Two-Dimensional Modeling of Composite Pinned-Joint Failure
- 1 March 1995
- journal article
- Published by SAGE Publications in Journal of Composite Materials
- Vol. 29 (5), 671-697
- https://doi.org/10.1177/002199839502900507
Abstract
The modeling of damage in a laminated composite pinned-joint presents many difficulties because of the inherent complexity of the failure process. The joint area is a region with stress concentrations thus a complicated stress state exists. In order to model progressive damage from initial to final failure, finite element methods are used rather than closed form stress analyses. Two approaches for the finite element technique can be used: a simple two-dimensional linear model or one that has been enhanced with non-linear assumptions. Adding non-linear material behaviour and large deformation theory are two improvements that can be made to a linear finite element model. Failure analysis must be a logical combination of suitable failure criteria and appropriate material property degradation rules. It is understood that a three-dimensional analysis may now be a better alternative, but the goal here is to fly understand the limits of two-dimensional modeling for solving the composite pinned-joint problem.Keywords
This publication has 32 references indexed in Scilit:
- New studies on the effect of bearing loads in lugs with clearance fit pinsComposite Structures, 1989
- Recent studies on the behaviour of interference fit pins in composite platesComposite Structures, 1989
- A study of contact stresses in pin-loaded orthotropic platesComputers & Structures, 1988
- Contact stresses in bolted joints of composite laminatesComposite Structures, 1986
- Stress analysis method for a clearance-fit bolt under bearing loadsAIAA Journal, 1986
- An iterative procedure for finite-element stress analysis of frictional contact problemsComputers & Structures, 1984
- Finite element analysis of moving contact in mechanically fastened jointsNuclear Engineering and Design, 1984
- Analysis of mechanical joints in woodExperimental Mechanics, 1981
- A Finite Element Analysis of Single and Two-Hole Bolted Joints in Fibre Reinforced PlasticJournal of Composite Materials, 1981
- Elastic analysis of pin jointsComputers & Structures, 1978