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ON THE INFLUENCE OF THE DAMAGE ON THE BUCKLING BEHAVIOUR OF HYBRID COMPOSITE LAMINATES

机译:关于杂交复合层压板屈曲行为的影响

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The hybridization of laminates, carried out using reinforcing fibers of a different kind in each layer, represents a very interesting solution from a design point of view. Mechanical behavior of hybrid laminates is highly influenced by their inhomogeneity which involves relevant values of shear deformability, so the first-order shear deformation theory (FSDT) is needed to evaluate their mechanical behavior. The optimal configuration of laminates is a relevant aspect of the laminates design mainly with reference to buckling phenomena. In the present paper, the determination of the optimal arrangement of hybrid laminates to get maximum buckling loads is analyzed for rectangular, simply supported, flat laminates under biaxial compression and shear. Using the FSDT in conjunction with the Rayleigh-Ritz method, buckling loads of laminates are obtained by an energetic algorithm as a solution of a standard eigenvalue problem. Moreover, damage phenomena produced by a large number of microcracks can strongly affect the mechanical response of the structure and the value of the maximum buckling load. In this work the relationships proposed by Laws and Brockenbrough are used to model the damage phenomenon and are associated to the FSDT and the Rayleigh-Ritz method to obtain the change in the buckling load.
机译:层压材料的杂交,使用不同的种类在每个层中的增强纤维进行的,表示从的设计的角度来看非常有趣的解决方案。混合板层的机械性能是高度可以通过不均匀涉及剪切变形的相关值的影响,所以,第一阶剪切变形理论(FSDT)需要以评价它们的机械性能。层压板的最佳的配置是层压板的一个相关方面设计主要参照屈曲现象。在本文件中,混合叠层的最佳布置以获得最大屈曲载荷的确定分析矩形,简支,双轴压缩和剪切平面层压板。与瑞利 - 里兹法结合使用FSDT,屈曲层压材料的负载由一个充满活力的算法作为标准特征值问题的解获得的。而且,通过大量的微小裂纹的产生的损坏现象可以强烈地影响结构的机械响应和最大屈曲载荷的值。在这项工作中由法律和Brockenbrough提出的关系被用于将损坏现象进行建模和关联到FSDT和瑞利 - 里兹法,以获得在压曲载荷的变化。

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