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Experimental and numerical investigation of the sliding behaviour of a set of two rigid blocks subjected to cyclic shear-type loads

机译:一种经受循环剪切式负荷的一组刚性块的滑动行为的实验性和数值研究

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The aim of this paper is to study the shear transfer mechanism through the horizontal contact surface of two rigid blocks. The shear resistance offered by this contact interface is the main mechanism mobilized by the structural elements of many ancient stone dry-masonry structures in order to transfer horizontal actions from earthquakes and wind forces to the foundation. In some cases a certain connection exists between two blocks at the contact surface, which is materialized by wooden or metal parts at the central area of the blocks (poles, empolia). The role of this connection in transferring horizontal forces and its influence on the seismic behaviour is a point long debated by the research community. Cyclic experiments were performed at the laboratory of Strength of Materials and Structures of Aristotle University of Thessaloniki-Greece in order to study this sliding behaviour at the interface between two rigid blocks. The experimental sequence under investigation can be divided into two groups. The first group includes specimens without any connection between the rigid blocks, while the second group includes specimens with poles and empolia connecting the rigid blocks. During all tests the imposed cyclic horizontal sliding displacement was combined with constant level of vertical load applied at the top of the upper block. Through this experimental process, it became possible to describe the shear transfer mechanism through diagrams of horizontal sliding displacement versus horizontal load, and study the effects on the shear transfer behaviour between these rigid blocks without or with the connection with poles and empolia between them. Numerical finite element simulations of this shear transfer mechanism were also performed utilizing two commercial Finite Element Software packages.
机译:本文的目的是通过两个刚性块的水平接触表面来研究剪切转移机构。该接触界面提供的剪切电阻是由许多古代石材干燥砌体结构的结构元素动员的主要机制,以便将水平动作从地震和风力转移到基础。在某些情况下,在接触表面的两个块之间存在一定的连接,其在块的中心区域(POLES,EMPOLIA)的木或金属部件通过木质或金属部件进行了实现。这一联系在转移水平力量及其对地震行为的影响方面的作用是研究界的一点。在塞萨洛尼基 - 希腊亚里士多德大学材料和结构的实验室进行循环实验,以研究两个刚性块之间的界面处的这种滑动行为。正在研究的实验序列可以分为两组。第一组包括没有刚性块之间的任何连接的标本,而第二组包括具有连接刚性块的杆和Empolia的标本。在所有测试过程中,施加的循环水平滑动位移与施加在上层顶部的恒定载荷的恒定水平。通过这种实验过程,可以通过水平滑动位移与水平载荷的图来描述剪切传递机制,并研究这些刚性块之间的剪切传递行为的影响,而不是与它们之间的杆和eMpolia的连接。该剪切传输机构的数值有限元模拟也利用两个商业有限元软件包进行。

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