This study presents a semi-analytical solution method to analyze the geometrically nonlinear response of bonded composite lap joints with tapered and/or non tapered adherend edges under uniaxial tension. The solution method provides the transverse shear and normal stresses in the adhesives and in-plane stress resultants and bending moments in the adherends. The method utilizes the principle of virtual work in conjunction with von Karman’s nonlinear plate theory to model the adherends and the shear lag model to represent the kinematics of the thin adhesive layers between the adherends. Furthermore, the method accounts for the bilinear elastic material behavior of the adhesive while maintaining a linear stress–strain relationship in the adher...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
AbstractThis study presents a semi-analytical solution method to analyze the geometrically nonlinear...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
AbstractThis study presents a semi-analytical solution method to analyze the geometrically nonlinear...
AbstractThis paper presents a novel formulation and analytical solutions for adhesively bonded compo...
AbstractThis paper presents novel closed-form and accurate solutions for the edge moment factor and ...
AbstractThe mechanics of double-lap joints with unidirectional ([016]) and quasi-isotropic ([0/90/−4...
AbstractThis paper presents a novel formulation and analytical solutions for adhesively bonded compo...
Design of joints is of paramount importance in all industries, wherever applicable. It even becomes ...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
AbstractThis study presents a semi-analytical solution method to analyze the geometrically nonlinear...
This study presents a semi-analytical solution method to analyze the geometrically nonlinear respons...
AbstractThis study presents a semi-analytical solution method to analyze the geometrically nonlinear...
AbstractThis paper presents a novel formulation and analytical solutions for adhesively bonded compo...
AbstractThis paper presents novel closed-form and accurate solutions for the edge moment factor and ...
AbstractThe mechanics of double-lap joints with unidirectional ([016]) and quasi-isotropic ([0/90/−4...
AbstractThis paper presents a novel formulation and analytical solutions for adhesively bonded compo...
Design of joints is of paramount importance in all industries, wherever applicable. It even becomes ...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...
In this paper a finite element analysis of the behavior of adhesive joints between FRP (fiber-reinfo...