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首页> 外文期刊>Journal of Materials Processing Technology >Development of a novel micro w-EDM power source with a multiple Resistor-Capacitor (mRC) relaxation circuit for machining high-melting point, -hardness and -resistance materials
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Development of a novel micro w-EDM power source with a multiple Resistor-Capacitor (mRC) relaxation circuit for machining high-melting point, -hardness and -resistance materials

机译:具有多电阻电容器(MRC)弛豫电路的新型微型W-EDM电源的开发,用于加工高熔点, - 硬度和抗病材料

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This study presents the development of a novel micro-wire electric discharge machining (w-EDM) power source for machining high-melting point, -hardness and-resistance materials. The relaxation circuit power devised with a multiple Resistor-Capacitor (mRC) is triggered by a Programmable Logic Device (PLD) to generate a high-peak, short-pulse-time current train. The mRC relaxation circuit is characterized by high density discharge-spots per unit of time for swiftly removing material and creating fine discharge craters. Three microstructures made of tungsten carbide, WC-based cermet, and Boron-Doped Polycrystalline Composite Diamond (BD-PCD), respectively, are machined to validate the novel relaxation circuit. Experimental results demonstrate the 3RC relaxation circuit reduces machining times by 25%-35%, resulting in a more time efficient micro w-EDM process. Compared with a transistorized power source, the heat-affected zone is smaller and surface finish is better when using the 3RC relaxation circuit. A set of metrics for helping measure important electro-thermal machining related properties during micro w-EDM is proposed in this study. These are the 'Spark Erosion Rate (SER)', 'Electro-Thermal Machinability (ETM)', and 'Cutting Performance (CP)'. An extensive examination of the quantitative and qualitative properties of material erosion mechanisms, material removal rates (MRR), and, cobalt deposition for machining of difficult-to-machine materials is undertaken and the results discussed in detail. (C) 2016 Elsevier B.V. All rights reserved.
机译:本研究介绍了一种用于加工高熔点, - 硬度和电阻材料的新型微型电气放电加工(W-EDM)电源的开发。使用多电阻电容器(MRC)设计的松弛电路功率由可编程逻辑设备(PLD)触发,以产生高峰,短脉冲时间火车。 MRC弛豫电路的特征在于每单位时间的高密度排放点,用于迅速去除材料和产生细射出陨石坑。采用碳化钨,WC基金属陶瓷和硼掺杂多晶复合金刚石(BD-PCD)制成的三种微观结构,以验证新颖的松弛电路。实验结果表明,3RC弛豫电路将加工时间减少25%-35%,导致更高的高效微型W-EDM过程。与晶间电源相比,热影响区域较小,使用3RC弛豫电路时更好的表面光洁度更好。在本研究中提出了一系列用于帮助测量微型W-EDM期间重要的电热加工相关性能的度量。这些是'火花腐蚀速率(SER)','电热可加工性(ETM)'和“切割性能(CP)”。对材料腐蚀机理的定量和定性性能,材料去除率(MRR)的定量和定性性能进行了广泛的检查,以及用于加工难以加入的材料的钴沉积,并详细讨论的结果。 (c)2016 Elsevier B.v.保留所有权利。

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