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金属矿山 ›› 2026, Vol. 55 ›› Issue (3): 192-202.

• 安全与环保 • 上一篇    下一篇

支护系统金属结构大气腐蚀研究进展与展望

李东辉1 徐 帅1 于 童2 黄梦龙1   

  1. 1. 深部金属矿智能开采与装备全国重点实验室,辽宁 沈阳 110819;2. 东南大学土木工程学院,江苏 南京 211189
  • 出版日期:2026-03-15 发布日期:2026-04-01
  • 通讯作者: 徐 帅(1981—),男,教授,博士,博士研究生导师。
  • 作者简介:李东辉(1997—),女,博士研究生。
  • 基金资助:
    国家自然科学基金面上项目(编号:52074062)。

Research Progress and Prospects on Atmospheric Corrosion of Metal Structures in Support Systems

LI Donghui1 XU Shuai1 YU Tong2 HUANG Menglong1   

  1. 1. State Key Laboratory of Intelligent Deep Metal Mining and Equipment,Shenyang 110819,China;
    2. School of Civil Engineering,Southeast University,Nanjing 211189,China
  • Online:2026-03-15 Published:2026-04-01

摘要: 金属大气腐蚀每年造成的经济损失巨大,探究金属结构大气腐蚀作用因素及劣化规律,对于金属结构
服役寿命预测及支护补强具有重要意义。随开采深度增加,地下工程支护结构的腐蚀耐久性问题愈加突出,开展深
部矿井环境下的支护结构劣化规律研究势在必行。为此,归纳了当前金属大气腐蚀的研究进展,从主要影响因素及
其作用机理方面分析了六大环境因素对金属结构的劣化规律,在对比现场暴露试验与室内加速试验优劣性及相关性
指标的基础上,进一步总结了当前室内加速试验装置的研发现状。研究表明:① 环境相对湿度为大气腐蚀的发生提
供了环境基础,温度影响大气腐蚀速率的快慢,其他环境因素对腐蚀速率的影响与其含量密切相关,多种因素相互关
联、协同作用,致使大气腐蚀作用机理复杂。② 现场暴露试验真实可靠,但具有区域限制、实时性差及试验周期长等
缺点,因此可通过腐蚀产物、腐蚀动力学与室内试验建立相关性指标。③ 室内加速试验装置可模拟部分大气腐蚀环
境,但未有针对深部矿井环境研发的全尺寸支护结构多因素耦合室内加速试验装置,难以准确探究深部矿井环境下
支护结构的劣化规律。基于上述环境因素及装置研发现状分析得出,当前大气腐蚀存在环境因素研究单一、缺少深
部矿井环境模拟的加速腐蚀试验装置等不足。为此,提出了一种针对矿山恶劣环境下锚杆—锚固结构失效规律探究
的室内加速腐蚀试验装置研发构想,并根据矿井环境影响因子相关性及试验加速性,实现了温度环境、湿度环境、固
体颗粒物环境、多种腐蚀性气体环境及混菌体系等5 种环境的模拟,设置了全尺寸支护元件、围岩模拟单元及预应力
施加等3 种模拟工况。在上述分析的基础上,进一步讨论了金属结构大气腐蚀研究领域存在的不足,如腐蚀因素单
一、未考虑混菌体系及中低能级扰动应力对支护结构的影响、腐蚀试样尺寸小等问题。认为未来研究重点应聚焦于:
① 依据环境因素的劣化影响度,探究复杂环境因素对支护系统的耦合作用;② 明确环境诱导作用下,混菌体系对支
护结构的腐蚀劣化规律;③ 揭示中低能级扰动应力下支护结构的腐蚀劣化机制;④ 加强全尺寸支护结构研究,避免
试样尺寸效应造成的误差。

Abstract: The annual economic losses caused by atmospheric corrosion of every year are enermous. Exploring the factors
and degradation laws of atmospheric corrosion of metal structures is of great significance for predicting the service life of metal
structures and strengthening support. As the mining depth increases,the corrosion durability problem of underground engineering
support structures becomes increasingly prominent. It is imperative to conduct research on the degradation law of support
structures in deep mine environments. To this end,the current research progress on metal atmospheric corrosion was summarized,
and the degradation laws of six environmental factors on metal structures were analyzed from the main influencing factors
and their mechanisms. Based on the comparison of the advantages and disadvantages of on-site exposure tests and indoor acceleration
tests and their correlation indicators,the current research and development status of indoor acceleration test devices was
further summarized. Based on the above research,it is shown that:① The relative humidity of the environment provides the environmental
basis for the occurrence of atmospheric corrosion,temperature affects the speed of atmospheric corrosion,and the
influence of other environmental factors on corrosion rate is closely related to their content. Multiple factors are interrelated and
work together,resulting in a complex mechanism of atmospheric corrosion. ② The on-site exposure test is authentic and reliable,
but it has disadvantages such as regional limitations,poor real-time performance,and long testing cycles. Therefore,correlation
indicators can be established through corrosion products,corrosion kinetics,and indoor testing. ③ The indoor acceleration
test device can simulate some atmospheric corrosion environments,but there is no full-scale support structure multi factor coupled
indoor acceleration test device developed specifically for deep mine environments,making it difficult to accurately explore
the degradation laws of support structures in deep mine environments. Based on the analysis of the above environmental factors
and the current status of device development,it is concluded that the current atmospheric corrosion has shortcomings such as
single research on environmental factors and the lack of accelerated corrosion test devices for simulating deep mine environments.
Therefore,a research and development concept for an indoor accelerated corrosion test device is proposed to explore the
failure law of anchor rod anchoring structures in harsh mine environments. Based on the correlation of mine environmental impact
factors and test acceleration,simulations of five environments including temperature environment,humidity environment,
solid particle environment,multiple corrosive gas environment,and mixed bacterial system have been achieved,and three simulation
working conditions including full-size support elements,surrounding rock simulation units,and pre stress application have
been set up. On the basis of the above analysis,the shortcomings in the research field of atmospheric corrosion of metal structures
were further discussed,such as the single corrosion factor,failure to consider the influence of mixed bacterial systems and
the influence of low and medium energy disturbance stresses on support structures,and the small size of corrosion specimens.
It is believed that future research should focus on:① Exploring the coupling effect of complex environmental factors on support
systems based on the degree of degradation of environmental factors;② Clarify the corrosion and degradation laws of mixed
bacterial systems on support structures under environmental induction;③ Revealing the corrosion degradation mechanism of
support structures under disturbance stress at low and medium energy levels;④ Strengthen the research on full-size support
structures to avoid errors caused by sample size effects.

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