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Application of Acoustic Emission Technology for Quantitative Characterization of Plasma-Sprayed Coatings Subjected to Bending Fatigue Tests

机译:声发射技术在经受弯曲疲劳试验的血浆喷涂涂层定量表征中的应用

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摘要

Plasma-sprayed coatings are widely used in industry, e.g., in applications subject to high wear and corrosion damage, or requiring thermal insulation. However, the failure behavior of such coatings has a great influence on the service safety of mechanical parts. Acoustic emission (AE) has attracted much attention due to its proven usefulness for real-time monitoring of damage evolution and high sensitivity to fracture sources. In this study, the damage evolution behavior of a plasma-sprayed coating subjected to three-point bending fatigue tests was monitored using the AE method. A method combining parameterized, Fourier, and wavelet analysis was used to distinguish the damage modes in the coating. The analysis results revealed two crack modes (surface vertical crack and interface crack) with two different peak frequencies. A finite element method was used to quantify the fracture stress and propagation behavior of cracks, revealing that the thickness of the coating had a strong influence on its spalling.
机译:等离子体喷涂的涂层广泛用于工业,例如,在经受高磨损和腐蚀损坏的应用中,或需要隔热。然而,这种涂层的失效行为对机械部件的服务安全性具有很大影响。声发射(AE)由于其经过验证的实时监测损伤演化和对骨折来源的高敏感性而受到了巨大的关注。在该研究中,使用AE方法监测对三点弯曲疲劳试验进行三点弯曲疲劳试验的血浆喷涂涂层的损伤演化行为。使用组合参数化,傅里叶和小波分析的方法来区分涂层中的损坏模式。分析结果显示出具有两个不同峰值频率的两个裂缝模式(表面垂直裂缝和界面裂缝)。有限元方法用于量化裂缝的断裂应力和传播行为,揭示涂层的厚度对其剥落产生了强烈影响。

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