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全液压顶驱钻机背钳的设计及运动仿真分析
引用本文:杨虎伟,赵大军,于萍,隗延龙,李淑敏,孙梓航.全液压顶驱钻机背钳的设计及运动仿真分析[J].探矿工程,2014,41(2):56-60.
作者姓名:杨虎伟  赵大军  于萍  隗延龙  李淑敏  孙梓航
作者单位:[1]吉林大学建设工程学院,吉林长春130026 [2]吉林大学机械科学与工程学院,吉林长春130022 [3]中煤科工集团西安研究院有限公司,陕西西安710077
基金项目:深部探测技术与实验研究“深部探测关键仪器装备研制与实验”之“深部大陆科学钻探装备研制”(SinoProbe-09-05)
摘    要:针对大陆科学钻探接卸钻杆进行上卸扣操作复杂繁琐、夹持稳定性差等问题,设计了一种适应于科学钻探全液压顶驱钻机的新型背钳装置。该装置具有夹持力大、对钻杆损伤小、工作性能稳定、双向浮动等特点,解决了钻进过程中频繁倒杆问题,快速完成上卸扣操作作业,极大地缩短了辅助作业时间。并利用ADAMS动力学仿真软件,对夹紧机构进行了运动仿真分析,验证了机构设计的合理性。

关 键 词:全液压顶驱钻机  顶驱背钳  夹紧机构  浮动机构  运动仿真分析
收稿时间:2013/7/30 0:00:00
修稿时间:2013/7/30 0:00:00

Design of Back-up Wrench for Full Hydraulic Top Drive Drilling Rig and the Motion Simulation Analysis
YANG Hu-wei,ZHAO Da-jun,YU Ping,KUI Yan-long,LI Shu-min and SUN Zi-hang.Design of Back-up Wrench for Full Hydraulic Top Drive Drilling Rig and the Motion Simulation Analysis[J].Exploration Engineering(Drilling & Tunneling),2014,41(2):56-60.
Authors:YANG Hu-wei  ZHAO Da-jun  YU Ping  KUI Yan-long  LI Shu-min and SUN Zi-hang
Institution:1. College of Construction Engineering, Jilin University, Changchun Jilin 130026, China; 2. College of Mechanical Science and Engineering, Jilin University, Changchun Ji|in 130022, China; 3. Xi' an Research Institute of China Coal Technology and Engineering Group Corp. , Xi' an Shaanxi 710077, China)
Abstract:According to the complicated unloading operation for drill rod and the poor clamping stability, new back-up wrench device for hydraulic top drive drilling rig was designed to adapt to the Continental Scientific Drilling.This device has the advantages of large clamping force, little damage to drill rod, stable performance and two-way floating, by which the frequent rod lifting is saved and the subsidiary operation time is greatly reduced by rapid makeup and breakout operation. And using ADAMS dynamics simulation software, the motion simulation analysis is made on the clamping mechanism to verify the rationality of the mechanism design.
Keywords:hydraulic top drive drilling rig  top drive back-up wrench  clamping mechanism  floating mechanism  motion simulation analysis
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