Strain rate-dependent deformation and failure process of adhesive joints

Rate-dependent deformation and failure process of adhesive joints are investigated in this study. For this purpose, acrylic foam pressure sensitive adhesive (PSA) was employed with aluminum adherents. Tensile and shear loading of the adhesive joint was applied at displacement rates ranging from 5 to...

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Main Authors: Johar, M., Asasaari, S. F. M., Tamin, M. N.
Format: Conference or Workshop Item
Language:English
Published: 2015
Subjects:
Online Access:http://eprints.utm.my/59487/1/MohdNasirTamin2014_StrainRateDependentDeformation.pdf
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author Johar, M.
Asasaari, S. F. M.
Tamin, M. N.
author_facet Johar, M.
Asasaari, S. F. M.
Tamin, M. N.
author_sort Johar, M.
collection ePrints
description Rate-dependent deformation and failure process of adhesive joints are investigated in this study. For this purpose, acrylic foam pressure sensitive adhesive (PSA) was employed with aluminum adherents. Tensile and shear loading of the adhesive joint was applied at displacement rates ranging from 5 to 500 mm/min. Results show that the failure process under tensile loadings start with initiation of cavities, hardening through fibrillation process and final fracture of the fibrils. For shear loading the failure process is a combination of fibrillation processes, shear flow, and by interfacial sliding. Both modulus and strain energy density at fracture reach maximum value at a displacement rate of 100 mm/min under tension, while continuously increase with displacement rate under shear loading. Adhesive failure dominates at low loading rate (below 10 mm/min.), while mixed-mode and cohesive failure are common at faster loading rates above 250 mm/min. Finite element employing Yeoh constitutive model adequately predicts viscous shear deformation of the PSA joints.
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spelling utm.eprints-594872021-08-04T06:52:36Z http://eprints.utm.my/59487/ Strain rate-dependent deformation and failure process of adhesive joints Johar, M. Asasaari, S. F. M. Tamin, M. N. TJ Mechanical engineering and machinery Rate-dependent deformation and failure process of adhesive joints are investigated in this study. For this purpose, acrylic foam pressure sensitive adhesive (PSA) was employed with aluminum adherents. Tensile and shear loading of the adhesive joint was applied at displacement rates ranging from 5 to 500 mm/min. Results show that the failure process under tensile loadings start with initiation of cavities, hardening through fibrillation process and final fracture of the fibrils. For shear loading the failure process is a combination of fibrillation processes, shear flow, and by interfacial sliding. Both modulus and strain energy density at fracture reach maximum value at a displacement rate of 100 mm/min under tension, while continuously increase with displacement rate under shear loading. Adhesive failure dominates at low loading rate (below 10 mm/min.), while mixed-mode and cohesive failure are common at faster loading rates above 250 mm/min. Finite element employing Yeoh constitutive model adequately predicts viscous shear deformation of the PSA joints. 2015 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/59487/1/MohdNasirTamin2014_StrainRateDependentDeformation.pdf Johar, M. and Asasaari, S. F. M. and Tamin, M. N. (2015) Strain rate-dependent deformation and failure process of adhesive joints. In: 2014 36th IEEE International Electronics Manufacturing Technology Conference, IEMT 2014, 11-13 Nov 2014, Johor, Malaysia. http://dx.doi.org/10.1109/IEMT.2014.7123133
spellingShingle TJ Mechanical engineering and machinery
Johar, M.
Asasaari, S. F. M.
Tamin, M. N.
Strain rate-dependent deformation and failure process of adhesive joints
title Strain rate-dependent deformation and failure process of adhesive joints
title_full Strain rate-dependent deformation and failure process of adhesive joints
title_fullStr Strain rate-dependent deformation and failure process of adhesive joints
title_full_unstemmed Strain rate-dependent deformation and failure process of adhesive joints
title_short Strain rate-dependent deformation and failure process of adhesive joints
title_sort strain rate dependent deformation and failure process of adhesive joints
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/59487/1/MohdNasirTamin2014_StrainRateDependentDeformation.pdf
work_keys_str_mv AT joharm strainratedependentdeformationandfailureprocessofadhesivejoints
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AT taminmn strainratedependentdeformationandfailureprocessofadhesivejoints