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首页> 外文期刊>Journal of Materials Engineering and Performance >The Response of Nitriding Chemistry to Different Initial Gas Compositions
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The Response of Nitriding Chemistry to Different Initial Gas Compositions

机译:渗氮化学对不同初始气体成分的响应

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The response of the kinetics of surface-catalyzed reactions to different initial conditions in a gas nitriding furnace has been studied. The predictions are made under the conditions with both high and low concentrations of ammonia and a process temperature of around 520 A degrees C. Results are presented in temporal variations of gas temperature and concentrations and coverages of surface species. It has been shown that in the composition where NH3 content is richer, there is a strong possibility of developing substantially higher N-ad coverage and so diffusion into the material. Reducing the ammonia content, which means an increase in the proportion of N-2 in the initial mixture, leads to a quicker saturation of the furnace atmosphere to the desorption of the reaction product, N-2, which eventually suppresses the advance of reaction in the forward direction. Low coverage values of H-ad have proved that the adsorbed hydrogen is the most unstable species on the surface.
机译:研究了气体氮化炉中表面催化反应动力学对不同初始条件的响应。预测是在氨浓度高和低且工艺温度约为520 A的条件下进行的。结果显示了气体温度随时间变化以及浓度和表面物质覆盖率的时间变化。已经显示出,在NH 3含量更丰富的组合物中,很可能发展出更高的N-ad覆盖率并因此扩散到材料中。降低氨含量,这意味着增加初始混合物中N-2的比例,会导致炉内气氛更快饱和,并使反应产物N-2解吸,最终抑制了反应的进行。前进方向。 H-ad的低覆盖率值已证明吸附的氢是表面上最不稳定的物种。

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