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CONCURRENT FLEXURAL STRENGTH AND DUCTILITY DESIGN OF NORMAL- AND HIGH-STRENGTH CONCRETE BEAMS

机译:正高强度混凝土梁的同时抗弯强度和延性设计

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The post-peak flexural behaviour of reinforced normal- and high-strength concrete beams has been investigated using complete moment-curvature analysis taking into account the effect of strain reversal in the tension steel. The results reveal that the major factors influencing the flexural ductility of reinforced concrete beams are the concrete grade, compression and tension steels ratios, and compression and tension steels yield strengths. Generally, flexural ductility increases with increase of compression steel and its yield strength, but decreases with increase of tension steel and its yield strength. However, the effect of concrete grade on flexural ductility is more complicated. To quantify how these parameters affect the flexural ductility, the authors have proposed a parameter λ as a measure of the degree of a beam section being under-or over-reinforced. Based on λ, an equation for direct evaluation of flexural ductility is established. Furthermore, the authors have studied the interrelation between the flexural strength and ductility that could be concurrently achieved and presented the interrelation in the form of charts for design applications.
机译:考虑到张力钢中应变逆转的影响,使用完整的弯矩曲率分析方法研究了普通高强混凝土梁的峰后弯曲性能。结果表明,影响钢筋混凝土梁抗弯延性的主要因素是混凝土等级,抗压钢和抗拉钢的比例以及抗压钢和抗拉钢的屈服强度。通常,弯曲延性随着压缩钢及其屈服强度的增加而增加,但是随着拉伸钢及其屈服强度的增加而降低。但是,混凝土等级对挠性延展性的影响更为复杂。为了量化这些参数如何影响弯曲延性,作者提出了参数λ,作为对梁截面受力不足或过度增强的程度的度量。基于λ,建立了直接评估弯曲延性的方程。此外,作者研究了可以同时实现的抗弯强度和延性之间的相互关系,并以图表的形式提出了相互关系,以供设计应用。

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