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2011 | OriginalPaper | Chapter

30. Vibration Damping of Adhesively Bonded Joints

Authors : Robert D. Adams, Duncan G. A. Cooper, Stuart Pearson

Published in: Handbook of Adhesion Technology

Publisher: Springer Berlin Heidelberg

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Abstract

A study into the vibration characteristics of adhesively bonded single lap joints has been carried out to investigate the effect of joint geometry and temperature variation on overall system damping. Concepts of vibration damping are introduced and it is shown how to determine the damping of a system. The methodology of calculating the damping of even a simple bonded element in the form of a lap joint from material and geometric parameters is shown to be complex. The vibration damping of bonded joints has been extended into an experimental program using four different adhesives. These were AV119, a one-part epoxy; 9245, a structural bonding tape; 3532, a two-part polyurethane; and Hysol XEA 9359.3, a two-part structural adhesive. High-strength steel adherends were used to manufacture single lap joints of varying overlap lengths. The specimens were vibrated flexurally and the damping values calculated using the free decay method. In this investigation, the damping of the adhesive layer dominates the damping of the specimens rather than the damping of the adherends. An optimum overlap ratio was found at approximately 0.25 in this study. The adhesives were tested under varying temperature conditions to illustrate the dominance of the glass transition temperature on the damping of the specimen.
It has been shown that the damping of a structure is unlikely to be improved by using adhesive bonding as a joining method.

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Appendix
Available only for authorised users
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Metadata
Title
Vibration Damping of Adhesively Bonded Joints
Authors
Robert D. Adams
Duncan G. A. Cooper
Stuart Pearson
Copyright Year
2011
Publisher
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-642-01169-6_30

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