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An empirical model for compressive strength of the limestone masonry based on number of courses - An experimental study

机译:基于课程数量的石灰石砌体抗压强度的实证模型 - 实验研究

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This experimental study aims to contribute to the knowledge of the mechanical behaviour of limestone masonry. In order to analyze the influence of varying the number of masonry courses on the behaviour of uniaxial compression, three series of small-size samples with different numbers of masonry courses are used. The characterization of the masonry materials (limestone prisms and mortar) are performed. The masonry specimens used are single-leaf regular ashlar masonry with joints made of natural hydraulic lime mortar and sand. The materials used in the experimental work are selected and manufactured to be representative of the mechanical characteristics present in old buildings, characterized by the quasi-homogeneity of stone blocks and low strength mortars. A new predictive model of the masonry compressive strength is herein presented that take into account the number of courses and the height of the masonry specimens. This model is evaluated by comparison with other existing models and shows a good agreement between the analytical and experimental values. (c) 2020 Published by Elsevier Ltd.
机译:该实验研究旨在有助于了解石灰石砌体的力学行为。为了分析对单轴压缩行为的影响,使用具有不同数量的砌体课程的三种小型样本。进行砌体材料(石灰石棱镜和砂浆)的表征。使用的砌体标本是单叶常规Ashlar砌体,带有由天然液压灰砂浆和沙子制成的关节。在实验工作中使用的材料被选择和制造成代表旧建筑中存在的机械特性,其特征在于石块和低强度砂浆的准均匀性。本文提出了一种新的砌体抗压强度的预测模型,以考虑到粪便的数量和砌体标本的高度。通过与其他现有模型进行比较来评估该模型,并在分析和实验值之间显示出良好的一致性。 (c)2020由elestvier有限公司发布

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