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Experimental study on the bond durability between steel-FRP composite bars (SFCBs) and sea sand concrete in ocean environment

机译:钢-玻璃钢复合筋与海砂混凝土在海洋环境下的粘结耐久性试验研究

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Bond durability tests on steel-fiber reinforced polymer (FRP) composite bars (SFCBs) with sea sand concrete and river sand concrete in simulated ocean environments are conducted in this paper, and steel bars are also used for comparison. Two types of environments, seawater immersion and seawater wet-dry cycling, are adopted. Sixty-six pullout specimens are prepared, and the variations of bond performance after 30, 60 and 90 days of aging are tested and comparatively analyzed. The test results showed that, with respect to the bond-slip curves, wave-shaped descending branches were observed for SFCBs; the bond strength between SFCBs and sea sand concrete in a wet-dry cycling environment at all ages were improved. However, with regard to the steel bars in the same condition, the surfaces were rusted, and the bond strengths showed a decreasing trend. Immersion in 40 degrees C seawater reduced the bond performance of SFCBs with concrete, whereas the rust process of steel bars slowed down due to the lack of fresh oxygen. (c) 2016 Published by Elsevier Ltd.
机译:本文在模拟海洋环境下,对海砂混凝土和河砂混凝土在钢纤维增强聚合物(FRP)复合钢筋(SFCB)上的粘结耐久性进行了测试,并且还使用了钢筋进行比较。采用两种类型的环境,即海水浸泡和海水干湿循环。制备了66个拉出样品,并测试并比较了老化30、60和90天后的粘结性能变化。测试结果表明,就结合-滑移曲线而言,SFCBs观察到了波浪状的下降分支。在所有年龄的干湿循环环境中,SFCB与海砂混凝土之间的粘结强度均得到改善。然而,对于相同条件下的钢筋,其表面已生锈,并且粘结强度显示出下降的趋势。浸入40摄氏度的海水中会降低SFCB与混凝土的粘结性能,而钢筋的生锈过程由于缺少新鲜的氧气而减慢了速度。 (c)2016由爱思唯尔有限公司出版。

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