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YXW-2000型液压铣轮机的研制

胡海峰, 祝华军, 熊文祥, 郑明辉. 2022. YXW-2000型液压铣轮机的研制. 钻探工程, 49(6): 104-109. doi: 10.12143/j.ztgc.2022.06.014
引用本文: 胡海峰, 祝华军, 熊文祥, 郑明辉. 2022. YXW-2000型液压铣轮机的研制. 钻探工程, 49(6): 104-109. doi: 10.12143/j.ztgc.2022.06.014
HU Haifeng, ZHU Huajun, XIONG Wenxiang and ZHENG Minghui, . 2022. Development of YXW-2000 hydromill. DRILLING ENGINEERING, 49(6): 104-109. doi: 10.12143/j.ztgc.2022.06.014
Citation: HU Haifeng, ZHU Huajun, XIONG Wenxiang and ZHENG Minghui, . 2022. Development of YXW-2000 hydromill. DRILLING ENGINEERING, 49(6): 104-109. doi: 10.12143/j.ztgc.2022.06.014

YXW-2000型液压铣轮机的研制

详细信息
    作者简介: 胡海峰,男,汉族,1983年生,产品经理,高级工程师,主要从事煤矿钻探设备研发及试验工作,浙江省杭州市凯旋路445号浙江物产国际广场,huhaifeng_1219@163.com
  • 中图分类号: P634

Development of YXW-2000 hydromill

  • 针对国内山地信号塔基桩孔单纯依靠人工通过水磨钻结合风镐破碎,耗时久,而且危险系数大,所以市场急需一种能够减轻人工劳动强度,安全系数高,开孔破碎速度快,适合人工搬运、可拆卸的设备。目前常用的平地基桩开孔设备主要有:竖井钻机、反井钻机和竖井掘进机等,这些设备质量及外形尺寸大,搬运困难,对复杂地形和山地条件适应性差。根据以上现状,研发了一款YXW-2000型液压铣轮机,该设备结构布置合理,功能齐全,它能有效地改善山地基桩孔施工的机械化程度,降低工人劳动强度,提高设备运行的安全性。本文主要介绍液压铣轮机的主要技术参数、结构布局特点及液压系统。经试验表明,YXW-2000型液压铣轮机能满足钻孔施工的机械化需求,可解体性好,搬运方便,具有良好的应用前景。
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  • [1]

    鲁先龙,程永锋.我国输电线路基础工程现状与展望[J].电力建设,2005,26(11):25-27,34.LU Xianlong, CHENG Yongfeng. Current status and prospect of transmission tower foundation engineering in China[J]. Electric Power Construction, 2005,26(11):25-27,34.

    [2]

    [2] 方月舵,郑卫锋,叶超,等.输电线路岩石嵌固基础选型及施工技术研究[J].电力勘测设计,2017(5):10-14.

    FANG Yueduo, ZHENG Weifeng, YE Chao, et al. Type selection and construction technology of rock embedded foundation in transmission line[J]. Electric Power Survey & Design, 2017(5):10-14.

    [3]

    [3] 蔡连杰.大型竖井钻机主动式导向器研究[D].淮南:安徽理工大学,2013.CAI Lianjie. Research on active guiding device of large shaft drill[D]. Huainan: Anhui University of technology, 2013.

    [4]

    [4] 刘志强,甘文鸿.反井钻机技术与地下工程开发[J].地下空间,1999,19(4):425-428.

    LIU Zhiqiang, GAN Wenhong. Raise boring machine technology and underground engineering development[J]. Underground Space. 1999,19(4):425-428.

    [5]

    [5] 牛庆磊,吕永亮,贾炜,等.旋挖钻机配套集束式潜孔锤硬岩施工方法研究[J].探矿工程(岩土钻掘程),2015,42(12):57-60.

    NIU Qinglei, Yongliang LÜ, JIA Wei, et al. Study on hard rock drilling construction by rotary drilling rig matched with cluster DTH hammer[J]. Exploration Engineering (Rock & Solid Drilling and Tunneling), 2015,42(12):57-60.

    [6]

    [6] 张化民.大口径旋挖碎岩机理研究及钻具设计[D].成都:成都理工大学,2013.ZHANG Huamin. Large diameter rotary drilling rock fragmentation mechanism research and drilling tool design[D]. Chengdu: Chengdu University of Technology, 2013.

