Deformation Characteristics of Composite Structures
(ندگان)پدیدآور
AKANO, Theddeus T.FAKINLEDE, Omotayo. AOlayiwola, Patrickنوع مدرک
TextResearch Paper
زبان مدرک
Englishچکیده
The composites provide design flexibility because many of them can be moulded into complex shapes. The carbon fibre-reinforced epoxy composites exhibit excellent fatigue tolerance and high specific strength and stiffness which have led to numerous advanced applications ranging from the military and civil aircraft structures to the consumer products. However, the modelling of the beams undergoing the arbitrarily large displacements and rotations, but small strains, is a common problem in the application of these engineering composite systems. This paper presents a nonlinear finite element model which is able to estimate the deformations of the fibre-reinforced epoxy composite beams. The governing equations are based on the Euler-Bernoulli beam theory (EBBT) with a von Kármán type of kinematic nonlinearity. The anisotropic elasticity is employed for the material model of the composite material. Moreover, the characterization of the mechanical properties of the composite material is achieved through a tensile test, while a simple laboratory experiment is used to validate the model. The results reveal that the composite fibre orientation, the type of applied load and boundary condition, affect the deformation characteristics of the composite structures. The nonlinearity is an important factor that should be taken into consideration in the analysis of the fibre-reinforced epoxy composites.
کلید واژگان
Anisotropic elasticitycomposite material
large displacement
Composite/Smart Materials
شماره نشریه
3تاریخ نشر
2016-08-011395-05-11
ناشر
Shahid Chamran University of Ahvazسازمان پدید آورنده
Department of Systems Engineering, University of Lagos, NIGERIADepartment of Systems Engineering, University of Lagos, NIGERIA
Bells University of Technology




