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Mechanics-based approach for predicting the short-term deflection of CFRP plated RC beams

机译:基于机械的方法预测CFRP电镀RC光束短期偏转

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Most design codes available today for predicting the deflection of adhesively plated RC beams use a full-interaction moment-curvature approach that requires the flexural rigidity to be quantified empirically. Due to their empirical nature, these design rules can only be applied within the bounds of the tests from which they were derived. Furthermore, as these design rules follow a full-interaction analysis, the slip between the reinforcement and adjacent concrete was not considered and the method does not cope with the discrete rotation of the cracks; that is, the deflection associated with crack widening was not directly considered. As an alternative, partial-interaction mechanics-based methods can be used. In this study, a mechanics-based approach for quantifying the deflection of adhesively plated RC beams was presented. The approach took into account the slip between the reinforcement and adjacent concrete, the formation and widening of flexural cracks, and the intermediate crack debonding mechanism of the externally bonded plate. The deflection from the mechanics-based approach was determined by considering the discrete rotation of individual cracks and the curvature of uncracked regions of the beam. The deflection results derived from the mechanics-based approach were compared with the experimental results of seven adhesively plated CFRP RC beams bonded to their tension face and a significant correlation between the results was observed. The mechanics-based approach does not require any components on the member level to be quantified empirically; thus, it could be useful in predicting the deflection of adhesively plated RC beams with new types of reinforcement material.
机译:目前最具设计代码可用于预测粘性RC光束的偏转,使用全互动力矩曲率方法,该方法需要经验地量化弯曲刚性。由于其经验性质,这些设计规则只能应用于它们所衍生的测试的范围内。此外,由于这些设计规则遵循全相互作用分析,因此不考虑加强和相邻混凝土之间的滑动,并且该方法不应对裂缝的离散旋转;也就是说,没有直接考虑与裂缝扩展相关的偏转。作为替代方案,可以使用基于部分交互力学的方法。在该研究中,提出了一种用于量化粘层镀粘的RC光束偏转的基于机械的方法。该方法考虑了加固和相邻混凝土之间的滑动,弯曲裂缝的形成和加宽,以及外部粘合板的中间裂纹剥离机构。通过考虑单个裂缝的离散旋转和梁的未夹紧区域的曲率来确定基于机械的方法的偏转。将源自基于机械方法的偏转结果与粘合到其张力面的七个粘性镀CFRP RC梁的实验结果进行了比较,并且观察结果之间的显着相关性。基于机械师的方法不需要经验地量化成员水平的任何组件;因此,它可用于预测具有新型加强材料的粘性镀覆RC光束的偏转。

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