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An Investigation on Durability of Mixture of Alkali-Resistant Glass and Epoxy for Civil Engineering Application

机译:对土木工程应用耐碱玻璃和环氧混合物耐久性研究

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Glass Fiber Reinforced Polymer(GFRP) rebars are easily deteriorated by concrete alkalinity. This paper focuses on the improvement of durability of newly developed GFRP rebars exposed to chemical attack in the alkaline environment of concrete. The milled E-glass fibers which are mixed in surface resin can increase bond strength between GFRP rebars and the concrete. In this study, the effect of milled alkali-resistant glass fibers (milled AR glass) and milled E-glass in the ribs on the durability of GFRP rebar is investigated through short span shear tests and moist absorption tests of the bare rebar. To accelerate the effect of the alkalinity, aging procedures were applied to test specimens. According to the test results, lower mix ratio of milled fibers in the ribs contributed to more durability than if higher mix ratio was used. This was due to more voids and defects in ribs with high mix ratio of milled fibers. GFRP rebars with milled AR glass fibers did not show great improvement in ISS strength compared to those with milled E-glass fibers. These results indicate that the milled glass fibers works as a reinforcing material, but optimum mix ratio to minimize causing of defects and voids in the manufacturing process should be determined.
机译:玻璃纤维增​​强聚合物(GFRP)钢筋容易通过混凝土碱度劣化。本文侧重于改善新开发的GFRP钢筋暴露于混凝土碱性环境中的化学攻击。在表面树脂中混合的研磨的E-玻璃纤维可以增加GFRP钢筋和混凝土之间的粘合强度。在该研究中,通过短跨度剪切试验和裸螺纹钢的短跨度剪切测试和湿吸收测试,研究了碾磨耐碱玻璃纤维(研磨AR玻璃)和研磨的E-玻璃的磨削效果对GFRP钢筋的耐久性。为了加速碱度的效果,将老化程序应用于试样。根据测试结果,肋骨中研磨纤维的较低混合比导致比使用更高混合比的更高耐久性。这是由于钢筋高混合比的肋骨中有更多的空隙和缺陷。与碾磨的电子玻璃纤维相比,GFRP钢筋与铣削AR玻璃纤维的钢筋没有表现出很大的改善。这些结果表明,研磨玻璃纤维作为增强材料的用途,但应确定应最小化制造过程中缺陷和空隙最小化的最佳混合比。

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