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Measurements of the weak bonding interfacial stiffness by using air-coupled ultrasound

机译:使用空气耦合超声测量弱键合界面刚度

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摘要

An air-coupled ultrasonic method, focusing on the problem that weak bonding interface is difficult to accurately measure using conventional nondestructive testing technique, is proposed to evaluate the bond integrity. Based on the spring model and the potential function theory, a theoretical model is established to predict the through-transmission spectrum in double-layer adhesive structure. The result of a theoretical algorithm shows that all the resonant transmission peaks move towards higher frequency with the increase of the interfacial stiffness. The reason for these movements is related to either the normal stiffness ( K subN/sub) or the transverse stiffness ( K subT/sub). A method to optimize the measurement parameters (i.e. the incident angle and testing frequency) is put forward through analyzing the relationship between the resonant transmission peaks and the interfacial spring stiffness at the frequency below 1MHz. The air-coupled ultrasonic testing experiments at the normal and oblique incident angle respectively are carried out to verify the theoretical analysis and to accurately measure the interfacial stiffness of double-layer adhesive composite plate. The experimental results are good agreement with the results from the theoretical algorithm, and the relationship between bonding time and interfacial stiffness is presented at the end of this paper.
机译:一种带气相超声波的方法,专注于使用常规无损检测技术难以准确测量弱粘接界面的问题,以评估债券完整性。基于弹簧模型和潜在功能理论,建立了理论模型,以预测双层粘合结构中的透射光谱。理论算法的结果表明,随着界面刚度的增加,所有谐振传输峰值朝向更高的频率移动。这些运动的原因与普通刚度(k n )或横刚度(k t )有关。通过分析谐振透射峰与频率低于1MHz的频率之间的关系,提出了优化测量参数(即入射角和测试频率)的方法。分别进行了正常和倾斜入射角的空气耦合超声波检测实验,以验证理论分析,并准确地测量双层粘合复合板的界面刚度。实验结果与理论算法的结果吻合良好,键合时间与界面刚度之间的关系在本文的末尾呈现。

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