AbstractIn this paper, the mechanical behavior of the scarf lap joints (SLJs) bonded with adhesive (Vinylester Atlac 580) under a tensile load was analyzed. The effects of scarf angle at the interface strain distributions of SLJs were examined. The stress analyses were performed via three dimensional Finite Element Method (3D-FEM). The 3D-FEM code employed was Ansys (12.0). Experimental results were compared with the 3D-FEM results and were found quite reasonable. The results indicated that the maximum values of the normalized εx strain values were determined at θ=60° in all joints
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
AbstractIn this paper, the mechanical behavior of the scarf lap joints (SLJs) bonded with adhesive (...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
International audienceThe scarf joint is a usual experimental assembly employed to analyze the mecha...
Adhesive bonding is an excellent alternative to traditional joining techniques such as welding, rive...
In this study, strength of epoxy adhesively bonded scarf joints of dissimilar adherends, namely SUS3...
Triaxiality function (Rv) has been known as one of the important factors that responsible for damage...
Triaxiality function (Rv) has been known as one of the important factors that responsible for damage...
Triaxiality function (Rv) has been known as one of the important factors that responsible for damage...
AbstractThe effects of adhesive thickness, adhesive type and scarf angle, which are determined as th...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
AbstractIn this paper, the mechanical behavior of the scarf lap joints (SLJs) bonded with adhesive (...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
The stress distributions in scarf adhesive joints under static tensile loadings are analyzed using t...
International audienceThe scarf joint is a usual experimental assembly employed to analyze the mecha...
Adhesive bonding is an excellent alternative to traditional joining techniques such as welding, rive...
In this study, strength of epoxy adhesively bonded scarf joints of dissimilar adherends, namely SUS3...
Triaxiality function (Rv) has been known as one of the important factors that responsible for damage...
Triaxiality function (Rv) has been known as one of the important factors that responsible for damage...
Triaxiality function (Rv) has been known as one of the important factors that responsible for damage...
AbstractThe effects of adhesive thickness, adhesive type and scarf angle, which are determined as th...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...
International audienceIn this paper, accurate numerical analyses of the stress distributions within ...