房志刚, 王盘鑫, 赖和怡. 热等静压FGH95合金组织结构的研究[J]. 工程科学学报, 1987, 9(S1): 104-109. DOI: 10.13374/j.issn1001-053x.1987.s1.014
引用本文: 房志刚, 王盘鑫, 赖和怡. 热等静压FGH95合金组织结构的研究[J]. 工程科学学报, 1987, 9(S1): 104-109. DOI: 10.13374/j.issn1001-053x.1987.s1.014
Fang Zhigang, Wang Panxin, Lai Heyi. Microstructure Study on HIPed FGH95 Superalloy[J]. Chinese Journal of Engineering, 1987, 9(S1): 104-109. DOI: 10.13374/j.issn1001-053x.1987.s1.014
Citation: Fang Zhigang, Wang Panxin, Lai Heyi. Microstructure Study on HIPed FGH95 Superalloy[J]. Chinese Journal of Engineering, 1987, 9(S1): 104-109. DOI: 10.13374/j.issn1001-053x.1987.s1.014

热等静压FGH95合金组织结构的研究

Microstructure Study on HIPed FGH95 Superalloy

  • 摘要: 国外应用Rene'95粉末高温合金已有10余年历史。本文研究在不同温度热等静压和热处理之后FGH95合金的显微组织结构。应用俄歇电子能谱和X-线电子能谱分析仪研究颗粒表面偏析和表面组织结构。采用光学显微镜、扫描电镜、透射电源观察热等静压之后合金显微组织结大构的变化,特别用扫描透射电镜详细观察萃取复型组织和金属薄模样品。证明当粉末在高于1053℃热等静压时,MC碳化物沿原始颗粒边界离散地析出,并且碳化物颗粒的间距远大于碳化物尺寸。时效热处理后,沿原始颗粒边界的多数MC碳化物转变成沿原始颗粒边界半连续分布的薄膜状M23C6型碳化物。发现γ'相的溶解温度与热等静压压力有关。俄歇能谱和X-线电子能谱分析结果表明:在粉末颗粒表面存在氧、碳、铬、钛和硫等元素的偏析,以及颗粒表面部分被氧化。

     

    Abstract: FOH95 alloy has been put into use for more than ten years.The present work has studied the microstructure of FGH95 alloy after HIPing and heat treatment at different temperatures. The particle surface segregation and surface structure were investigated by using AES and ESCA. The changes of all-microstructure during HIPing were investigated by microscope, SEM, TEM and particularly by a detailed observationof STEM on extraction replica and metallic thin foils. It wss evidenced that when the powder was HIPed at above 1050℃ MC carbides precipitated discretely at ppb, and the space between two particles is much greater than the size of these carbides. After aging treatment a lot of MC carbides precipitated at ppb would be converted to film like M23C6 carbides, which is semi-continuously distributed at the ppb.The solvus temperature of γ'-phase was found to be affected by the HIPing pressure.The results of AES and ESCA analysis showed that there were segregation elements such as O, C, Cr, Ti and S on the powder particle surface, and that the particle surfaces were partialy oxidized.

     

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