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Determination of the interfacial cohesive material law for SRG composites bonded to a masonry substrate

机译:粘合到砌体基质的SRG复合材料的界面内聚材料法测定

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摘要

Fiber reinforced cementitious matrix (FRCM) composites, also known as textile reinforced matrix (TRM) composites, are a suitable alternative to fiber reinforced polymer (FRP) composites to strengthen reinforced concrete and masonry structures. In the toolbox of FRCMs, a recently-developed composite that employs high-strength steel fibers embedded in a hydraulic mortar is particular appealing for applications on historical masonry constructions. This type of composite is known as steel reinforced grout (SRG). In this paper, an extensive experimental work is presented. Single-lap shear tests are performed to study the debonding of SRG strips from a masonry substrate, which is the critical failure mode for strengthening applications. For SRGs, debonding typically occurs at the fiber-matrix interface. A large scatter of the experimental results is observed, which is related to the variability of hydraulic mortars and their ability to impregnate the fibers. Although strain gauges can be applied directly to the fibers to obtain the experimental strain profile along the fibers, because of the presence of the matrix these measurements are complex and in some cases not reliable. Thus, indirect method based on the global response of the test is proposed to obtain the interfacial properties.
机译:纤维增强胶质基质(FRCM)复合材料,也称为纺织品增强基质(TRM)复合材料,是纤维增强聚合物(FRP)复合材料的合适替代,以加强钢筋混凝土和砌体结构。在FRCMS的工具箱中,最近开发的复合材料采用嵌入在液压砂浆中的高强度钢纤维在历史砌体结构上的应用是特别的吸引力。这种类型的复合材料称为钢筋灌浆(SRG)。在本文中,提出了一个广泛的实验工作。进行单圈剪切测试以研究来自砖石基板的SRG条带的剥离,这是用于加强应用的临界失效模式。对于SRGS,借方通常发生在光纤 - 矩阵界面处。观察到大量实验结果,这与液压砂浆的可变性及其浸渍纤维的能力有关。尽管应变仪可以直接施加到纤维上以沿着纤维获得实验菌株曲线,因为存在基质的存在这些测量是复杂的并且在某些情况下不可靠。因此,提出了基于测试的全局响应的间接方法以获得界面性质。

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