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首页> 外文期刊>Journal of Constructional Steel Research >Steel-plate composite (SC) walls: In-plane shear behavior, database, and design
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Steel-plate composite (SC) walls: In-plane shear behavior, database, and design

机译:钢板复合(SC)墙:面内剪切特性,数据库和设计

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The in-plane shear strength of steel-plate composite (SC) walls is governed by the onset of Von Mises yielding in the steel faceplates. This paper uses a mechanics based model (MBM) to present the fundamental in-plane shear force-shear strain (V-gamma) response of SC walls. The MBM accounts for concrete cracking due to principal tensile stresses, and the post-cracking orthotropic composite behavior of SC walls subjected to pure in-plane shear forces. This fundamental behavior of SC walls is illustrated using the results from a large-scale in-plane shear test of an SC wall specimen (with flange walls), and compared to the predictions from the MBM. The paper also includes a comprehensive experimental database of all in-plane shear tests conducted in Japan, S. Korea, and US. The database consists of 26 SC wall tests with a wide range of parameters for the wall thickness, reinforcement ratio, aspect ratio, and the presence (or absence) of axial stress. The experimental results are used to identify the key parameter influencing the in-plane shear strength of SC walls, which is shown to be the steel faceplate reinforcement ratio. The design code equations used in engineering practice around the world are used to predict the in-plane shear strength of all 26 SC wall specimens in the database. The conservatism and accuracy of the code predictions of strength are evaluated by comparing them with experimental results, and reliability analysis are performed to estimate the associated strength reduction (phi) factors. (C) 2015 Elsevier Ltd. All rights reserved.
机译:钢板复合材料(SC)墙的面内剪切强度受钢面板中冯·米塞斯屈服的影响。本文使用基于力学的模型(MBM)来展示SC墙的基本面内剪切力-剪切应变(V-γ)响应。 MBM解释了由于主拉伸应力引起的混凝土开裂,以及承受纯面内剪切力的SC墙开裂后的正交各向异性复合行为。 SC墙的这种基本行为是使用SC墙样本(带法兰壁)的大规模面内剪切试验的结果说明的,并与MBM的预测进行了比较。本文还包括在日本,韩国和美国进行的所有面内剪切测试的综合实验数据库。该数据库由26个SC壁测试组成,并具有各种参数,包括壁厚,增强比,长宽比和是否存在轴向应力。实验结果用于确定影响SC墙面抗剪强度的关键参数,该参数显示为钢面板的配筋率。世界各地的工程实践中使用的设计代码方程式可用来预测数据库中所有26个SC壁试样的面内剪切强度。通过与实验结果进行比较来评估强度代码预测的保守性和准确性,并进行可靠性分析以估计相关的强度降低(phi)因素。 (C)2015 Elsevier Ltd.保留所有权利。

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