900°C时42%WC-42%Cr3C2-16%Ni HVOF和笼罩等离子喷涂涂层的稳态组成和组织

S. Matthews, Francesca O’Neil
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摘要

传统上,大块WC和cr3c2基碳化物成分是相互独立使用的。然而,最近的研究已经开始探索在相同的复合/硬质合金涂层体系中将这些碳化物结合在一起。这项研究建立在早期工作的基础上,在“低”、“中”和“高”热输入条件下喷涂42%wt% WC-42%wt% Cr3C2- 16%wt% Ni涂层,以评估其在900°C空气中热处理长达30天后的成分和微观结构。采用HVOF、Ar- he和Ar- H2等离子体分别在625合金基体上涂覆Ni20Cr粘结层和面涂层。利用XRD谱图的Rietveld峰拟合定量了涂层成分和晶格参数。用横截面背散射电子显微图对其微观结构进行了分析。在前5天内发生快速阶段发展,之后成分和微观结构保持稳定。在900°C下加热30天后,合金的显微组织仍保持了极细的亚微米级晶粒尺寸,而碳化物相则表现出高度的亚稳合金化。讨论了涂层的组成,并提出了一种解释发展速度和整体亚稳微观结构的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Steady-State Composition and Microstructure of 42%WC-42%Cr3C2-16%Ni HVOF and Shrouded Plasma Sprayed Coatings at 900°C
Conventionally, bulk WC and Cr3C2-based carbide compositions have been used independently of each other. However, recent investigations have begun to explore combining these carbides together within the same composite/hardmetal coating system. This research builds on earlier work characterising 42%wt% WC-42%wt% Cr3C2- 16%wt% Ni coatings sprayed under “low”, “medium” and “high” thermal input conditions, to assess their compositions and microstructures after heat treatment in air at 900°C for up to 30 days. Coatings were deposited by HVOF, Ar-He and Ar- H2 shrouded plasmas respectively, onto Alloy 625 substrates with Ni20Cr bond-coats and top-coats. The coating compositions and lattice parameters were quantified by Rietveld peak fitting of XRD patterns. The microstructures were analysed from cross sectional backscatter electron micrographs. Rapid phase development occurred within the first five days, beyond which the compositions and microstructures remained stable. The microstructures retained extremely fine, sub-micron grain sizes, while the carbide phases exhibited high degrees of metastable alloying, even after 30 days at 900°C. The coating compositions are discussed, and a mechanism proposed to account for the rate of development and overall metastable microstructure.
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