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Effects of Defects on Bond Behavior of Fiber Reinforced Cementitious Matrix Materials

机译:缺陷对纤维增强水泥基材料粘结性能的影响

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摘要

High-strength fibers embedded in inorganic matrix i.e., Fiber Reinforced Cementitious Mortar materials (FRCM) are commonly used as strengthening technique for existing masonry structures, due to the low sensitivity to debonding phenomena between substrate and matrix. Nevertheless, the use of lime or cement-based matrix instead of epoxy adhesive implies that attention has to be paid to the bond behavior between the fibers and the matrix, since sliding phenomena and cohesive failures in the mortar matrix can occur. The paper aims to investigate the effect of the mechanical properties of fiber and matrix on the FRCM efficiency, and potential geometrical defects, typical of real applications. The aim is to analyze the mechanical behavior of the FRCM system by simulating hypothetical bond tests, as they are usually performed in laboratories. The bond test has a significant role, as it is used for the qualification of the material, providing sometimes very scattered results. Hence, it is particularly important and greatly discussed in the scientific community and among manufactures and practitioners. The purpose is to understand where this variability could derive from and possibly how to contain it, to improve the characterization of FRCM systems. A mechanical model has been proposed to simulate the usual bond test to focus and stress the way in which each fiber slips out of the matrix as the load increases; and this has been recognized as the main reason for scattered results in bond tests. The model was then applied to the typical cases of PBO-FRCM and Glass-FRCM, hence considering different ratios for the fiber and matrix properties.
机译:嵌入在无机基质中的高强度纤维,即纤维增强水泥砂浆材料(FRCM),由于对基材和基质之间的脱粘现象的敏感性低,通常被用作现有砖石结构的增强技术。然而,使用石灰或水泥基基体代替环氧粘合剂意味着必须注意纤维与基体之间的粘合行为,因为砂浆基体中可能会发生滑动现象和内聚破坏。本文旨在研究纤维和基体的机械性能对FRCM效率以及潜在的几何缺陷的影响,这是实际应用中的典型现象。目的是通过模拟假设的键合测试来分析FRCM系统的机械性能,因为它们通常在实验室中进行。粘合测试具有重要作用,因为它用于鉴定材料,有时会产生非常分散的结果。因此,它在科学界以及制造商和从业者中尤为重要,并进行了广泛的讨论。目的是了解这种可变性可能来自何处,以及如何将其包含在内,以改善FRCM系统的特性。已经提出了一种机械模型来模拟通常的粘结测试,以集中并强调随着载荷增加,每根纤维滑出基体的方式。这已被认为是债券测试结果分散的主要原因。然后将该模型应用于PBO-FRCM和Glass-FRCM的典型情况,因此考虑了纤维和基质特性的不同比率。

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