State-of-the-art on the anchorage performance of rock bolts subjected to shear load

IF 6.9 1区 工程技术 Q2 ENERGY & FUELS International Journal of Coal Science & Technology Pub Date : 2024-02-05 DOI:10.1007/s40789-023-00643-z
Yu Chen, Haodong Xiao
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Abstract

Rock bolts are extensively utilized in underground engineering as a means of offering support and stability to rock masses in tunnels, mines, and other underground structures. In environments of high ground stress, faults or weak zones can frequently arise in rock formations, presenting a significant challenge for engineering and potentially leading to underground engineering collapse. Rock bolts serve as a crucial structural element for the transmission of tensile stress and are capable of withstanding shear loads to prevent sliding of weak zones within rock mass. Therefore, a complete understanding of the behavior of rock bolts subjected to shear loads is essential. This paper presents a state-of-the-art review of the research progress of rock bolts subjected to shear load in three categories: experiment, numerical simulation, and analytical model. The review focuses on the research studies and developments in this area since the 1970s, providing a comprehensive overview of numerous factors that influence the anchorage performance of rock bolts. These factors include the diameter and angle of the rock bolt installation, rock strength, grouting material, bolt material, borehole diameter, rock bolt preload, normal stress, joint surface roughness and joint expansion angle. The paper reviews the improvement of mechanical parameter setting in numerical simulation of rock bolt shear. Furthermore, it delves into the optimization of the analytical model concerning rock bolt shear theory, approached from the perspectives of both Elastic foundation beam theory coupled with Elastoplasticity theory and Structural mechanic methods. The significance of this review lies in its ability to provide insights into the mechanical behavior of rock bolts. The paper also highlights the limitations of current research and guidelines for further research of rock bolts.

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承受剪切荷载的岩石螺栓锚固性能的最新进展
岩石螺栓广泛应用于地下工程,作为隧道、矿井和其他地下结构中为岩体提供支撑和稳定性的一种手段。在高地应力环境中,岩层中经常会出现断层或薄弱区,这给工程设计带来了巨大挑战,并可能导致地下工程坍塌。岩石螺栓是传递拉应力的重要结构元件,能够承受剪切载荷,防止岩体薄弱区滑动。因此,全面了解岩石螺栓在承受剪切荷载时的行为至关重要。本文从实验、数值模拟和分析模型三个方面对承受剪切载荷的岩石螺栓的研究进展进行了最新综述。综述侧重于 20 世纪 70 年代以来该领域的研究和发展,全面概述了影响岩石螺栓锚固性能的众多因素。这些因素包括岩石螺栓安装的直径和角度、岩石强度、灌浆材料、螺栓材料、钻孔直径、岩石螺栓预紧力、法向应力、接头表面粗糙度和接头膨胀角。本文回顾了岩石螺栓剪切数值模拟中机械参数设置的改进。此外,论文还从弹性地基梁理论、弹塑性理论和结构力学方法的角度,深入探讨了岩石螺栓剪切理论分析模型的优化问题。本综述的意义在于它能够为岩石螺栓的力学行为提供深入见解。本文还强调了当前研究的局限性以及进一步研究岩石螺栓的指导原则。
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来源期刊
CiteScore
11.40
自引率
8.40%
发文量
678
审稿时长
12 weeks
期刊介绍: The International Journal of Coal Science & Technology is a peer-reviewed open access journal that focuses on key topics of coal scientific research and mining development. It serves as a forum for scientists to present research findings and discuss challenging issues in the field. The journal covers a range of topics including coal geology, geochemistry, geophysics, mineralogy, and petrology. It also covers coal mining theory, technology, and engineering, as well as coal processing, utilization, and conversion. Additionally, the journal explores coal mining environment and reclamation, along with related aspects. The International Journal of Coal Science & Technology is published with China Coal Society, who also cover the publication costs. This means that authors do not need to pay an article-processing charge.
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