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Performance of connection system used in lightweight glubam shear wall

机译:轻质Glubam剪力墙中使用的连接系统的性能

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Industrial-produced laminated bamboo panel is a new type of eco-friendly material used for glubam structures in construction industry. This type of panel can be further cold-glued with different orientation combinations to form various types of glubam structural elements and to meet different structural and architectural requirements. The lightweight glubam frame structure is one of the popular forms of glubarn structures which can be produced in factory and installed on site with few labor forces and transportation equipment, making it potentially possible to be widely used in urban or rural areas. Like the lightweight wood-frame structures, the governing structural element determining the lateral resistance capacity of lightweight glubam structures is the frame shear wall, as well as that the shear wall's lateral resistance strength is determined through the metal connections used. Thus, this study is focused on the performance of connection system used in lightweight glubam shear walls made with thick strip plybamboo boards, the connection system includes panel-frame nail connections, frame-frame connections and hold-down devices, respectively. Yield moment and curves of nails used in lightweight glubam structures were experimentally obtained according to ASTM F1575 standard. The monotonic and cyclic loading tests of panel-frame connections and frame-frame connections with different nail connectors were performed following ASTM D1761 standard. Mechanical parameters (such as elastic stiffness k(e), maximum force F-max, ultimate displacement Delta(u)) are obtained. Tests of hold-down connection with two different capacities under monotonic and cyclic loading are also presented in this research. A finite element model of lightweight shear wall based on metal connections information is validated through previous research in literature, and is used to predict the performance of lightweight frame shear walls with various combination of connections and studs, to find a suitable type of glubam or timber-glubam hybrid shear wall corresponding to certain load bearing and deformation requirements. (C) 2019 Elsevier Ltd. All rights reserved.
机译:工业生产的层压竹子面板是一种新型环保材料,用于建筑业的Glubam结构。这种类型的面板可以进一步冷胶,具有不同的取向组合,形成各种类型的Glubam结构元件,并满足不同的结构和架构要求。轻质Glubam框架结构是普遍的Glubarn结构之一,可以在工厂生产并安装在现场,劳动力和运输设备很少,这可能是城市或农村地区广泛应用于城市或农村地区。与轻质木框架结构一样,测定轻质Glubam结构的横向电阻容量的控制结构元件是框架剪切壁,以及通过所使用的金属连接确定剪切壁的横向电阻强度。因此,本研究专注于用厚厚的填充填充板制成的轻质Glubam剪力墙中使用的连接系统的性能,连接系统分别包括面板框架钉连接,框架框架连接和压紧设备。根据ASTM F1575标准实验获得轻质Glubam结构中使用的钉子的产量矩和曲线。在ASTM D1761标准之后执行与不同钉连接器的面板框架连接和帧框架连接的单调和循环加载试验。获得机械参数(例如弹性刚度k(e),最大力F-max,最终位移δ(u))。本研究还提出了与单调和循环载荷下两种不同容量的阻滞连接的测试。通过先前的文献研究验证了基于金属连接信息的轻质剪力墙的有限元模型,用于预测具有各种连接和螺柱的各种组合的轻质框架剪力墙的性能,找到合适的Glubam或木材类型-Glubam混合剪力墙对应于某些承载和变形要求。 (c)2019 Elsevier Ltd.保留所有权利。

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