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Flexural performances of prestressed high strength concrete piles reinforced with hybrid GFRP and steel bars

机译:混合GFRP和钢筋加固预应力高强度混凝土桩的抗弯性能

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This study developed prestressed high-strength concrete (PHC) piles reinforced with high-strength materials (glass fiber-reinforced polymer (GFRP) bars) for flexural performance enhancement. Flexural strengths and behaviors of PHC piles reinforced with hybrid GFRP and steel bars were experimentally investigated, respectively. Large-scale specimens with total lengths of 12,000 mm and diameters of 600 mm were constructed and tested under bending, accompanied by evaluation of effects of non-prestressed reinforcement type and longitudinal reinforcement ratio. J-factors were calculated to evaluate deformability of all the specimens. PHC piles reinforced with GFRP bars were demonstrated to have much higher flexural capacity than those reinforced with steel bars. Moreover, strains at the midspans of cross sections of all the specimens basically conformed to the assumption of plane section. Failure of PHC piles reinforced with GFRP bars was attributable to gradual concrete crushing, while that of PHC piles reinforced with steel bars resulted from steel yielding. Results of this study were expected to provide theoretical basis for wide engineering applications of PHC piles reinforced with hybrid GFRP bars and steel bars in marine structures.
机译:本研究开发了预应力高强度混凝土(PHC)桩,该桩采用高强度材料(玻璃纤维增强聚合物(GFRP)棒)加固,以提高抗弯性能。分别对混合GFRP和钢筋加固PHC桩的抗弯强度和性能进行了实验研究。以总长12,000 mm、直径600 mm的大型试件为试验,进行了折弯试验,并评价了非预应力钢筋类型和纵向钢筋比的效果。计算J因子以评估所有试样的变形能力。事实证明,用GFRP钢筋加固的PHC桩比用钢筋加固的PHC桩具有更高的抗弯能力。此外,所有试件截面中跨处的应变基本符合平面截面的假设。GFRP钢筋加固的PHC桩的破坏是由于混凝土逐渐破碎造成的,而钢筋加固的PHC桩的破坏是由于钢筋屈服所致。本研究结果有望为混合GFRP钢筋和钢筋PHC桩在海洋结构中的广泛工程应用提供理论依据。

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