期刊文献+

螺旋缝焊管截面在线测量系统的机构设计 被引量:1

Mechanism design for on-line profile measuring system of spiral weld steel pipe
原文传递
导出
摘要 为实现直径为1 016mm的螺旋缝焊管生产过程中钢管截面形状和尺寸的在线测量,进行了测量系统的机械机构设计与研制。系统设计过程中提出一种独特的同步带传动方式实现了轨道半径为750mm的高精度圆周运动。采用该传动方式使得传动机构尺寸小巧、运动平稳。同时,为防止运动小车所带电缆对工艺过程的干扰,还设计了一种连杆折叠式电缆收放机构,实现小车供电及信号电缆的自由收放。经长时间运行试验,结果证明机构运行可靠,可以满足测量系统要求。 The shape and size of cross profile are important parameters for spiral weld steel pipe (SWSP) during its production. A real-time measuring system was developed to measure the size and shape of 1 016 mm diameter SWSP. The mechanism uses a synchronous belt drive {or precision movement along a 750 mm radius circular rail. The device is rather small and very stable. In addition, a cable pulling pushing unit was designed which prevents the cable ~rom interfering with the pipe forming process. Tests show that the system is stable and reliable.
出处 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2006年第8期1345-1348,共4页 Journal of Tsinghua University(Science and Technology)
基金 国家自然科学基金资助项目(50275083) 国家教育部博士学科重点科研基金项目(20020003053)
关键词 机械传动机构 螺旋缝焊管 同步带传动 收放线机构 driving mechanism spiral weld steel pipe (SWSP) synchronous belt driving cable pulling-pushing device
  • 相关文献

参考文献4

  • 1Q/SY XQ14-2002.西气东输工程用螺旋缝埋弧焊管技术条件[S].北京:中国石油天然气股份有限公司,2002.
  • 2Kirsten C,Placid F.Verification of form tolerances part Ⅱ:Cylindricity and straightness of a median line[J].Precision Engineering,1995,17(2):131-143.
  • 3Zhang G Y,Xu X P.The measurement and control of diameter in large-scale part processing[J].Journal of Materials Processing Technology,2002,129(1-3):653-657.
  • 4李子芳,崔长彩,车仁生,黄庆成,叶东.基于遗传算法的圆度公差评定法与采用最小二乘法评定的比较(英文)[J].光学精密工程,2003,11(3):256-261. 被引量:9

二级参考文献12

  • 1SAMUEL G L, SHUNMUGAM M S. Evaluation of straightness and flatness error using computational geometric techniques[J]. Computer-aided Design, 1999, 31(13) : 829-843.
  • 2GOU J B,CHU Y X, LI Z X. A geometric theory of form, profile and orientation tolerances[J]. Precision Engineering, 1999, 23(2): 79-93.
  • 3CARR K, FERREIRA P. Verification of form tolerances, Part Ⅰ: basic issues, flatness, and straightness[J].Precision Engineering, 1995, 17(2): 134-143.
  • 4YAU H T. A model-based approach to form tolerance evaluation using non-uniform rational B-spline[J]. Robotics and Computer-Integrated Manufacturing, 1999, 15(4) : 283-295.
  • 5SAMUEL G L, SHUNMUGAM M S. Evaluation of sphericity error from form data using computational geometric techniques[J]. International Journal of Machine tools & Manufacture. 2002, 42(3) : 405-416.
  • 6HUANG J P. An exact minimum zone solution for three-dimensional straightness evaluation problems[J]. Precision Engineering, 1999, 23(3): 204-208.
  • 7NARAYANAN V N N, SHUNMUGAM M S. Function-oriented form evaluation of engineering surfaces[J].Precision Engineering, 1998, 22(2) : 98-109.
  • 8LI SH Y. Fuzzy control, neural control and intelligent cybernetics [M]. Harbin City: Harbin Institute of Technology Press, Sept., 1998.
  • 9GEN M, CHENG R W. Genetic algorithms and engineering design [M]. Beijing: Science press, Jan, 2000.
  • 10刘永超,陈明.形位误差的进化算法[J].计量学报,2001,22(1):18-22. 被引量:29

共引文献8

同被引文献7

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部