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首页> 外文期刊>Journal of structural engineering >Time-Dependent Tension-Stiffening Mechanics of Fiber-Reinforced and Ultra-High-Performance Fiber-Reinforced Concrete
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Time-Dependent Tension-Stiffening Mechanics of Fiber-Reinforced and Ultra-High-Performance Fiber-Reinforced Concrete

机译:纤维增强和超高性能纤维增强混凝土的时变抗拉力学

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摘要

The tension-stiffening behavior of fiber-reinforced concrete is of fundamental importance for the characterization of crack widths and spacings as well as determination of the tensile response of fiber-reinforced concrete members with internal reinforcement. In this paper, a model is presented for the tension-stiffening behavior of strain-softening and strain-hardening fiber-reinforced and ultra-high-performance fiber-reinforced concrete with an allowance for the long-term creep and shrinkage effects of the concrete. Closed-form analytical solutions are derived to describe the crack spacings and load slip behavior assuming either a simplified linear ascending bond stress-slip relationship or a more realistic bond stress-slip relationship from the literature. Further, it is shown for design how the stiffness of the reinforcement can be characterized using an effective modular ratio, which can easily be incorporated into member analysis techniques to characterize the serviceability behavior of flexural members. Finally, the results are validated against a broad range of fiber-reinforced concretes of normal, high, and ultra-high strength, thus demonstrating validity for a wide range of different fiber-reinforced concretes (FRCs).
机译:纤维增强混凝土的拉伸刚度行为对于表征裂缝宽度和间距以及确定内部增强纤维增强混凝土构件的拉伸响应至关重要。本文提出了一个模型,用于应变软化和应变硬化的纤维增强和超高性能纤维增强混凝土的拉伸刚度行为,并考虑到混凝土的长期蠕变和收缩效应。假设从文献中得出简化的线性上升粘结应力-滑动关系或更现实的粘结应力-滑动关系,则得出了封闭形式的解析解来描述裂纹间距和载荷滑动行为。此外,为设计显示了如何使用有效的模数比来表征增强件的刚度,该比值可以轻松地并入构件分析技术中以表征挠性构件的使用寿命。最后,该结果针对普通,高和超高强度的各种纤维增强混凝土进行了验证,从而证明了对各种不同的纤维增强混凝土(FRC)的有效性。

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