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Flexural Strength of Reinforced and Prestressed Concrete T-Beams

机译:钢筋混凝土和预应力T型梁的抗弯强度

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The calculation of the flexural strength of concrete T-beams has been extensively discussed in recent issues of the PCI JOURNAL. The debate centers on when T-beam behavior is assumed to begin. The AASHTO LRFD Bridge Design Specifications (LRFD) maintain that it begins when c (distance from extreme compression fiber to neutral axis) exceeds the thickness of the flange. The AASHTO Standard Specifications for Highway Bridges (STD), and other references, contend that it begins when a (depth of equivalent rectangular stress block) exceeds the flange thickness. This paper examines the fundamentals of T-beam behavior at nominal flexural strength, and compares the results of LRFD and STD with more rigorous analyses, including the PCI Bridge Design Manual (PCI BDM) method and a strain compatibility approach using nonlinear concrete compressive stress distributions. For pre-tensioned T-beams of uniform strength, a method consisting of a mixture of LRFD and STD is investigated. For T-beams with different concrete strengths in the flange and web, the PCI BDM method is compared with the nonlinear strain compatibility analysis. High strength concretes (HSC) up to 15,000 psi (103 MPa) are considered. The selection of appropriate φ factors and maximum reinforcement limits is also discussed. Comparisons with previous tests of T-beams are presented, and revisions to the relevant sections of LRFD are proposed.
机译:最近在《 PCI JOURNAL》杂志上对混凝土T梁的抗弯强度的计算进行了广泛的讨论。辩论集中在假定何时开始T形梁行为。 AASHTO LRFD桥梁设计规范(LRFD)认为,当c(从极端压缩光纤到中性轴的距离)超过法兰的厚度时,它开始。 AASHTO公路桥梁标准规范(STD)和其他参考文献认为,它是在(等效矩形应力块的深度)超过凸缘厚度时开始的。本文研究了标称抗弯强度下T型梁行为的基本原理,并将LRFD和STD的结果与更严格的分析进行了比较,包括PCI桥梁设计手册(PCI BDM)方法和使用非线性混凝土压应力分布的应变兼容方法。 。对于均匀强度的预张紧T型梁,研究了一种由LRFD和STD的混合物组成的方法。对于法兰和腹板中具有不同混凝土强度的T型梁,将PCI BDM方法与非线性应变相容性分析进行了比较。考虑了高达15,000 psi(103 MPa)的高强度混凝土(HSC)。还讨论了合适的φ系数和最大钢筋极限的选择。提出了与以前的T型梁测试的比较,并提出了对LRFD相关章节的修订。

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