[an error occurred while processing this directive] [an error occurred while processing this directive] [an error occurred while processing this directive]
[an error occurred while processing this directive]
稀贵金属前沿快讯

深部硬岩可切割性及非爆机械化破岩实践

  • 王少锋 ,
  • 李夕兵
展开
  • 中南大学资源与安全工程学院,湖南 长沙 410083

王少锋(1989-),男,河南洛阳人,特聘教授,从事深部硬岩破碎与岩体灾害防控方面的研究工作。

收稿日期: 2021-02-07

  修回日期: 2021-05-22

  网络出版日期: 2021-12-17

基金资助

国家自然科学基金项目“深部高应力下镐形截齿破岩特性及诱导调控机理”(51904333)

Cutting Characteristic and Non-explosive Mechanized Rock-breakage Practice of Deep Hard Rock

  • Shaofeng WANG ,
  • Xibing LI
Expand
  • School of Resources and Safety Engineering,Central South University,Changsha 410083,Hunan,China

Received date: 2021-02-07

  Revised date: 2021-05-22

  Online published: 2021-12-17

本文亮点

为了系统地认识应力条件、矿岩特性和破岩参数等因素对深部硬岩截割特性的影响,梳理并总结了以往关于深部硬岩截割特性室内试验及非爆机械化破岩现场实践工作。根据3种应力环境对镐型截齿静态和动静组合破岩特性的影响,结合构建的截齿破岩峰值载荷理论及回归模型,发现硬岩在较低围压或无围压条件下具有安全高效的破碎表现;根据高单轴围压下截齿破岩扰动诱发岩爆的过程和机理,揭示了采矿过程中由开采扰动诱发高应力矿柱岩爆的发生机制;基于加卸荷诱导损伤、预切槽和预钻孔等人为诱导缺陷对镐型截齿破岩特性的影响研究,得到人为诱导缺陷可有效提高硬岩的可切割性,获得了改善硬岩可切割性的成套方法;现场试验了多种机械化破岩方法,提出了基于应力解除和动静组合破岩的预切槽硬岩矿体旋转振动连续截割设备及其施工工艺。研究结果可为深部硬岩矿体非爆机械化规模开采提供理论基础和现场实践经验。

本文引用格式

王少锋 , 李夕兵 . 深部硬岩可切割性及非爆机械化破岩实践[J]. 黄金科学技术, 2021 , 29(5) : 629 -636 . DOI: 10.11872/j.issn.1005-2518.2021.05.023

Highlights

The factors such as stress conditions,ore-rock properties and breakage parameters significantly affect the cutting characteristics of deep hard rock,which are also the key factors to determine the successful application of non-explosive mechanized mining. According to the three types of stress conditions of biaxial (single-face excavation),uniaxial (pillar) and low or even unconfined stress (excavation damage zone around pillar) on the rock mass near the mining operation surface,the influences of the above three types of stress conditions on the static and coupled static-dynamic rock breakage characteristics using a conical pick were systematically investigated. Combined with the established peak force theory and regression model of rock fragmentation using a conical pick,it is found that the hard rock has safe and efficient breakage performance under the conditions of low or no confining pressure. According to the process and mechanism of rock burst induced by the disturbance of rock fragmentation using conical pick under high uniaxial confining stress,the mechanism of rock burst induced by mining disturbance in high stress pillar was revealed. The effects of artificially induced defects,such as loading/unloading-induced damage,pre-slitting and pre-drilling,on rock breakage characteristics using a conical pick were investigated. The results show that the artificially induced defects can effectively improve the cuttability of hard rock,and a complete set of methods for improving the cuttability of hard rock were obtained. A variety of mechanized methods for rock breakage have been tested in the mining field,and a rotary vibration continuous cutting equipment based on pre-slitting in hard ore-rock for stress relief and usage of coupled static-dynamic rock breakage have been proposed. The above research results can provide theoretical basis and field practice experience for the large-scale non-explosive mechanized mining in deep hard rock mine.

