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首页> 外文期刊>Construction and Building Materials >Bond durability of steel-FRP composite bars embedded in seawater sea-sand concrete under constant bending and shearing stress
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Bond durability of steel-FRP composite bars embedded in seawater sea-sand concrete under constant bending and shearing stress

机译:恒定弯曲和剪切应力作用下埋入海水-海砂混凝土中的FRP钢复合杆的粘结耐久性

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The combination of the new steel-FRP composite bar (SFCB) and natural seawater and sea-sand concrete (SWSSC) has good prospects to be applied in development along the ocean coast and offshore islands. However, at present, there is still a lack of clear understanding on the durability of this new combination under actual marine service conditions. Therefore, in this paper, the interfacial bond durability, which is critical to the overall durability of SFCB reinforced SWSSC structures, was evaluated by accelerated aging tests. A new type of eccentric pullout test was designed to take into account the bending and shearing stress states of the concrete. The experimental results showed that the bond strength of SFCBs decreased by 5% after 9 months of aging in a 40 degrees C seawater wet-dry cycling environment and decreased by 26.2% after 9 months of aging in a 50 degrees C seawater immersion environment. Due to the surface degradation of the basalt fiber reinforced polymer (BFRP) after exposure, the sheared failure layer gradually transferred from the interface to the inner layer. Based on Fib Bulletin 40, the predicted bond strength retentions of SFCBs with SWSSC were 84% to 96% after 50 years of service. (C) 2018 Elsevier Ltd. All rights reserved.
机译:新型钢-FRP复合杆(SFCB)与天然海水和海砂混凝土(SWSSC)的结合具有良好的前景,可用于沿海和近海岛屿的开发。但是,目前,对于这种新组合在实际航海条件下的耐久性仍然缺乏清晰的认识。因此,在本文中,通过加速老化试验评估了界面粘结的耐久性,这对于SFCB增强的SWSSC结构的整体耐久性至关重要。设计了一种新型的偏心拉拔试验,以考虑混凝土的弯曲和剪切应力状态。实验结果表明,SFCBs的结合强度在40摄氏度的海水干湿循环环境中老化9个月后下降5%,而在50摄氏度的海水浸泡环境中老化9个月后下降26.2%。由于暴露后玄武岩纤维增强聚合物(BFRP)的表面降解,剪切破坏层逐渐从界面转移到内层。根据《 FIB公报》 40,使用50年后,SFCB与SWSSC的粘结强度预计保持在84%至96%之间。 (C)2018 Elsevier Ltd.保留所有权利。

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