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首页> 外文期刊>Electrochimica Acta >Mechanisms of TiC layer formation on high speed steel by a single pulse in electrical discharge machining
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Mechanisms of TiC layer formation on high speed steel by a single pulse in electrical discharge machining

机译:放电加工中单脉冲在高速钢上形成TiC层的机理

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摘要

Mechanisms of the Titanium carbide (TiC) layer formation in electrical discharge coating (EDC) using TiC powder electrodes were investigated. We have observed and analyzed the migration and adhesion of TiC powder in single pulse discharges in electrical discharge machining (EDM) as the first step towards elucidating the adhesion mechanism of TiC with the use of TiC powder and high speed steel as the electrodes and workpiece, respectively. The adhesion mechanism of TiC powder was discussed from the shape and composition distribution of the discharge crater and the voltage and current waveforms at the time of discharge. TiC is directly supplied from the electrode to the surface of the workpiece by single pulse discharge without the presence of TiC between the electrodes. When the voltage remains constant during discharge, the melted and resolidified TiC is localized in the crater. When a temporary voltage drop occurs during discharge, the clustered TiC that has maintained its powder form is present in the crater. The temporary voltage drop during discharge occurred by existing the large clustered TiC powder between the electrodes and by the bulge of the crater. The amount of TiC provided from TiC electrodes to TiC layer is smaller than that to high speed steel. The thickness of TiC layer on high speed steel increases and converges some constant value with increasing EDC process time because of the balance of TiC removal and adhesion by a single pulse discharge.
机译:研究了使用TiC粉末电极在放电涂层(EDC)中形成碳化钛(TiC)层的机理。我们已经研究并分析了放电加工(EDM)中单脉冲放电中TiC粉末的迁移和粘附,这是阐明以TiC粉末和高速钢作为电极和工件的TiC粘附机理的第一步,分别。从放电坑的形状和组成分布以及放电时的电压和电流波形出发,探讨了TiC粉末的附着机理。 TiC通过单脉冲放电直接从电极供应到工件表面,而在电极之间不存在TiC。当放电过程中电压保持恒定时,熔化并重新凝固的TiC会位于火山口中。当在放电过程中出现暂时性的电压降时,保持其粉末形式的簇状TiC存在于火山口中。放电过程中的临时电压降是由于电极之间存在大量簇状TiC粉末以及火山口的凸起而引起的。从TiC电极提供给TiC层的TiC的量少于提供给高速钢的TiC的量。高速钢上TiC层的厚度会随着EDC处理时间的增加而增加并收敛一些恒定值,这是因为通过单脉冲放电实现的TiC去除和附着力的平衡。

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