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Microstructure and hot corrosion behavior of the Ni-based superalloy GH202 treated by laser shock processing

材料科学 微观结构 电子背散射衍射 扫描电子显微镜 高温合金 腐蚀 残余应力 散裂 透射电子显微镜 冶金 复合材料 纳米技术 量子力学 物理 中子
作者
Jiangdong Cao,Junsong Zhang,Yinqun Hua,Ruifang Chen,Zhibao Li,Yunxia Ye
出处
期刊:Materials Characterization [Elsevier]
卷期号:125: 67-75 被引量:41
标识
DOI:10.1016/j.matchar.2017.01.021
摘要

The effects of laser shock processing on microstructure, the residual stress, and hot corrosion behavior of the Ni-based superalloy GH202 were investigated. The microstructures of GH202 before and after laser shock processing (LSP) were characterized by electron backscattered diffraction (EBSD) and transmission electron microscope (TEM). A large number of crystal defects (twins, dislocation arrays, and high dense tangles) were generated on the surface of GH202 treated with LSP. The cross-sectional compressive residual stress and micro-hardness of specimens treated by LSP were improved significantly. The corrosion kinetics of GH202 with or without LSP treatment at 800 °C and 900 °C were investigated. Analysis by X-ray diffraction (XRD) revealed that the corrosion products mainly consist of Cr2O3, TiO2, Al2O3, NiO, CrS, Ni3S2, and Na2CrO4. The surface and cross-section morphologies were observed by scanning electron microscope (SEM) combined with energy dispersive spectroscopy (EDS). The results confirmed that the crystal defects induced by LSP promotes the creation of diffusion paths for elements (Cr, Al, and Ti), allowing the formation of tiny homogeneous oxidation films in a very short time. Additionally, the spallation of oxidation film on the treated specimens was alleviated significantly. Overall, the hot corrosion resistance of Ni-based GH202 induced by LSP was improved in Na2SO4 and NaCl molten salt from 800 °C to 900 °C.

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