复杂工况下4(2)/1 REG涡轮轴连接螺纹断裂分析

练章华, 刘洋, 林铁军, 罗泽利, 牟易升

练章华, 刘洋, 林铁军, 罗泽利, 牟易升. 复杂工况下4(2)/1 REG涡轮轴连接螺纹断裂分析[J]. 石油钻探技术, 2018, 46(3): 53-58. DOI: 10.11911/syztjs.2018051
引用本文: 练章华, 刘洋, 林铁军, 罗泽利, 牟易升. 复杂工况下4(2)/1 REG涡轮轴连接螺纹断裂分析[J]. 石油钻探技术, 2018, 46(3): 53-58. DOI: 10.11911/syztjs.2018051
LIAN Zhanghua, LIU Yang, LIN Tiejun, LUO Zeli, MOU Yisheng. Fracture Analysis of 4(2)/1 REG Turbine Shaft Connection Thread under Complex Working Conditions[J]. Petroleum Drilling Techniques, 2018, 46(3): 53-58. DOI: 10.11911/syztjs.2018051
Citation: LIAN Zhanghua, LIU Yang, LIN Tiejun, LUO Zeli, MOU Yisheng. Fracture Analysis of 4(2)/1 REG Turbine Shaft Connection Thread under Complex Working Conditions[J]. Petroleum Drilling Techniques, 2018, 46(3): 53-58. DOI: 10.11911/syztjs.2018051

复杂工况下4(2)/1 REG涡轮轴连接螺纹断裂分析

基金项目: 

国家自然科学"极端条件下气井油套管端力学行为及其螺纹密封机理研究"(编号:51574198)和"超深井高强度油套管钢环境断裂的细观力学参数表征研究"(编号:5150041209)联合资助。

详细信息
    作者简介:

    练章华(1964-),男,四川自贡人,1986年毕业于西南石油学院油气储运专业,1989年获西南石油学院机械工程专业硕士学位,1994年获西南石油学院机械工程专业博士学位,教授,博士生导师,主要从事CAD/CAE/CFD、套管损坏机理、管柱力学及射孔完井等的教学与科研工作。

  • 中图分类号: TE921+.2

Fracture Analysis of 4(2)/1 REG Turbine Shaft Connection Thread under Complex Working Conditions

