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Lateral-Torsional Buckling of Structural Concrete Beams: Experimental and Analytical Study

机译:结构混凝土梁的横向扭转屈曲:实验和分析研究

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摘要

Precast structural concrete beams have become longer and more slender, increasing the likelihood of a stability failure. Although there are methods to determine the lateral-torsional buckling load for reinforced and prestressed concrete beams, there has been no conformity as to which is the more accurate method, nor do they account for initial imperfections. Six slender, rectangular pretensioned concrete beams were tested and showed that the lateral-torsional stability behavior was similar to that of reinforced concrete beams except for (1) changes in material properties owing to a different stress state and (2) the effects of prestressing on the cracking behavior of the cross section. The stability behavior proved to be sensitive to initial imperfections; therefore, both a geometric nonlinear stability analysis and a simplified equation were developed. The predictive methods were compared with the current and past results, and the analytical methods showed good correlation with all structural concrete experimental results. The results indicate that prestressed concrete beams are susceptible to lateral-torsional buckling and the initial imperfections serve to reduce the buckling load owing to nonlinear geometric behavior and a nonrectangular compression zone.
机译:预制结构混凝土梁变得更长,更细长,增加了稳定性破坏的可能性。尽管存在确定钢筋混凝土和预应力混凝土梁的横向扭转屈曲载荷的方法,但对于哪种方法更为精确尚无定论,它们也不能解决初始缺陷。对六根细长的矩形预应力混凝土梁进行了测试,结果表明,其横向扭转稳定性与钢筋混凝土梁相似,不同的是:(1)由于应力状态不同而引起的材料性能变化;(2)预应力对结构的影响横截面的开裂行为。事实证明,这种稳定性行为对初始缺陷很敏感。因此,开发了几何非线性稳定性分析和简化方程。将预测方法与当前和过去的结果进行了比较,分析方法与所有结构混凝土实验结果显示出良好的相关性。结果表明,由于非线性几何行为和非矩形压缩区,预应力混凝土梁易受侧向扭转屈曲的影响,初始缺陷有助于减小屈曲载荷。

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