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Perforated shear + reinforcement bar connectors in a timber-concrete composite solution. Analytical and numerical approach

机译:木材-混凝土复合材料解决方案中的穿孔剪+钢筋连接器。分析和数值方法

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This paper presents a study of a novel shear connector in a timber-concrete composite solution, focussing on the determination of an analytical expression that makes it possible to predict its behaviour and a numerical analysis that describes it accurately. The shear connector is composed of a perforated steel plate inserted into a slot within the timber rib and glued, in combination with reinforcing corrugated steel bars affixed to the top of the plate. Previous tests made it possible to establish failure mode in different T composite section plate-rebar configurations. These results determine the effectiveness of the system in terms of force-slip behaviour, with systematic failure in the timber section. A simple predictive model is proposed to determine the ultimate capacity of the joint, taking into account the mechanical properties of timber in relation with the fracture plane and the timber-adhesive interface. This model makes it possible to apply a design process that is able to predict the stiffness of the connection.FEM models were analysed for each configuration in a variable load process equal to that used in the test, according to the standard procedure. A variable friction coefficient in contact definition made it possible to achieve an accurate descriptive model in association with the test procedure.
机译:本文介绍了一种在木材-混凝土复合材料解决方案中的新型剪切连接器的研究,重点是确定可以预测其行为的解析表达式以及可以准确描述其的数值分析。剪切连接器是由一块穿孔的钢板组成,该钢板插入木材肋骨内的一个槽中并被胶合,再加上固定在钢板顶部的波纹钢筋。先前的测试使得可以在不同的T复合截面板-钢筋配置中建立失效模式。这些结果确定了该系统在力滑特性方面的有效性,其中木材部分出现了系统性故障。提出了一个简单的预测模型来确定接缝的极限承载力,其中考虑了木材与断裂面和木材-粘合剂界面有关的机械性能。该模型使得可以应用能够预测连接刚度的设计过程。根据标准程序,在等于测试中所用的可变载荷过程中,对每种配置的FEM模型进行了分析。接触定义中的可变摩擦系数使与测试程序相关联地获得准确的描述性模型成为可能。

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