Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers
Fiber/matrix adhesions are most likely to control the overall mechanical behavior of fiber-reinforced composite materials. In this work, non-linear mechanical behaviors have been evaluated for a thin intermediate layer for plane stress case, which can be considered to be the adhesive elasto-plastic...
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my.utm.471922020-02-29T13:48:55Z http://eprints.utm.my/id/eprint/47192/ Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers Mozafari, Hamid Ayob, Amran Abdi, Behzad Alias, Amran TJ Mechanical engineering and machinery Fiber/matrix adhesions are most likely to control the overall mechanical behavior of fiber-reinforced composite materials. In this work, non-linear mechanical behaviors have been evaluated for a thin intermediate layer for plane stress case, which can be considered to be the adhesive elasto-plastic epoxy matrix. The adhesive which is the intermediate layer situated between two carbon fibers is assumed to be very small in thickness in comparison with those of the surrounding materials. Verification with the numerical simulation based on finite element method (FEM) has shown high accuracy of the derived formulations. 2012 Article PeerReviewed Mozafari, Hamid and Ayob, Amran and Abdi, Behzad and Alias, Amran (2012) Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers. Applied Mechanics And Materials, 121-12 . pp. 4426-4430. ISSN 1660-9336 |
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TJ Mechanical engineering and machinery Mozafari, Hamid Ayob, Amran Abdi, Behzad Alias, Amran Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
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Fiber/matrix adhesions are most likely to control the overall mechanical behavior of fiber-reinforced composite materials. In this work, non-linear mechanical behaviors have been evaluated for a thin intermediate layer for plane stress case, which can be considered to be the adhesive elasto-plastic epoxy matrix. The adhesive which is the intermediate layer situated between two carbon fibers is assumed to be very small in thickness in comparison with those of the surrounding materials. Verification with the numerical simulation based on finite element method (FEM) has shown high accuracy of the derived formulations. |
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Article |
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Mozafari, Hamid Ayob, Amran Abdi, Behzad Alias, Amran |
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Mozafari, Hamid Ayob, Amran Abdi, Behzad Alias, Amran |
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Mozafari, Hamid |
title |
Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
title_short |
Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
title_full |
Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
title_fullStr |
Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
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Mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
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mechanical behavior between carbon fiber and epoxy matrix for thin adhesive layers |
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2012 |
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http://eprints.utm.my/id/eprint/47192/ |
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