结合弗拉索夫扭转理论和伯努利弯曲理论验证边缘平行的不对称折叠板的静态行为

T. Makarios, A. Bakalis, A. Athanatopoulou
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引用次数: 0

摘要

本文介绍了一种结合弗拉索夫扭转理论和伯努利弯曲理论的新混合程序,定性和定量地演示了边缘平行的非对称折叠板在重力静载荷作用下的运行情况。 最近提出的基于 Vlasov 扭转理论的技术被用于精确计算钢筋混凝土折叠板的主弹性参考系,该折叠板具有非对称的薄壁开放截面,边缘平行。此外,根据伯努利弯曲理论,将 Vlasov 理论的翘曲力矩(或双力矩)概念与绕两轴的纯弯曲相结合,以确定折叠板纵向的法向应力。 通过计算:(a) 断面的弹性特征(弹性中心、主轴),(b) 断面的主起点、扇形坐标、包裹惯性矩和包裹刚度,确定薄壁开口断面的翘曲特性。最后,考虑到双轴挠曲和双矩现象,计算了沿纵向的法向应力。 通过结合棱柱梁的伯努利弯曲理论和薄壁开口截面的弗拉索夫扭转理论,找到了受检折叠板中间截面纵向法向应力的精确解。 目前的程序可用作非对称折叠板的基准分析方法,以评估各种分析 F.E.M. 软件结果的可靠性,涵盖了特殊结构结构分析的一个未决问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymmetric Folded Plate with Parallel Edges in Validation of their Static Behavior by Combining Vlasov Torsion Theory with Bernoulli Bending Theory
A new hybrid procedure that combines the Vlasov torsion theory with the Bernoulli bending theory is presented herein, to demonstrate qualitatively and quantitatively the operation of asymmetric folded plates with parallel edges, which are loaded with gravity static loads. A recently proposed technique based on Vlasov torsion theory is used for the exact calculation of the Principal Elastic Reference System in a reinforced concrete folded plate having an asymmetric thin-walled open cross-section with parallel edges. Moreover, the warping moment (or bi-moment) concept of the Vlasov theory is combined with the pure-bending around two axes, according to the Bernoulli bending theory, to determine the normal stresses along the longitudinal dimension of the folded plate. Τhe warping properties of a thin-walled open cross-section are determined by calculating: (a) the elastic characteristics (elastic center, principal axes) of the section, (b) the principal start point, the sectorial coordinates, the wrapping moment of inertia and the wrapping stiffness of the section. Finally, the normal stresses along the longitudinal dimension are calculated considering the bi-axes flexure with the bi-moment phenomenon. Τhe exact solution of normal stresses at the middle section of an examined folded plate along the longitudinal dimension is found by combining the Bernoulli bending theory for prismatic beams and the Vlasov torsion theory for thin-walled open sections. The current procedure can be used as a benchmark analysis method of asymmetric folded plates in order to evaluate the reliability of the results of various analysis F.E.M. software, covering an open issue of the structural analysis of special structures.
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