The biaxial properties of plain weave fabric composites are important as they are more representative of the performance under complex loading conditions. Experimental determination of these properties is difficult and Finite Element Analysis provides accurate prediction but is computationally expensive and requires skilled users. To provide a simple and rapid prediction of the strength of plain weave fabric composites under biaxial tension a novel micromechanical model is proposed in this paper. To predict the biaxial tensile strengths the minimum total complementary potential energy principle is used on a micromechanical unit cell where the orthogonally interlaced yarns are idealised as curved beams. The new model is verified with a finit...
ABSTRACT: The mechanical properties of Milano rib knit fabric reinforced composites have been previo...
The mechanical properties of woven composites can be predicted by using a multiscale modelling appro...
This paper presents a novel finite element based approach able to represent the complex architecture...
This paper presents a new micromechanical model to predict biaxial tensile moduli of plain weave fab...
This model is able to rapidly predict the biaxial tensile moduli and strengths of plain weave fabric...
This paper deals with new analytical solutions to predict tensile and in-plane shear strengths of tr...
The knowledge of mechanical behaviour of woven performs under uniaxial/biaxial tensile loads is nece...
The deformability of a composite reinforcement depends mainly on its internal structure and has a re...
This paper proposes a new analytical solution to predict the elastic modulus of a 2D plain weave fab...
Engineering textile composites are built of a polymeric resin matrix reinforced by a woven fabric, c...
With advantages in efficiency and convenience, analytical models using experimental inputs to predic...
In a woven fabric composite, arrangement and behavior of the fibers contained in the yarn and the ya...
Woven fibrous textiles as reinforcement of composite materials have received considerable attention ...
This paper presents an analytical model for the prediction of the elastic behaviour of plain-weave c...
Textile modelling begins with the creation of a geometric model of the woven-fabric structure which ...
ABSTRACT: The mechanical properties of Milano rib knit fabric reinforced composites have been previo...
The mechanical properties of woven composites can be predicted by using a multiscale modelling appro...
This paper presents a novel finite element based approach able to represent the complex architecture...
This paper presents a new micromechanical model to predict biaxial tensile moduli of plain weave fab...
This model is able to rapidly predict the biaxial tensile moduli and strengths of plain weave fabric...
This paper deals with new analytical solutions to predict tensile and in-plane shear strengths of tr...
The knowledge of mechanical behaviour of woven performs under uniaxial/biaxial tensile loads is nece...
The deformability of a composite reinforcement depends mainly on its internal structure and has a re...
This paper proposes a new analytical solution to predict the elastic modulus of a 2D plain weave fab...
Engineering textile composites are built of a polymeric resin matrix reinforced by a woven fabric, c...
With advantages in efficiency and convenience, analytical models using experimental inputs to predic...
In a woven fabric composite, arrangement and behavior of the fibers contained in the yarn and the ya...
Woven fibrous textiles as reinforcement of composite materials have received considerable attention ...
This paper presents an analytical model for the prediction of the elastic behaviour of plain-weave c...
Textile modelling begins with the creation of a geometric model of the woven-fabric structure which ...
ABSTRACT: The mechanical properties of Milano rib knit fabric reinforced composites have been previo...
The mechanical properties of woven composites can be predicted by using a multiscale modelling appro...
This paper presents a novel finite element based approach able to represent the complex architecture...