[an error occurred while processing this directive]

脚注

http://www.goldsci.ac.cn/article/2021/1005-2518/1005-2518-2021-29-5-629.shtml

Bilgin N Copur H Balci C 2013.Mechanical Excavation in Mining and Civil Industries[M]. Boca Raton:CRC Press.

Cai Meifeng 2020.Key theories and technogies for surrounding rock stability and ground control in deep mining[J].Journal of Mining and Strata Control Engineering2(3):5-13.

Cai Meifeng Xue Dinglong Ren Fenhua 2019.Current status and development strategy of metal mines[J].Chinese Journal of Engineering41(4):417-426.

He Manchao 2021.Research progress of deep shaft construction mechanics[J].Journal of China Coal Society46(3):726-746.

Hu Biwei Yin Tubing Li Xibing 2020.Experimental study on mechanical impact breaking rock with microwave radiation[J].Gold Science and Technology28(4):521-530.

Hu Shengsan Liu Xiuyuan Cheng Yuqi 2010.Technical revolution in coal mining history:40 years development of fully mechanized coal mining in China[J].Journal of China Coal Society35(11):1769-1771.

Kang Hongpu 2021.Seventy yeas development and prospects of strata control technology for coal mine roadways in China[J]. Chinese Journal of Rock Mechanics and Engineering40(1):1-30.

Li Gensheng Liao Hualin Huang Zhongwei al et 2009.Rock damage mechanisms under ultra-high pressure water jet impact[J].Journal of Mechanical Engineering45(10):284-292.

Li X B Wang S F Wang S Y 2018.Experimental investigation of the influence of confining stress on hard rock fragmentation using a conical pick[J].Rock Mechanics and Rock Engineering,51:255-277.

Li Xibing Wang Shaofeng Zhao Guoyan al et ,2016 .A rotary vibration continuous cutting equipment for precutting hard rock orebody and its construction technology:CN105804743A [P].2016-07-27.

Li Xibing Yao Jinrui Du Kun 2013.Preliminary study for induced fracture and non-explosive continuous mining in high-geostress hard rock mine—A case study of Kaiyang phosphate mine[J].Chinese Journal of Rock Mechanics and Engineering32(6):1101-1111.

Li Xibing Zhou Jian Wang Shaofeng al et 2017.Review and practice of deep mining for solid mineral resources[J].The Chinese Journal of Nonferrous Metals27(6):1236-1262.

Lu Gaoming Li Yuanhui Hassani F al et 2016.A review of theoretical and experimental studies of mechanical rock fragmentation with microwave assisted approach[J].Chinese Jo-urnal of Geotechnical Engineering38(8):1497-1506.

Wang Hong 2010.The 40 years developmental review of the fully mechanized mine roadway heading technology in China[J].Journal of China Coal Society35(11):1815-1820.

Wang S F Huang L Q Li X B 2020.Analysis of rockburst triggered by hard rock fragmentation using a conical pick under high uniaxial stress[J].Tunnelling and Underground Space Technology,96:103195.

Wang S F Li X B Du K al et 2018.Experimental investigation of hard rock fragmentation using a conical pick on true triaxial test apparatus[J].Tunnelling and Underground Space Technology,79:210-223.

Wang S F Li X B Yao J R al et 2019a.Experimental investigation of rock breakage by a conical pick and its application to non-explosive mechanized mining in deep hard rock[J].International Journal of Rock Mechanics and Mining Sciences,122:104063.

Wang S F Sun L C Huang L Q al et 2019b.Non-explosive mining and waste utilization for achieving green mining in underground hard rock mine in China[J].Transactions of Nonferrous Metals Society of China,29:1914-1928.

Wang S F Sun L C Li X B al et 2021.Experimental investigation of cuttability improvement for hard rock fragmentation using conical cutter[J].International Journal of Geomecha-nics21(2):06020039.

