Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of fiber-reinforced composites. To predict this strength by micromechanics, calculation of actual stress in constituent matrix is essentially required. However, traditional micromechanics models can only give the volume-averaged homogenized stress rather than an actual one for a matrix, which in practice will cause large errors. In this paper, considering the effect of stress concentration on a matrix, a novel micromechanics method was proposed to give an accurate calculation of the actual stress in the matrix for UD composite under transverse tension. A stress concentration factor for a matrix in transverse tensile direction is defined, using ...
The effect of porosity on the transverse mechanical properties of unidirectional fiber-reinforced co...
A micromechanical framework for modeling failure in unidirectional (UD) thermoplastic composites und...
ABSTRACT: The micromechanics of failure was developed to predict the failure of continuous fiber rei...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
A micromechanics-based 2D numerical model is proposed to comprehensively trace the longitudinal comp...
Transverse fracture often occurs early in the loading history and is one of the key issues limiting ...
Despite the crucial significance of failure prediction in composites, such an objective remains chal...
The influence of the matrix on the transverse tensile properties of unidirectional carbon fiber-rein...
The influence of the matrix on the transverse tensile properties of unidirectional carbon fiber-rein...
In this paper, micromechanical simulations are employed to evaluate the performance of the Tsai–Wu a...
A micromechanical model is presented for predicting the longitudinal tensile strength of polymer mat...
In this paper, micromechanical simulations are employed to evaluate the performance of the Tsai–Wu a...
Fibre reinforced composites exhibit a gradual damage accumulation to failure, with a multitude of hi...
The effect of porosity on the transverse mechanical properties of unidirectional fiber-reinforced co...
A micromechanical framework for modeling failure in unidirectional (UD) thermoplastic composites und...
ABSTRACT: The micromechanics of failure was developed to predict the failure of continuous fiber rei...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
Transverse tensile strength of unidirectional (UD) composites plays a key role in overall failure of...
A micromechanics-based 2D numerical model is proposed to comprehensively trace the longitudinal comp...
Transverse fracture often occurs early in the loading history and is one of the key issues limiting ...
Despite the crucial significance of failure prediction in composites, such an objective remains chal...
The influence of the matrix on the transverse tensile properties of unidirectional carbon fiber-rein...
The influence of the matrix on the transverse tensile properties of unidirectional carbon fiber-rein...
In this paper, micromechanical simulations are employed to evaluate the performance of the Tsai–Wu a...
A micromechanical model is presented for predicting the longitudinal tensile strength of polymer mat...
In this paper, micromechanical simulations are employed to evaluate the performance of the Tsai–Wu a...
Fibre reinforced composites exhibit a gradual damage accumulation to failure, with a multitude of hi...
The effect of porosity on the transverse mechanical properties of unidirectional fiber-reinforced co...
A micromechanical framework for modeling failure in unidirectional (UD) thermoplastic composites und...
ABSTRACT: The micromechanics of failure was developed to predict the failure of continuous fiber rei...