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Design methodology for fibre reinforced concrete slabs-on-grade based on inelastic analysis

机译:基于非弹性分析的纤维增强混凝土楼板设计方法

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摘要

In order to enable the adoption of fibre reinforced concrete (FRC) in applications such as slabs-on-grade, it is imperative to develop comprehensive guidelines that address different facets of the slab behavior. The current study aims at providing a design methodology for FRC slabs-on-grade and pavements, which incorporates suitable material parameters and considers various failure conditions. The approach is based on inelastic analysis since the presence of fibres imparts sufficient rotation capacity to the slabs. The equivalent flexural strength, f_(e,150), is used to incorporate the crack resisting potential in the design. The required expressions are developed based on yield line analysis for different types of loads and lead to performance requirements in terms of the equivalent flexural strength, for a minimum thickness and chosen grade of concrete, by using appropriate limiting moment equations. The methodology also accounts for stresses due to temperature variations and restraint to shrinkage. A detailed calculation is also given to illustrate the use of the design procedure.
机译:为了使纤维增强混凝土(FRC)可以在高等级平板等应用中使用,必须制定全面的准则来解决平板行为的不同方面。当前的研究旨在为FRC地面和路面提供一种设计方法,该方法结合了合适的材料参数并考虑了各种破坏条件。该方法基于非弹性分析,因为纤维的存在赋予了平板足够的旋转能力。等效抗弯强度f_(e,150)用于在设计中纳入抗裂能力。根据屈服线分析针对不同类型的载荷得出所需的表达式,并通过使用适当的极限弯矩方程式,针对等效弯曲强度,最小厚度和所选混凝土等级,得出对性能的要求。该方法还考虑了由于温度变化和收缩限制引起的应力。还给出了详细的计算来说明设计程序的使用。

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