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Electro-Discharge Machining-A Qualitative Approach

机译:放电加工定性方法

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The complex and stochastic nature of Electro-Discharge Machining (EDM) has drawn numerous investigations to establish control over the quality related characteristics such as better surface finish, smaller heat-affected zone including minimized recast layer without compromising the productivity of the machining process. The present paper proposes a three-dimensional transient heat conduction model where the growth of the plasma channel is considered. The temperature distribution function is used to compute the depth of the crater that defines the surface roughness (Ry) and depth of the heat-affected zone at different pulse duration. Further, experiments are conducted to measure the depth of the crater and the depth of the heat-affected zone. The experimental and theoretical results show significant similarity.
机译:电火花加工(EDM)的复杂性和随机性已经进行了许多研究,以建立对质量相关特征的控制,例如更好的表面光洁度,较小的热影响区,包括最小的重铸层,而不会影响加工过程的生产率。本文提出了一个三维瞬态热传导模型,其中考虑了等离子体通道的增长。温度分布函数用于计算在不同脉冲持续时间下定义表面粗糙度(Ry)和热影响区深度的弹坑深度。此外,进行实验以测量火山口的深度和热影响区的深度。实验和理论结果显示出明显的相似性。

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