首页 | 本学科首页   官方微博 | 高级检索  
     

高频直缝焊管生产线双向收集装置的设计与应用
引用本文:陈世民,陈俊军,蒋东红,陈永红. 高频直缝焊管生产线双向收集装置的设计与应用[J]. 焊管, 2012, 35(6): 40-42
作者姓名:陈世民  陈俊军  蒋东红  陈永红
作者单位:1. 常州市诚鑫金属制品有限公司,江苏常州,213011
2. 佛山市志达钢管制造有限公司,广东佛山,528319
3. 重庆巴渝钢管工业有限公司,重庆,400060
4. 漳州嘉年钢铁有限公司,福建漳州,363100
摘    要:针对传统收集架旋转输送辊容易擦伤钢管表面、管间相互摩擦产生表面伤痕以及原有收集架速率较慢且只能单向收集的缺点,设计了一种新型的直缝焊管生产线卸料收集设备,该设备运用磁力辊输送装置、被动式辊道装置、收集过渡装置和收集打包架等装置,有效避免机械动力与钢管的滑动摩擦,达到柔性输送的目的,使钢管生产在实现双向收集的同时避免出现表面划伤,有效提高了收集效率和收集质量,解决了因收集效率问题制约产能的情况.

关 键 词:高频直缝焊管  收集架  卸料架  表面划伤  双向收集

Design and Application of Bidirectional Collected Device for SAWL Pipe Production Line
CHEN Shi-min , CHEN Jun-jun , JIANG Dong-hong , CHEN Yong-hong. Design and Application of Bidirectional Collected Device for SAWL Pipe Production Line[J]. Welded Pipe and Tube, 2012, 35(6): 40-42
Authors:CHEN Shi-min    CHEN Jun-jun    JIANG Dong-hong    CHEN Yong-hong
Affiliation:1.Changzhou Chengxin Metal Product Co.,Ltd.,Changzhou 213011,Jiangsu,China; 2.Foshan Zhida Steel Pipe Co.,Ltd.,Foshan 528319,Guangdong,China; 3.Chongqing Bayu Steel Pipe Co.,Ltd.,Chongqing 400060,Sichuan,China; 4.Zhangzhou Jianian Iron & Steel Co.,Ltd.,Zhangzhou 363100,Fujian,China)
Abstract:Aiming at some disadvantages of conventional collected frame,such as rotating roller is easy to scrape steel pipe surface,mutual friction among pipes will cause scar,the working speed of the original collected frame is slow,and only can conduct single direction collection,a kind of new discharging and collecting material device for SAWL production line was designed,which utilizes magnetic roll feeding device,passive roll tract device,collecting transition device and collecting and packing frame to effectively avoid sliding friction between mechanical power and steel pipe,achieve the goal of flexible conveying,realize bidirectional collection and avoid surface scratching,and effectively increase collection efficiency and quality.
Keywords:HFW pipe  collecting frame  discharging material frame  surface scratching  bidirectional collection
本文献已被 CNKI 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号