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Assessment of bond state in lap-shear Joints by guided wave transmission monitoring

机译:通过导波传输监测评估搭接剪切接头的粘结状态

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This paper deals with the propagation of ultrasonic guided waves in adhesively-bonded lap-shear joints. The topic is relevant to ultrasonic bond inspection in aerospace components. Specifically, the propagation of the lowest-order, antisymmetric a{sub}0 mode through the joint is examined. This mode can be easily generated and detected in the field due to the predominant out-of-plane displacements at the surface of the test-piece. The a{sub}0 strength of transmission is studied for three different bond states in aluminium joints, namely a fully cured adhesive bond, a poorly cured adhesive bond, and a slip bond. Theoretical predictions based on the Global Matrix Method indicate that the dispersive behaviour of the guided waves in the multilayer overlap is highly dependent on bond state. Experimental tests of the joints are conducted by a hybrid, broadband laser/air-coupled ultrasonic set-up in a through-transmission configuration. This system does not require any wet coupling and it can be moved flexibly across the test piece. The Gabor Wavelet transform is employed to extract energy transmission coefficients in the 100 kHz -1.4 MHz range for the three different bond states examined. A rationale for the selection of the a{sub}0 excitation frequencies highly sensitive to bond state will be given.
机译:本文研究了超声引导波在搭接剪切剪切接头中的传播。该主题与航空航天零部件中的超声粘合检查有关。具体而言,检查了最低阶的反对称a {sub} 0模式通过关节的传播。由于试件表面的主要平面外位移,该模式可以在现场轻松生成和检测。对于铝接头中的三种不同的粘结状态,即完全固化的粘合剂粘结,固化不良的粘合剂粘结和滑动粘结,研究了a {sub} 0的透射强度。基于整体矩阵法的理论预测表明,多层重叠中的导波的色散行为高度依赖于键态。关节的实验测试是通过混合,宽带激光/空气耦合超声装置以直通传输方式进行的。该系统不需要任何湿式耦合,可以在整个测试件上灵活移动。对于所检查的三个不同键态,采用Gabor小波变换来提取100 kHz -1.4 MHz范围内的能量传输系数。将给出选择对键态高度敏感的a {sub} 0激发频率的原理。

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