混凝土结构抗弯加固用纺织钢筋混凝土-第1部分:结构性能和设计模型

A. Bösche, F. Jesse, R. Ortlepp, S. Weiland, M. Curbach
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引用次数: 19

摘要

使用技术纺织品加固混凝土(即纺织增强混凝土[TRC])扩展到全新的应用领域。由于纺织材料的耐腐蚀性,不再需要钢筋混凝土所需的厚混凝土覆盖层。厚度小至10毫米(约10毫米)的细长结构构件。4英寸)是可能的。纺织品增强材料的附加特性包括二维平面特性,以及易变形性和对复杂和弯曲几何形状的适应性。以TRC建造的人行天桥为例。各种几何形式,如板、梁、t梁、壳和柱可以很容易地使用TRC进行加固。使用TRC确定元件和结构的尺寸需要详细了解这种复合材料的承载性能。事实上,这种行为类似于钢筋混凝土;然而,纺织钢筋与细混凝土之间的结合以及纺织钢筋内部细丝之间的结合对这种行为的影响更大。最小的厚度也使使用TRC加强现有混凝土结构成为可能。这种加强既增加了结构的极限承载能力,也增加了结构的使用能力。本文介绍了加固板和梁的试验结果,并建立了抗弯加固设计模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Textile-Reinforced Concrete for Flexural Strengthening of RC-Structures-Part 1: Structural Behavior and Design Model
The use of technical textiles to reinforce concrete (i.e., textile reinforced concrete [TRC]) extends into entirely new areas of application. The thick concrete covers, as required for steel reinforced concrete, are no longer needed due to the corrosion resistance of textile materials. Slender structural members with thicknesses as small as 10 mm (appr. 4 in.) are possible. Additional characteristic features of textile reinforcement include two-dimensional planar characteristics, as well as ease of deformability and adaptability to complex and curved geometries. This can be exemplified by a pedestrian bridge built of TRC. Various geometric forms, such as slabs, beams, T-beams, shells, and columns can easily be strengthened using TRC. Dimensioning of elements and structures using TRC requires detailed knowledge of the load-bearing behavior of this composite material. Indeed, such behavior resembles that of steel reinforced concrete; however, this behavior is more heavily influenced by the bond between the textile reinforcement and the fine concrete, as well as the bond between filaments within the textile reinforcement. Minimal thicknesses also make it possible to strengthen existing concrete structures using TRC. Such strengthening increases both the ultimate load bearing capacity, as well as the serviceability, of the structure. Experimental results of strengthened slabs and beams, as well as a design model for flexural strengthening, is presented in this paper.
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