A rate dependent experimental and numerical analysis of adhesive joints under different loading directions

Adhesively bonded joints subjected to dynamic loading demand reliable and accurate measurement techniques to capture their rate dependent traction–separation behaviour. Particularly challenging is the measurement of damage and failure processes which are fundamental to develop the corresponding cohe...

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Main Authors: Lißner, M, Alabort, E, Erice, B, Cui, H, Petrinic, N
Format: Journal article
Language:English
Published: Springer Verlag 2018
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author Lißner, M
Alabort, E
Erice, B
Cui, H
Petrinic, N
author_facet Lißner, M
Alabort, E
Erice, B
Cui, H
Petrinic, N
author_sort Lißner, M
collection OXFORD
description Adhesively bonded joints subjected to dynamic loading demand reliable and accurate measurement techniques to capture their rate dependent traction–separation behaviour. Particularly challenging is the measurement of damage and failure processes which are fundamental to develop the corresponding cohesive zone models. This paper proposes a new experimental methodology for the characterisation of rate-dependent behaviour of adhesive joints. The results of the adopted approach have been used to calibrate a rate-dependent numerical cohesive model proposed to simulate the failure of adhesive joints. The procedure was benchmarked against quasi-static DCB and ENF experiments.
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spelling oxford-uuid:cf9790ed-fc42-4efa-9f0a-ae484a24442a2022-03-27T07:43:44ZA rate dependent experimental and numerical analysis of adhesive joints under different loading directionsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:cf9790ed-fc42-4efa-9f0a-ae484a24442aEnglishSymplectic Elements at OxfordSpringer Verlag2018Lißner, MAlabort, EErice, BCui, HPetrinic, NAdhesively bonded joints subjected to dynamic loading demand reliable and accurate measurement techniques to capture their rate dependent traction–separation behaviour. Particularly challenging is the measurement of damage and failure processes which are fundamental to develop the corresponding cohesive zone models. This paper proposes a new experimental methodology for the characterisation of rate-dependent behaviour of adhesive joints. The results of the adopted approach have been used to calibrate a rate-dependent numerical cohesive model proposed to simulate the failure of adhesive joints. The procedure was benchmarked against quasi-static DCB and ENF experiments.
spellingShingle Lißner, M
Alabort, E
Erice, B
Cui, H
Petrinic, N
A rate dependent experimental and numerical analysis of adhesive joints under different loading directions
title A rate dependent experimental and numerical analysis of adhesive joints under different loading directions
title_full A rate dependent experimental and numerical analysis of adhesive joints under different loading directions
title_fullStr A rate dependent experimental and numerical analysis of adhesive joints under different loading directions
title_full_unstemmed A rate dependent experimental and numerical analysis of adhesive joints under different loading directions
title_short A rate dependent experimental and numerical analysis of adhesive joints under different loading directions
title_sort rate dependent experimental and numerical analysis of adhesive joints under different loading directions
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