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用于冷却孔超快激光钻孔的热障涂层损伤研究

Investigation on Thermal Barrier Coating Damages for Ultrafast Laser Drilling of Cooling Holes.

作者信息

Wang Shaojian, Hu Yue, Zuo Yangjie, Yang Zenan, Jiang Ruisong

机构信息

School of Aeronautics and Astronautics, Sichuan University, Chengdu 610200, China.

Science and Technology on Advanced High Temperature Structural Materials Laboratory, Beijing Institute of Aeronautical Materials, Beijing 100095, China.

出版信息

Materials (Basel). 2023 Jul 31;16(15):5395. doi: 10.3390/ma16155395.

Abstract

To mitigate the challenges pertaining to coating damage and processing defects arising from the utilization of ultrafast laser drilling for microhole creation in thermal barrier coatings (TBCs), thereby exerting substantial influence on the long-term durability of these microholes, the investigation proposes a comprehensive methodology. It encompasses the design of a two-factor four-level full factorial experiment and the execution of experimental research on picosecond laser drilling of TBC microholes. By meticulously analyzing the morphology of the microholes and the coating interface, the damage mechanisms associated with picosecond laser drilling of TBC microholes, as well as the influence of laser process parameters on coating damage, are revealed. The findings reveal that the optimal microhole entrance quality and the lowest roughness along the hole perimeter are attained at a laser power of 12 W and a scanning speed of 320 mm/s. Moreover, at a laser power of 30 W and a scanning speed of 320 mm/s, the minimal crack length on the blunt angle side of the hole and the highest machining quality are observed.

摘要

为了缓解因利用超快激光在热障涂层(TBC)中制造微孔而产生的涂层损伤和加工缺陷相关挑战,从而对这些微孔的长期耐久性产生重大影响,本研究提出了一种综合方法。它包括设计一个双因素四水平全因子实验,并对TBC微孔进行皮秒激光钻孔的实验研究。通过仔细分析微孔和涂层界面的形态,揭示了与TBC微孔皮秒激光钻孔相关的损伤机制,以及激光工艺参数对涂层损伤的影响。研究结果表明,在激光功率为12W和扫描速度为320mm/s时,可获得最佳的微孔入口质量和沿孔周边的最低粗糙度。此外,在激光功率为30W和扫描速度为320mm/s时,观察到孔钝边侧的裂纹长度最小且加工质量最高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cf6/10419435/25270355919f/materials-16-05395-g001.jpg

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