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Evaluation of composite action in cross laminated timber-concrete composite beams with CFRP reinforcing bar and plate connectors using Digital Image Correlation (DIC)

机译:CFRP加强杆和板连接器的交叉层压木材混凝土混凝土复合梁的复合作用评价使用数字图像相关性(DIC)

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摘要

This research proposes new types of shear connectors made of carbon fibre reinforced polymer (CFRP) composites for effective stress transfer between the timber and concrete sections in cross laminated timber (CLT)concrete composite beams. New shear connectors are designed and made of bidirectional carbon fibre reinforced polymer (CFRP) composite plates and crossed CFRP reinforcing bars. The mechanical performance, bending stiffness, ductility, and interfacial slippage and strain of timber-concrete composite (TCC) beams with CFRP connectors are compared with those with steel plate and screw systems through four-point flexure testing. Local slip, interfacial slip and strain behaviour are comparatively analysed for connections with equivalent axial stiffness using a Digital Image Correlation (DIC) based technique, so that relative composite behaviour could be determined. Furthermore, a cost evaluation is undertaken to compare the feasibility of proposed shear connectors for construction of TCC systems. Results from flexural tests demonstrate that CFRP rod specimens experience higher ultimate load and bending stiffness in elastic loading stage and ductility in failure while slippage at serviceability and ultimate load is minimal. These results demonstrate that CFRP reinforcing bars can be used as an alternative to existing steel plate/screw systems. Although CFRP plate connectors show lower ultimate strength, bending stiffness and ductility, the performance of the system can be further improved by using sufficient anchorage systems at the end of CFRP plate within the concrete.
机译:该研究提出了由碳纤维增强聚合物(CFRP)复合材料制成的新型剪切连接器,用于在交叉层压木材(CLT)混凝土梁中的木材和混凝土部分之间的有效应力传递。新的剪切连接器设计和制成双向碳纤维增强聚合物(CFRP)复合板和交叉的CFRP加强棒。通过四点挠曲测试将带CFRP连接器的机械性能,弯曲刚度,延展性和界面滑动和木材混凝土复合材料(TCC)梁的粘连与CFRP连接器进行比较。使用基于数字图像相关(DIC)技术的与等效轴向刚度的连接相对分析局部滑动,界面滑动和应变行为,从而可以确定相对复合行为。此外,进行了成本评估,以比较所提出的剪切连接器的可行性来构建TCC系统。弯曲试验的结果表明,CFRP棒标本在可用性和最终负荷下滑动时,CFRP棒样本在弹性装载阶段和失效中的延展性中经历了更高的载荷和弯曲刚度。这些结果表明,CFRP加强杆可用作现有的钢板/螺杆系统的替代方案。虽然CFRP板连接器显示较低的极限强度,弯曲刚度和延展性,但是通过在混凝土内CFRP板的末端使用足够的锚固系统,可以进一步提高系统的性能。

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