Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints
Mechanical performance of polymer-based adhesive joints is susceptible to moisture absorption. In this respect, this study establishes a validated methodology for predicting the mechanical responses of adhesively bonded joints under strain rate-dependent and moisture conditions. For this purpose, ad...
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Korean Society of Mechanical Engineers
2020
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my.utm.902602021-03-31T06:23:00Z http://eprints.utm.my/id/eprint/90260/ Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints Johar, M. Wong, K. J. Rashidi, S. A. Tamin, M. N. TJ Mechanical engineering and machinery Mechanical performance of polymer-based adhesive joints is susceptible to moisture absorption. In this respect, this study establishes a validated methodology for predicting the mechanical responses of adhesively bonded joints under strain rate-dependent and moisture conditions. For this purpose, adhesively bonded lap-joint specimens were tested under the opening (Mode I) and in-plane shear (Mode II) loadings at machine crosshead displacement rates up to 500 mm/min. The mechanics response of the adhesively bonded joint is predicted using the extended cohesive zone model to capture the strain rate- and absorbed moisture-dependent effects. Good correlation of the predicted and measured flexural responses are demonstrated for the independent case of the mixed-mode flexure (MMF) test configuration. The corresponding failure processes of the adhesively bonded joint are described in terms of the characteristic interface damage and stress evolution. Korean Society of Mechanical Engineers 2020-05 Article PeerReviewed Johar, M. and Wong, K. J. and Rashidi, S. A. and Tamin, M. N. (2020) Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints. Journal of Mechanical Science and Technology, 34 (5). pp. 1837-1845. ISSN 1738-494X http://dx.doi.org/10.1007/s12206-020-0404-0 |
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TJ Mechanical engineering and machinery Johar, M. Wong, K. J. Rashidi, S. A. Tamin, M. N. Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
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Mechanical performance of polymer-based adhesive joints is susceptible to moisture absorption. In this respect, this study establishes a validated methodology for predicting the mechanical responses of adhesively bonded joints under strain rate-dependent and moisture conditions. For this purpose, adhesively bonded lap-joint specimens were tested under the opening (Mode I) and in-plane shear (Mode II) loadings at machine crosshead displacement rates up to 500 mm/min. The mechanics response of the adhesively bonded joint is predicted using the extended cohesive zone model to capture the strain rate- and absorbed moisture-dependent effects. Good correlation of the predicted and measured flexural responses are demonstrated for the independent case of the mixed-mode flexure (MMF) test configuration. The corresponding failure processes of the adhesively bonded joint are described in terms of the characteristic interface damage and stress evolution. |
format |
Article |
author |
Johar, M. Wong, K. J. Rashidi, S. A. Tamin, M. N. |
author_facet |
Johar, M. Wong, K. J. Rashidi, S. A. Tamin, M. N. |
author_sort |
Johar, M. |
title |
Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
title_short |
Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
title_full |
Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
title_fullStr |
Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
title_full_unstemmed |
Effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
title_sort |
effect of strain-rate and moisture content on the mechanical properties of adhesively bonded joints |
publisher |
Korean Society of Mechanical Engineers |
publishDate |
2020 |
url |
http://eprints.utm.my/id/eprint/90260/ http://dx.doi.org/10.1007/s12206-020-0404-0 |
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1696976284641394688 |
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13.244367 |