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Effects of strain hardening of steel reinforcement on flexural strength and ductility of concrete beams

机译:钢筋应变硬化对混凝土梁抗弯强度和延性的影响

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摘要

In the design of reinforced concrete beams, it is a standard practice to use the yield stress of the steel reinforcement for the evaluation of the flexural strength. However, because of strain hardening, the tensile strength of the steel reinforcement is often substantially higher than the yield stress. Thus, it is a common belief that the actual flexural strength should be higher than the theoretical flexural strength evaluated with strain hardening ignored. The possible increase in flexural strength due to strain hardening is a two-edge sword, In some cases, it may be treated as strength reserve contributing to extra safety. In other cases, it could lead to greater shear demand causing brittle shear failure of the beam or unexpected greater capacity of the beam causing violation of the strong column-weak beam design philosophy. Strain hardening may also have certain effect on the flexural ductility. In this paper, the effects of strain hardening on the post-peak flexural behaviour, particularly the flexural strength and ductility, of reinforced normal- and high-strength concrete beams are studied. The results reveal that the effects of strain hardening could be quite significant when the tension steel ratio is relatively small.
机译:在钢筋混凝土梁的设计中,标准做法是使用钢筋的屈服应力来评估抗弯强度。但是,由于应变硬化,钢筋的拉伸强度通常大大高于屈服应力。因此,人们普遍认为,实际抗弯强度应高于忽略应变硬化而评估的理论抗弯强度。由于应变硬化而导致的弯曲强度可能会增加,这是一把两刃剑。在某些情况下,它可能被视为有助于提高安全性的强度储备。在其他情况下,这可能会导致更大的剪切需求,从而导致梁的脆性剪切破坏,或者梁的出乎意料的更大容量,从而违反强柱弱梁设计原理。应变硬化也可能对挠性延展性产生一定影响。本文研究了应变硬化对峰值强度后的弯曲行为的影响,特别是增强的普通强度和高强度混凝土梁的弯曲强度和延性。结果表明,当拉力钢的比例较小时,应变硬化的效果可能会非常显着。

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