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首页> 外文期刊>Journal of bridge engineering >Field Testing and Dynamic Response of Full-Scale GFRP-Reinforced Concrete Guideway under Monorail Train
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Field Testing and Dynamic Response of Full-Scale GFRP-Reinforced Concrete Guideway under Monorail Train

机译:单轨列车下全尺寸GFRP钢筋混凝土导轨的现场测试与动力响应

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In this study, field testing is conducted on two full-scale guideway reinforced concrete (RC) beams, one reinforced entirely by glass fiber-reinforced polymer (GFRP) and the other by conventional steel, under 450 passes of two-car monorail trains at various speeds and vehicle loads. The two beams were part of a 1.86-km test track traveled by trains for 4.5 months. The objective of the study was to evaluate GFRP bars as a sustainable reinforcement for transit infrastructure, particularly for monorail trains. The study showed that cracking and stiffness degradation in both beams occurred during train loading with one-loaded and one-empty cars, after 79-132 cumulative train passes. Cracks stabilized after 149 accumulative passes. Deflection in the GFRP-RC beam, measured during train passes at fully loaded cars, was 36%-47% higher than that in the steel-RC beam. After 200 accumulative passes, stiffness was reduced to approximately 43% and 57% of the original uncracked value for GFRP- and steel-RC beams, respectively. By the end of 450 passes, stiffness in the same beams appeared to have stabilized at 38%, and 50% of the uncracked value. The GFRP-RC beam satisfied all serviceability limits imposed in national codes. A two-dimensional finite-element analysis was also performed on the test beams, showing good correlations with test results of deflections and cracking patterns. Of the six analytical equations that were used to estimate the effective moment of inertia and subsequently beam's deflection, only those by Branson and Bischoff seemed to yield acceptable predictions.
机译:在该研究中,现场测试在两个全尺寸导轨钢筋混凝土(RC)梁上进行,一个由玻璃纤维增​​强聚合物(GFRP)和其他通过常规钢的相连,在450次通过的两辆汽车单轨列车下各种速度和车辆载荷。这两个梁是1.86公里的测试轨道的一部分,由火车进行4.5个月。该研究的目的是评估GFRP律师作为过境基础设施的可持续加固,特别是对于单轨列车。该研究表明,在79-132累积列车通过之后,在火车装载期间,在火车装载期间发生裂缝和刚度劣化。 149次累积通行证后稳定的裂缝。在列车在完全装载的汽车中通过的GFRP-RC梁的偏转,比钢RC光束的36%-47%。在200克累积过程中,刚度分别将刚度降低至GFRP和钢-RC梁的原始未粘合值的约43%和57%。在450次通过的末端,相同梁中的刚度似乎稳定为38%和50%的未包装值。 GFRP-RC光束满足国家代码中所有的可维护性限制。在测试梁上还执行二维有限元分析,显示出与偏转和裂化图案的测试结果的良好相关性。在用于估计惯性的有效时刻和随后光束的偏转的六个分析方程中,只有布兰森和Bischoff的那些似乎得到了可接受的预测。

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