双轴荷载作用下混凝土铰链抗剪性能的试验研究

IF 0.6 Q4 ENGINEERING, CIVIL Slovak Journal of Civil Engineering Pub Date : 2020-12-01 DOI:10.2478/sjce-2020-0031
P. Havlíček, J. Šoltész, J. Gašpárek
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引用次数: 3

摘要

摘要混凝土铰链可以承受极高的载荷和旋转,同时只需要最少的维护。它们的应用非常广泛,主要用于桥梁施工,但也可用于隧道管片的预制。通过正确的设计和实施,它们可以满足结构耐久性和阻力的最高要求。然而,现有的模型和设计程序相对过时。这些模型仅基于经验假设,而接缝本身的抗剪性能仅起到边际作用。以下论文旨在将现有的设计模型与实验结果进行比较,以找到最合适的设计方法,从而可靠地捕捉铰链在剪切载荷下的性能。开发了一个实验程序,对9个混凝土铰链样品进行了不同轴向荷载水平和加固程度的测试。然后将实验结果与选定的设计模型进行了比较,并进行了数值非线性分析。
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Experimental Investigation of the Shear Resistance of Concrete Hinges Under a Biaxial Load
Abstract Concrete hinges can withstand extremely high loads and rotations, while requiring only minimal maintenance. Their use is widespread, mainly in bridge construction, but they also find applications in the prefabrication of tunnel segments. With the right design and implementation, they can meet the highest requirements for the durability and resistance of a structure. However, the existing models and design procedures are relatively outdated. The models are based solely on empirical assumptions, whereas the shear resistance of the joint itself plays only a marginal role. The following paper aims to compare existing design models against experimental results in order to find the most suitable design approach that reliably captures the performance of a hinge under a shear load. An experimental program was developed in which 9 samples of concrete hinges were tested for different levels of axial loads and degrees of reinforcement. The results of the experiments were then compared with the selected design models, and a numerical nonlinear analysis was conducted.
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发文量
21
审稿时长
29 weeks
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