2003Chinese Physics LettersOpen access

Decomposition of the Two Lowest Lamb Modes in a Bonded Plate

Xiaomin Wang, Guoxuan Lian, Mingxuan Li

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Abstract

Based on the expression of the dispersion equation of Lamb waves in an adhesive two-layered plate presented in our previous paper [Chin. Phys. Lett. 18(2001)1483], the two lowest Lamb modes, the symmetric mode S 0 and the antisymmetric mode A 0 are successfully decomposed in the low-frequency regime. Relations between the rigidity of the bond and the velocity of the two Lamb modes are found, which lay a foundation for the estimation of the bond rigidity of the adhesive plate. The influence of the variations of the bond rigidity in terms of the stiffness constants K N and K T of the spring model on the velocity of the two Lamb modes is discussed and numerically evaluated. Numerical results indicate that the deterioration of the bond rigidity causes the phase velocity decrease for Lamb modes of the two lowest order, thus having a possibility for the evaluation of the bonding state of the adhesive plate by using ultrasonic wave velocity measurement.

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Based on the expression of the dispersion equation of Lamb waves in an adhesive two-layered plate presented in our previous paper [Chin. Phys. Lett. 18(2001)1483], the two lowest Lamb modes, the symmetric mode S 0 and the antisymmetric mode A 0 are successfully decomposed in the low-frequency regime. Relations between the rigidity of the bond and the velocity of the two Lamb modes are found, which lay a foundation for the estimation of the bond rigidity of the adhesive plate. The influence of the variations of the bond rigidity in terms of the stiffness constants K N and K T of the spring model on the velocity of the two Lamb modes is discussed and numerically evaluated. Numerical results indicate that the deterioration of the bond rigidity causes the phase velocity decrease for Lamb modes of the two lowest order, thus having a possibility for the evaluation of the bonding state of the adhesive plate by using ultrasonic wave velocity measurement.

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Available abstract

Based on the expression of the dispersion equation of Lamb waves in an adhesive two-layered plate presented in our previous paper [Chin. Phys. Lett. 18(2001)1483], the two lowest Lamb modes, the symmetric mode S 0 and the antisymmetric mode A 0 are successfully decomposed in the low-frequency regime. Relations between the rigidity of the bond and the velocity of the two Lamb modes are found, which lay a foundation for the estimation of the bond rigidity of the adhesive plate. The influence of the variations of the bond rigidity in terms of the stiffness constants K N and K T of the spring model on the velocity of the two Lamb modes is discussed and numerically evaluated. Numerical results indicate that the deterioration of the bond rigidity causes the phase velocity decrease for Lamb modes of the two lowest order, thus having a possibility for the evaluation of the bonding state of the adhesive plate by using ultrasonic wave velocity measurement.

Key concepts: Rigidity (electromagnetism), Lamb waves, Antisymmetric relation, Adhesive, Stiffness, Materials science, Phase velocity, Ultrasonic sensor

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