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Formation of Cr-modified silicide coatings on a Ti-Nb-Si based ultrahigh-temperature alloy by pack cementation process

机译:通过填充胶结法在Ti-Nb-Si基超高温合金上形成Cr改性硅化物涂层

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摘要

Cr-modified silicide coatings were prepared on a Ti-Nb-Si based ultrahigh temperature alloy by Si-Cr co-deposition at 1250℃, 1350℃ and 1400℃ for 5-20h respectively. It was found that both coating structure and phase constituents changed significantly with increase in the co-deposition temperature and holding time. The outer layers in all coatings prepared at 1250℃ for 5-20h consisted of (Ti,x)_5Si_3 (X represents Nb, Cr and Hf elements). (Ti,X)_5Si_4 was found as the only phase constituent in the intermediate layers in both coatings prepared at 1250℃ for 5 and 10 h, but the intermediate layers in the coatings prepared at 1250 ℃ for 15 and 20 h were mainly composed of (Ti,X)_5Si_3 phase that was derived from the decomposition of (Ti,X)_5Si_4 phase. In the coating prepared at 1350℃ for 5 h, single (Ti,X)_5Si_3 phase was found in its outmost layer, the same as that in the outer layers in the coatings prepared at 1250℃; but in the coatings prepared at 1350℃ for 10-20 h, (Nb_(1.95)Cr_(1.05))Cr_2Si_3 ternary phase was found in the outmost layers besides (Ti,X)_5Si_3 phase. In the coatings prepared at 1400℃ for 5-20h. (Nb_(1.95)Cr_(1.05))Cr_2Si_3 ternary phase was the single phase constituent in their outmost layers. The phase transformation (Ti,X)_5Si_4→(Ti,X)_5Si_3 + Si occurred in the intermediate layers of the coatings prepared at 1350 and 1400℃ with prolonging co-deposition time, similar to the situation in the coatings prepared at 1250 ℃ for 15 and 20 h, but this transformation has been speeded up by increase in the co-deposition temperature. The transitional layers were mainly composed of (Ti,X)_5Si_3 phase in all coatings. The influence of co-deposition temperature on the diffusion ability of Cr atoms was greater than that of Si atoms in the Si-Cr co-deposition processes investigated. The growth of coatings obeyed inverse logarithmic laws at all three co-deposition temperatures. The Si-Cr co-deposition coating prepared at 1350℃ for 10 h showed a good oxidation resistance due to the formation of SiO_2 and Nb, Cr-doped TiO_2 scale after oxidation at 1250℃ for 10h.
机译:通过在1250℃,1350℃和1400℃下分别进行Si-Cr共沉积5-20h,在Ti-Nb-Si基超高温合金上制备Cr改性的硅化物涂层。发现涂层结构和相成分都随共沉积温度和保持时间的增加而显着变化。在1250℃下制备5-20h的所有涂层的外层均由(Ti,x)_5Si_3(X表示Nb,Cr和Hf元素)组成。在(12,50)制备5和10 h的涂层中,发现(Ti,X)_5Si_4是中间层中唯一的相组成,但是在1250℃制备15和20 h的涂层中的中间层主要由由(Ti,X)_5Si_4相分解得到的(Ti,X)_5Si_3相。在1350℃下制备5 h的涂层,在其最外层发现单相(Ti,X)_5Si_3,与在1250℃下制备的涂层的外层相同。但在1350℃下制备10-20 h的涂层中,除了(Ti,X)_5Si_3相外,在最外层还发现了(Nb_(1.95)Cr_(1.05))Cr_2Si_3三元相。在1400℃下制备5-20h的涂料。 (Nb_(1.95)Cr_(1.05))Cr_2Si_3三元相是它们最外层的单相组成。 (Ti,X)_5Si_4→(Ti,X)_5Si_3 + Si的相变发生在1350和1400℃制备的涂层的中间层中,并且沉积时间延长,类似于1250℃制备的涂层的情况在15和20小时内,但是通过增加共沉积温度可以加速这种转变。在所有涂层中,过渡层主要由(Ti,X)_5Si_3相组成。在研究的S​​i-Cr共沉积过程中,共沉积温度对Cr原子扩散能力的影响大于Si原子的扩散能力。在所有三个共沉积温度下,涂层的生长均服从对数逆定律。在1350℃制备10h的Si-Cr共沉积涂层,由于SiO_2和Nb的形成,在1250℃氧化10h后Cr掺杂的TiO_2垢形成,具有良好的抗氧化性能。

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