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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Prealuminizing Diffusion Treatment on Microstructural Evolution of High-Activity Pt-Aluminide Coatings
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Effect of Prealuminizing Diffusion Treatment on Microstructural Evolution of High-Activity Pt-Aluminide Coatings

机译:铝预扩散处理对高活性铂铝化物涂层微观结构演变的影响

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The effect of prealuminizing (or prior) diffusion treatment on the evolution of Pt-aluminide coatings on the Ni-based superalloy CM-247 has been studied by using a single-step, high-activity aluminizing process. Coatings generated without any prior diffusion treatment, as well as those formed by adopting two extreme prior-diffusion schedules (at 850 deg C for 0.5 hours and at 1034 deg C for S hours), were investigated by analyzing the coating structures at various stages of aluminizing. When the dilution of the Pt layer, caused by its interdiffusion with the substrate during the prior diffusion treatment, is only marginal (as in the case of no prior diffusion and diffusion at 850 deg C for 0.5 hours), the equilibrium Pt-aluminide coating structure evolves through the formation of two transient layers during the initial stages of aluminizing. In contrast, for diffusion at 1034 deg C for S hours, which results in extensive dilution of the Pt layer, the two-phase equilibrium structure (PtAl_2 in a matrix of NiAl) in the outer layer of the coating is found to develop during very early stages of aluminizing and remains unchanged, even over extended periods of aluminizing. Further, in the case of prior diffusion at 1034 deg C for S hours, Pt is found to remain distributed to a greater extent over the entire thickness of the coating than in the cases of limited prior diffusion treatment. The present findings underline the significance of the nature of the prior-diffusion schedule on the microstructural evolution of Pt-aluminide coatings. It has also been found that a prealuminizing diffusion treatment is particularly important for Ptaluminide coatings from the point of view of coating adhesion to the substrate.
机译:通过使用一步高活性铝化工艺研究了预铝化(或先期)扩散处理对Ni基高温合金CM-247上Pt铝化物涂层演变的影响。通过分析不同阶段的涂层结构来研究未经任何先扩散处理而产生的涂层,以及采用两种极端先扩散方案(在850℃下持续0.5小时,在1034℃下保持S小时)形成的涂层。渗铝当在先前的扩散处理过程中由于Pt层与基材的相互扩散而导致的Pt层的稀释仅是微不足道的(如在850°C下未进行事先扩散和0.5小时的扩散的情况下),则平衡的Pt-铝化物涂层在渗铝的初始阶段,通过形成两个过渡层来形成结构。相反,为了在1034℃下扩散S小时,这会导致Pt层的大量稀释,发现在涂层的外层中会形成涂层的外层两相平衡结构(NiAl基体中的PtAl_2)。镀铝的早期阶段,即使经过长时间的镀铝,也保持不变。此外,在1034℃下先扩散S小时的情况下,发现Pt在有限的先扩散处理的情况下在涂层的整个厚度上保持更大程度的分布。本发现强调了先扩散时间表的性质对铂铝化物涂层的微观结构演变的重要性。还已经发现,从涂层对基材的粘附性的观点来看,预铝化扩散处理对于普他米奈德涂层特别重要。

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