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Research Article | Publishing Language: Chinese | Open Access

Research progress on key technologies of long-distance, heavy-duty scraper conveyors

Lei HUANG1( )Yaming WU1Qingzhong ZHANG1Anhao JIA2Jie YANG1Qiang ZHANG2
Zhengzhou Coal Mining Machinery (Group) Longwall Machinery Co., Ltd., Zhengzhou Henan 450016, China
College of Mechanical and Electronic Engineering, Shandong University of Science and Technology, Qingdao Shandong 266000, China
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Abstract

As fully-mechanized coal mining faces advance toward long-distance and high-throughput operations, long-distance, heavy-duty scraper conveyors are increasingly challenged by amplified self-weight, accumulated running resistance and insufficient intelligent closed-loop regulation. This study identified four technical routes by reviewing domestic and international studies for more efficient, reliable, and intelligent operations under complex working conditions: system-level lightweight design and energy-consumption optimization, drive control and multi-motor coordination, chain-drive failure and fault identification, and intelligent monitoring and closed-loop regulation, regarding their research development, key methods, and coupling relationships. Results reveal that existing studies are limited in the mechanisms of self-weight amplification and resistance accumulation under long-distance conditions, dynamic coupled control of multi-drive long-chain systems, the transformation of chain-drive failure mechanisms into engineering early-warning methods, and the implementation of intelligent closed-loop regulation in complex underground environments. This study therefore proposes future research directions based on the present industrial demands: low-carbon lightweight design, robust control under complex working conditions, AI-based predictive maintenance, and intelligent operation and maintenance supported by digital twins and underground 5G. This study provides references for research and engineering applications of key technologies for long-distance, heavy-duty scraper conveyors.

CLC number: TD528 Document code: A Article ID: 2096-2193(2026)04-0919-21

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Journal of Mining Science and Technology
Pages 919-939

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Cite this article:
HUANG L, WU Y, ZHANG Q, et al. Research progress on key technologies of long-distance, heavy-duty scraper conveyors. Journal of Mining Science and Technology, 2026, 11(4): 919-939. https://doi.org/10.19606/j.cnki.jmst.20260510

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Received: 23 March 2026
Revised: 30 April 2026
Published: 31 August 2026
© The Author(s) 2026

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).