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2020 | OriginalPaper | Chapter

Adhesive Joint Fracture Under Combined Pulsed and Vibrational Loading

Authors : Yuri Petrov, Andrey Logachev, Nickolay Granichin, Grigory Volkov

Published in: Proceedings of the Third International Conference on Theoretical, Applied and Experimental Mechanics

Publisher: Springer International Publishing

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Abstract

The strength of the adhesion joint under the combined vibrational-pulsed loading is considered. Beam and membrane models on elastic foundation is applied to simulate behavior of adhesion zone. The incubation time criterion is used to determine the threshold parameters of a load required to adhesive zone fracture. The solution of the differential equation describing the behavior of the adhesive zone is obtained by the Fourier method. Different types of combination of pulsed loading with high-frequency external fields are considered. It demonstrates that background vibration fields of even low intensity at certain frequencies can significantly reduce these critical values. The dependence of the threshold value of the external pulse on the model parameters is shown. The possible way to control to adhesive joint strength by background vibrational fields is suggested.

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Metadata
Title
Adhesive Joint Fracture Under Combined Pulsed and Vibrational Loading
Authors
Yuri Petrov
Andrey Logachev
Nickolay Granichin
Grigory Volkov
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-47883-4_18

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