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摘要:
With the benefit fierce competition in the steel industry market in recent years,double cold reduction products have been developed towards strength improvement and thickness reduction.The traditional cold-rolling lubrication process with a fixed flow rate and concentration cannot solve the problems,which are uncontrollable plate shape and the excessive consumption of lubricating oil.Moreover,based on the analysis of the traditional direct aplication lubrication system of double cold reduction mill,a set of design scheme suitable for the emulsion pipeline direct mixing lubrication system of double cold reduction mill unit was proposed.The design completed the selection of key components,which included the static mixer and atomization nozzle selection,pump and oil pump design selection,pipeline design selection,flow type selection,pressure gauge selection,electronic control cabinet design selection and other eight aspects.Equipment of the emulsion pipeline direct mixing lubrication system of double cold reduction has been developed.Comparing with characteristics of the traditional direct aplication lubrication system,the emulsion pipeline direct mixing lubrication system was better applied to the production practice of a 1220 double cold reduction mill.The consumption of ton of steel was reduced by 9.6%.The rolling energy consumption and fuel consumption comprehensive costs decreased by 10.7%,and the strip steel section thickness difference was reduced by 19.3%.In addition,the plate shape quality defect rate decreased by 25.6%,otherwise creating a large economic benefit for the unit and promoting the application value.
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篇名 Design and Engineering Application of Direct Mixing Lubrication System for Emulsion Pipeline in Secondary Cold Rolling Mill
来源期刊 机械工程(英文) 学科 工学
关键词 double cold reduction EMULSION direct mixing lubrication system static mixer plate thickness
年,卷(期) 2020,(1) 所属期刊栏目
研究方向 页码范围 36-47
页数 12页 分类号 TG1
字数 语种
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节点文献
double
cold
reduction
EMULSION
direct
mixing
lubrication
system
static
mixer
plate
thickness
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研究去脉
引文网络交叉学科
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期刊影响力
机械工程(英文)
不定期
2661-4448
重庆市渝北区赛迪路2号金山商业中心A座
出版文献量(篇)
29
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0
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0
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