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首页> 外文期刊>Journal of structural engineering >Shear Design and Assessment of Reinforced and Prestressed Concrete Beams Based on a Mechanical Model
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Shear Design and Assessment of Reinforced and Prestressed Concrete Beams Based on a Mechanical Model

机译:基于力学模型的钢筋混凝土和预应力混凝土梁的抗剪设计与评估

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摘要

Safe and economical design and assessment of reinforced (RC) and prestressed concrete (PC) beams requires the availability of accurate but simple formulations which adequately capture the structural response. In this paper, a mechanical model for the prediction of the shear-flexural strength of PC and RC members with rectangular, I, or T sections, with and without shear reinforcement, is presented. The model is based on the principles of concrete mechanics and on assumptions supported by the observed experimental behavior and by the results of refined numerical models. Compact, simple, and accurate expressions are derived for design and verification of the shear strength, which incorporate the most relevant shear transfer actions. Excellent agreement between the predictions of the model and the results of the recently published ACI-DAfStb databases, including more than 1,287 tests on RC and PC beams with and without stirrups, has been observed. The theory behind the model provides consistent explanations for many aspects related to the shear response that are not clearly explained by current code formulations, making it a very helpful tool for daily engineering practice.
机译:安全,经济地设计和评估钢筋混凝土(RC)梁和预应力混凝土(PC)梁需要精确而简单的配方,以充分反映结构响应。在本文中,提出了一种用于预测具有矩形,I形或T形截面的PC和RC构件(带有和不带有剪切增强件)的抗剪强度的力学模型。该模型基于混凝土力学原理,并基于观察到的实验行为和精确数值模型的结果所支持的假设。得出紧凑,简单和准确的表达式,用于设计和验证抗剪强度,其中包含了最相关的剪力传递作用。该模型的预测与最近发布的ACI-DAfStb数据库的结果(包括在有或没有箍筋的RC和PC梁上进行的1,287多次试验)之间的一致性极佳。该模型背后的理论为与剪切响应有关的许多方面提供了一致的解释,而当前的代码公式并未对此做出清晰的解释,这使其成为日常工程实践中非常有用的工具。

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