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Bending test of a composite steel-timber beam jointed by bolts

机译:由螺栓连接的复合钢木梁的弯曲试验

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In light of global environment issues, the authors proposed a building system comprising steel and timber structure (Hereafter referred to as CSTS), which consist of rolled-H section steel and timber. The CSTS is assumed to adapt for mid-rise story building steel structures. It is a design method of the CSTS that uses the concept of a damage-controlled structure characterized by using buckling-restrained braces as a seismic response control member. It is assumed to use materials such as a cross laminated timber(CLT) for floor structure of the CSTS. The hysteresis model of the CSTS is established based on the available experimental data. Assuming practicality, bending test of the composite steel-timber beam members jointed by bolts is conducted. Behaviour of the composite steel-timber beam members affected by different intervals of bolted joints is evaluated.
机译:根据全球环境问题,作者提出了一种建筑系统,包括钢和木材结构(以下简称CSTS),其由轧制-H段钢和木材组成。 假设CSTS适用于中升故事建筑钢结构。 它是CST的设计方法,其使用损伤控制结构的概念,其特征在于使用屈曲抑制的支架作为地震响应控制构件。 假设用于使用诸如CRED层压木材(CLT)的材料,用于CST的地板结构。 基于可用的实验数据建立CST的滞后模型。 假设实用性,通过螺栓连接的复合钢木梁构件的弯曲试验。 评估受螺栓接头的不同间隔影响的复合钢木材梁构件的行为。

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