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Buckling of compressed rectangular orthotropic plate resting on elastic foundation with nonlinear change of transverse displacement over the thickness

机译:基于厚度横向位移的弹性基础压缩矩形正交板的压缩矩形原位板屈曲

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摘要

Results of investigation of buckling behaviour of an orthotropic composite plate resting on elastic orthotropic foundation with nonlinear change of transverse displacement over the thickness, using the Ritz method are reported in the paper. The foundation has the form of a parallelepiped with the fully fixed bottom plane. A model of the foundation, linking its transverse displacement with the plate deflection, is developed in this work. According to this model, the transverse displacement of the foundation varies nonlinearly over the thickness as opposed to the traditional Winkler-Pasternak model. The proposed method of calculation of critical buckling load is based on a one-dimensional minimisation procedure with respect to the parameter characterising the decay of the transverse displacement of the foundation over its thickness. Using this method, the effects of plate and foundation thicknesses, and moduli of elasticity of the foundation material on the critical buckling load are analysed. It is found that the values of critical loads calculated using the proposed model are lower than those calculated based on the Winkler-Pasternak model. The verification of the results obtained based on the different models of deformed foundation is performed using the finite element method. The finite-element model was composed of three-dimensional elements. The analysis confirmed the validity of the calculations of critical load. The study has shown that the model of the foundation deformation developed in this work enables more accurate calculations of the critical load to be performed compared with those based on the conventional Winkler-Pasternak model.
机译:报道了使用ritz方法对厚度横向位移的非线性正交基础依赖于弹性正交基础的正交复合板屈曲行为的研究结果。该基础具有与完全固定底平面的平行档位的形式。在这项工作中开发了一种基础的模型,将其与板偏转的横向位移连接。根据该模型,基础的横向位移在与传统的Winkler-Pasternak模型相反的厚度上时不间断地变化。所提出的关键屈曲负荷的计算方法基于相对于表征基础横向位移的参数的一维最小化过程在其厚度上。使用该方法,分析了板材和基础厚度的效果,以及基础材料对关键屈曲负荷的基础材料的模态。发现使用所提出的模型计算的临界负载值低于基于Winkler-Pasternak模型计算的值。使用有限元方法进行基于变形基础的不同模型获得的结果的验证。有限元模型由三维元素组成。分析证实了临界负荷计算的有效性。该研究表明,在本作品中开发的基础变形模型使得能够更准确地计算与基于传统的Winkler-Pasternak模型的临界负载。

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