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Experimental Research on Bending Bearing Capability of Grouted Double Mortise-Tenon Joint for Prefabricated Metro Station Structure

机译:预制地铁站结构灌浆双榫接头弯曲轴承能力的试验研究

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The grouted mortise-tenon joint, invented as the connection between the large prefabricated elements, is the most important component in the prefabricated underground structures. This paper conducts analysis of load-carrying capacity performance and failure mode with 1?:?1 prototype test in key working direction of different double mortise-tenon joint types for the prefabricated metro station. The resistance moment is developed and used to analyze the bending bearing characteristic curve, and the corresponding test results of each stage of the characteristic curve are described in detail. In addition, the bending bearing performance of different types of double-tenon joints under different load conditions is compared. The test results clarify the ultimate failure mode of double-tenon joint and the variable bearing capacity characteristics of the joint with the increase in axial load and explain the bearing performance of each stage. It is also found the auxiliary pretightening device is helpful to delay the appearance of cracks and improve the bearing capacity, especially when it is set on the tension side. The research results have important application value for the joint design of prefabricated metro station structures.
机译:灌浆的榫眼关节发明为大型预制元件之间的连接,是预制地下结构中最重要的组成部分。本文对负载容量性能和故障模式进行了1次进行了分析,其中1?:?1个原型测试在预制地铁站的不同双重榫眼关节类型的关键工作方向。开发抵抗力矩并用于分析弯曲轴承特性曲线,详细描述特征曲线的每个阶段的相应测试结果。此外,比较了不同类型的双榫关节在不同负载条件下的弯曲轴承性能。测试结果阐明了双榫关节的最终故障模式和接头的可变承载力特性,随着轴向载荷的增加,解释每个阶段的轴承性能。还发现辅助性能预言装置有助于延迟裂缝的外观,提高承载力,特别是当它在张力侧设置时。研究结果对预制地铁站结构的联合设计具有重要的应用价值。

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