Microstructure evolution and phase transformation in quaternary Co-9Al-10W-4Mo alloy during heat treatment

Lihui Zhang, Zhijun Sun, Yuan Li, Y. Zhao, Hao Zhao
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Abstract

. Alloy Co-9Al-10W-4Mo was investigated on the microstructure and phase transformation, the following results were obtained. Eutectic Crystal containing the µ phase and B2 phase appeared as cast alloy, and solid solution treatment at 1300 ºC for 8h homogenized the structure to form the µ phase for supersaturation of W. Following aging at 900 ºC for 50 h induces the rod-like DO19 phase precipitation in the γ / γ ´ matrix structure. DO19 phase appeared between µ / γ interface after aging at 900 ºC for 300 h and 600 h and promoted more transformation from the µ phase to DO19 phase. Diffusion of W/Mo between the µ phase and matrix after long term aging is the main factor that induces phase transformation. Addition of Mo to Co-9Al-10W alloy prompts precipitation of the µ phase, and Mo was a W-like element. Formation of the DO19 phase in the interface decreases the interface energy induced by misfit between µ / γ crystallographic parameter.
四元Co-9Al-10W-4Mo合金热处理过程中的组织演变与相变
. 对Co-9Al-10W-4Mo合金的显微组织和相变进行了研究,得到了以下结果:含有µ相和B2相的共晶以铸态合金形式出现,1300℃固溶处理8h使组织均匀化,形成w过饱和的µ相。900℃时效50 h后,在γ / γ´基体组织中析出棒状DO19相。900℃时效300 h和600 h后,μ / γ界面之间出现DO19相,促进了μ相向DO19相的转变。长期时效后W/Mo在微相和基体之间的扩散是诱发相变的主要因素。在Co-9Al-10W合金中添加Mo可促进µ相的析出,Mo为类w元素。界面中DO19相的形成降低了μ / γ晶体参数不匹配引起的界面能。
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