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Experimental and numerical performance of shear connections in CLT-concrete composite floor

机译:CLT-混凝土复合地板剪力连接的试验和数值性能

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The hybrid cross-laminated timber (CLT) and concrete system has drawn attention as an attractive application for residential and commercial buildings. However, it is crucial to fully understand the mechanical characteristics of the CLT-concrete composite connections before such a hybrid structure becomes widely applicable. This paper assesses the structural performance (force-slip response, slip modulus, and failure mode) of a CLT-concrete composite by conducting fifteen pushout test specimens, which were designed by using the gamma-method (Eurocode 5). In these composite specimens, the CLT floor panels were connected to concrete slabs using common mechanical connectors, and the effect of different connection types, connection angles, the penetration depth of the connector, and concrete topping thickness were investigated. The results show that all of the specimens had good trend in the failure mechanisms with a little crush occurred in the CLT and concrete. The finding revealed that the inclination connectors were appeared as an attractive connector layout for CLT-concrete composite components. Non-linear 3D finite element analysis was also developed to simulate the load-slip behavior of the CLT-concrete specimens under shear load. In general, a reliable non-linear finite element model using ANSYS is a great tool for capturing shear capacity and the overall behavior of the hybrid push-out specimens.
机译:混合交叉层压木材(CLT)和混凝土系统作为住宅和商业建筑的诱人应用而受到关注。但是,在这种混合结构变得广泛适用之前,充分了解CLT-混凝土复合连接的机械特性至关重要。本文通过进行15个采用伽玛方法(欧洲规范5)设计的推出试样评估了CLT混凝土复合材料的结构性能(力-滑动响应,滑动模量和破坏模式)。在这些复合材料样本中,使用普通的机械连接器将CLT地板面板连接到混凝土板上,并研究了不同连接类型,连接角度,连接器的穿透深度和混凝土表层厚度的影响。结果表明,所有试件的破坏机理均具有良好的趋势,而在CLT和混凝土中发生了少许挤压。该发现表明,倾斜连接器作为CLT混凝土复合材料组件的有吸引力的连接器布局而出现。还开发了非线性3D有限元分析来模拟CLT混凝土试样在剪切荷载下的荷载滑移行为。通常,使用ANSYS的可靠的非线性有限元模型是捕获剪切力和混合推出试件整体性能的理想工具。

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