Analysis and Design of Protection Device for Anchor Cable Pull-Out in High-Stress Roadways

Author:

Guo Fuxin1,Tu Min1,Dang Jiaxin1ORCID

Affiliation:

1. School of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, China

Abstract

In regions with high-stress roadway stress, anchor cables frequently experience damage, leading to risky pull-outs and ejections. This study aimed to determine the dynamics of such incidents, refine protective devices, and validate their efficacy in enhancing safety. Drawing from an ejection accident in the 1632 (3) roadway of Pan San Mine, a combination of laboratory experiments, theoretical analysis, simulations, and field applications was utilized. The kinetic energy and speed of cable ejections were determined from single-axis tension test data. Based on these insights, a spring-based protection device was conceptualized. Subsequent experiments and simulations evaluated the energy absorption and deformation characteristics of these devices with different diameters. The results included the following: A cable, during ejection, moved at 48 m/s. Spring protective devices of 4 mm can absorb more energy than the 5 mm, but the anti-ejection effect is poor respectively. Increasing the device diameter improved its performance, especially in controlling spring deformation rate and preventing cable lock-ups. This devised protection mechanism showed promising results when implemented in the 1511 (1) roadway of Zhangji Mine.

Funder

Anhui Collaborative University Innovation Project

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference31 articles.

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3. He, M.Q. (2021). Mechanical Mechanism of Interaction between Grouting Anchor Cable and Surrounding Rock Considering Tension Shear Composite Fracture Effect. [Master’s Thesis, China University of Mining and Technology].

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5. Deng, L. (2021). Anchor Cable Breaking Mechanism and Control Technology of Composite Roof in Goaf under Near Coal Seam Goaf. [Master’s Thesis, China University of Mining and Technology].

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