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Quench hardening of 0.4%C steel using aqueous electrolyte plasma as heat source

机译:使用含水电解质等离子体作为热源的0.4%C钢的淬火硬化

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Quench hardening of 0.4%C steel has been achieved using aqueous electrolyte plasma as heat source. Cylindrical specimens (8 mm diameter) of 0.4%C steel (cathode) were placed at the centre of a cylindrical stainless steel ring of 100 mm diameter (anode) in 15 wt-%Na_2CO_3 aqueous solution. Continuous electrolyte plasma was generated by electrical discharge at voltages higher than ~ 90 V in a narrow layer at the specimen (cathode) surface. The aqueous electrolyte plasma caused rapid heating of the active electrode (cathode) to 900-1200°C in few seconds at applied voltages in the range of 95-140 V. On subsequent rapid cooling, the steel specimen transformed to martensite structure. The process can be adopted for surface modification techniques such as nitriding and carburising. Feasibility of anodising using this technique may also be explored.
机译:使用含水电解质等离子体作为热源已经实现了0.4%C钢的淬火硬化。将0.4%C钢(阴极)的圆柱试样(直径8毫米)放置在直径为100毫米的圆柱形不锈钢环(阳极)中的15 wt%Na_2CO_3水溶液中。在高于90 V的电压下,在样品(阴极)表面的狭窄层中放电产生连续的电解质等离子体。在施加的电压为95-140 V的范围内,水性电解质等离子体导致活性电极(阴极)在数秒内迅速加热至900-1200°C。在随后的快速冷却中,钢试样转变为马氏体结构。该方法可用于表面改性技术,例如氮化和渗碳。也可以探索使用这种技术进行阳极氧化的可行性。

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