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Analytical Model to Predict Dilation Behavior of FRP Confined Circular Concrete Columns Subjected to Axial Compressive Loading

机译:预测轴向压缩载荷的FRP狭窄圆形混凝土柱预测扩张行为的分析模型

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摘要

Experimental research and real-case applications are demonstrating that the use of fiber-reinforced polymer (FRP) composite materials can be a solution to substantially improve circular cross section concrete columns in terms of strength, ductility, and energy dissipation. The present study is dedicated to developing a new model for estimating the dilation behavior of fully and partially FRP-based confined concrete columns under axial compressive loading. By considering experimental observations and results, a new relation between secant Poisson's ratio and axial strain is proposed. In order for the model to be applicable to partial confinement configurations, a confinement stiffness index is proposed based on the concept of confinement efficiency factor. A new methodology is also developed to predict the ultimate condition of partially FRP confined concrete taking into account the possibility of concrete crushing and FRP rupture failure modes. By comparing the results from experimental tests available in the literature with those determined with the model, the reliability and the good predictive performance of the developed model are demonstrated. (C) 2020 American Society of Civil Engineers.
机译:实验研究和实验应用表明,在强度,延展性和能量耗散方面,使用纤维增强聚合物(FRP)复合材料的使用可以是基本上改善圆形横截面混凝土柱的溶液。本研究专用于开发一种新模型,用于在轴向压缩负载下估计完全和部分FRP的狭窄混凝土柱的扩张行为。通过考虑实验性观察和结果,提出了SECANT Poisson的比率与轴向菌株之间的新关系。为了适用于适用于部分监禁配置,基于限制效率因子的概念提出了一个限制僵硬指数。还开发了一种新的方法来预测,考虑到混凝土破碎和FRP破裂失效模式的可能性,预测部分FRP的最终条件。通过将文献中可用的实验测试的结果与模型确定的实验试验进行比较,证明了开发模型的可靠性和良好的预测性能。 (c)2020年美国土木工程师协会。

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