Fundamental study on fine wire EDM characteristics using γ-phase brass coated steel wire

M. Miyoshi, Shixian Liu, A. Okada, Akihito Hoshima, Masatoshi Kuita
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Abstract

Demand for high precision machining of complicated shapes has recently increased with the miniaturization of mechanical and electronic products. Therefore, further development of fine wire electrical discharge machining (EDM) technology using a thin wire electrode has been also requested. However, there might be a limit in improving the machining performance of fine wire EDM using conventional wire only by optimizing discharge pulse conditions and gap control. Therefore, it is essential to develop a new type of thin wire electrode for further improvement of wire EDM performance. In this study, high-zinc-content brass (γ-phase brass) coated steel core wire as a new type wire electrode was trially made to improve the machining stability. In wire EDM, zinc content of wire surface would contribute to rapidly cool down the gap by the evaporation due to its low boiling point. However, the surface of γ-phase brass coated wire tends to become rough in the heat treatment process of the wire. Thus, another type of the γ-phase brass coated wire with smoothed surface was also made by an extra finish drawing. The wire EDM characteristics using these wires were compared with those using conventional brass coated steel wire. Furthermore, the distribution of spark locations during process was evaluated by high-speed observation to investigate the influence of γphase brass and the surface roughness of wire. As a result, the cutting speed using the γ-phase brass coated steel wire with smoothed surface is faster than that using conventional wire because of uniform distribution of spark location.
γ相镀黄铜钢丝细丝电火花加工特性的基础研究
近年来,随着机械和电子产品的小型化,对复杂形状的高精度加工的需求不断增加。因此,对细线电极细线电火花加工技术的进一步发展也提出了要求。然而,仅通过优化放电脉冲条件和间隙控制来提高传统线材电火花加工的加工性能可能存在局限性。因此,为了进一步提高线材电火花加工的性能,开发一种新型细线电极是十分必要的。为了提高线材的加工稳定性,试验制作了高锌黄铜(γ相黄铜)包覆钢芯焊丝作为新型线材电极。在线材电火花加工中,由于锌的沸点较低,线材表面的锌含量会通过蒸发作用使间隙迅速冷却。然而,γ相黄铜包覆丝在热处理过程中,表面容易变得粗糙。因此,另一种表面光滑的γ相黄铜涂层线也通过额外的精加工制成。并与传统镀铜钢丝电火花加工特性进行了比较。此外,采用高速观测的方法评价了加工过程中火花位置的分布,研究了γ相黄铜对线材表面粗糙度的影响。结果表明,表面光滑的γ相镀黄铜钢丝由于火花位置分布均匀,切削速度快于常规钢丝。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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