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This paper presents experimental and numerical results, which describe the non-linear behaviour of an adhesive in a bonded assembly for various loadings.
In order to accurately analyse the complete non-linear behaviour of an adhesive in an assembly, specimens with low edge effects have to be used.
The single lap joint is the most used test in order to analyse the behaviour of an adhesive in an assembly as on one hand, the manufacturing of such specimens is quite easy, and on the other hand they require only a classic tensile testing machine.
Various models exist to describe the non-linear behaviour of an adhesive in an assembly, taking into account the two stress invariants, hydrostatic stress and von Mises equivalent stress, which can be explained by the nature of the adhesive, i.e., a polymer.
Under quasi-static loadings at low temperature, for a given strain rate range, viscous effects can be neglected, but only a few experimental results are available to model the behaviour of an adhesive in a bonded assembly accurately under realistic loadings.
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The obtained results evidenced the capability of the proposed framework to predict the creep behaviour of an epoxy adhesive since its early ages.
The behaviour of a curve adhesive joints between two generic profiles is investigated.
The objective of the paper is to propose a strategy in order to develop accurate numerical models to describe the behaviour of a ductile adhesive in an assembly under mechanical proportional monotonic loads at different low temperatures.
In this context, this paper presents a study aiming to experimentally characterize the tensile creep behaviour of an epoxy-based adhesive currently used in the strengthening of concrete structures with carbon FRP (CFRP) systems.
The objective of this paper is to characterise the behaviour of a thick flexible adhesive (Sikaflex®-265) under different monotonic tensile/compression-shear loadings.
The study of Moller et al. aims to determine the behaviour of a two-component adhesive regularly used to join pieces in acid mist extraction systems in mining applications.
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