期刊论文详细信息
Progress in Natural Science: Materials International
Thermal damage and ablation behavior of plasma sprayed Ba2SmTaO6 coatings irradiated by high power continuous laser
Zhuang Ma1  Lihong Gao1  Jiayi Zheng2  Yanbo Liu2  Alexandr A. Rogachev2 
[1] National Key Laboratory of Science and Technology on Materials Under Shock and Impact, No.5 Yard Zhongguancun South Street Haidian District, Beijing, 100081, China;School of Materials Science and Engineering, Beijing Institute of Technology, No.5 Yard Zhongguancun South Street Haidian District, Beijing, 100081, China;
关键词: Irradiation behavior;    Continuous laser;    Plasma spray;    Thermal barrier coating;   
DOI  :  
来源: DOAJ
【 摘 要 】

Ba2SmTaO6 laser protection coatings of ≈200 ​μm thickness were deposited onto stainless steel surfaces by air plasma spraying, and the laser irradiation resistance of the coatings was investigated. For laser irradiation with a laser power density less than 1000 ​W/cm2, the coatings kept intact. For a laser power density exceeding 1500 ​W/cm2, the Ba2SmTaO6 coatings underwent recrystallization, grain growth occurred, and certain spray morphology features disappeared by melting. In the case of a laser power density of 2000 ​W/cm2 applied for 10s, the incident laser parameter was beyond the coatings protection threshold, and the coating peeled off. The samples back surface temperature kept unchanged within the first 1s of laser irradiation, indicating that Ba2SmTaO6 coatings have excellent laser protection capability and can limit the rise of the substrate temperature. However, the low thermal conductivity of Ba2SmTaO6 leads to a detrimental laser energy concentration at the beginning of the laser irradiation period on the sample front surface, resulting in a rapid increase of the surface temperature up to the melting point.

【 授权许可】

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