CN 41-1243/TG ISSN 1006-852X

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

孕镶金刚石钻头钻进花岗岩岩屑特性室内试验研究

康鑫 段隆臣 刘卫卫 谭松成 和大钊

康鑫, 段隆臣, 刘卫卫, 谭松成, 和大钊. 孕镶金刚石钻头钻进花岗岩岩屑特性室内试验研究[J]. 金刚石与磨料磨具工程, 2023, 43(1): 23-28. doi: 10.13394/j.cnki.jgszz.2022.3001
引用本文: 康鑫, 段隆臣, 刘卫卫, 谭松成, 和大钊. 孕镶金刚石钻头钻进花岗岩岩屑特性室内试验研究[J]. 金刚石与磨料磨具工程, 2023, 43(1): 23-28. doi: 10.13394/j.cnki.jgszz.2022.3001
KANG Xin, DUAN Long chen, LIU Weiwei, TAN Songcheng, HE Dazhao. Experimental study on rock cutting characteristics of granite broken by impregnated diamond bit[J]. Diamond & Abrasives Engineering, 2023, 43(1): 23-28. doi: 10.13394/j.cnki.jgszz.2022.3001
Citation: KANG Xin, DUAN Long chen, LIU Weiwei, TAN Songcheng, HE Dazhao. Experimental study on rock cutting characteristics of granite broken by impregnated diamond bit[J]. Diamond & Abrasives Engineering, 2023, 43(1): 23-28. doi: 10.13394/j.cnki.jgszz.2022.3001

孕镶金刚石钻头钻进花岗岩岩屑特性室内试验研究

doi: 10.13394/j.cnki.jgszz.2022.3001
详细信息
    作者简介:

    康鑫,男,1993年生,硕士、工程师。主要研究方向:金刚石工具与钻探工程。E-mail:1677916173@qq.com

    通讯作者:

    段隆臣,男,1967年生,教授、博士生导师。主要研究方向:岩石破碎学与金刚石工具。E-mail:duanlongchen@163.com

  • 中图分类号: P634

Experimental study on rock cutting characteristics of granite broken by impregnated diamond bit

  • 摘要: 岩屑的特征参数是影响其环空上返的一个重要因素。为研究孕镶金刚石钻头钻进花岗岩所产生的岩屑特性,开展室内微钻试验。研究发现碎岩产生的岩屑在一定范围内呈单峰值分布,且岩屑粒度分布范围与钻压、转速等钻进参数有关;在一定程度上岩屑峰值粒径随着钻压的增大而变大,随着转速的增大而变小。进一步显微观察岩屑形貌特征,发现岩屑颗粒基本小于岩石原矿物颗粒尺寸,且岩屑颗粒多呈单一矿物成分,较少有多种矿物相互混杂的岩屑颗粒;显微观察岩屑与岩石表面形貌特征,发现孕镶金刚石钻头钻进花岗岩时以体积破碎的方式为主、塑形微切削方式为辅。

     

  • 图  1  微型钻头结构示意图及试验钻头

    Figure  1.  Structural diagram of micro bit and finished bit

    图  2  试验岩样实物

    Figure  2.  Rock sample

    图  3  微钻岩屑收集平台模型及钻进示意图

    Figure  3.  Micro drilling platform model and drilling diagram

    图  4  不同钻进参数条件下岩屑粒径分布图

    Figure  4.  Particle size distribution of rock cuttings under different drilling parameters

    图  5  岩屑形貌显微观察

    Figure  5.  Microscopic observation of rock cuttings

    图  6  岩屑形貌特征显微观察

    Figure  6.  Microscopic observation of morphological characteristics of rock debris

    图  7  岩石试验样品薄片分析

    Figure  7.  Analyzing test slice of rock

    图  8  岩石矿物破碎形式

    Figure  8.  Rock mineral crushing form

    图  9  金刚石出刃效果图

    Figure  9.  Effect drawing of diamond cutting edge

    图  10  激光共聚焦显微镜或三维仿真的岩屑切削脱落痕迹

    Figure  10.  Cutting and falling off traces of rock debris under laser confocal microscope or 3D simulation

