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Research on tightening technology of drainage plate bolt of transmission line |
WU Zhengshu1, LI Shouxin1, ZHANG Li’na2, LI Qingyan2, XUN Xuefeng2 |
1. Nanning Bureau of EHV Transmission Company, China Southern Power Grid Co., Ltd, Nanning 530021; 2. Nanjing Line Accessories Co., Ltd of China Energy Engineering Group, Nanjing 211500 |
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Abstract In the ultra-high voltage transmission line, the drain plate is often heated due to bolts loosening. Bolt loosening is not only affected by wind vibration, but also closely related to its installation process. During the maintenance, it is found that some bolts are loose due to improper mounting torque. In this paper, combining with torque-preload characteristic test, the torque value and tightening technology of drainage plate bolts are studied by designing and calculating the mounting torque of drainage plate bolts.
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Received: 15 September 2020
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[1] 刘水, 林杰欢, 徐颖华, 等. 输电线路金具发热原因分析及处理[J]. 机电信息, 2017(6): 16-17. [2] 韩启云, 王超, 单长孝. 铁塔螺栓紧固新工艺在特高压工程中的应用[J]. 安徽电力, 2014(2): 31-34, 43. [3] 魏晓晓. 高强度螺栓拧紧工艺设计方法研究[J]. 汽车实用技术, 2017(21): 87-88, 116. [4] 钢结构设计规范:GB 50017—2017[S]. 2017. [5] 螺纹紧固件紧固通则: GB/T 16823.2—1997 GB/T 16823.2—1997[S]. 1997. [6] 成大先. 机械设计手册第2卷[M]. 5版. 北京: 化学工业出版社, 2007. [7] 王朋, 陈安生, 张会武, 等. 螺栓扭矩系数影响因素的试验研究[J]. 实验力学, 2013, 28(3): 307-313. [8] 杨俊芬, 李宝琪, 战宇皓, 等. 普通螺栓镀锌前后抗拉承载力及扭矩系数测试[J]. 建筑结构, 2020, 50(11): 85-89. [9] 刘建文. 螺纹联接及拧紧技术[J]. 汽车工艺与材料, 1999(7): 5-7. [10] 紧固件扭矩-夹紧力试验: GB/T 16823.3—2010 GB/T 16823.3—2010[S]. 2010. [11] 张和平, 王晓斌, 莫易敏, 等. 拧紧速度对螺栓转矩系数的影响分析[J]. 武汉理工大学学报(交通科学与工程版), 2014, 38(4): 860-863. |
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