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Carbon nanofiber assisted micro electro discharge machining of reaction-bonded silicon carbide

机译:碳纳米纤维辅助微结合反应碳化硅微放电加工

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摘要

Carbon nanofiber assisted micro electro discharge machining was proposed and experiments were performed on reaction-bonded silicon carbide. The changes in electro discharging behavior, material removal rate, electrode wear ratio, electrode geometry, spark gap, surface finish, surface topography and surface damage with carbon nanofiber concentration were examined. It has been found that the addition of carbon nanofiber not only improves the electro discharge frequency, material removal rate, discharge gap, but also reduces the electrode wear and electrode tip concavity. Bidirectional material migrations between the electrode and the workpiece surface were detected, and the migration behavior was strongly suppressed by carbon nanofiber addition. Adhesion of carbon nanofibers to the workpiece surface occurs, which contributes to the improvement of electro discharge machinability. These findings provide possibility for high-efficiency precision manufacturing of microstructures on ultra-hard ceramic materials.
机译:提出了碳纳米纤维辅助微放电加工方法,并对反应结合的碳化硅进行了实验。考察了放电行为,材料去除率,电极磨损率,电极几何形状,火花隙,表面光洁度,表面形貌和表面损伤随碳纳米纤维浓度的变化。已经发现,碳纳米纤维的添加不仅改善了放电频率,材料去除率,放电间隙,而且降低了电极磨损和电极头凹度。检测到电极和工件表面之间的双向材料迁移,并且通过添加碳纳米纤维强烈抑制了迁移行为。碳纳米纤维附着在工件表面上,这有助于提高放电加工性。这些发现为在超硬陶瓷材料上高效微结构的精密制造提供了可能性。

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