    图  11  岩石表面切削痕迹

    Figure  11.  Cutting marks on rock surface

    表  1  花岗岩中各矿物成分含量

    Table  1.   Contents of mineral components in granite

    矿物成分质量分数 w / %
    正长石60
    斜长石15
    石英15
    黑云母 5
    其他 5
    下载: 导出CSV

    表  2  理论范围值与实际岩屑粒径对比

    Table  2.   Comparison between theoretical range and actual range of rock debris particle size

    对比类型岩屑粒径 dg / mm
    克取深度范围0.034~0.051
    岩屑粒径范围0.040~0.250
    岩屑粒径峰值0.075
    岩屑含量比例 R / %粒径小于克取深度粒径大于克取深度
    18.6781.33
    下载: 导出CSV
  • [1] 夏环宇, 翟应虎, 王磊, 等. 考虑粒径分布的深水环空岩屑浓度研究及应用 [J]. 科学技术与工程,2011,35:8876-8881. doi: 10.3969/j.issn.1671-1815.2011.35.048

    XIA Huanyu, ZHAI Yinghu, WANG Lei, et al. Study and application of cuttings concentration in deep water annulus considering particle size distribution [J]. Science Technology and Engineering,2011,35:8876-8881. doi: 10.3969/j.issn.1671-1815.2011.35.048
    [2] 易先中, 王利成, 魏慧明, 等. 钻井岩屑粒径分布规律的研究 [J]. 石油机械,2007,35(12):1-4. doi: 10.3969/j.issn.1001-4578.2007.12.001

    YI Xianzhong, WANG Licheng, WEI Huiming, et al. Study on particle size distribution of drilling cuttings [J]. China Petroleum Machinery,2007,35(12):1-4. doi: 10.3969/j.issn.1001-4578.2007.12.001
    [3] 刘海声, 汪洪民, 刘鹏, 等. 西藏安多县多才玛矿区强研磨性地层孕镶金刚石使用效果分析 [J]. 地质与勘探,2019,55(6):1473-1483.

    LIU Haisheng, WANG Hongmin, LIU Peng, et al. Analysis on the application effect of impregnated diamond in strong abrasive strata in Duocaima Mining Area, Anduo County, Tibet [J]. Geology and Exploration,2019,55(6):1473-1483.
    [4] 王佳亮, 张绍和. 针对坚硬致密弱研磨性岩层的金刚石钻头研究进展 [J]. 金刚石磨料磨具工程,2016,36(2):78-88.

    WANG Jialiang, ZHANG Shaohe. Progress and development on impregnated diamond bit for ultrahard compact and weak-abrasion rock formation [J]. Diamond & Abrasive Engineering,2016,36(2):78-88.
    [5] 李英杰. 钻进参数对孕镶金刚石钻头磨损及钻速的影响 [J]. 煤田地质与勘探, 1993(6): 65-66.

    LI Yingjie, Effect of drilling parameters on wear and penetration rate of impregnated diamond bit [J]. Coal Geology & Exploration, 1993(6): 65-66.
    [6] 袁军, 邹德永, 钟洪娇, 等. 适用于研磨性硬地层的新型孕镶金刚石钻头优化设计试验研究 [J]. 科学技术与工程, 2016, 16(4): 16-21.

