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Long- and short-term serviceability behavior of reinforced concrete beams: Mechanics models for deflections and crack widths

机译:钢筋混凝土梁的长期和短期使用性能:挠度和裂缝宽度的力学模型

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摘要

Analysis and design of reinforced concrete (RC) flexural members at the serviceability limit state is complicated by the localized bond slip or partial interaction (PI) between tensile reinforcement and the surrounding concrete. Localized slip is responsible for crack formation, crack widening, and tension stiffening and is further complicated by the time-dependent nature of concrete, which results in reduced tension stiffening and widening of cracks. Analysis techniques commonly applied in design are typically formulated on the assumption of full interaction between the reinforcement and the surrounding concrete. Hence, they do not simulate the behaviors observed in practice, but rather they correlate analytical predictions with experimental observations through the use of empiricisms, such as effective flexural rigidities and statistically derived expressions for crack widths. In this paper, it is shown how PI theory can be directly incorporated into elastic analysis procedures to develop simple expressions for flexural rigidities and crack widths under both instantaneous and sustained loading. The proposed approach should simplify not only the design process but also the development of design guidelines and material models, as it provides a simple rational method for investigating the time-dependent flexural behavior of RC members.
机译:抗拉钢筋与周围混凝土之间的局部粘结滑移或局部相互作用(PI)使在使用极限状态下的钢筋混凝土受弯构件的分析和设计变得复杂。局部滑移是造成裂纹形成,裂纹扩展和拉力硬化的原因,并且由于混凝土随时间变化的性质而变得更加复杂,这导致减小的拉力硬化和裂纹扩展。通常在设计中普遍采用的分析技术是根据钢筋与周围混凝土之间完全相互作用的假设制定的。因此,他们没有模拟在实践中观察到的行为,而是通过经验主义将分析预测与实验观察相关联,例如有效的抗弯刚度和统计得出的裂缝宽度表达式。在本文中,显示了如何将PI理论直接应用于弹性分析程序中,以在瞬时和持续载荷下开发抗弯刚度和裂缝宽度的简单表达式。所提出的方法不仅应简化设计过程,而且应简化设计指南和材料模型的开发,因为它为研究钢筋混凝土构件随时间变化的弯曲行为提供了一种简单合理的方法。

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