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时间:2020-05-02
《冷却工艺对热轧带钢工作辊热膨胀的影响.pdf》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、第21卷第4期塑性工程学报Vo1.21No.42014年8月OURNALOFPLASTICITYENGINEERINGAug.2014doi:10.3969/j.issn.1007—2012.2014.04.021冷却工艺对热轧带钢工作辊热膨胀的影响(燕山大学机械工程学院,秦皇岛066004)李兴东(燕山大学里仁学院,秦皇岛066004)单彦霞摘要:热轧带钢轧辊冷却是影响工作辊热膨胀、带钢板形和断面形状的重要因素。针对工作辊几何形状和冷却工艺,采用有限差分法对工作辊温度场和热凸度进行仿真。仿真结果表明,温度场和热凸度的计算值与实测值吻合良好。分析冷却水
2、流量、温度和分布对工作辊热膨胀及热凸度的影响表明,随着冷却水流量的增加,辊身中部热膨胀逐渐降低,而辊身端部热膨胀变化不大,热凸度减小;随着冷却水温度的升高,辊身中部和端部热膨胀都增加,且热膨胀的增加量相差很小,热凸度变化不大;随着辊身中部冷却水流量和端部冷却水流量比的增加,辊身中部热膨胀降低,而辊身端部热膨胀变化不大,热凸度减小。为热带钢轧机工作辊冷却系统改造提供了理论依据。关键词:温度场;热膨胀;冷却水;有限差分;工作辊中图分类号:TG333.1文献标识码:A文章编号:1007—2012(2014)04—0109—04Effectofcoolingp
3、rocessonthermalexpansionofworkrollabouthotrollingstripLIXing-dong(CollegeofMechanicalEngineeringofYanshanUniversity,Qinhuangdao066004China)SHANYar】-xia(LirenCollegeofYanshanUniversity,Qinhuangdao066004China)Abstract:Rollcoolingabouthotrollingstripisthekeyfactoraffectingthermalex
4、pansionofworkroll,stripshapeandprofile.Onthebasisofthegeometricalshapeandthecoolingprocessoftheworkroll,usingthefinitedifferencemethod,thetemperaturefieldandthermalcrownoftheworkrollafterrollingweresimulateThesimulationresultsindicatethatthecomputedresultsandthemeasuredresultsof
5、thetemperaturefiledandthethermalcrowncoincidebetter.Theeffectsofflux.temperatureanddis—tributionofcoolingwateronthethermalexpansionandcrownwereanalyzedbythismode1.ItiSfoundthatwiththeincreaseofcoolingwaterflux,thethermalexpansioninthemiddleofrollbodygraduallydecreases,whilethati
6、ntheendofrollbodychangeslittle,andthethermalcrowndecreases.ItiSfoundthatwiththeincreaseofcoolingwatertemperature.thethermalexpansionsinthemiddleandendofrollbodyincrease,thedifferenceoftheirincreasingvaluesislittle,andthethermalcrownchangeslittle.ItiSalsofoundthatwiththeincreaseo
7、ftheratioofcoolingwaterfluxbetweenthemiddleandendofrollbody。thethermalexpan—sioninthemiddleofrollbodydecreases,whilethatintheendofrollbodychangeslittle,andthethermalcrowndecreases.Itprovidestheoreticalfoundationforthecoolingwatermodificationofworkrollofhotstripmil1.Keywords:temp
8、eraturefield;thermalexpansion;coolingwater;fini
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