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Crack development in transverse loaded base-restrained reinforced concrete walls

机译:横向受约束的钢筋混凝土墙的裂缝发展

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The prediction and control of crack widths in reinforced concrete structures has been the subject of research for many years. However, there is still a lack of consensus on the design of reinforcement for crack control in walls with edge restraint. The paper describes an experimental programme undertaken to investigate the influence of early-age thermal contraction and long-term shrinkage on cracking in four edge-restrained reinforced concrete walls loaded in bending about their major axis. Bending was introduced as a result of initial preload as well as restraint of deflection due to volumetric change. The walls measured 3500 mm long by 180 mm thick with heights of 500 mm and 750 mm. The paper highlights the main findings of the experimental programme and presents the results of nonlinear finite element analysis that was carried out to investigate the effects of wall geometry and reinforcement ratio on crack widths in edge-restrained walls. Results suggest that crack widths in edge-restrained walls are significantly influenced by the wall geometric properties such as wall aspect ratio and wall height which are only indirectly accounted for through the restraint factor in crack width calculations to EN 1992. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钢筋混凝土结构裂缝宽度的预测和控制已成为多年研究的课题。但是,对于带有边缘约束的墙体中用于裂缝控制的钢筋设计仍然缺乏共识。本文描述了一个实验程序,该程序研究了早期热收缩和长期收缩对四根受边弯的钢筋混凝土约束墙的开裂的影响。弯曲是由于初始预紧力以及由于体积变化而引起的挠曲变形的限制而引入的。墙壁长3500毫米,厚180毫米,高分别为500毫米和750毫米。本文重点介绍了该实验程序的主要发现,并提出了非线性有限元分析的结果,该分析旨在研究壁的几何形状和配筋率对边缘约束墙裂缝宽度的影响。结果表明,边缘受约束的墙中的裂缝宽度受墙的几何特性(如墙的长宽比和墙高)的影响很大,而墙的几何特性仅通过EN 1992的裂缝宽度计算中的约束因子间接考虑。(C)2017 Elsevier Ltd 。 版权所有。

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