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首页> 外文期刊>Journal of Materials Processing Technology >Surface modification process by electrical discharge machining with a Ti powder green compact electrode
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Surface modification process by electrical discharge machining with a Ti powder green compact electrode

机译:用钛粉生坯电极进行放电加工的表面改性工艺

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This paper describes a new method of surface modification by electrical discharge machining (EDM). By using an ordinary EDM machine tool and kerosene fluid, a hard ceramic layer can be created on the workpiece surface with a Ti or other compressed powder electrode in a certain condition. This revolutionary new method is called electrical discharge coating (EDC). The process of EDC begins with electrode wear during EDM, then a kind of hard carbide is created through the chemical reaction between the worn electrode material and the carbon particles decomposed from kerosene fluid under high temperature. The carbide is piled up on a workpiece quickly and becomes a hard layer of ceramic of about 20μm thickness in several minutes. This paper studies the principle and process of EDC systemically by using a Ti powder green compact electrode. Experiments and analyses show that a compact TiC ceramic layer can be created on the surface of the metal workpiece. The hardness of the ceramic layer is more than three times higher than that of the base body, and the hardness changes gradually from the surface to the base body. This method can find wide application in the fields of surface modification, such as the surface repairing and strengthening of cutting tools and molds.
机译:本文介绍了一种通过放电加工(EDM)进行表面改性的新方法。通过使用普通的EDM机床和煤油液,可以在一定条件下用Ti或其他压缩粉末电极在工件表面上形成坚硬的陶瓷层。这种革命性的新方法称为放电涂层(EDC)。 EDC的过程始于EDM期间电极的磨损,然后通过磨损的电极材料与高温下从煤油流体分解的碳颗粒之间的化学反应产生一种硬质碳化物。碳化物迅速堆积在工件上,并在数分钟内变成厚度约20μm的陶瓷硬层。本文利用钛粉生坯电极系统研究了EDC的原理和工艺。实验和分析表明,可以在金属工件的表面上形成致密的TiC陶瓷层。陶瓷层的硬度是基体的三倍以上,并且硬度从表面到基体逐渐变化。这种方法可以在表面改性领域中得到广泛应用,例如切削工具和模具的表面修复和强化。

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