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Shear Behavior Study on Timber-Concrete Composite Structures with Bolts

机译:带螺栓的木材混凝土复合结构的抗剪性能研究

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摘要

The key point of design for timber-concrete composite structure is to ensure the reliability of shear connectors. This study examined the mechanical properties of bolt-type connectors in timber-concrete composite structures theoretically and experimentally. The theoretical study was based on the Johansen yield theory (European Yield Model). Push-out specimens with different bolt dimensions were tested to determine the shear capacity and slip modulus. According to the experimental results, bolts yielded without timber or concrete cracks when the stiffness of bolts was not very great. The shear capacity and slip modulus of the bolt connectors were directly proportional to the diameter of the bolt. The strength of concrete was found to significantly affect the shear capacity of bolt connectors. Comparison between the theoretical and the experimental shear strength results showed reasonable agreement. 
机译:木材-混凝土复合结构设计的关键是确保剪切连接器的可靠性。这项研究从理论和实验上研究了木材混凝土复合结构中螺栓型连接器的力学性能。该理论研究基于Johansen产量理论(欧洲产量模型)。测试了具有不同螺栓尺寸的推出式样本,以确定剪切能力和滑动模量。根据实验结果,当螺栓的刚度不是很高时,螺栓屈服而没有木材或混凝土裂缝。螺栓连接器的剪切能力和滑动模量与螺栓直径成正比。发现混凝土的强度显着影响螺栓连接器的剪切能力。理论和实验抗剪强度结果的比较表明合理的一致性。

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