首页> 外文期刊>Journal of the Chinese Institute of Engineers >Modeling of cutting speed (CS) for HSLA steel in wire electrical discharge machining (WEDM) using moly wire
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Modeling of cutting speed (CS) for HSLA steel in wire electrical discharge machining (WEDM) using moly wire

机译:HSLA钢在使用钼丝的电火花加工(WEDM)中的切削速度(CS)建模

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摘要

The high capital costs of wire electrical discharge machining (WEDM) equipment necessitate optimal utilization of the WEDM process and equipment. Cutting speed (CS) is a key performance measure to achieve this objective. However, process parameters of WEDM greatly hamper CS and hence productivity and machining efficiency. It is therefore essential to pick the right combination of parameters to attain better CSs. In this paper, five process parameters which include pulse on-time, pulse off-time, pulse frequency, power, and wire speed were used to develop an empirical relationship between process parameters and CS. A regression model based on experimental data was developed and validated through confirmation tests. Experiments have been conducted on high-strength low-alloy steel using molybdenum wire. Analysis of variance was applied to segregate significant process parameters and it was revealed that pulse off-time, power, and pulse frequency were the major parameters affecting CS. Contour plots have been established to select the best process parameters in addition to the developed model. Stability of moly wire was also explored using scanning electron microscope and energy dispersive spectroscopy analysis. Results showed that moly wire retains its original surface quality and dimensions which contributes to dimensional accuracy of parts.
机译:电火花线切割加工(WEDM)设备的高投资成本需要最佳利用WEDM工艺和设备。切削速度(CS)是实现此目标的关键性能指标。但是,WEDM的工艺参数极大地阻碍了CS的生产,从而影响了生产率和加工效率。因此,至关重要的是选择正确的参数组合以获得更好的CS。在本文中,使用五个过程参数(包括脉冲接通时间,脉冲断开时间,脉冲频率,功率和线速度)来建立过程参数与CS之间的经验关系。开发了基于实验数据的回归模型,并通过确认测试进行了验证。已经对使用钼丝的高强度低合金钢进行了实验。应用方差分析来分离重要的工艺参数,结果表明,脉冲关闭时间,功率和脉冲频率是影响CS的主要参数。已经建立了等高线图,以选择已开发模型之外的最佳工艺参数。钼丝的稳定性也使用扫描电子显微镜和能量色散光谱分析来探索。结果表明,钼丝保留了其原始的表面质量和尺寸,这有助于零件的尺寸精度。

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