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Flexural behavior of partially fiber-reinforced high-strength concrete beams reinforced with FRP bars

机译:FRP筋增强的部分纤维增强高强度混凝土梁的抗弯性能

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摘要

In this paper, the flexural behavior of partially fiber-reinforced high-strength concrete (FRHSC) beams reinforced with FRP bars was investigated. A total of 12 beams were tested under four-point bending. The effects of the thickness of FRHSC layer, steel fiber volume fraction and FRP reinforcement ratio were studied. The failure mode, flexural capacity, deflection, crack width and ductility of the tested beams were investigated. The results showed that adding steel fibers in tension zone is an effective way to overcome the large deflection and large crack width of FRP bar reinforced concrete beams and reduce the cost, however, the ductility of tested beams decreased with the addition of steel fiber into tension zone. The optimum thickness of FRHSC layer in FRP bar reinforced concrete beams was 0.57 times of the total depth of the beam. Higher FRP reinforcement ratio provided better flexural performance including higher flexural capacity, post-cracking stiffness and ductility and smaller crack width. A simplified calculation method for predicting the effective moment of inertia of fully and partially FRHSC beams reinforced with FRP bars was developed. The beam deflections calculated by the proposed method match well with the experimental results. (C) 2017 Published by Elsevier Ltd.
机译:本文研究了用FRP筋加固的部分纤维增强高强混凝土(FRHSC)梁的抗弯性能。在四点弯曲下总共测试了12条光束。研究了FRHSC层厚度,钢纤维体积分数和FRP增强比的影响。研究了测试梁的破坏模式,挠曲能力,挠度,裂缝宽度和延性。结果表明,在受拉区中添加钢纤维是克服FRP筋混凝土梁大挠度和裂缝宽度较大,降低成本的有效途径,但随着钢纤维的加入,受拉梁的延性降低。区。 FRP筋混凝土梁中FRHSC层的最佳厚度为梁总深度的0.57倍。较高的FRP增强比可提供更好的挠曲性能,包括更高的挠曲能力,开裂后的刚度和延展性以及较小的裂缝宽度。开发了一种简化的计算方法,该方法可以预测用FRP筋加固的全部和部分FRHSC梁的有效惯性矩。所提方法计算出的梁挠度与实验结果吻合良好。 (C)2017由Elsevier Ltd.发布

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