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首页> 外文期刊>Surface & Coatings Technology >Y and Al modified silicide coatings on an Nb-Ti-Si based ultrahigh temperature alloy prepared by pack cementation process
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Y and Al modified silicide coatings on an Nb-Ti-Si based ultrahigh temperature alloy prepared by pack cementation process

机译:通过填充胶结工艺制备的Nb-Ti-Si基超高温合金上的Y和Al改性硅化物涂层

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摘要

Y and Al modified silicide coatings were prepared on an Nb-Ti-Si based ultrahigh temperature alloy by co-depositing Si, Al and Y at 1150°C for up to 10h, respectively. The deposition of Al and Si occurred in a sequential manner during the pack cementation process. At the initial stage, the element deposited was primarily Al with very little Si and an Al_3(Nb,X) (X represents Ti, Cr and Hf elements) layer formed preferentially. After a short period of holding time, Si started depositing and Si-Al co-deposition took place. However, this Si-Al co-deposition period was not long. When the holding time was longer than 1h at 1150°C, Si deposition dominated the coating growth process. The coating growth kinetics at 1150°C followed a parabolic law. The coating prepared at 1150°C for 10h had a multi-layer structure, with a thick (Nb,X)Si_2 outer layer, a thin (Ti,Nb)_5Si_4 middle layer and an Al, Cr-rich inner layer. The coating could protect the Nb-Ti-Si based alloy from oxidation at 1250°C in air for at least 100h. The excellent oxidation resistance of the coating was attributed to the formation of a dense scale mainly consisted of TiO_2, SiO_2 and Al_2O_3.
机译:在Nb-Ti-Si基超高温合金上分别通过在1150°C下共沉积Si,Al和Y长达10h来制备Y和Al改性的硅化物涂层。在填充胶结过程中,Al和Si的沉积顺序发生。在初始阶段,沉积的元素主要是Al,Si很少,并且优先形成Al_3(Nb,X)(X表示Ti,Cr和Hf元素)层。短暂的保持时间后,Si开始沉积,并进行了Si-Al共沉积。但是,该Si-Al共沉积期不长。当在1150°C下保持时间长于1h时,Si沉积主导了涂层的生长过程。 1150°C下的涂层生长动力学遵循抛物线定律。在1150°C下制备10h的涂层具有多层结构,具有厚的(Nb,X)Si_2外层,薄的(Ti,Nb)_5Si_4中间层和富Al,Cr的内层。该涂层可以保护Nb-Ti-Si基合金在空气中于1250°C氧化至少100h。涂层的优异抗氧化性归因于形成致密的氧化皮,主要由TiO_2,SiO_2和Al_2O_3组成。

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