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Stress Induced Anisotropic Diffusion During Plasma-assisted Nitriding of a Ni-based Alloy

机译:镍基合金等离子体辅助氮化过程中的应力诱导各向异性扩散

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A special phenomenon, anisotropic diffusion is observed during plasma-assisted nitriding of a nickel-based alloy, Inconel 690. The diffusion rate is found to be higher in grains with an orientation close to <100> than in those grains with an orientation close to <111>. A model is established basing on the anisotropic strain and stress during nitriding so as to explain this phenomenon. It is shown that, the anisotropic stress in this f.c.c. alloy causes the different activation energy of N on various grain orientations, and finally result in the anisotropic diffusion rate of N in the alloy. Based on this model, a good agreement between calculated results and experimental results is obtained for temperatures below 400 °C.
机译:一种特殊的现象,在镍基合金Inconel 690的等离子体辅助氮化过程中观察到各向异性扩散。发现取向接近<100>的晶粒中的扩散速率高于取向接近<100>的晶粒中的扩散速率。 <111>。基于渗氮过程中的各向异性应变和应力建立了模型,以解释这种现象。结果表明,该f.c.c.中的各向异性应力。合金在不同的晶粒取向上会导致N的活化能不同,最终导致N在合金中的各向异性扩散速率。基于该模型,在低于400°C的温度下,计算结果与实验结果之间取得了良好的一致性。

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