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Comparative study on bearing mechanism and design parameters of confined concrete arch joints in deep soft rock roadway

机译:深厚软岩巷道承压混凝土拱缝承载机理与设计参数的比较研究。

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Square confined concrete arch is increasingly used in deep soft rock roadway support because of its advantages of high strength and construction convenience. However, the design of confined concrete arch in underground engineering still remains in experience-based method and lacks quantitative analysis. As a connecting component between arch sections, the connection joints have an important influence on the internal force distribution and failure mechanism of support arch. Therefore, a reasonable design of arch joints is the premise of rational support design. Taking Liangjia Coal Mine, a typical deep soft rock mine in China, as research background, this paper fully compared the most widely used joint types of confined concrete arch as analytical objects: flange joints and casing joints. The main failure modes of these two kinds of joints under bending moment are defined. Laboratory and numerical tests are carried out to study the mechanical characteristics of joints. Based on the M – θ curve, the influence law of different design parameters is analyzed, and the design principles of joints are proposed. The research results could provide a theoretical basis for the design and application of confined concrete arch in related projects.
机译:方形承压混凝土拱由于具有强度高和施工方便的优点,越来越多地用于深部的软岩巷道支护中。然而,地下工程中承压混凝土拱的设计仍采用基于经验的方法,缺乏定量分析。作为拱形截面之间的连接部件,连接缝对支撑拱的内力分布和破坏机理具有重要影响。因此,合理设计拱形接缝是合理设计支护的前提。以中国典型的深部软岩煤矿梁家煤矿为研究背景,充分比较了最广泛使用的承压混凝土拱形节理类型:法兰节和套管节。确定了这两种接头在弯矩作用下的主要破坏方式。进行实验室和数值测试以研究接头的机械特性。基于M –θ曲线,分析了不同设计参数的影响规律,提出了接头设计原则。研究结果可为相关工程中承压混凝土拱的设计与应用提供理论依据。

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