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首页> 外文期刊>Journal of structural engineering >Shear Strength of RC Beams with Steel Stirrups
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Shear Strength of RC Beams with Steel Stirrups

机译:钢箍筋钢筋混凝土梁的抗剪强度

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摘要

Because of the complexity of the shear failure mechanism, most current design codes and guidelines are based on highly empirical approaches and consequently should only be used within the bounds of testing regimes from which they were derived. Hence this limitation restricts their applicability to innovative materials such as high-strength concrete and fiber-reinforced polymer (FRP) reinforcement. To solve this issue, a mechanics-based segmental approach, which can analyze a reinforced concrete (RC) beam with any type of concrete and reinforcement and which can explain the physical process of shear failure, has been developed to quantify the shear capacity of RC beams without stirrups. In this paper, with the partial interaction analysis of transverse reinforcements directly linked with that of longitudinal reinforcements, the segmental approach is extended by incorporating steel stirrups in the mechanics-based model; furthermore, a simplified closed form solution for design is derived. By evaluating the shear strength of 194 published test specimens, the proposed approaches are validated with good correlation between the predicted and measured strengths. In contrast to current empirical approaches which often assume the stirrups always yield, using the segmental approach it is shown that stirrups' force rarely reaches the value calculated by the truss model. Furthermore, it is shown that direct contribution of the stirrups is less important than the increase in the concrete component of the shear capacity attributable to confinement by the stirrups. Being mechanics based, this approach has a great potential to be developed for all types of RC structures. (C) 2015 American Society of Civil Engineers.
机译:由于剪切破坏机制的复杂性,大多数当前的设计规范和准则都是基于高度经验的方法,因此,应仅在衍生它们的测试制度的范围内使用。因此,该限制将它们的适用性限制于创新材料,例如高强度混凝土和纤维增强聚合物(FRP)增强材料。为了解决这个问题,已经开发出了一种基于力学的分段方法,该方法可以分析具有任何类型的混凝土和钢筋的钢筋混凝土(RC)梁,并且可以解释剪切破坏的物理过程,以量化RC的剪切能力。没有箍筋的梁。在本文中,通过将横向钢筋与纵向钢筋的局部相互作用分析直接联系起来,通过在基于力学的模型中加入钢箍筋来扩展分段方法。此外,推导了简化的封闭式设计解决方案。通过评估194个已发布的试样的剪切强度,所提出的方法在预测强度和测量强度之间具有良好的相关性,从而得到了验证。与通常假定箍筋总是屈服的当前经验方法相反,使用分段方法表明箍筋的力很少达到桁架模型计算的值。此外,已经表明,箍筋的直接贡献不如由于箍筋的约束而导致的剪切能力的混凝土成分的增加重要。基于力学的这种方法对于所有类型的RC结构都有很大的发展潜力。 (C)2015年美国土木工程师学会。

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