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首页> 外文期刊>Journal of materials in civil engineering >Dynamic Fracture Toughness of Sandstone Masonry Beams Bound with Fiber-Reinforced Mortars
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Dynamic Fracture Toughness of Sandstone Masonry Beams Bound with Fiber-Reinforced Mortars

机译:纤维增强砂浆约束砂岩砌体梁的动态断裂韧度

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This paper reports the fracture parameters of bond in stone masonry beams bound with plain and fiber-reinforced mortar. Sandstone blocks were joined together with a modern Type S mortar conforming to the Canadian standard. A companion series was examined employing a hydraulic lime mortar, typically used in the restoration of historical masonry. Based on a previous study, polypropylene micro-fibers were incorporated at up to 0.50% by volume to achieve superior crack growth resistance. This study evaluated the critical stress intensity factor, the critical effective crack length, and the critical crack mouth opening displacements. The masonry beams were subjected to quasi-static flexure as per ASTM and dynamic bending through a drop weight impact machine that generated stress rates up to 107 kPa/s. The study reveals that there is an improvement in the bond strength due to fibers but a difference in the fracture performance between the Type S and hydraulic lime mortars. Whereas with Type S mortar, fibers promote failure through fracture in the stone block especially under dynamic loading, in the hydraulic lime mortar fiber reinforcement moves the failure plane from the interface to within the bulk mortar.
机译:本文报道了用普通和纤维增强砂浆粘结的砌石梁中粘结的断裂参数。砂岩块与符合加拿大标准的现代S型砂浆连接在一起。使用液压石灰砂浆检查了同伴系列,该石灰浆通常用于修复历史石工。根据先前的研究,聚丙烯微纤维的掺入量最高为0.50%(体积),以实现优异的抗裂纹扩展性。这项研究评估了临界应力强度因子,临界有效裂纹长度和临界裂纹口张开位移。砌体梁按照ASTM进行准静态挠曲,并通过落锤式冲击机动态弯曲,产生的应力速率高达107 kPa / s。研究表明,由于纤维,粘结强度有所提高,但S型和水硬石灰砂浆的断裂性能却有所不同。相对于S型砂浆,纤维尤其是在动态载荷下会通过石块中的破裂促进破坏,而在水硬石灰砂浆中,纤维增强会将破坏面从界面移至散装砂浆内部。

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