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Performance-based slenderness limits for deformations and crack control of reinforced concrete flexural members

机译:基于性能的钢筋混凝土受弯构件变形和裂缝控制的细长极限

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摘要

The use of high strength materials allows flexural members to resist the design loads or to cover long spans with a reduced depth. However, the strict cross section dimensions and reinforcement amount required in ULS are often insufficient to satisfy the serviceability limit states. Due to the complexity associated to a rigorous computation of deflections and cracks width in cracked RC members along their service life, an effective way to ensure the satisfaction of the SLS is to limit the slenderness ratio l/d of the element. In the present study, the slenderness limit concept, previously used for deflection control, is generalized to incorporate the crack width limitations in the framework of structural performance-based design. Equations for slenderness limits incorporating the main parameters influencing the service behaviour of RC members are derived. Cracking and long-term effects are accounted for through simplified coefficients derived from structural concrete mechanics and experimental observations. The proposed slenderness limits are compared with those derived from a numerical non-linear time-dependent analysis for two case studies, and also with those obtained using the EC2 procedure for deflection calculation in terms of constant applied load and constant reinforcement strain. Very good results have been obtained in terms of low errors and scatter, showing that the proposed slenderness limits are a useful tool for performance-based design of RC structures.
机译:高强度材料的使用允许挠曲构件抵抗设计载荷或以减小的深度覆盖大跨度。但是,ULS中要求的严格的横截面尺寸和加固量通常不足以满足可使用性极限状态。由于严格计算破裂的RC构件沿其使用寿命的挠曲和裂缝宽度会带来复杂性,因此,确保SLS满足要求的有效方法是限制单元的细长比l / d。在本研究中,以前用于挠度控制的细长极限概念被普遍采用,以将裂缝宽度极限纳入基于结构性能的设计框架中。得出了细长极限公式,其中包含了影响钢筋混凝土构件使用性能的主要参数。开裂和长期影响是通过简化的系数来解决的,这些系数来自结构混凝土力学和实验观察。拟议的细长极限与两个案例研究的数值非线性时变分析得出的细长极限进行了比较,并且还与使用EC2程序进行挠度计算得出的细长极限(在恒定施加载荷和恒定钢筋应变方面)进行了比较。就低误差和分散性而言,已经获得了很好的结果,表明所提出的细长极限是用于基于性能的RC结构设计的有用工具。

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