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Minimum torsional reinforcement ratio for reinforced concrete members with steel fibers

机译:钢纤维增强混凝土构件的最小扭转配筋率

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The current design codes for concrete structures suggest the minimum torsional reinforcement ratio to induce minimum ductile failure after cracking in reinforced concrete (RC) members subjected to torsional moment. However, as the member strengths are quite often lower than the torsional cracking moment strengths even when satisfying minimum torsional reinforcement ratio specified in the current codes, it may not serve the original purpose of preventing brittle failure immediately after cracking. In this study, a rational equation is thus presented for calculating the minimum torsional reinforcement ratio that could provide a sufficient margin of safety in design. The minimum fiber factor to be applied in steel fiber reinforced concrete (SFRC) members is also proposed. The proposed model was found to reflect the effects of torsional cracking strength, longitudinal and transverse reinforcement ratio, and the presence of torsional reinforcement in concrete members. It was also found that as the reserved strength included in the proposed equation is determined based on the test results of the RC members, it contains an appropriate factor of safety for the RC members. In addition, it was confirmed that the minimum fiber factor is conservative compared with the collected test results of the SFRC specimens.
机译:当前的混凝土结构设计规范提出了最小扭转配筋率,以在遭受扭转弯矩的钢筋混凝土(RC)构件开裂后引起最小的延性破坏。然而,由于即使满足当前规范中规定的最小扭转增强比,构件的强度通常也经常低于扭转裂纹矩强度,所以其最初的目的并不是防止断裂后的脆性破坏。因此,在这项研究中,提出了一个合理的方程式,用于计算可提供足够的设计安全裕度的最小扭转增强比。还提出了应用于钢纤维增强混凝土(SFRC)构件的最小纤维系数。发现所提出的模型反映了抗扭断裂强度,纵向和横向钢筋比率以及混凝土构件中存在扭转钢筋的影响。还发现,由于建议公式中包含的预留强度是根据钢筋混凝土构件的测试结果确定的,因此它包含了钢筋混凝土构件的适当安全系数。另外,已经证实,与SFRC样品的收集测试结果相比,最小纤维因子是保守的。

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