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Non-linear stability analysis of laminated composite plates on one-sided foundation by hierarchical Rayleigh-Ritz and finite elements

机译:多层地基上层合板非线性稳定性的分层瑞利-里兹和有限元分析

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摘要

In this paper, the influence of one-sided foundation on the unilateral buckling behavior of laminated composite orthotropic plates is investigated under compressive load. Derivation of governing equations is based on Kirchhoff's hypotheses and the principle of minimum total potential energy. The solutions are performed by the hierarchical Rayleigh-Ritz (HRRM) and finite element methods (HFEM) and are compared. Most of previous research studies on the unilateral buckling of plates are limited to single-layer plates. The results show that unsymmetric lamination experiences lower critical loads than those of symmetric lamination due to the existence of extensional-bending coupling in unsymmetric laminated sequencing schemes. Influences of aspect ratio, fiber orientation, the number of plies, Young's modulus ratio, and different boundary conditions on the unilateral buckling load are examined. The numerical results are validated with previous works studying unilateral buckling of single-layer plates resting on one-sided foundation.
机译:本文研究了单侧基础在压缩载荷作用下对层合正交异性复合板单向屈曲行为的影响。控制方程的推导基于基尔霍夫的假设和最小总势能原理。通过分层瑞利-里兹(HRRM)和有限元方法(HFEM)来执行解决方案并进行比较。先前有关板的单侧屈曲的大多数研究仅限于单层板。结果表明,由于非对称层压排序方案中存在延伸-弯曲耦合,非对称层压的临界载荷低于对称层压的临界载荷。研究了纵横比,纤维取向,层数,杨氏模量比和不同边界条件对单边屈曲载荷的影响。数值结果与先前研究单侧板搁置在单侧基础上的单侧屈曲的工作验证。

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