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Innovative Applications of Textile-based Composites in Strengthening and Seismic Retrofitting as well as in the Prefabrication of New Structures

机译:基于纺织品复合材料在加强和地震改造中的创新应用以及预制新结构的预制

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The authors review investigations which have provided fundamental knowledge on the use of a new generation of composite materials, namely textile-reinforced mortar (TRM) and textile-reinforced concrete (TRC), as strengthening and seismic retrofitting materials of existing concrete and masonry structures, as well as in the prefabrication of new reinforced concrete (RC) structural elements. In the first part of the paper, TRM are investigated as a means to provide confinement in concrete, to increase the deformation capacity of old-type RC columns subjected to simulated seismic loading, to increase the shear and flexural resistance of RC members and to increase the out-of-plane or in-plane strength of unreinforced masonry walls. In all cases, the effectiveness of TRM systems is quantified through comparison with equivalent fiber-reinforced polymer (FRP) ones. It is concluded that TRM jacketing is an extremely promising new technique, which is expected to enjoy the attention of the research community and to be employed in numerous applications in the near future. In the second part, the paper gives a brief overview of the application of TRC in the field of advanced prefabricated systems, with a focus on stay-in-place (or permanent) formwork elements in hybrid construction projects. Along these lines, the paper provides experimental results on the behavior of TRC/RC composite beams and one-way slabs under flexure. The results indicate that the use of prefabricated TRC stay-in-place formwork elements is a promising solution for achieving reduction of the construction time, minimization of labor cost and defect-free finishing of external surfaces.
机译:作者审查了对使用新一代复合材料,即纺织品增强砂浆(TRM)和纺织品钢筋混凝土(TRC)提供了基本知识的调查,作为现有混凝土和砌体结构的加强和地震改装材料,以及在新型钢筋混凝土(RC)结构元素的预制中。在本文的第一部分中,TRM被调查为提供混凝土中限制的手段,以提高经过模拟地震载荷的旧型RC柱的变形能力,以增加RC成员的剪切和抗弯性并增加平面外或面内强度的未合成的砌体墙壁。在所有情况下,通过与等同的纤维增强聚合物(FRP)的情况相比,量化TRM系统的有效性。结论是,TRM套装是一种非常有前途的新技术,预计将享受研究界的注意,并在不久的将来在许多应用中使用。在第二部分中,本文简要概述了TRC在高级预制系统领域的应用,重点是混合建设项目中的停留(或永久)模板元素。沿着这些线,本文提供了对TRC / RC复合梁的行为和弯曲下单向板坯的实验结果。结果表明,预制TRC停留模板元素的使用是实现施工时间减少,最小化劳动力成本和外表面的无缺陷精加工的有希望的解决方案。

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