The mixed-mode fracture behavior of adhesively-bonded pultruded glass fiber-reinforced polymer joints was experimentally investigated using asymmetric mixed-mode bending specimens. The crack propagated along paths outside the symmetry plane and, therefore, mode partition could not be performed in the standardized way as for symmetric specimens. An approach based on the existing "global method", designated the "extended global method", was established and applied for the analysis of the experimental data and the fracture mode partitioning. Finite element models were developed in order to validate the approach. The virtual crack closure technique was used for calculation of the fracture components at the crack tip and an exponential traction-...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
The mixed-mode fatigue and fracture behaviors of adhesively-bonded pultruded glass fiber-reinforced ...
This paper presents a semi-analytical methodology for the fracture mechanics assessment of asymmetri...
The fracture behavior of adhesively-bonded double- and stepped-lap joints composed of pultruded glas...
The Mode I and II fracture behaviors of adhesively-bonded joints composed of pultruded glass fiber-r...
This paper presents new analytical model of asymmetric mixed-mode bending (MMB) specimen ofadhesivel...
The mixed-mode fracture characterization of adhesively bonded glass fiber-reinforced polymer (GFRP) ...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
The mixed-mode fatigue and fracture behaviors of adhesively-bonded pultruded glass fiber-reinforced ...
This paper presents a semi-analytical methodology for the fracture mechanics assessment of asymmetri...
The fracture behavior of adhesively-bonded double- and stepped-lap joints composed of pultruded glas...
The Mode I and II fracture behaviors of adhesively-bonded joints composed of pultruded glass fiber-r...
This paper presents new analytical model of asymmetric mixed-mode bending (MMB) specimen ofadhesivel...
The mixed-mode fracture characterization of adhesively bonded glass fiber-reinforced polymer (GFRP) ...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...
In this work, a numerical-experimental characterization of pure mode III fracture toughness of bonde...