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首页> 外文期刊>Journal of Mechanical Science and Technology >Influence of discharge energy on machining characteristics in EDM
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Influence of discharge energy on machining characteristics in EDM

机译:放电能量对电火花加工性能的影响

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摘要

The machining characteristics of electrical discharge machining (EDM) directly depend on the discharge energy which is transformed into thermal energy in the discharge zone. The generated heat leads to high temperature, resulting in local melting and evaporation of workpiece material. However, the high temperature also impacts various physical and chemical properties of the tool and workpiece. This is why extensive knowledge of development and transformation of electrical energy into heat is of key importance in EDM. Based on the previous investigations, analytical dependence was established between the discharge energy parameters and the heat source characteristics in this paper. In addition, the thermal properties of the discharged energy were experimentally investigated and their influence on material removal rate, gap distance, surface roughness and recast layer was established. The experiments were conducted using copper electrode while varying discharge current and pulse duration. Analysis and experimental research conducted in this paper allow efficient selection of relevant parameters of discharge energy for the selection of most favorable EDM machining conditions.
机译:放电加工(EDM)的加工特性直接取决于放电能量,该能量在放电区域转换为热能。产生的热量导致高温,导致工件材料局部熔化和蒸发。但是,高温也会影响工具和工件的各种物理和化学性质。因此,在EDM中,对电能的开发以及将电能转化为热能的广泛了解至关重要。在此基础上,本文建立了放电能量参数与热源特性之间的解析关系。此外,还对放电能量的热特性进行了实验研究,确定了它们对材料去除率,间隙距离,表面粗糙度和重铸层的影响。使用铜电极进行实验,同时改变放电电流和脉冲持续时间。本文进行的分析和实验研究允许有效选择放电能量的相关参数,以选择最有利的EDM加工条件。

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