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Truss Plates for Use as Wood-Concrete Composite Shear Connectors

机译:桁架板用作木材混凝土复合剪切连接器

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Wood-concrete composite systems are well established, structurally efficient building systems for both new construction and rehabilitation of old timber structures. Composite action is achieved through a mechanical device to integrally connect in shear the two material components, wood and concrete. Depending on the device, different levels of composite action and thus efficiency are achieved. The purpose of this study was to investigate the structural feasibility and effectiveness of using truss plates, typically used in the making of metal-plate-connected wood trusses, as shear connectors for laminated veneer lumber (LVL)-concrete composite systems. The experimental program consisted of two studies. The first study established slip-modulus and ultimate shear capacity of the truss plates when used in an LVL-concrete push out assembly. The second study evaluated overall composite bending stiffness and strength in two full size T-beams when subjected to four-point bending. One beam employed two continuous rows of truss plates and the other employed one row. It was found that the initial stiffness of both T-beams was similar for one and two rows of truss plates but that the ultimate capacity was approximately 20% less with the use of only one row.
机译:木材混凝土复合系统是建立的,结构高效的建筑系统,用于旧木结构的新建筑和康复。复合动作是通过机械装置实现的,以整体连接在剪切两种材料部件,木材和混凝土中。根据该装置,实现了不同级别的复合动作,从而实现了效率。本研究的目的是探讨使用桁架板的结构可行性和有效性,通常用于制作金属板连接的木桁架,作为层压板材(LVL)的剪切连接器 - 电动复合系统。实验计划由两项研究组成。当在LVL混凝土推出组件中使用时,第一研究建立了桁架板的滑动模量和极限剪切容量。第二研究在经受四点弯曲时评估了两个全尺寸T梁的整体复合弯曲刚度和强度。一束采用两排连续行的桁架板,另一个桁架板和另一个射线使用一排。结果发现,两排桁架板的初始刚度相似,但是使用一排的最终容量较小约为20%。

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