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Effect of Temperature Variation and Pre-Sustained Loading on the Bond between Basalt FRP Sheets and Concrete

机译:温度变化和预先承受的载荷对玄武岩玻璃钢片与混凝土粘结的影响

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摘要

The coupled effects of temperature variation and pre-sustained loading on the bond between basalt fiber reinforced polymer (BFRP) sheets and a concrete substrate were studied. Single lap-shear test specimens were exposed to temperatures of 15, 30, 40, 50, and 60 °C for 3 h with pre-sustained loading at 35% of the ultimate load capacity ( ). Compared with the case of 15 °C, the interfacial fracture energy of the specimens at 30 and 40 °C increased by 46% and 11%, respectively, whereas those reduced by 73% and 77% at 50 and 60 °C, respectively. The coupled effects of temperature and pre-sustained loading on the effective bond length are insignificant for the specimens at both 15 and 30 °C and the effective bond length increased to 300 mm when the temperature exceeded 40 °C. The failure crack still occurred in the concrete substrate at the temperatures of 15 and 30 °C, and changed to the debonding of the adhesive layer from the concrete substrate at the temperature above 30 °C.
机译:研究了温度变化和预载对玄武岩纤维增强聚合物(BFRP)片材与混凝土基底之间粘结的耦合作用。将单次剪切试验样品暴露于15、30、40、50和60°C的温度下3 h,并以最终载荷容量的35%预先保持载荷。与15°C的情况相比,在30°C和40°C时,样品的界面断裂能分别增加了46%和11%,而在50°C和60°C时,样品的界面断裂能分别降低了73%和77%。温度和预先承受的载荷对有效粘结长度的耦合影响在15和30°C时均不明显,当温度超过40°C时有效粘结长度增加至300 mm。在15和30°C的温度下,混凝土基材仍会发生破坏裂纹,而在高于30°C的温度下,粘结层会从混凝土基材上剥离出来。

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