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首页> 外文期刊>Composite Structures >Bond durability of basalt FRP bars to fiber reinforced concrete in a saline environment
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Bond durability of basalt FRP bars to fiber reinforced concrete in a saline environment

机译:玄武岩FRP杆粘合耐久性盐水环境中纤维增强混凝土

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摘要

This study investigates the influence of basalt fiber reinforced concrete (BFRC) on the bond durability of helically wrapped basalt fiber reinforced polymers (HWBFRP) bars subjected to harsh saline environmental conditions. A total of 63 pullout specimens were fabricated and tested. Test parameters included conditioning duration (30, 60 and 90 days), conditioning temperature (35 and 60 degrees C), and the volume fraction of basalt macrofibers (BMF) added in the concrete mixture (0, 0.5 and 1%). Moreover, scanned electron microscopy (SEM) analysis was conducted to investigate the degradation of the HWBFRP bars. Additionally, two existing analytical models, the BPE and CMR models were calibrated using the experimental results for a better prediction of the bond-slip behavior of HWBFRP bars. The service life prediction of the bond strength after 50 years of service was also performed. Experimental results revealed that the addition of BMF to concrete improved the bond performance of HWBFRP bars and showed higher retentions in the bond strength compared to plain concrete specimens after 90 days of environmental conditioning, particularly at high temperatures. Moreover, the CMR model showed better reliability than the BPE model in describing the bond-slip behavior of HWBFRP bars in both plain and fiber reinforced concrete.
机译:本研究研究了玄武岩纤维钢筋混凝土(BFRC)对螺旋包裹的玄武岩纤维增强聚合物(HWBFRP)棒的粘结耐久性的影响。共制备63种拉伸样品并测试。试验参数包括调节持续时间(30,60和90天),调节温度(35和60℃),以及在混凝土混合物中加入的玄武岩大纤维(BMF)的体积分数(0,0.5和1%)。此外,进行了扫描的电子显微镜(SEM)分析以研究HWBFRP棒的降解。另外,使用实验结果校准了两个现有的分析模型,BPE和CMR模型,以更好地预测HWBFRP棒的粘合性行为。还进行了50年服务后债券强度的使用寿命预测。实验结果表明,BMF加入混凝土改善了HWBFRP棒的粘合性能,并在环境调理90天后的普通混凝土试样相比,粘合强度的保持较高,特别是在高温下。此外,CMR模型显示比BPE模型更具可靠性,以描述平原和纤维钢筋混凝土中HWBFRP棒的粘合性滑移行为。

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