Wang Shaofeng Li Xibing Gong Fengqiang al et 2021.Breakage characteristics and mechanized mining experiment in deep hard rock[J].Journal of Central South University(Sci-ence and Technology)52(8):2772-2782.

Wu Li Zhang Shizhong Lin Feng 2000.Synthesizing comment on modern rock fragmentation methods[J].Exploration Engineering(Rock & Soil Drilling and Tunneling),(2):49-51.

Xie Heping 2019.Research review of the state key research development program of China:Deep rock mechanics and mining theory[J].Journal of China Coal Society44(5):1283-1305.

Zhang Guiju Tan Qing Lao Tongbing 2019.Disc cutter cutting mechanism under different combined dynamic and static loading conditions[J]. Journal of Central South University(Science and Technology)50(3):540-549.

Zhang Guiju Tan Qing Lao Tongbing 2020.Analysis of rock breaking mechanics model for TBM disc cutter[J].Journal of Central South University(Science and Technology)51(10):2792-2799.

Zheng Y L He L 2021.TBM tunneling in extremely hard and abrasive rocks: Problems, solutions and assisting methods[J].Journal of Central South University28(2):454-480.

蔡美峰 ,2020.深部开采围岩稳定性与岩层控制关键理论和技术[J].采矿与岩层控制工程学报2(3):5-13.

蔡美峰,薛鼎龙,任奋华 ,2019.金属矿深部开采现状与发展战略[J].工程科学学报41(4):417-426.

何满潮 ,2021.深部建井力学研究进展[J].煤炭学报46(3):726-746.

胡毕伟,尹土兵,李夕兵 ,2020.微波辐射辅助机械冲击破碎岩石动力学试验研究[J].黄金科学技术28(4):521-530.

胡省三,刘修源,成玉琪 ,2010.采煤史上的技术革命——我国综采发展40a[J].煤炭学报35(11):1769-1771.

康红普 ,2021.我国煤矿巷道围岩控制技术发展70年及展望[J].岩石力学与工程学报40(1):1-30.

李根生,廖华林,黄中伟,等 ,2009.超高压水射流作用下岩石损伤破碎机理[J].机械工程学报45(10):284-292.

李夕兵,王少锋,赵国彦,等,2016 .一种预切槽硬岩矿体旋转振动连续截割设备及其施工工艺:CN105804743A [P].2016-07-27.

李夕兵,姚金蕊,杜坤 ,2013.高地应力硬岩矿山诱导致裂非爆连续开采初探——以开阳磷矿为例[J].岩石力学与工程学报32(6):1101-1111.

李夕兵,周健,王少锋,等 ,2017.深部固体资源开采评述与探索[J].中国有色金属学报27(6):1236-1262.

卢高明,李元辉, Hassani F ,等 ,2016.微波辅助机械破岩试验和理论研究进展[J].岩土工程学报38(8):1497-1506.

王虹 ,2010.我国综合机械化掘进技术发展40a[J].煤炭学报35(11):1815-1820.

王少锋,李夕兵,宫凤强,等 ,2021.深部硬岩截割特性与机械化破岩试验研究[J].中南大学学报(自然科学版)52(8):2772-2782.

吴立,张时忠,林峰 ,2000.现代破岩方法综述[J].探矿工程(岩土钻掘工程),(2):49-51.

谢和平 ,2019.深部岩体力学与开采理论研究进展[J].煤炭学报44(5):1283-1305.

张桂菊,谭青,劳同炳 ,2019.不同动静载荷组合作用下盘形滚刀破岩机制[J].中南大学学报(自然科学版)50(3):540-549.

张桂菊,谭青,劳同炳 ,2020.TBM盘形滚刀切削力学模型分析[J].中南大学学报(自然科学版)51(10):2792-2799.

文章导航

/

[an error occurred while processing this directive]