  • 摘要: 为预防和减少涡轮钻具的涡轮轴在解卡过程中连接螺纹发生断裂,需对其断裂原因进行分析。根据长庆油田A井所用涡轮钻具轴连接螺纹的结构,建立了带螺旋升角4 1/2 REG锥形螺纹的三维力学模型,基于连接螺纹弹塑性本构关系和有限元控制方程,分析了涡轮轴连接螺纹在压扭、拉扭、弯扭复合载荷工况下的应力分布。研究发现:涡轮轴连接螺纹部位在扭矩一定的情况下,随着钻压增大,涡轮轴外螺纹所受应力呈增大的趋势,且螺纹牙的应力分布不均匀,整圈螺纹牙上的应力波动较大;当涡轮轴受到的拉力一定,随扭矩增大,外螺纹台肩部位第一牙处应力增幅较大,存在疲劳失效的风险;在扭矩为25 kN·m条件下,当井眼曲率为10和20(°)/100m时,外螺纹的最大应力为700.0 MPa,涡轮轴螺纹连接部位比较安全,但当井眼曲率为30°/100m时,螺纹台肩内外螺纹牙最大应力为903.6 MPa,接近材料的屈服极限。研究结果表明,涡轮轴连接螺纹在弯扭载荷作用下易在外螺纹第一牙处出现应力集中现象,导致其失效,因此应避免在井眼曲率较大井段使用涡轮钻具。
    Abstract: During the process of trying to free stuck pipe,it is common to have thread breakage in the turbine shaft of the drill. In order to avoid the conditions leading to thread breakage,we completed an in-depth analysis of the contributing factors.Based on the connection thread structure of turbine shaft used in Well A in Changqing Oilfield,the team developed a 3D mechanical model of 4 1/2 REG tapered thread with an established helix.They thenanalyzed the stress distribution of turbine shaft connection thread under composite loads of compressive torsion,tension torsion and bending torsion based on the elastoplastic constitutive relation of the connection thread and finite element control equation.The results showed that the stress on external thread of turbine shaft would increase with the increase of weight on bit (WOB) under the condition of constant torque.The stress distribution on thread teeth was uneven,with large stress fluctuation on whole ring thread teeth.When the turbine shaft is subjected to a constant tension,the stress on the first tooth of external thread shoulder increases with the increase of torque,and there is a risk of fatigue failure.When in the condition of the torque is 25 kN·m,the wellbore curvature of wellbore is 10 and 20(°)/100m,the maximum stress of external thread is 700.0 MPa,and the connection thread of turbine shaft is relatively safe.However,when the wellbore curvature is 30°/100m,the internal/external threads of the thread shoulder will have the maximum stress of 903.6 MPa,which is close to the yield limit of materials.Studies indicated that the connection thread of turbine shaft easily produced stress concentration on the first tooth of external thread under bending and torsional loads,resulting in failure of the thread.Therefore,where the well section exhibits a high degree of curvature,turbine drilling tools should be avoided.
  • [1] 乔勇,边培明,罗飞.高速涡轮钻井技术在塔里木克深气田中的应用[J].钻采工艺,2014,37(4):30-32. QIAO Yong,BIAN Peiming,LUO Fei.Application of high speed turbodrlling technology in Tarim Keshen Gas Field[J].Drilling Production Technology,2014,37(4):30-32.
    [2] 高连新,金烨,张居勤.石油套管特殊螺纹接头的密封设计[J].机械工程学报,2005,41(3):216-220. GAO Lianxin,JIN Ye,ZHANG Juqin.Seal design of premium threaded casing connections[J].Chinese Journal of Mechanical Engineering,2005,41(3):216-220.
    [3]

    LIN Yuanhua,ZHU Dajiang,ZENG Dezhi,et al.Numerical and experimental distribution of stress fields for double shoulder tool joint[J].Engineering Failure Analysis,2011,18(6):1584-1594.

    [4] 严仁田,王峰,张德平,等.流场诱导API圆螺纹油管接箍失效分析及结构优化[J].石油钻探技术,2012,40(5):111-114. YAN Rentian,WANG Feng,ZHANG Deping,et al.Failure analysis of API tubing round thread connection induced by flow field[J].Petroleum Drilling Techniques,2012,40(5):111-114.
    [5]

    CHEN Feng,DI Qinfeng,WANG Wenchang,et al.The reliability evaluation of threaded connections in challenging drilling by three-dimensional finite element analysis[J].Advanced Materials Research,2013,690/691/692/693:2831-2839.

    [6] 刘巨保,丁宇奇,韩礼红.基于三维有限元模型的钻具连接螺纹上扣扭矩影响分析[J].石油矿场机械,2009,38(3):28-32. LIU Jubao,DING Yuqi,HAN Lihong.Impact analysis of make-up torque of drill connecting thread based on 3-D finite element model[J].Oil Field Equipment,2009,38(3):28-32.
    [7] 祝效华,高原,贾彦杰.弯矩载荷作用下偏梯形套管连接螺纹参量敏感性分析[J].工程力学,2012,29(10):301-307. ZHU Xiaohua,GAO Yuan,JIA Yanjie.The parameter sensitivity analysis of buttress casing connecting thread under action of bending loading[J].Engineering Mechanics,2012,29(10):301-307.
    [8] 狄勤丰,靳泽中,王涛,等.复杂载荷条件下钻具接头台肩作用机理研究[J].石油钻探技术,2016,44(4):27-34. DI Qinfeng,JIN Zezhong,WANG Tao,et al.The fouction mechnism of driling tool shoulder complex load conditions[J].Petroleum Drilling Techniques,2016,44(4):27-34.
    [9]

    YUAN Guangjie,YAO Zhenqiang,HAN Jianzeng,et al.Stress distribution of oil tubing thread connection during make and break process[J].Engineering Failure Analysis,2004,11(4):537-545.

