特高压钢管塔高强度大扭矩螺栓紧固扳手的研制

刘博,王力争,苗峰显,方锡忠

电力建设 ›› 2013, Vol. 34 ›› Issue (1) : 79-83.

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电力建设 ›› 2013, Vol. 34 ›› Issue (1) : 79-83.
设备与材料

特高压钢管塔高强度大扭矩螺栓紧固扳手的研制

  • 刘博,王力争,苗峰显,方锡忠

作者信息 +

Development of Fastening Wrench for High-strength and Large-torque Bolt in UHV Steel Tube Tower

  • LIU Bo, WANG Lizheng, MIAO Fengxian, FANG Xizhong
Author information +
文章历史 +

摘要

为解决钢管塔螺栓紧固扭矩大、操作空间小等难题,研制开发了特高压钢管塔高强度大扭矩螺栓紧固专用电动扭矩扳手。该扳手的使用提高了扳手紧固效率和紧固精度,填补了输变电工程铁塔螺栓紧固自动化的空白,具备在输变电工程建设中全面推广的条件。

Abstract

In order to solve the problems of bolt in steel tube tower such as big fastening torque and small operating space, a special electric torque wrench for high-strength and large-torque bolt fastening in UHV steel tube tower has been researched and developed. The application of this wrench can improve the efficiency and accuracy of fastening, as well as has filled the blank of bolt fastening automation in steel tube tower, which can be overall promoted in the construction of power transmission and transformation projects.

关键词

特高压 / 高强螺栓 / 电动扭矩扳手

Key words

UHV / high-strength bolt / electric torque wrench

引用本文

导出引用
刘博,王力争,苗峰显,方锡忠. 特高压钢管塔高强度大扭矩螺栓紧固扳手的研制[J]. 电力建设. 2013, 34(1): 79-83
LIU Bo, WANG Lizheng, MIAO Fengxian, FANG Xizhong. Development of Fastening Wrench for High-strength and Large-torque Bolt in UHV Steel Tube Tower[J]. Electric Power Construction. 2013, 34(1): 79-83

参考文献

[1]曾国华.可控扭矩电动扳手的设计[J].工具技术, 2002,36(5):15-17.

[2]GB/T 15729—1995. 扭力扳手通用技术条件[S].

[3]黄锡恺.机械原理[M].北京:高等教育出版社,1996.

[4]饶振纲.行星齿轮传动设计[M].北京:化学工业出版社,2003.

[5]张有颐.转矩测量技术[M].北京:计量出版社,1986.

[6]文西芹,张永忠,宁晓明. 逆磁致伸缩效应扭矩传感器的历史现状和趋势[J].传感器世界, 2002(2):1-7.

[7]曾国华.旋转轴扭矩测量方法研究[J].新技术  新工艺, 2002(12):26-27.

[8]毛永红. 电阻应变片粘贴位置对测量结果的影响[J].硫磷设计,1997(1):31-35.

[9][美]D.H.施因果德.传感器的接口及信号调理电路[M].徐德炳,译.北京:国防工业出版社,1984.

[10]GB 3390. 2—2004 手动套筒扳手传动方榫和方孔[S].

基金

国家电网公司“皖电东送”工程科技项目(输电线路铁塔螺栓紧固用自动扭矩板手研制)


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