ABSTRACT: This paper presents a simple and computationally effcient multi-scale procedure to predict the macroscopic temperature dependent coeffcient of thermal expansion (CTE) of any linearly thermoelastic material from isothermal mechanical simulations only. The approach relies on Levin's demonstration that, in analytical homogenization, the e ective coeffcient of thermal expansion is related to the local coeffcient of thermal expansion and the stress concentration tensor. For demonstration purposes, this procedure was applied to a 3D woven composite material. The proposed approach was successfully validated with full thermal simulations
The study focuses on unit cell FE modelling to predict coefficients of thermal expansion (CTEs) for ...
Polymer matrices present in composite materials are prone to have time-dependent behavior very sensi...
Many engineering and scientific problems require a full understanding of physical phenomena that spa...
In-plane and out-of-plane coefficients of thermal expansion (CTEs) are important parameters for ther...
ABSTRACT: This paper presents a multi-scale thermo-chemo-mechanical simulation predicting the distor...
The coefficients of thermal expansion (CTEs) of fiber reinforced composites play animportant role in...
Three plain weave fabric composite analysis models are presented for the prediction of the on-axes t...
International audienceA method is presented to predict numerically the homogenized viscoelastic beha...
ABSTRACT INTRODUCTION Shape distortion of composite components is a common problem in composites man...
Thermal expanding is the important property that defines the stress–strain condition of GRP structur...
Interest in the use of large area extrusion deposition additive manufacturing (LAEDAM) to create to...
The variability of thermal expansion coefficients during the molding of plastics causes the developm...
Bounds on effective thermal expansion coefficients of isotropic and anisotropic composite materials ...
In this dissertation, the homogenization method is used to investigate the thermo-mechanical behavio...
Coefficients of thermal expansion (CTEs) of constituents in fiber-reinforced composites are among th...
The study focuses on unit cell FE modelling to predict coefficients of thermal expansion (CTEs) for ...
Polymer matrices present in composite materials are prone to have time-dependent behavior very sensi...
Many engineering and scientific problems require a full understanding of physical phenomena that spa...
In-plane and out-of-plane coefficients of thermal expansion (CTEs) are important parameters for ther...
ABSTRACT: This paper presents a multi-scale thermo-chemo-mechanical simulation predicting the distor...
The coefficients of thermal expansion (CTEs) of fiber reinforced composites play animportant role in...
Three plain weave fabric composite analysis models are presented for the prediction of the on-axes t...
International audienceA method is presented to predict numerically the homogenized viscoelastic beha...
ABSTRACT INTRODUCTION Shape distortion of composite components is a common problem in composites man...
Thermal expanding is the important property that defines the stress–strain condition of GRP structur...
Interest in the use of large area extrusion deposition additive manufacturing (LAEDAM) to create to...
The variability of thermal expansion coefficients during the molding of plastics causes the developm...
Bounds on effective thermal expansion coefficients of isotropic and anisotropic composite materials ...
In this dissertation, the homogenization method is used to investigate the thermo-mechanical behavio...
Coefficients of thermal expansion (CTEs) of constituents in fiber-reinforced composites are among th...
The study focuses on unit cell FE modelling to predict coefficients of thermal expansion (CTEs) for ...
Polymer matrices present in composite materials are prone to have time-dependent behavior very sensi...
Many engineering and scientific problems require a full understanding of physical phenomena that spa...