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Mechanical in-plane behaviour of masonry walls reinforced by composite materials: Experimental and analytical approaches

机译:复合材料加固砌体墙体的机械面内行为:实验和分析方法

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>Masonry is a traditional building system in most countries of the world, including France. However, in recent decades, earthquakes have caused significant damage to masonry structures. The possibility of using textile-reinforced concrete or fibre-reinforced polymers to strengthen masonry structures has been recently assessed. This article addresses the effectiveness of externally bonded composite materials, particularly those based on newly developed cementitious matrices, to strengthen masonry structures. Experimental tests were performed in a previous study on six masonry walls, five of which were strengthened on both sides with either textile-reinforced concrete or fibre-reinforced polymers. This experimental campaign has been supplemented to determine the mechanical properties of the materials involved in design models, and it is used to check the potential of analytical models to predict lateral strength. This study identifies the interests and the restrictions governing the use of traditional empirical design approaches (employed for fibre-reinforced polymer-strengthened walls) when next-generation textile-reinforced concrete composites are used as strengthening materials. Adjustments taking into account the specificities of textile-reinforced concrete behaviour have been introduced, and their impact on the relevance of the models has been quantified.
机译: >砌体是一种传统的建筑系统在世界大多数国家,包括法国。然而,近几十年来,地震对砌体结构造成了重大损害。最近已经评估了使用纺织钢筋混凝土或纤维增强聚合物加强砌体结构的可能性。本文涉及外部粘合复合材料的有效性,特别是基于新开发的水泥基质的效果,以加强砌体结构。实验试验在先前的六个砌体壁上进行,其中5个在两侧加强,纺织钢筋混凝土或纤维增强聚合物。该实验活动已经补充,以确定设计模型所涉及的材料的机械性能,用于检查分析模型的潜力以预测横向强度。本研究确定了当前发电纺织钢筋混凝土复合材料作为强化材料时,识别使用传统经验设计方法(用于纤维增强聚合物加固墙壁)使用的利益和限制。考虑到纺织钢筋混凝土行为的特异性的调整已经介绍,它们对模型的相关性的影响已经量化。

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