Finite Element Analysis of Laminated Composite Cantilever Beam

Piyush Uniyal, Anadi Misra
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Abstract

Laminated composites are widely used in engineering and structural applications. In present work failure analysis of cantilever beam made up of boron-epoxy laminated composite has been analyzed. Finite element software ANSYS has been used to perform failure analysis. Maximum stress and Tsai-Wu failure theories are implemented to predict failure index for different lamination schemes. Unidirectional and angle ply laminates has been analyzed for different fiber orientation angles. From results it is found that angle ply laminates exhibits higher failure strength compare to unidirectional laminates. Cantilever beam with fibers orientated along the direction of loading shows maximum failure strength whereas unidirectional and angle ply laminates with 45EÂs fiber orientation shows minimum strength.
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层合复合材料悬臂梁的有限元分析
层合复合材料广泛应用于工程和结构领域。目前对硼环氧层合复合材料悬臂梁的工作失效进行了分析。采用有限元软件ANSYS进行了失效分析。应用最大应力理论和蔡武破坏理论预测不同层压方案的破坏指数。对不同纤维取向角度下的单向层合板和角度层合板进行了分析。结果表明,角度层合板比单向层合板具有更高的破坏强度。纤维沿加载方向取向的悬臂梁破坏强度最大,纤维沿加载方向取向的单向和角度层合板破坏强度最小。
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