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Bond of Flax Textile-Reinforced Mortars to Masonry

机译:亚麻纺织加固砂浆的粘结到砌体

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摘要

This paper investigates the structural performance of Flax Textile-Reinforced Mortars (FTRM) systems bonded to a masonry substrate. Single-lap shear bond tests were carried out to assess the influence of bond length, the number of TRM layers and bonded width on the behaviour of two flax textiles of different architecture embedded in lime-based mortar. Conventional and non-contact measuring methods (Digital Image Correlation -DIC) were employed to gain additional insights into the development of stress transfer mechanisms and load-slip behaviour at the global and local scale. It was found that textile architecture significantly affects overall bond performance, with a smaller diameter and twisted yarns arranged in a denser mesh utilising the fibre strength to a higher degree. The effective bond length for the tested single-layer systems is between 150 and 210 mm, and failure is dominated by fibre rupture. A high variation in stress distribution was seen in multi-layer specimens with a wider bonded width, and this can lead to premature delamination. Finally, recommendations for testing in line with the existing RILEM experimental methodology are given to account for the high variability and unique failure modes observed in natural fibre TRM. This work aims to provide design guidelines for sustainable and effective structural strengthening solutions, which are particularly suitable for less developed countries.Crown Copyright (c) 2021 Published by Elsevier Ltd. All rights reserved.
机译:本文研究了亚麻纺织增强砂浆(FTRM)系统的结构性能,粘合到砌体基质。进行单圈剪切粘接试验以评估键长,TRM层数和粘合宽度的影响,嵌入基于石灰的砂浆中的不同架构的两个亚麻纺织品的行为。使用常规和非接触测量方法(数字图像相关性 - 在全球和局部级别地增加进入应力传递机制和负载滑移行为的额外洞察。结果发现,纺织架构显着影响整体粘合性能,具有较小的直径和扭曲的纱线,布置在密度网格中,利用纤维强度达到更高的程度。测试的单层系统的有效键合长度在150到210mm之间,并且失败以纤维破裂为主。在具有更宽的粘合宽度的多层样本中看到应力分布的高变化,这可能导致过早分层。最后,根据现有的RILEM实验方法进行测试的建议,以考虑天然光纤TRM中观察到的高变形和独特的故障模式。这项工作旨在为可持续和有效的结构强化解决方案提供设计准则,这些方法特别适用于较少发达国家。elsevier有限公司发表的版权(c)2021版权所有。保留所有权利。

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