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首页> 外文期刊>Computers & Concrete >Flexural behavior and a modified prediction of deflection of concrete beam reinforced with a ribbed GFRP bars
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Flexural behavior and a modified prediction of deflection of concrete beam reinforced with a ribbed GFRP bars

机译:肋筋GFRP筋加固混凝土梁的抗弯性能与挠度修正预测。

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This study experimentally investigated the flexural capacity of a concrete beam reinforced with a newly developed GFRP bar that overcomes the lower modulus of elasticity and bond strength compared to a steel bar. The GFRP bar was fabricated by thermosetting a braided pultrusion process to form the outer fiber ribs. The mechanical properties of the modulus of elasticity and bond strength were enhanced compared with those of commercial GFRP bars. In the four-point bending test results, all specimens failed according to the intended failure mode due to flexural design in compliance with ACI 440.1R-15. The effects of the reinforcement ratio and concrete compressive strength were investigated Equations from the code were used to predict the deflection, and they overestimated the deflection compared with the experimental results. A modified model using two coefficients was developed to provide much better predictive ability, even when the effective moment of inertia was less than the theoretical I-cr. The deformability of the test beams satisfied the specified value of 4.0 in compliance with CSA S6-10. A modified effective moment of inertia with two correction factors was proposed and it could provide much better predictability in prediction even at the effective moment of inertia less than that of theoretical cracked moment of inertia.
机译:这项研究通过实验研究了用新开发的GFRP钢筋加固的混凝土梁的抗弯能力,该钢筋克服了与钢筋相比较低的弹性模量和粘结强度。 GFRP棒是通过热固性编织拉挤成型工艺制成的,以形成外部纤维肋。与商业化的GFRP钢筋相比,其弹性模量和粘结强度的机械性能得到了提高。在四点弯曲测试结果中,由于符合ACI 440.1R-15的挠性设计,所有样本均按照预期的破坏模式破坏。研究了配筋率和混凝土抗压强度的影响,根据公式计算了挠度,并与实验结果相比高估了挠度。开发了使用两个系数的改进模型,以提供更好的预测能力,即使有效惯性矩小于理论I-cr。测试梁的可变形性符合CSA S6-10的指定值4.0。提出了一种经过修正的带有两个校正因子的有效惯性矩,即使在有效惯性矩小于理论破裂惯性矩的情况下,它也可以提供更好的预测性。

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