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首页> 外文期刊>Journal of Composites for Construction >Bond Durability of Basalt Fiber-Reinforced Polymer Bars Embedded in Concrete under Direct Pullout Conditions
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Bond Durability of Basalt Fiber-Reinforced Polymer Bars Embedded in Concrete under Direct Pullout Conditions

机译:直接拉拔条件下埋入混凝土中的玄武岩纤维增强聚合物棒的粘结耐久性

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The use of basalt fiber-reinforced polymer (BFRP) bars as a reinforcing material has gained increasing interest worldwide. However, few studies have reported on these bars' performance in concrete when exposed to harsh environments. This paper investigates the effect of five different accelerated environments, namely (1)tap water, (2)seawater, (3)elevated temperature, (4)elevated temperature followed by tap water, and (5)elevated temperature followed by seawater, on the bond stress-slip response, adhesion to concrete, and bond strength [of two types of BFRP bars and one type of glass fiber-reinforced polymer (GFRP) bar]. The bond-slip responses of all specimens were governed by the surface treatment of each bar and its manufacturing quality, regardless of the fiber type. Sand-coated BFRP bars showed higher bond characteristics than helically grooved bars after conditioning. Moister environments caused enhanced adhesion at the early loading stages for all specimens. Nevertheless, such environments had a detrimental effect on the bond strength at later stages depending on the bar material's moisture absorption. Finally, exposure to elevated temperatures caused insignificant variation in the bond strength of all tested specimens.
机译:玄武岩纤维增强聚合物(BFRP)条作为增强材料的使用已在世界范围内引起越来越多的关注。但是,很少有研究报道这些钢筋在恶劣环境下在混凝土中的性能。本文研究了五个不同的加速环境对(1)自来水,(2)海水,(3)升高的温度,(4)升高的温度和自来水以及(5)升高的温度和海水的影响。 [两种类型的BFRP钢筋和一种类型的玻璃纤维增​​强聚合物(GFRP)钢筋]的粘结应力-滑移响应,与混凝土的粘结性和粘结强度。无论纤维类型如何,所有试样的粘结滑移响应均受每个钢筋的表面处理及其制造质量的控制。调理后,砂涂BFRP筋比螺旋槽筋具有更高的粘结特性。潮湿的环境导致所有样品在早期加载阶段的附着力增强。然而,取决于棒材的吸湿性,这样的环境在随后的阶段对粘合强度具有有害的影响。最后,暴露于高温导致所有测试样品的粘结强度无明显变化。

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