A constitutive elasto-plastic model with moisture diffusion is developed for determining the cohesive strength of adhesively bonded single lap joints with identical adherend materials and thicknesses under tensile-shear loading. Static maximum shear stress failure theory is used for determining the cohesive strength. A Fickian diffusion model is utilized in order to formulate a time- and location dependent shear modulus for the adhesive. The study shows that increased plastic strain due to moisture diffusion would increase the cohesive failure load of adhesively bonded single lap joints
Elasto-plastic stress analysis is an important solution for a used ductile adhesive in single or dou...
This study investigates the use of an elasto-plastic adhesive in a bonded double lap joint to increa...
Joining by adhesively bonded methods is being increasingly used in the design of mechanical structur...
A progressive cohesive failure model has been proposed to predict the residual strength of adhesivel...
Analytical models of adhesively bonded single lap joints under in-plane shear load and in-planed ten...
This paper presents a methodology to predict the strength of adhesive joints under variable moisture...
AbstractThis paper proposes a new methodology for the finite element (FE) modelling of failure in ad...
The present paper provides a model for the stress analysis of double-lap adhesive joints with multil...
In this article, diffusion of moisture in adhesively bonded composite joints is discussed and analys...
Although adhesively bonded lap joint has already been widely applied in structures, the strength pre...
This report evaluates the effect of moisture, specimen geometry and adherend properties on the behav...
Explicit analytical solutions are derived for the static load-carrying capacity of single-lap adhesi...
A mesh-independent continuum damage model has been proposed to predict the residual strength of adhe...
This study investigates the low-speed bending impact behaviour of adhesively bonded dissimilar singl...
WOS: 000337108100013The purpose of this paper was to investigate the stress distribution of adhesive...
Elasto-plastic stress analysis is an important solution for a used ductile adhesive in single or dou...
This study investigates the use of an elasto-plastic adhesive in a bonded double lap joint to increa...
Joining by adhesively bonded methods is being increasingly used in the design of mechanical structur...
A progressive cohesive failure model has been proposed to predict the residual strength of adhesivel...
Analytical models of adhesively bonded single lap joints under in-plane shear load and in-planed ten...
This paper presents a methodology to predict the strength of adhesive joints under variable moisture...
AbstractThis paper proposes a new methodology for the finite element (FE) modelling of failure in ad...
The present paper provides a model for the stress analysis of double-lap adhesive joints with multil...
In this article, diffusion of moisture in adhesively bonded composite joints is discussed and analys...
Although adhesively bonded lap joint has already been widely applied in structures, the strength pre...
This report evaluates the effect of moisture, specimen geometry and adherend properties on the behav...
Explicit analytical solutions are derived for the static load-carrying capacity of single-lap adhesi...
A mesh-independent continuum damage model has been proposed to predict the residual strength of adhe...
This study investigates the low-speed bending impact behaviour of adhesively bonded dissimilar singl...
WOS: 000337108100013The purpose of this paper was to investigate the stress distribution of adhesive...
Elasto-plastic stress analysis is an important solution for a used ductile adhesive in single or dou...
This study investigates the use of an elasto-plastic adhesive in a bonded double lap joint to increa...
Joining by adhesively bonded methods is being increasingly used in the design of mechanical structur...