    YUAN Jun, ZOU Deyong, ZHONG Hongjiao, et al Experimental study on optimal design of new impregnated diamond bit suitable for abrasive hard formation [J]. Science Technology and Engineering, 2016, 16 (4): 16-21.
    [7] 李子杰, 赵洪山, 冯光通, 等. 致密砂岩地层孕镶金刚石参数的试验优选研究 [J]. 钻采工艺,2020,43(5):12-15. doi: 10.3969/J.ISSN.1006-768X.2020.05.04

    LI Zijie, ZHAO Hongshan, FENG Guangtong, et al. Experimental optimization of impregnated diamond parameters in tight sandstone formation [J]. Drilling & Production Technology,2020,43(5):12-15. doi: 10.3969/J.ISSN.1006-768X.2020.05.04
    [8] 赵小军, 康鑫, 潘飞飞, 等. 孕镶金刚石钻头破碎花岗岩岩屑粒径分布研究 [J. 金刚石磨料磨具工程, 2019, 39(1): 84-88

    ZHAO Xiaojun, KANG Xin, PAN Feifei, et al Study on particle size distribution of granite cuttings broken by impregnated diamond bit [J]. Diamond & Abrasives Engineering, 2019, 39(1): 84-88.
    [9] 赵如意, 黄辉, 郭桦, 等. 金刚石绳锯切割花岗石过程中岩屑粒度分布研究 [J]. 金刚石磨料磨具工程,2014,34(2):52-56.

    ZHAO Ruyi, HUANG Hui, GUO Hua, et al. Particle size distribution of swarf in the granite sawing by diamond wire saw [J]. Diamond & Abrasives Engineering,2014,34(2):52-56.
    [10] 汤凤林, Heckopomhbix B B, 段隆臣, 等. 金刚石钻进岩石破碎过程及其与规程参数关系的研究 [J]. 钻探工程,2021,48(10):43-55.

    TANG Fenglin, HECKOPOMHBIX B B, DUAN Longchen, et al. Study on rock crushing process of diamond drilling and its relationship with specification parameters [J]. Drilling Engineering,2021,48(10):43-55.
    [11] 潘秉锁, 史冬梅, 杨凯华. 金刚石粒度对孕镶金刚石钻头性能的影响 [J]. 煤田地质与勘探,2002,30(3):62-64. doi: 10.3969/j.issn.1001-1986.2002.03.020

    PAN Bingsuo, SHI Dongmei, YANG Kaihua. Effect of diamond particle size on properties of impregnated diamond bit [J]. Coal Geology & Exploration,2002,30(3):62-64. doi: 10.3969/j.issn.1001-1986.2002.03.020
    [12] 王传留, 孙友宏, 刘宝昌, 等. 仿生耦合孕镶金刚石钻头的试验及碎岩机理分析 [J]. 中南大学学报(自然科学版),2011,42(5):1321-1325.

    WANG Chuanliu, SUN Youhong, LIU Baochang, et al. Experiment of bionic coupling impregnated diamond bit and analysis of rock breaking mechanism [J]. Journal of Central South University (Science and Technology),2011,42(5):1321-1325.
    [13] 赵金昌, 万志军, 李义, 等. 高温高压条件下花岗岩切削破碎试验研究 [J]. 岩石力学与工程学报,2009,28(7):1432-1438. doi: 10.3321/j.issn:1000-6915.2009.07.017

    ZHAO Jinchang, WAN Zhijun, LI Yi, et al. Experimental study on cutting and crushing of granite under high temperature and high pressure [J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(7):1432-1438. doi: 10.3321/j.issn:1000-6915.2009.07.017
    [14] 孙吉伟, 沈立娜, 杨甘生, 等. 孕镶金刚石钻头的局部体积破碎研究 [J]. 煤田地质与勘探,2019,47(5):232-238. doi: 10.3969/j.issn.1001-1986.2019.05.033

    SUN Jiwei, SHEN Lina, YANG Gansheng, et al. Study on local volume fragmentation of impregnated diamond bit [J]. Coal Geology & Exploration,2019,47(5):232-238. doi: 10.3969/j.issn.1001-1986.2019.05.033
  • 加载中
图(11) / 表(2)
计量
  • 文章访问数:  335
  • HTML全文浏览量:  109
  • PDF下载量:  62
  • 被引次数: 0
出版历程
  • 收稿日期:  2022-06-15
  • 修回日期:  2022-08-29
  • 录用日期:  2022-09-03
  • 刊出日期:  2023-02-20

目录

    /

    返回文章
    返回