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Surface Hardening of M2 High Speed Steel Using 50 Hz Pulsed DC Source With Nitrogen as a Base Gas

机译:使用氮气作为基础气体的50 Hz脉冲直流电源对M2高速钢进行表面硬化

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摘要

Plasma processing provides a useful tool for modifying the metallic and non-metallic surfaces. Plasma ion nitriding of M2 high-speed steel was carried out by using a low pressure plasma chamber and a 50 Hz pulsed DC source. By keeping the nitrogen-hydrogen (60:40) mixture pressure constant at 3 mbar and varying the plasma treatment time from 1 to 4 h, the nitriding was done in the abnormal glow region at 600 degrees C substrate temperature. The resultant changes in surface properties of the plasma treated samples were investigated by using X-ray diffraction, scanning electron microscopy, and Vickers's microhardness testing. These investigations confirmed the formation of a compound layer on plasma exposed surface. The layer thickness was initially increased with nitriding time and then started to decrease after 2 h treatment. In X-ray diffraction data, a down-shift in the original diffraction peaks was noticed which confirms the nitrogen diffusion and formation of compound layer on the exposed surface. A significant improvement in surface hardness of tool steel was also seen especially after 2 h of plasma treatment.
机译:等离子体处理为修改金属和非金属表面提供了有用的工具。 M2高速钢的等离子体离子渗氮是通过使用低压等离子体室和50 Hz脉冲直流电源进行的。通过将氮-氢(60:40)混合物的压力恒定保持在3 mbar并将等离子处理时间从1更改为4 h,在衬底温度为600摄氏度的异常辉光区域进行了氮化处理。通过使用X射线衍射,扫描电子显微镜和维氏显微硬度测试研究了等离子体处理过的样品的表面性能的变化。这些研究证实在等离子体暴露的表面上形成化合物层。层厚度最初随氮化时间增加,然后在2 h处理后开始减小。在X射线衍射数据中,注意到原始衍射峰的下移,这证实了氮扩散和在暴露表面上形成化合物层。特别是在等离子处理2小时后,工具钢的表面硬度也得到了显着改善。

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