Stress state analyses of a ± 55 ° filament-wound composite tube with damage effect
Author:
Publisher
Elsevier BV
Subject
Civil and Structural Engineering,Ceramics and Composites
Reference7 articles.
1. Mechanical behaviour of ± 55 ° filament-wound glass-fibre/epoxy-resin tubes: Part I — Microstructure analyses and mechanical behaviour and damage mechanisms of composite tubes under pure tensile, pure internal pressure and combined loading;Bai;Composite Science and Technology,1997
2. Mechanical behaviour of ±55 ° filament-wound glass-fibre/epoxy-resin tubes: Part II — Micromechanical modelling of the damage initiation-competition of the different mechanisms;Bai;Composite Science and Technology,1997
3. Hu, G. K., Bai, J. B., Demianouchko, K. and Bompard, Ph., Mechanical behaviour of ± 55 ° filament-wound glass-fibre/epoxy-resin tubes: Part III — Macromechanical modelling of the macroscopical behaviour of tubing structure with damage effect and failure envelope prediction, Composite Science and Technology (in press).
4. Fibre-reinforced laminated composite tubes with free ends uniform internal pressure;Savir;J. Mech. Phys. Solids,1995
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1. Modeling the Nonlinear Response of ±55 Angle-Ply GFRP Tube Used in CFFT Applications;8th International Conference on Advanced Composite Materials in Bridges and Structures;2022-09-27
2. Experimental and numerical study of adhesively bonded ±55° filament wound tubular specimens under uniaxial tensile loading;Composite Structures;2017-07
3. Environmental effect on fatigue life of glass–epoxy composite pipes subjected to impact loading;Composites Part B: Engineering;2013-01
4. Strain Characteristic of Filament Wound Composite Cylinder under Axial Loading;Advanced Materials Research;2011-12
5. Macro and Micro Investigation of Internal Structure of Filament Wound Composite;Advanced Materials Research;2011-11-22
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