Prediction of crack length and crack growth rate of adhesive joints by a piezoelectric method

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As adhesive joints have been widely used for fastening thin adherends, the damage tolerance design of adhesive joints has become important, and the estimation of initiation and propagation of a fatigue crack in the adhesive has become necessary. However, the measurement of crack length of tubular joints has been difficult because the observation of crack initiation and growth in the adhesive layer by conventional methods is not easy. In this work, a prediction method for the fatigue crack length in the adhesive layer of tubular single-lap adhesive joints was developed by the piezoelectric method. In order to obtain the relationship between the fatigue crack length and the piezoelectric signal, finite element analysis was conducted and verified by experiments. The damage of the adhesive joints was monitored by the piezoelectric method during torsional fatigue tests on tubular single-lap adhesive joints. Using the damage monitoring signals and the relationship between the fatigue crack length and the piezoelectric signal, a method for predicting fatigue crack growth in the adhesive layer of tubular single-lap adhesive joints was developed.
Publisher
VSP BV
Issue Date
2005
Language
English
Article Type
Article
Keywords

SINGLE LAP JOINT; FATIGUE-STRENGTH; STRESS-ANALYSIS; FAILURE MODEL; TEMPERATURE; SPECIMENS; THICKNESS; FRACTURE

Citation

JOURNAL OF ADHESION SCIENCE AND TECHNOLOGY, v.19, no.12, pp.1081 - 1111

ISSN
0169-4243
URI
http://hdl.handle.net/10203/92081
Appears in Collection
ME-Journal Papers(저널논문)
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