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Effect of modification by Pt and manufacturing processes on the microstructure of two NiCoCrAlYTa bond coatings intended for thermal barrier system applications

机译:Pt改性和制造工艺对两种用于热障系统应用的NiCoCrAlYTa粘结涂层的微观结构的影响

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摘要

Few studies have already shown that Pt influences the diffusion of aluminium and therefore the microstructure of β-NiAl or γ-Ni/γ′-Ni3Al materials. Besides, several works have revealed that the addition of Pt to MCrAlY (M = Ni and/or Co) improves the oxidation/corrosion behavior of the material. Nevertheless, very few data have been published on the microstructure of such modified MCrAlYs. Then, the present work deals with the addition of Pt to two NiCoCrAlYTa coatings that differ by their manufacturing process. Characterization is carried out in order to understand the influence of Pt diffusion but also the effect of the manufacturing process on the final microstructure. The collected data from XRD, SEM, EDS and TEM analyses reveal that an Al uphill diffusion occurs during heat treatment due to the presence of the Pt layer. The Al diffusion from the NiCoCrAlYTa bulk to the Pt-rich surface is so extensive that no more β-phase remains within the core of the coating. Pt may also dissolve TaC, precipitates largely present in the non-modified NiCoCrAlYTa coatings. In addition to Pt, the microstructure of the NiCoCrAlYTa prior to Pt deposition and heat treatment, dependent on the NiCoCrAlYTa manufacturing process, greatly influences the final microstructure.
机译:很少有研究表明,Pt影响铝的扩散,从而影响β-NiAl或γ-Ni/γ'-Ni3Al材料的微观结构。此外,一些工作表明,向MCrAlY(M = Ni和/或Co)中添加Pt可以改善材料的氧化/腐蚀行为。然而,关于这种修饰的MCrAlYs的微观结构的数据很少公布。然后,本工作涉及将Pt添加到两种NiCoCrAlYTa涂层中,这两种涂层的制造工艺不同。进行表征是为了了解Pt扩散的影响以及制造过程对最终微观结构的影响。从XRD,SEM,EDS和TEM分析收集的数据表明,由于存在Pt层,在热处理过程中会发生Al上坡扩散。 Al从NiCoCrAlYTa块体扩散到富Pt的表面如此广泛,以至于没有更多的β相残留在涂层的核内。 Pt也可能溶解TaC,沉淀物大量存在于未改性的NiCoCrAlYTa涂层中。除Pt以外,取决于NiCoCrAlYTa制造工艺,在Pt沉积和热处理之前的NiCoCrAlYTa的微观结构会极大地影响最终的微观结构。

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