Laser & Optoelectronics Progress, Volume. 52, Issue 12, 120004(2015)

Research Progress on Improving the High-Temperature Oxidation Resistance of MCrAlY Coatings

Zhou Shengfeng1、*, Liu Jia1, Xiong Zheng2, Dai Xiaoqin3, Li Linghua1, Zhang Zezhong1, and Gu Menghao1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    MCrAlY coatings prepared by conventional methods have polycrystalline structure, micropores and cracks. The high-temperature oxidation resistance of MCrAlY coatings needs to be improved. Many measurements have been put forward by domestic and foreign researchers to improve their high-temperature oxidation resistance. These methods are reviewed and the related problems are also analyzed. Moreover, the method on cryomilling inducing the columnar growth of MCrAlY coatings by laser-induction hybrid cladding (LIHRC) is put forward. NiCr powder (or NiCr powder, Co powder), Al powder and Y2O3 powder are treated by mechanical alloying in high-energy milling apparatus to obtain the cladding powder consisting of γ-Ni/γ′-Ni3Al with large amounts of internal defects. The cryomilled MCrAlY powder presents the polygonal morphology. Preheating the substrate by induction heater is combined with laser cladding simultaneously. This method can not only obtain the crack-free MCrAlY coatings, but also induce the columnar growth in MCrAlY coatings. The high-temperature oxidation resistance of MCrAlY coating is improved significantly.

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    Zhou Shengfeng, Liu Jia, Xiong Zheng, Dai Xiaoqin, Li Linghua, Zhang Zezhong, Gu Menghao. Research Progress on Improving the High-Temperature Oxidation Resistance of MCrAlY Coatings[J]. Laser & Optoelectronics Progress, 2015, 52(12): 120004

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    Paper Information

    Category: Reviews

    Received: Apr. 1, 2015

    Accepted: --

    Published Online: Dec. 8, 2015

    The Author Email: Shengfeng Zhou (zhousf1228@163.com)

    DOI:10.3788/lop52.120004

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