface on WEMM is discussed theoretically, and the effects on process stability and processing quality are studied experimentally. (C) 2016 Elsevier B.V. All rights reserved.
机译:线电化学微加工(WEMM)在金属微结构的生产中受到了相当大的关注,因为它可产生光滑,无毛刺的表面,且无热损伤层,并且工具不会磨损。由于WEMM中的加工间隙非常小,因此传质过程很重要,在尝试提高生产率和加工质量时,有必要进行考虑。在以前的研究中已经使用了钢丝移动方法来增强WEMM中的质量传输。但是,由于使用了具有光滑表面的金属丝阴极,因此未充分利用移动金属丝的能力。具有粗糙表面的钨丝比具有光滑表面的钨丝具有更好的亲水性,这有利于增强质量传递。本文采用化学刻蚀法制备了表面粗糙的钨丝,并作为钴基合金加工的阴极。从理论上讨论了丝阴极表面的光滑度和亲水性对WEMM的影响,并通过实验研究了其对工艺稳定性和加工质量的影响。 (C)2016 Elsevier B.V.保留所有权利。

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