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纬编纺织增强混凝土在单轴拉伸下的荷载-变形行为

Load-deformation behaviour of weft-knitted textile reinforced concrete in uniaxial tension.

作者信息

Lee Minu, Mata-Falcón Jaime, Kaufmann Walter

机构信息

Institute of Structural Engineering (IBK), Swiss Federal Institute of Technology (ETH Zürich), Stefano-Franscini-Platz 5, HIL E 36.2, 8093 Zürich, Switzerland.

出版信息

Mater Struct. 2021;54(6):210. doi: 10.1617/s11527-021-01797-5. Epub 2021 Nov 4.

Abstract

Weft-knitted textiles offer many advantages over conventional woven fabrics since they allow the fabrication of doubly curved geometries without the need of stitching multiple patches together. This study investigated the use of high-strength continuous fibres as knitted textile reinforcement, focusing on various knitting patterns, fibre materials, coating types and spatial features to enhance the bond conditions between concrete and reinforcement. The bond is of particular interest since the contact surface of knitted textiles is fundamentally different due to their closed surface, compared to commercially available textile reinforcement, which is normally formed as orthogonally woven grids of rovings. An experimental campaign consisting of 28 textile-concrete composites was conducted, where digital image correlation-based measurements were used to assess the load-deformation behaviour and to analyse the crack kinematics. The results showed a beneficial post-cracking behaviour for epoxy coated configurations with straight inlays. The comparison of these configurations with conventional textile reinforcement generally showed a similar behaviour, but with higher utilisation compared to the filament strength. The Tension Chord Model, which assumes a constant bond stress-slip relationship, was adapted for the specific geometry of the knitted reinforcement, and it was used for the estimation of bond stresses and a post-diction of the experimental results, generally showing a good agreement.

摘要

纬编纺织品比传统机织织物具有许多优势,因为它们能够制造双曲面几何形状,而无需将多个补丁缝合在一起。本研究调查了使用高强度连续纤维作为针织织物增强材料的情况,重点关注各种针织图案、纤维材料、涂层类型和空间特征,以增强混凝土与增强材料之间的粘结条件。粘结特别受关注,因为与通常由粗纱正交编织网格形成的市售织物增强材料相比,针织织物的接触面由于其封闭表面而有根本不同。进行了一项由28个织物 - 混凝土复合材料组成的试验活动,其中基于数字图像相关的测量用于评估荷载 - 变形行为并分析裂缝运动学。结果表明,对于带有直嵌体的环氧涂层配置,开裂后具有有益的性能。这些配置与传统织物增强材料的比较通常显示出类似的性能,但与长丝强度相比具有更高的利用率。假设粘结应力 - 滑移关系恒定的拉力弦模型针对针织增强材料的特定几何形状进行了调整,并用于估计粘结应力和对实验结果进行事后预测,总体显示出良好的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b876/8568773/4c8fd3f747bc/11527_2021_1797_Fig1_HTML.jpg

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