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Expansion of mortar joints in direct shear tests of masonry samples: implications on shear strength and experimental characterization of dilatancy

机译:砌体样品直接剪切试验中的砂浆关节扩张:对剪切强度的影响和膨胀的实验表征

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摘要

The expansion of masonry specimens during direct shear tests has been reported in several research studies. This phenomenon, known as dilatancy, is caused by the formation of cracking surfaces in mortar joints. In particular, when the cracking surface is not perfectly flat, the shear displacements tend to increase the volume of the sample. Experimental investigations focused on the characterization of this phenomenon are rather limited for masonry and the effects on shear strength have received little attention, with consequent issues for a correct interpretation of the results. The present article reports the results of an ongoing research on brick masonry aimed to characterize experimentally the dilatancy and to evaluate the role of this phenomenon in the interpretation of the direct shear test. If the expansion of the specimen is significantly restrained, the standard approaches used for the characterization of the mechanical parameters (as per EN 1052-3 and ASTM C1531) tend to overestimate the initial shear strength (f(vo)) and underestimate friction. Moreover, no indications are generally given to characterize dilatancy with experimental data. This aspect is particularly important for the micro-modelling of masonry because the constitutive models commonly used for mortar joints require this information. One of the objectives of the present article is to propose a simple model for a sound interpretation of the direct shear test of masonry samples taking into account the dilatancy. Several masonry samples composed of calcium silicate units and cement mortar joints have been subjected to triplet tests (EN 1052-3) and laboratory-simulated shove tests. First, a repeatable and objective methodology to measure and characterize the dilatancy is provided. Then, an extension of the standard methodology of the EN 1052-3 and ASTM C1531 that includes the contribution of this phenomenon is proposed. The novel formulation offers the possibility to characterize dilatancy with experimental data and the definition of mechanical parameters that are not biased by the presence of this phenomenon. The model presented in this article has proven to be consistent with the experimental data and it has been validated numerically in another recent research study.
机译:在几项研究研究中据报道,在直接剪切试验期间扩增砌体标本。这种已知膨胀的现象是由砂浆接头中的裂化表面形成引起的。特别地,当裂化表面不完全平坦时,剪切位移倾向于增加样品的体积。专注于这种现象表征的实验研究是有限的,对于砌体而言,对剪切强度的影响很少受到关注,因此对结果进行了正确解释的问题。本文报告了对砖砌砌体的持续研究的结果,旨在通过实验表征实际膨胀,并评估这种现象在解释直接剪切试验中的作用。如果样本的扩展被显着抑制,则用于表征机械参数的标准方法(根据EN 1052-3和ASTM C1531)倾向于高估初始剪切强度(F(VO))并低估摩擦。此外,通常不给出指示表征与实验数据的膨胀性。这方面对于砌体的微观建模尤为重要,因为砂浆关节常用的本结构型模型需要这些信息。本文的目的之一是提出一种简单的模型,用于考虑稀释性的砖石样本的直接剪切试验的声音解释。由硅酸钙单元和水泥砂浆接头组成的几个砌体样品已经受到三重态测试(EN 1052-3)和实验室模拟刷测试。首先,提供一种可重复的和客观方法来测量和表征膨胀性。然后,提出了包括这种现象的贡献的EN 1052-3和ASTM C1531的标准方法的延伸。新型配方提供了与实验数据表征膨胀的可能性,以及由于这种现象的存在而没有偏向的机械参数的定义。本文提出的模型已被证明与实验数据一致,并且在最近的另一个研究研究中已经数量验证。

著录项

  • 来源
    《Materials and structures》 |2019年第4期|64.1-64.16|共16页
  • 作者单位

    Univ Pavia Dept Civil Engn & Architecture DICAr Via Ferrata 3 I-27100 Pavia Italy|European Ctr Training & Res Earthquake Engn EUCTR Via Ferrata 1 I-27100 Pavia Italy;

    Univ Pavia Dept Civil Engn & Architecture DICAr Via Ferrata 3 I-27100 Pavia Italy|European Ctr Training & Res Earthquake Engn EUCTR Via Ferrata 1 I-27100 Pavia Italy;

    Univ Pavia Dept Civil Engn & Architecture DICAr Via Ferrata 3 I-27100 Pavia Italy|European Ctr Training & Res Earthquake Engn EUCTR Via Ferrata 1 I-27100 Pavia Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Masonry; Shear strength; Expansion; Dilatancy; Triplet test (EN 1052-3); In situ shove test (ASTM C1531);

    机译:砌体;剪切力量;扩张;膨胀;三重态测试(EN 1052-3);原位刷测试(ASTM C1531);

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