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Creating Productive Conditions for Electric Discharge Machining of Non-conductive Ceramics

机译:为非导电陶瓷制造电气放电加工生产条件

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Fabricating structures from non-conductive ceramic materials like silicon nitride (Si_3N_4) is difficult through traditional machining, but their applications are increasing in engineering field due to their high hardness, low thermal conductivity and resistance to oxidation. High electrical resistivity of such ceramics restricts the use of electric discharge machining (EDM) on them. An assistive electrode together with graphite powder-mixed dielectric mixture of hydrocarbon fluids was used to create favourable conditions for deposition of conductive layer on the non-conductive SiAlON having 10~5 Ω cm resistivity. The experiments were conducted according to Taguchi design. Analysis of variance using signal-to-noise ratios showcased significant parameters and their optimal values for material removal, electrode wear and size overcut. The elemental composition of the sample confirmed the deposition of carbon particles on ceramic surface which has helped in propagation of sparking beyond exhaustion of assistive layer. The SEM images confirmed the presence of deposited carbon layer and material removal by spalling and evaporation.
机译:通过传统的加工难以制造来自氮化硅(Si_3N_4)等氮化硅(Si_3N_4)的非导电陶瓷材料的结构,但由于其高硬度,低导热性和氧化抗性,它们的应用在工程领域增加。这种陶瓷的高电阻率限制了在它们上使用电气放电加工(EDM)。辅助电极与石墨粉末混合介电混合物一起使用烃流体的良好条件,用于在具有10〜5Ωcm电阻率的非导电唾液中沉积导电层。根据Taguchi设计进行实验。使用信噪比的差异分析展示了重要的参数和它们的材料去除,电极磨损和尺寸过度的最佳值。样品的元素组合物证实碳颗粒对陶瓷表面的沉积,这有助于传播火花超出辅助层的耗尽。 SEM图像确认存在沉积的碳层和通过剥落和蒸发除去材料。

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