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用碳纤维织物格栅和水泥基灌浆加固的钢筋混凝土板

Reinforced Concrete Slabs Strengthened with Carbon Textile Grid and Cementitious Grout.

作者信息

Kim Hyeong-Yeol, You Young-Jun, Ryu Gum-Sung

机构信息

Structural Engineering Department, Korea Institute of Civil Engineering and Building Technology (KICT), Goyang-Si 10223, Korea.

出版信息

Materials (Basel). 2021 Sep 3;14(17):5046. doi: 10.3390/ma14175046.

Abstract

A textile reinforced concrete (TRC) system has been widely used for repair and strengthening of deteriorated reinforced concrete (RC) structures. This paper proposes an accelerated on-site installation method of a TRC system by grouting to strengthen deteriorated RC structures. Four RC slabs were strengthened with one ply of carbon textile grid and 20 mm-thick cementitious grout. The TRC strengthened slab specimens were tested under flexure and the test results were compared with those of an unstrengthened specimen and theoretical solutions. Furthermore, the TRC strengthened specimens experienced longer plastic deformation after steel yield than the unstrengthened specimen. The TRC strengthened specimens exhibited many fine cracks and finally failed by rupture of the textile. Therefore, TRC system with the proposed installation method can effectively be used for strengthening of deteriorated RC structural elements. The theoretically computed steel yield and ultimate loads overestimate the test data by 11% and 5%, respectively.

摘要

纺织增强混凝土(TRC)系统已被广泛用于修复和加固受损的钢筋混凝土(RC)结构。本文提出了一种通过灌浆加速TRC系统现场安装的方法,以加固受损的RC结构。四块RC板用一层碳纤维织物格栅和20毫米厚的水泥浆进行了加固。对TRC加固的板试件进行了弯曲试验,并将试验结果与未加固试件的结果及理论解进行了比较。此外,TRC加固试件在钢筋屈服后经历的塑性变形比未加固试件更长。TRC加固试件出现了许多细裂缝,最终因织物断裂而破坏。因此,采用所提出安装方法的TRC系统可有效地用于加固受损的RC结构构件。理论计算的钢筋屈服荷载和极限荷载分别比试验数据高估了11%和5%。

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