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首页> 外文期刊>Journal of Architectural Engineering >Rotational Stiffness of Wood Truss Joints in Lateral and Diagonal Bracing and Truss-Wall Connections
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Rotational Stiffness of Wood Truss Joints in Lateral and Diagonal Bracing and Truss-Wall Connections

机译:横向和对角支撑和桁架-墙连接中木桁架节点的旋转刚度

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摘要

The modeling and structural analysis of roof systems composed of metal plate-connected wood trusses (MPCWTs) require a detailed understanding of the rotational stiffness associated with various connections of the MPCWTs to the bracing elements and to the walls supporting the roof. The purpose of this study was to measure the rotational stiffness of several truss-bracing and truss-wall connections attached to MPCWTs to be used for structural modeling. Bracing included discrete and continuous bracing supporting the top and bottom chords of trusses. Trass-wall connections used single fasteners and proprietary sheet-metal connections. For the bracing connections, the rotational stiffness of the discrete bracing was greater than the rotational stiffness of the continuous bracing. Joist hanger-style truss-wall connections had greater rotational stiffness compared with hurricane ties or single-fastener connections. The rotational stiffness of hurricane ties was much greater when the applied torque caused a tension force in the hurricane tie versus a compression force. The rotational stiffness of hurricane ties from two different manufacturers was not significantly different.
机译:由金属板连接的木桁架(MPCWT)组成的屋顶系统的建模和结构分析,需要详细了解与MPCWT与支撑元件和支撑屋顶的墙壁的各种连接相关的旋转刚度。本研究的目的是测量连接到MPCWT的多个桁架支撑和桁架-墙连接的旋转刚度,以用于结构建模。支撑包括离散和连续支撑,支撑桁架的上弦和下弦。横墙连接使用单个紧固件和专有的钣金连接。对于支撑连接,离散支撑的旋转刚度大于连续支撑的旋转刚度。与飓风扎带或单紧固件连接相比,托梁式吊架式桁架墙连接具有更高的旋转刚度。当施加的扭矩在飓风扎带中产生拉力与压缩力时,飓风扎带的旋转刚度要大得多。来自两个不同制造商的飓风关系的旋转刚度没有显着差异。

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