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首页> 外文期刊>Surface Engineering >EFFECT OF CATHODE WORKPIECE SURFACE EMISSIVITY ON TEMPERATURE UNIFORMITY IN PLASMA NITRIDING
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EFFECT OF CATHODE WORKPIECE SURFACE EMISSIVITY ON TEMPERATURE UNIFORMITY IN PLASMA NITRIDING

机译:等离子体渗氮过程中阴极工件表面发射率对温度均匀性的影响

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摘要

The goal of this paper is to demonstrate that glow discharge plasma heating of the cathode workpiece is different from radiant heating under vacuum, given the same pressure and gas composition, and that the final temperature obtained by the workpiece and the rate of heating depend on the workpiece emissivity. Towards this goal, several glow discharge heating tests were carried out using a number of geometrically identical carbon and austenitic steel samples, each prepared so as to generate differing surface emissivity values. These tests clearly demonstrate that samples with lower emissivity heat faster and to a higher temperature than do samples with higher emissivity values. Furthermore, several observations are made about the change in workpiece emissivity. For example, in situ measurements show that emissivity increases during plasma nitriding, and the emissivity change is most rapid during ramping to final temperature. It is further observed, that the effect of plasma nitriding on emissivity is stronger for austenitic stainless steel than for carbon steel, and that powder metal samples, nitrided at a higher temperature than the other samples, achieve the highest emissivity values. SEI525
机译:本文的目的是证明在给定相同的压力和气体成分的情况下,阴极工件的辉光放电等离子体加热与真空下的辐射加热不同,并且工件获得的最终温度和加热速率取决于工件的加热速率。工件发射率。为了实现这一目标,使用了许多几何形状相同的碳和奥氏体钢样品进行了几次辉光放电加热测试,每种样品的制备均产生不同的表面发射率值。这些测试清楚地表明,与具有较高发射率值的样品相比,具有较低发射率的样品会更快地加热到更高的温度。此外,对工件发射率的变化进行了一些观察。例如,原位测量表明,在等离子渗氮过程中,发射率会增加,而在逐渐上升到最终温度时,发射率的变化最快。进一步观察到,奥氏体不锈钢的等离子体渗氮对发射率的影响比碳钢强,并且在比其他样品更高的温度下氮化的粉末金属样品达到最高的发射率值。 SEI525

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