    [10]

    SANTUS C,BERTINI L,BEGHINI M,et al.Torsional strength comparison between two assembling techniques for aluminium drill pipe to steel tool joint connection[J].International Journal of Pressure Vessels and Piping,2009,86(2/3):177-186.

    [11] 练章华,韩建增,张毅,等.套管偏梯形和圆形螺纹滑脱载荷分析[J].石油机械,2004,32(5):7-9,49. LIAN Zhanghua,HAN Jianzeng,ZHANG Yi,et al.Analysis of jump-out loads on connectors of buttress and round threads of casing[J].China Petroleum Machinery,2004,32(5):7-9,49.
    [12] 刘文红,林凯,冯耀荣,等.基于Kriging模型的特殊螺纹油管和套管接头密封可靠性分析[J].中国石油大学学报(自然科学版),2016,40(3):163-169. LIU Wenhong,LIN Kai,FENG Yaorong,et al.Analysis of sealing reliability for premium connection casing and tubing based on Kriging model[J].Journal of China University of Petroleum(Edition of Natural Science),2016,40(3):163-169.
    [13] 林腾蛟,李润方,徐铭宇.双台肩钻柱螺纹联接弹塑性接触特性数值仿真[J].机械设计与研究,2004,36(1):48-49. LIN Tengjiao,LI Runfang,XU Mingyu.Numerical simulation of elastoplastic contact characteristic for drill pipe thread compounds with two steps[J].Machine Design Research,2004,36(1):48-49.
    [14] 尚福林.塑性力学基础[M].西安:西安交通大学出版社,2011:102-104. SHANG Fulin.Fundmentals of plasticly[M].Xi’an:Xi’an Jiaotong University Press,2011:102-104.
    [15] 王勖成.有限单元法[M].北京:清华大学出版社,2003:572-574. WANG Xucheng.Finite element method[M].Beijing:Tsing-hua University Press,2003:572-574.
    [16] SY/T 5290-2000石油钻杆接头[S]. SY/T 5290-2000 Tool joints for drill pipe for oil or natural gas well[S].
  • 期刊类型引用(5)

    1. 贺俊伟,陈浩东,胡开元,何勇,宫欣悦,匡延科,刘洋. 新型气液驱动式螺杆钻具设计及研究. 科技创新与生产力. 2024(02): 90-92 . 百度学术
    2. 简显权,刘洋,饶志强,覃成兵. 新型内卡式套管夹持器设计及卡瓦夹持力计算研究. 阀门. 2024(03): 277-280 . 百度学术
    3. 刘洋,佘扬周,练章华,易先中. 芯轴悬挂器高强度螺纹结构设计及评价研究. 西南石油大学学报(自然科学版). 2024(03): 159-169 . 百度学术
    4. 张震,刘庆龙,易先中,万继方,杨文川,陈霖,刘航铭,贺育贤. 弯曲井段钻杆接头螺纹力学性能分析及结构优化. 塑性工程学报. 2023(04): 209-222 . 百度学术
    5. Hangming Liu,Yangye He,Jifang Wan,Lin Chen,Xianzhong Yi,Song Hou,Yanbin Wang,Dongxu He,Gang Li. New design method of unequal taper thread(UTT) pairs and its application in API NC38 thread improvement. Petroleum. 2023(03): 439-453 . 必应学术

    其他类型引用(1)

计量
  • 文章访问数:  5028
  • HTML全文浏览量:  86
  • PDF下载量:  7544
  • 被引次数: 6
出版历程
  • 收稿日期:  2017-07-29
  • 修回日期:  2018-04-17
  • 刊出日期:  1899-12-31

目录

    /

    返回文章
    返回