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首页> 外文期刊>Journal of Nondestructive Evaluation >Measurement of Interfacial Fracture Toughness of Surface Coatings Using Pulsed-Laser-Induced Ultrasonic Waves
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Measurement of Interfacial Fracture Toughness of Surface Coatings Using Pulsed-Laser-Induced Ultrasonic Waves

机译:使用脉冲激光诱导的超声波测量表面涂层的界面断裂韧性

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This research develops a new technique for the measurement of interfacial fracture toughness of films/surface coatings using laser-induced ultrasonic waves. Using pulsed laser ablation on the bottom substrate surface, strong stress waves are generated leading to interfacial fractures and coating delamination. Simultaneously, a laser ultrasonic interferometer is used to measure the normal (out-of-plane) displacement of the top surface coating in order to detect coating delamination in a non-destructive manner. We can thus determine the critical laser energy for delamination, yielding the critical stress (that is, the interfacial strength). Subsequently, to examine the interfacial fracture toughness, additional pulsed laser irradiation is applied to a pre-delaminated specimen to show that the delamination area expands. This type of interfacial crack growth can be visualized using laser ultrasonic scanning. Furthermore, the calculation of elastic wave propagation was carried out using a finite-difference time-domain method) in order to accurately estimate the interfacial stress field. In this calculation, the stress distribution around the initial delamination is calculated to obtain the stress intensity factor. Based on the experimental and computational results, interfacial fracture toughness can be quantitatively evaluated. Since this technique relies on a two-laser system in a non-contact approach, it may be useful for a quantitative evaluation of adhesion/bonding quality (including both interfacial fracture strength and toughness) in various environments.
机译:该研究开发了一种使用激光诱导的超声波测量薄膜/表面涂层的界面断裂韧性的新技术。在底部基板表面上使用脉冲激光烧蚀,产生强应力波导致界面裂缝和涂层分层。同时,激光超声干涉仪用于测量顶表面涂层的正常(平面外)位移,以便以非破坏性方式检测涂覆分层。因此,我们可以确定分层的临界激光能量,产生临界应力(即界面强度)。随后,为了检查界面断裂韧性,将额外的脉冲激光照射施加到预分层的标本中,以表明分层区域膨胀。使用激光超声波扫描可以可视化这种类型的界面裂纹生长。此外,使用有限差差时域法进行弹性波传播的计算,以便精确估计界面应力场。在该计算中,计算初始分层周围的应力分布以获得应力强度因子。基于实验和计算结果,可以定量评估界面断裂韧性。由于该技术依赖于非接触方法的双激光系统,因此可以有用的是在各种环境中定量评估粘合/粘合质量(包括界面断裂强度和韧性)的定量评估。

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