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Effect of heat treatment on coating mlcrostructure applied by high activity diffusion process on IN738LC

机译:热处理对IN738LC上高活性扩散工艺施加的涂层微结构的影响

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摘要

To study the effect of heat treatment on the microstructure and composition of high activity aluminide diffusion coating, a number of IN738LC specimens were coated at 850 and 1050°C via high activity aluminising process for 4 h and then heat treated at 1120°C for 2 h. Then, the microstructures of the coatings were examined via X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). For the high temperature process, the thickness of the outer layer of the coating increased basically due to the inward diffusion of aluminium, which demonstrated that a chemical potential gradient exists for the inward diffusion of aluminium even after 4 h of inward diffusion at 1050°C. The EDS results provided the evidence that the partition of interdiffusion zone into two separate zones could be due to the outward diffusion of chromium. Surprisingly, the decomposition of the precipitates formed in the first step was observed, indicating that those precipitates were not stable.
机译:为了研究热处理对高活性铝化物扩散涂层的微观结构和成分的影响,通过高活性渗铝工艺在850和1050°C下将许多IN738LC标本进行了4 h涂层,然后在1120°C下进行了2次热处理。 H。然后,通过X射线衍射(XRD),扫描电子显微镜(SEM)和能量色散谱(EDS)检查涂层的微观结构。对于高温工艺,涂层的外层厚度基本上由于铝的向内扩散而增加,这表明即使在1050°C向内扩散4 h后,铝向内扩散仍存在化学势梯度。 EDS结果提供了证据,将互扩散区划分为两个单独的区可能是由于铬的向外扩散。令人惊讶地,观察到在第一步中形成的沉淀物的分解,表明那些沉淀物是不稳定的。

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