首页|期刊导航|Journal of Advanced Ceramics|HfC–HfO_(2) modified high/superhigh temperature thermal protection coating for superior hot corrosion resistance and antioxidation performance
HfC–HfO_(2) modified high/superhigh temperature thermal protection coating for superior hot corrosion resistance and antioxidation performance
Zhiyun Ye Shuqi Wang Shuang Yu Xinrui Zhao Yongchun Zou Guoliang Chen Lei Wen Lina Zhao Guangxi Zhang Yaming Wang Jiahu Ouyang Dechang Jia Yu Zhou
Journal of Advanced Ceramics2025,Vol.14Issue(1):P.177-191,15.
Journal of Advanced Ceramics2025,Vol.14Issue(1):P.177-191,15.DOI:10.26599/JAC.2024.9221014
HfC–HfO_(2) modified high/superhigh temperature thermal protection coating for superior hot corrosion resistance and antioxidation performance
摘要
关键词
thermal protection coating/niobium alloys/hot corrosion resistance/high-temperature oxidation resistance/stress release mechanism分类
矿业与冶金引用本文复制引用
Zhiyun Ye,Shuqi Wang,Shuang Yu,Xinrui Zhao,Yongchun Zou,Guoliang Chen,Lei Wen,Lina Zhao,Guangxi Zhang,Yaming Wang,Jiahu Ouyang,Dechang Jia,Yu Zhou..HfC–HfO_(2) modified high/superhigh temperature thermal protection coating for superior hot corrosion resistance and antioxidation performance[J].Journal of Advanced Ceramics,2025,14(1):P.177-191,15.基金项目
support from the National Natural Science Foundation of China(Nos.523B2010,U21B2053,52071114,52301084,and 52001100) (Nos.523B2010,U21B2053,52071114,52301084,and 52001100)
the China Postdoctoral Science Foundation(No.2023M730843) (No.2023M730843)
the Heilongjiang Touyan Team Program,the Heilongjiang Postdoctoral Science Foundation(No.AUGA4110004823) (No.AUGA4110004823)
the Research start-up Fund by HIT are gratefully acknowledged. ()