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The buckling of CFRP composite plates in compression and shear and thin-walled composite tubes in torsion - The effects of bend-twist coupling and the applied shear direction on buckling performance

机译:压缩和剪切中的CFRP复合材料板的屈曲以及扭转中的薄壁复合材料管-弯扭​​耦合和所施加的剪切方向对屈曲性能的影响

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The influence of flexural anisotropy or bend-twist coupling on the buckling performance of CFRP composite plates in compression and shear and thin-walled CFRP composite tubes in torsion is examined in this paper using the finite strip method of analysis. The finite strip formulation employed in the analysis procedure is readily able to deal with the many complexities associated with typical laminated composite construction. Lay-up configurations resulting in membrane anisotropy, flexural anisotropy and membrane-flexural coupling are all easily dealt with. The strip perturbation or buckling displacement fields are postulated to vary sinusoidally along the strip length and algebraicly across the strip width and any combination of linearly varying bi-axial tension or compression coupled with in-plane shear loading on the strip can be accommodated. The paper gives an in-depth understanding of the complex buckling mechanics associated with flexural anisotropy in polymer composite construction and highlights the importance of realising the significance of the applied in-plane shear or torque direction on buckling performance. Markedly different stability levels are shown to be in existence for the load cases of positive and negative shear in composite plates and for the clockwise and anticlockwise torsional loading of thin-walled composite tubes. This situation is, of course, not realised in isotropic metal construction or in orthotropic composite construction since such material systems are devoid of the effects of bend-twist coupling.
机译:本文采用有限条分析法,研究了挠曲各向异性或弯曲扭扭耦合对压缩,剪切和薄壁CFRP复合材料管在扭转中的CFRP复合板屈曲性能的影响。分析过程中采用的有限条形配方能够轻松应对与典型层压复合材料结构相关的许多复杂性。导致膜层各向异性,挠曲各向异性和膜层-挠曲耦合的叠层配置都可以轻松解决。假定带的摄动或屈曲位移场沿带的长度呈正弦变化,并且沿带的宽度呈代数形式变化,并且可以适应线性变化的双轴拉伸或压缩以及带上平面内剪切载荷的任意组合。本文深入了解了聚合物复合材料结构中与挠曲各向异性相关的复杂屈曲力学,并强调了认识到施加面内剪切或扭矩方向对屈曲性能的重要性的重要性。对于复合板中的正向和负向剪切载荷情况以及薄壁复合管的顺时针和逆时针扭转载荷,显示出明显不同的稳定性水平。当然,这种情况在各向同性金属结构或正交各向异性复合结构中是无法实现的,因为这种材料系统没有弯曲扭曲耦合的影响。

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