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Combined Loading Behavior of Basalt FRP-Reinforced Precast Concrete Insulated Partially-Composite Walls

机译:玄武岩FRP增强的预制混凝土隔热部分复合墙的组合荷载特性

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摘要

The axial and flexure combined loading performance of a slender partially-composite concrete insulated wall design constructed using basalt fiber-reinforced polymer (BFRP) shear connectors and longitudinal BFRP reinforcement is investigated. The load-bearing wall panel sections, 600 mm wide and 2,700 mm long, were first subjected to axial loads ranging from 0 to 900 kN applied to the structural wythe only. The panels were then loaded to failure in four-point bending to develop the axial load-bending moment interaction diagram of the partially-composite system, which was compared to theoretical fully-composite and noncomposite curves. As axial load increased, failure under transverse loading changed from shear-compression of the structural wythe to diagonal splitting of insulation foam and rupture of BFRP connectors, then to crushing of the structural wythe. Composite action by the strength criterion reduced from 47 to 3% as axial load increased from 150 to 900 kN; while that by the stiffness criterion was much lower, 8-2.5%. Relative to a similar steel-reinforced wall panel with the same reinforcement ratio, the tested walls were 60-89% the strength; and the percentage increased with axial load. A method is introduced to estimate the effective centroid of the partially-composite wall in order to calculate the moment from the eccentric axial load applied to this load-bearing system. (C) 2015 American Society of Civil Engineers.
机译:研究了使用玄武岩纤维增强聚合物(BFRP)剪力连接器和纵向BFRP加固构造的细长的部分复合混凝土保温墙设计的轴向和挠曲组合荷载性能。承重墙板部分,宽600毫米,长2700毫米,首先承受了仅施加到结构上的0到900 kN的轴向载荷。然后将面板加载到四点弯曲破坏中,以开发部分复合系统的轴向弯矩相互作用图,并将其与理论上的全复合和非复合曲线进行比较。随着轴向载荷的增加,横向载荷下的破坏从结构体的剪切压缩变为绝缘泡沫的对角劈裂和BFRP连接器的破裂,再到结构体的破碎。当轴向载荷从150 kN增加到900 kN时,按照强度标准进行的复合作用从47%降低到3%;而根据刚度标准则要低得多,为8-2.5%。相对于具有相同加固率的类似钢加固墙板,被测墙的强度为60-89%;并且该百分比随轴向载荷而增加。引入了一种方法来估计部分复合墙体的有效质心,以便根据施加到该承载系统的偏心轴向载荷计算弯矩。 (C)2015年美国土木工程师学会。

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