• Chinese Core Periodicals
  • Chinese Core Journals of Science and Technology
  • RCCSE Chinese Authoritative Academic Journals
SONG Xianming, ZHENG Xuezhao, LIU Shijian, LI Xingyu, JIANG Peng. Optimization Test of Hydraulic Cutting Process Parameters for Mine Rescue[J]. Safety in Coal Mines, 2019, 50(9): 5-8.
Citation: SONG Xianming, ZHENG Xuezhao, LIU Shijian, LI Xingyu, JIANG Peng. Optimization Test of Hydraulic Cutting Process Parameters for Mine Rescue[J]. Safety in Coal Mines, 2019, 50(9): 5-8.

Optimization Test of Hydraulic Cutting Process Parameters for Mine Rescue

More Information
  • Published Date: September 19, 2019
  • Aiming at the dangerous environment of coal mine and the difficult cutting operation, complicated operation and low efficiency in mine accident rescue, a downhole cutting device is designed, and cutting tests are carried out on steel plate, bolt and closed wall of downhole equipment, different cutting process parameters are obtained, and the results of cutting process parameters are optimized. The results were as follows: the pressure of cutting steel plate was 40 MPa, the moving speed of the nozzle was 80 mm/min, the target distance was 10 mm, and the abrasive flow rate was 3.2 kg/min. The cutting bolt has a pressure of 35 MPa, a moving speed of 90 mm/min, and a target distance of 8 mm. The pressure of the cutting wall was 44 MPa, and the moving speed was 105 mm/min.
  • [1]
    张楠.煤矿井下火灾区远距离自动封闭装置[J].煤矿安全,2018,49(4):103-105.
    [2]
    李晓红,卢义玉,向文英.水射流理论及在矿业工程中的应用[M].重庆:重庆大学出版社,2007.
    [3]
    何峰,杨大春.便携式矿井用水切割机的研究及其控制系统设计[J].机床与液压,2016,44(22):121-122.
    [4]
    杨晓峰,李晓红,卢义玉.水射流辅助岩石切削过程的刀具热应力分析[J].煤炭学报,2011,36(1):152.
    [5]
    黄永菊,迟露鑫,岑海堂.磨料水射流切割特性分析及模型建立[J].煤矿机械,2008(5):29-31.
    [6]
    胡维东,赵博.高压水射流在煤矿开采过程中的应用[J].煤,2011,20(6):64-65.
    [7]
    覃兆勇.高压水射流破煤岩实验研究[D].成都:西南石油大学,2014.
    [8]
    薛胜雄.高压水射流技术工程[M].安徽:合肥工业大学出版社,2006.
    [9]
    金淳哲,信长昊,陈龙.沿空巷道围岩破坏规律研究[J].山西建筑,2018(29):62-64.
    [10]
    沈娟.磨料水射流切割技术在机械检修中的应用研究[J].煤炭科技,2013(2):19-21.
  • Related Articles

    [1]GU Baoze. Physical simulation and drilling optimization design of hydraulic cavitation and permeability enhancement in Wuhushan Coal Mine[J]. Safety in Coal Mines, 2024, 55(7): 15-21. DOI: 10.13347/j.cnki.mkaq.20230319
    [2]ZHANG Lulu, LI Luyuan, ZHANG Runxu. Experimental study on optimization of process parameters of ultra-high pressure abrasive water jet[J]. Safety in Coal Mines, 2023, 54(6): 27-33.
    [3]CHEN Daguang. Roadway Supporting Parameters Analysis and Process Optimization for Excavation and Bolting Integration[J]. Safety in Coal Mines, 2017, 48(10): 224-227,231.
    [4]LIU Yin, LU Yao, GUO Hao, CUI Boqiang. Experimental Study on Proportion Optimization of Construction Waste Paste Filling Materials[J]. Safety in Coal Mines, 2017, 48(6): 65-68.
    [5]DING Guofeng, WANG Sujian, HUANG Kejun, ZHU Xingpan. Supporting Parameters Optimization for Large-section Open-off Cut in Shallow-buried Depth Seam with Thin Bed Rock[J]. Safety in Coal Mines, 2016, 47(8): 201-204.
    [6]DONG Jun, YU Guisheng, WANG Jinbao. Simulating Optimization of Process Parameters for Fire Prevention by Continuous Nitrogen Injection in Goaf of Fully Mechanized Caving Face[J]. Safety in Coal Mines, 2016, 47(7): 186-189.
    [7]WU Xinbo, JIANG Zaibing, XU Jianjun, JIA Bingyi, LI Zhanfeng. Optimization of Hydraulic Fracturing Construction Process in Coal Reservoir of Jiaoping Mining Area[J]. Safety in Coal Mines, 2015, 46(3): 149-152.
    [8]LYU Wei-wei, ZHANG Bao, LI Jun-feng, LI Zhong-chao, LI Wei-bin. Steep Thick Coal Seam Longwall Caving Mining Caving Process Parameters Optimization[J]. Safety in Coal Mines, 2013, 44(8): 48-50,54.
    [9]WEN Ying-yuan, MU Zong-long, CAI Wu, WANG Hao. The Parameter Optimization Analysis of Borehole Pressure Relief in Coal Seam Based on Orthogonal Test[J]. Safety in Coal Mines, 2013, 44(5): 170-173.
    [10]LI Zhi-qiang, TANG Xu, WANG Zhao-feng. Regional Outburst Prevention Test by Coal Seam Infusion Humidification and Permeation Fluid Mechanics Numerical Solution of Parameter Optimization[J]. Safety in Coal Mines, 2012, 43(9): 10-13.

Catalog

    Article views (158) PDF downloads (0) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return