Abstract Fiber-matrix interface performance has a great influence on the mechanical properties of fiber reinforced composite. This influence is mainly presented during fiber pullout from the matrix. As fiber pullout process consists of fiber debonding stage and pullout stage which involve complex contact problem, numerical modeling is a best way to investigate the interface influence. Although many numerical research works have been conducted, practical and effective technique suitable for continuous modeling of fiber pullout process is still scarce. The reason is in that numerical divergence frequently happens, leading to the modeling interruption. By interacting the popular finite element program ANSYS with the MATLAB, we proposed continu...
The present work deals with the numerical crack simulation of fiber-matrix debonding in single fiber...
Following the development of an improved theoretical analysis of fibre pull-out on the basis of the ...
Ceramic matrix composites (CMCs) are widely used in aerospace, defense industry, and other fields be...
It is well known that fibers improve the performance of cementitious composites by acting as bridgin...
The presented research work compares numerical results of single fiber pull-out of elastic matrix wi...
Finite element models for the debonding of a silicon carbide fiber (SiCf) embedded in silicon carbid...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
In this paper, the tensile behavior of Fiber Reinforced Cementitious Matrix (FRCM) strips is investi...
The paper deals with the numerical modelling of hooked steel fibres embedded in high-strength cement...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...
The use of high performance composite fibers allows for the improvement of the mechanical properties...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/84694/1/ywang_CCLC88.pd
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
This thesis is concerned with developing an effective and comprehensive method to simulate pull-out ...
The present work deals with the numerical crack simulation of fiber-matrix debonding in single fiber...
Following the development of an improved theoretical analysis of fibre pull-out on the basis of the ...
Ceramic matrix composites (CMCs) are widely used in aerospace, defense industry, and other fields be...
It is well known that fibers improve the performance of cementitious composites by acting as bridgin...
The presented research work compares numerical results of single fiber pull-out of elastic matrix wi...
Finite element models for the debonding of a silicon carbide fiber (SiCf) embedded in silicon carbid...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
In this paper, the tensile behavior of Fiber Reinforced Cementitious Matrix (FRCM) strips is investi...
The paper deals with the numerical modelling of hooked steel fibres embedded in high-strength cement...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...
The use of high performance composite fibers allows for the improvement of the mechanical properties...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/84694/1/ywang_CCLC88.pd
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
This thesis is concerned with developing an effective and comprehensive method to simulate pull-out ...
The present work deals with the numerical crack simulation of fiber-matrix debonding in single fiber...
Following the development of an improved theoretical analysis of fibre pull-out on the basis of the ...
Ceramic matrix composites (CMCs) are widely used in aerospace, defense industry, and other fields be...