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Feasibility Study of Through Hole Fabrication on Aluminium Nitride Ceramic Using Die-Sinking Electro-Discharge Machining

机译:使用模具沉降电放电加工氮化铝陶瓷孔制造的可行性研究

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A series of experiments were carried out to machine aluminium nitride (AIN) ceramic by die-sinking electro-discharge machining (EDM) process. EDM is a non-conventional machining process that requires the workpiece to be electrically conductive. An assisted-electrode method is used to make the surface of the workpiece conductive enough to machine. A combination of graphene paste, carbon nanotube, and copper tape has been used to make the coating surface. Tungsten carbide tool has been used. The findings indicate that, for low pulse energy, it is possible to generate through holes in this process. A combination of low peak current and high gap voltage proved to be successful in this method. The surface of the machined hole reveals that thermal spalling is present as material removal mechanism, which results in a rough surface. The energy dispersive spectroscopy (EDS) analysis proves that carbon deposition occurs in the wall of the holes to promote successful machining. Copper is also present in the machined surface. A feasible process has been developed to machine AIN ceramics using EDM process.
机译:通过模具沉入的电放电加工(EDM)工艺来进行一系列实验。 EDM是一种非传统的加工过程,其需要工件是导电的。辅助电极方法用于使工件的表面变为足够的机器。石墨烯浆料,碳纳米管和铜带的组合已被用于制造涂层表面。已经使用了碳化钨工具。结果表明,对于低脉冲能量,可以在该过程中产生通过孔。在该方法中证明了低峰值电流和高间隙电压的组合。机加工孔的表面揭示了热剥落作为材料去除机构存在,这导致粗糙的表面。能量分散光谱(EDS)分析证明碳沉积在孔的壁中发生以促进成功的加工。铜也存在于加工表面中。已经开发了一种可行的过程,可以使用EDM工艺加工AIN陶瓷。

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