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Fiberglass Grids as Sustainable Reinforcement of Historic Masonry

机译:玻璃纤维网格作为历史性砖石的可持续加固

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摘要

Fiber-reinforced composite (FRP) materials have gained an increasing success, mostly for strengthening, retrofitting and repair of existing historic masonry structures and may cause a significant enhancement of the mechanical properties of the reinforced members. This article summarizes the results of previous experimental activities aimed at investigating the effectiveness of GFRP (Glass Fiber Reinforced Polymers) grids embedded into an inorganic mortar to reinforce historic masonry. The paper also presents innovative results on the relationship between the durability and the governing material properties of GFRP grids. Measurements of the tensile strength were made using specimens cut off from GFRP grids before and after ageing in aqueous solution. The tensile strength of a commercially available GFRP grid has been tested after up 450 days of storage in deionized water and NaCl solution. A degradation in tensile strength and Young’s modulus up to 30.2% and 13.2% was recorded, respectively. This degradation indicated that extended storage in a wet environment may cause a decrease in the mechanical properties.
机译:纤维增强复合材料(FRP)取得了越来越多的成功,主要是用于加固,翻新和维修现有的历史性砖石结构,并且可能导致增强构件的机械性能显着提高。本文总结了以前的实验活动的结果,这些活动旨在研究嵌入无机砂浆中的GFRP(玻璃纤维增​​强聚合物)网格的有效性,以增强历史性的砌体。本文还就GFRP网格的耐用性与控制材料性能之间的关系提出了创新性的结果。在水溶液中老化之前和之后,使用从GFRP格栅上切下的样品进行拉伸强度的测量。在去离子水和NaCl溶液中储存450天后,已经测试了市售GFRP网格的拉伸强度。记录到拉伸强度和杨氏模量分别下降至30.2%和13.2%。这种降解表明,在潮湿环境中长时间储存​​可能会导致机械性能下降。

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