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Effective flexural rigidities for RC beams and columns with steel fiber

机译:用于RC梁和钢纤维柱的有效弯曲刚性

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摘要

Influences of different variables that affect the effective flexural rigidity of reinforced concrete (RC) members are not considered in the most seismic codes. Furthermore, in the last decades, the application of steel fibers in concrete matrix designs has been increased, requiring development of an accurate analytical procedure to calculate the effective flexural rigidity of steel fiber reinforced concrete (SFRC) members. In this paper, first, a nonlinear analytical procedure is proposed to calculate the SFRC members' effective flexural rigidity. The proposed model's accuracy is confirmed by comparing the results obtained from nonlinear analysis with those recorded from the experimental testing. Then a parametric study is conducted to investigate the effects of different parameters such as varying axial load and steel fiber are then investigated through moment-curvature analysis of various SFRC (normal-strength concrete) sections. The obtained results show that increasing the steel fiber volume percentage increases the effective flexural rigidity. Also it's been indicated that the varying axial load affects the effective flexural rigidity. Lastly, proper equations are developed to estimate the effective flexural rigidity of SFRC members.
机译:影响钢筋混凝土(RC)成员有效弯曲刚度的不同变量的影响不考虑在最震荡的代码中。此外,在过去的几十年中,钢纤维在混凝土矩阵设计中的应用已经增加,需要开发准确的分析程序,以计算钢纤维钢筋混凝土(SFRC)成员的有效弯曲刚度。本文首先,提出了非线性分析过程来计算SFRC构件的有效弯曲刚度。通过比较从实验测试记录的那些从非线性分析获得的结果进行比较来确认所提出的模型的准确性。然后进行参数研究以研究不同参数的影响,例如不同的轴向载荷和钢纤维,然后通过各种SFRC(正常强度混凝土)部分的力矩曲率分析来研究。得到的结果表明,增加钢纤维体积百分比增加了有效的抗弯刚度。此外,已经表明不同的轴向载荷会影响有效的抗弯刚度。最后,开发了适当的方程来估计SFRC成员的有效弯曲刚度。

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