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Acoustic emission monitoring and damage mode discrimination of APS thermal barrier coatings under high temperature CMAS corrosion

机译:高温CMAS腐蚀下APS热障涂层的声发射监测和损伤模式判别

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Molten calcium-magnesium-alumino-silicate (CMAS) corrosion is the most dangerous failure mode for thermal barrier coatings (TBCs). The real-time monitoring and mode discrimination of the corrosion failure process are desirable to understand the corrosion failure mechanism of TBCs. In this paper, the failure mechanism of the TBCs subjected to molten CMAS attack is investigated with acoustic emission (AE). Based on the number and amplitude, and compared to the substrate and the TBCs without CMAS, more serious damage is found to occur in the TBCs attacked by the molten CMAS. Possible failure modes are discriminated by wavelet analysis, and the results indicate that there are four distinct frequency bands corresponding to surface vertical cracks, sliding interface cracks, opening interface cracks, and substrate deformation in the TBCs suffered high temperature molten CMAS corrosion. In fact, the frequency band of sliding interface crack is associated with two crack types, including the crack at the YSZ/BC interface and the parallel crack in the ceramic coating induced by the compressive stress. These two cracks dominate the whole failure process, and ultimately result in the spallation of coatings. (C) 2016 Elsevier B.V. All rights reserved.
机译:钙镁铝硅酸盐(CMAS)熔融是热障涂层(TBC)的最危险的失效模式。腐蚀破坏过程的实时监控和模式判别是了解TBC腐蚀破坏机理的理想方法。本文利用声发射(AE)研究了遭受熔融CMAS攻击的TBC的失效机理。基于数量和振幅,与没有CMAS的基板和TBC相比,发现在更严重的损坏中,受熔融CMAS侵蚀的TBC发生了。通过小波分析来识别可能的失效模式,结果表明在高温熔融的CMAS腐蚀下,TBC中存在着与表面垂直裂纹,滑动界面裂纹,开口界面裂纹和基体变形相对应的四个不同的频带。实际上,滑动界面裂纹的频带与两种裂纹类型有关,包括YSZ / BC界面的裂纹和由压缩应力引起的陶瓷涂层中的平行裂纹。这两个裂纹在整个破坏过程中占主导地位,最终导致涂层剥落。 (C)2016 Elsevier B.V.保留所有权利。

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