期刊文献+

铝扁管挤压生产线收卷系统的设计 被引量:2

Design of coiling system for flat aluminum tube extrusion production line
下载PDF
导出
摘要 常规挤压生产线的后部出料系统不能实现铝扁管产品的收卷功能,本文研制了铝扁管挤压生产线专用的收卷系统。该收卷系统有两个收卷盘,三个工位,卷盘与主动轴及从动轴采用分体式结构,柔性结构的导向装置自适应强,稳定可靠地自动固定料头的料头固定组件,可轴向伸缩的压料轴装置,确保了收卷装置的顺利可靠运行。生产实践证明,该收卷系统实现了挤压铝扁管的自动收卷,提高了生产线的生产效率及产品质量。 Post-discharge system of conventional extrusion production line is unable to coil flat aluminum tube,so this paper developed a special coiling system for flat aluminum tube extrusion production line.The coiling system has two reels and three stations.The reel and the driving shaft and the driven shaft are separated each other,the flexible guiding device is powerful self-adaptive ability,the material fixed device is able to fix the front part of flat aluminum tube firmly,the pressing device is able to expand and contract along the axial direction,which ensure stable and reliable running of coiling system.The practice proved that the coiling system could automatically complete rewinding flat aluminum tube,and production efficiency and product quality have been greatly improved.
作者 张峻 刘国刚 荆云海 董晓娟 张立波 邱立朋 李博 ZHANG Jun;LIU Guo-gang;JING Yun-hai;DONG Xiao-juan;ZHANG Li-bo;QIU Li-peng;LI Bo(China National Heavy Machinery Research Institute Co.,Ltd.,Xi'an 710032,China;Northwestern Aluminum Co.,Ltd.,Longxi 748111,China;Xi'an Modern Control Technology Research Institute,Xi'an 710065,China)
出处 《重型机械》 2019年第2期56-59,共4页 Heavy Machinery
基金 国家科技重大专项高档数控机床与基础制造装备(2009zx04005-031)
关键词 铝扁管挤压生产线 挤压机 收卷系统 flat aluminum tube extrusion production line extrusion press coiling system
  • 相关文献

参考文献7

二级参考文献53

  • 1周帼彦,涂善东.换热技术从大型化向微小化的发展[J].热能动力工程,2005,20(5):447-454. 被引量:12
  • 2邹家祥.轧钢机械[M].北京:冶金工业出版社,2006.
  • 3Andrew Keogh. Micro-channel heat exchanger [J]. IEA Heat Pumps Newsletter, 2007,25 (3) : 15-17.
  • 4K Andrew. Mircochannel heat exchangers[J].IEA Heat Pump Centre Newsletter, 2007, 25 (3):15-17.
  • 5P Kennet, C M Claudi, N Stefan, et al. The advantage of brazed aluminum heat exchanger applied in HVAC 8~ R field[C] // The SAPA Shanghai 2008 Technical seminar. Shanghai, 2008.
  • 6Cho H, Cho K. Mass Flow Rate Distribution and Phase Separation of R-22 in Multi-Microchannel Tubes under Adiabatic Condition [J]. Microscale Thermophysical Engineering, 2004,8(2) : 129-139.
  • 7Sa Y C, Jang D Y, Ko Oh S K. Flow Maldistribution of Flat Tube Evaporator [C]//The 4th international Symposium on HVAC. Beijing, 2003.
  • 8Vishwomath Subramaniam. Design of air-cooled microchannel condensers for real-distributed air flow conditions[D]. Georgia institute of technology, 2004.
  • 9T kvlkarnic, C W Bullard. Design tradeoffs in microchannel heat exchanger[C] // University of Illinois at Urbana Champaign. ARCR TR-208, 2003.
  • 10S Jain, CW Bullard. Optimization of heat exchanger design parameters for hydrocarbon refrigerant system [C] // University of Illinois at Urhana Champaign. ARCR TR-233, 2003.

共引文献89

同被引文献18

引证文献2

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