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首页> 外文期刊>Smart Materials & Structures >Detection of multiple thin surface cracks using vibrothermography with low-power piezoceramic-based ultrasonic actuator-a numerical study with experimental verification
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Detection of multiple thin surface cracks using vibrothermography with low-power piezoceramic-based ultrasonic actuator-a numerical study with experimental verification

机译:基于低功率压电陶瓷的超声激励器的振动热成像检测多个薄表面裂纹-带有实验验证的数值研究

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摘要

Ultrasonic vibrations in cracked structures generate heat at the location of defects mainly due to frictional rubbing and viscoelastic losses at the defects. Vibrothermography is an effective nondestructive evaluation method which uses infrared imaging (IR) techniques to locate defects such as cracks and delaminations by detecting the heat generated at the defects. In this paper a coupled thermo-electro-mechanical analysis with the use of implicit finite element method was used to simulate a low power (10W) piezoceramic-based ultrasonic actuator and the corresponding heat generation in a metallic plate with multiple surface cracks. Numerical results show that the finite element software Abaqus can be used to simultaneously model the electrical properties of the actuator, the ultrasonic waves propagating within the plate, as well as the thermal properties of the plate. Obtained numerical results demonstrate the ability of these low power transducers in detecting multiple cracks in the simulated aluminum plate. The validity of the numerical simulations was verified through experimental studies on a physical aluminum plate with multiple surface cracks while the same low power piezoceramic stack actuator was used to excite the plate and generate heat at the cracks. An excellent qualitative agreement exists between the experimental results and the numerical simulation's results.
机译:裂纹结构中的超声波振动会在缺陷处产生热量,这主要是由于缺陷处的摩擦摩擦和粘弹性损失造成的。振动热成像是一种有效的非破坏性评估方法,该方法使用红外成像(IR)技术通过检测缺陷处产生的热量来定位缺陷(例如裂纹和分层)。本文采用隐式有限元方法进行热电-机械耦合分析,以模拟低功率(10W)压电陶瓷基超声激励器以及在具有多个表面裂纹的金属板上产生相应的热量。数值结果表明,有限元软件Abaqus可用于同时建模执行器的电性能,在板内传播的超声波以及板的热性能。获得的数值结果证明了这些低功率传感器在检测模拟铝板上的多个裂纹方面的能力。通过对具有多个表面裂纹的物理铝板进行的实验研究,验证了数值模拟的有效性,同时使用相同的低功率压电陶瓷堆栈致动器激励板并在裂纹处产生热量。实验结果与数值模拟结果之间存在极好的定性一致性。

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