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Strength and Design of Pin-Ended Circular Arches with Sinusoidal Corrugated Web under Combined In-Plane Loads

机译:平面内联合载荷作用下正弦波纹腹板销端圆拱的强度和设计

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This paper presents numerical and experimental investigations of the in-plane strength and design of pin-ended circular arches having a sinusoidal corrugated web under combined in-plane loads. Finite-element models are developed that account for the effects of the corrugated web, initial geometric global and local imperfections of the arch and its web and flanges, residual stresses, the included angle and curvature of the arch, and different combined load cases. These are validated by test results and used together with the experiments to investigate the failure modes and strengths of such arches. It is found that an I-section arch with a corrugated web may fail in a global mode or in a web shear buckling mode. There are two types of global failure modes for arches under combined loads. In most cases, corrugated arches may fail in an elastoplastic buckling mode. However, when wind load plays an important role in the combined loads, corrugated arches may fail in a plastic yielding mode. An interaction design equation is proposed for predicting the global in-plane strength of steel arches with a sinusoidal corrugated web under combined axial and bending actions. The design equation provides lower bound predictions for the strengths of corrugated arches. General procedures are also proposed for the practical strength design of steel I-section arches with a sinusoidal corrugated web. (C) 2016 American Society of Civil Engineers.
机译:本文提出了在组合平面内载荷作用下,具有正弦波纹腹板的端部圆拱的平面强度和设计的数值和实验研究。开发了有限元模型,该模型考虑了波纹腹板的影响,拱及其腹板和翼缘的初始几何整体和局部缺陷,残余应力,拱的夹角和曲率以及不同的组合载荷工况。这些通过测试结果进行了验证,并与实验一起用于研究此类拱的破坏模式和强度。发现具有波纹状腹板的I形截面拱可能在整体模式或腹板剪切屈曲模式下失效。组合荷载作用下,拱有两种全局失效模式。在大多数情况下,波纹拱可能会在弹塑性屈曲模式下失效。但是,当风荷载在组合荷载中起重要作用时,波纹拱可能会在塑性屈服模式下失效。提出了一个相互作用设计方程,用于预测在组合轴向和弯曲作用下具有正弦波纹腹板的钢拱的整体面内强度。设计方程式为瓦楞拱的强度提供了下界预测。还提出了使用正弦波纹腹板的钢制I型截面拱的实用强度设计的一般程序。 (C)2016年美国土木工程师学会。

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