Due to the inherent brittleness of the commonly used thermoset polymer matrices and glass or carbon fibers in fiber-reinforced polymers (FRPs), their fracture resistance is typically assessed by means of linear-elastic fracture mechanics (LEFM) methods. Such approaches are based on the small-scale yielding assumption, which is met when the material predominantly presents linear- elastic behavior. The latest advances in material developments for FRPs aim at endowing the laminates with the ability to undergo plastic deformation through the use of elasto-plastic polymer matrices. Although this leads to more damage-tolerant parts, noticeable plasticity in the composites’ response leads to violation of the small-scale yielding assumption, making...
The fracture behavior parallel to the fibers of an E-glass/epoxy unidirectional laminate was studied...
The elastic parameters, strengths, and intralaminar fracture toughness are determined for an E-Glass...
The mode-I dynamic fracture energy and failure mechanisms of glass fiber-reinforced polymer composit...
Improving the fracture toughness of the polymer matrix has been a concentration of research effort f...
The failure process arising at a broken fibre end in polymer matrix composite materials has been stu...
Automotive and aeronautical composite structures can be subjected to dynamic loading scenarios (e.g....
Automotive and aeronautical composite structures can be subjected to dynamic loading scenarios (e.g....
A new nonlinear fracture analysis framework is developed for the mode-I and II fracture response of ...
A review of the interlaminar fracture indicates that a standard specimen geometry is needed to obtai...
The main objective of this work is to predict the exact value of the fracture toughness (KQ) of fibe...
This paper discusses the material characterization of the coupons for the glass fiber/epoxy. The ela...
In this paper, interlaminar fracture behavior of woven-fabric-reinforced glass/epoxy composites has ...
Experimental analyses of FRP composite laminates fail to predict and correlate the type and sequence...
ABSTRACT: It has been well known that suppression of debonding and matrix cracking could improve fat...
The mechanical properties and fracture mechanics of a series of short glass fibre reinforced and rub...
The fracture behavior parallel to the fibers of an E-glass/epoxy unidirectional laminate was studied...
The elastic parameters, strengths, and intralaminar fracture toughness are determined for an E-Glass...
The mode-I dynamic fracture energy and failure mechanisms of glass fiber-reinforced polymer composit...
Improving the fracture toughness of the polymer matrix has been a concentration of research effort f...
The failure process arising at a broken fibre end in polymer matrix composite materials has been stu...
Automotive and aeronautical composite structures can be subjected to dynamic loading scenarios (e.g....
Automotive and aeronautical composite structures can be subjected to dynamic loading scenarios (e.g....
A new nonlinear fracture analysis framework is developed for the mode-I and II fracture response of ...
A review of the interlaminar fracture indicates that a standard specimen geometry is needed to obtai...
The main objective of this work is to predict the exact value of the fracture toughness (KQ) of fibe...
This paper discusses the material characterization of the coupons for the glass fiber/epoxy. The ela...
In this paper, interlaminar fracture behavior of woven-fabric-reinforced glass/epoxy composites has ...
Experimental analyses of FRP composite laminates fail to predict and correlate the type and sequence...
ABSTRACT: It has been well known that suppression of debonding and matrix cracking could improve fat...
The mechanical properties and fracture mechanics of a series of short glass fibre reinforced and rub...
The fracture behavior parallel to the fibers of an E-glass/epoxy unidirectional laminate was studied...
The elastic parameters, strengths, and intralaminar fracture toughness are determined for an E-Glass...
The mode-I dynamic fracture energy and failure mechanisms of glass fiber-reinforced polymer composit...