    [7]

    [7] 徐用超.输电线路岩石基础开挖方法的比较[J].建筑工程技术与设计,2017(20):1445-1446.

    XU Yongchao. Comparison of excavation methods for rock foundation of transmission line[J]. Architectural Engineering Technology and Design, 2017(20):1445-1446.

    [8]

    [8] 陈长生.水磨钻机开挖输电线路岩石基础[J].城市建设理论研究(电子版),2015(7):1121-1122.

    CHEN Changsheng. Excavation of transmission line rock foundation with water mill drill[J]. Theoretical Research on Urban Construction (Electronic Version), 2015(7):1121-1122.

    [9]

    [9] 高进军.水磨钻人工挖孔施工技术的应用[J].浙江建筑,2015(2):23-26.

    GAO Jinjun. Application of the construction technology of hand-dugging by water-mill drilling[J]. Zhejiang Construction, 2015(2):23-26.

    [10]

    [10] 陈礼仪,宋刚,于好善,等.动静组合加载下刀具破岩的力学模型[J].探矿工程(岩土钻掘工程),2013,40(2):15-18.

    CHEN Liyi, SONG Gang, YU Haoshan, et al. Mechanical analysis on rock fragmentation under combined static and dynamic loading[J]. Exploration Engineering (Rock & Solid drilling and Tunneling), 2013,40(2):15-18.

    [11]

    [11] 张祖培,刘宝昌.碎岩工程学[M].北京:地质出版社,2004.ZHANG Zupei, LIU Baochang. Rock Crushing Engineering[M]. Beijing: Geological Publishing House, 2004.

    [12]

    [12] 徐小荷,余静.岩石破碎学[M].北京:煤炭工业出版社,1981:20-45.

    XU Xiaohe, YU Jing. Rock Fragmentation[M]. Beijing: Coal Industry Press, 1981:20-45.

    [13]

    [13] 闻邦椿.机械设计手册[M].北京:机械工业出版社,2010:100-200.

    WEN Bangchun. Mechanical Design Manual[M]. Beijing: China Machine Press, 2010:100-200.

    [14]

    [14] 江耕华.机械传动设计手册(上下册)[M].北京:煤炭工业出版社,1992:35-75.

    JIANG Genghua. Mechanical Transmission Design Manual (Volume One and Volume Two)[M]. Beijing: Coal Industry Press, 1992:35-75.

    [15]

    [15] 许贤良.液压传动[M].北京:国防工业出版社,2011:27-35.

    XU Xianliang. Hydraulic Transmission[M]. Beijing: National Defense Industry Press, 2011:27-35.

    [16]

    [16] 何存兴.液压元件[M].北京:机械工业出版社,1982:15-35.

    HE Cunxing. Hydraulic Components[M]. Beijing: China Machine Press, 1982:15-35.

    [17]

    [17] 臧克江.液压缸[M].北京:化学工业出版社,2010:50-80.

    ZANG Kejiang. Hydraulic Cylinder[M]. Beijing: Chemical Industry Press, 2010:50-80.

    [18]

    [18] 雷天觉.新编液压工程手册[M].北京:机械工业出版社,1998:125-300.

    LEI Tianjue. New Handbook of Hydraulic Engineering[M]. Beijing: China Machine Press, 1998:125-300.

    [19]

    [19] 刘家荣.复杂地层桩孔钻进工艺及机具研究[D].北京:中国地质大学(北京),2010.LIU Jiarong. Research on pile hole drilling technology and tools in complex strata[D]. Beijing: China University of Geosciences (Beijing), 2010.

    [20]

    [20] 宋刚.硬岩地层旋挖钻进组合工艺的研究与应用[J].施工技术,2011,40(2):72-74.SONG Gang. Application and research on combinatory rotary drilling process in hard rock[J]. Construction Technology, 2011,40(2):72-74.

    [21]

    [21] 刘三意.多工艺旋挖钻进技术研究[D].北京:中国地质大学(北京),2008.LIU Sanyi. Research on multi process rotary drilling technology[D]. Beijing: China University of Geosciences (Beijing), 2008.

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出版历程
收稿日期:  2021-05-10
修回日期:  2022-02-11

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