A comparative study on the surface integrity of plastic mold steel due to electric discharge machining

被引:0
|
作者
Bülent Ekmekci
Oktay Elkoca
Abdulkadir Erden
机构
[1] Zonguldak Karaelmas University,the Mechanical Engineering Department
[2] Eregli Iron and Steel Work Co.,the Research and Development Center
[3] Atilim University,the Manufacturing Engineering Department
来源
Metallurgical and Materials Transactions B | 2005年 / 36卷
关键词
Material Transaction; Cementite; Electric Discharge Machine; White Layer; Tool Electrode;
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中图分类号
学科分类号
摘要
The violent nature of the electric discharge machining (EDM) process leads to a unique structure on the surface of a machined part. In this study, the influence of electrode material and type of dielectric liquid on the surface integrity of plastic mold steel samples is investigated. The results have shown that regardless of the tool electrode and the dielectric liquid, the white layer is formed on machined surfaces. This layer is composed of cementite (Fe3C) and martensite distributed in retained austenite matrix forming dendritic structures, due to rapid solidification of the molten metal, if carbon-based dielectric liquid is used. The intensity of cracking increases at high pulse durations and low pulse currents. Cracks on the EDM surfaces have been found to follow the pitting arrangements with closed loops and to cross perpendicularly with radial cracks and continue to propagate when another discharge takes place in the neighborhood. The amount of retained austenite phase and the intensity of microcracks have found to be much less in the white layer of the samples machined in de-ionized water dielectric liquid. The number of globule appendages attached to the surface increased when a carbon-based tool electrode material or a dielectric liquid was used during machining.
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页码:117 / 124
页数:7
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