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ID:36645604
大小:1.04 MB
页数:72页
时间:2019-05-13
《钢活塞锻造过程的数值模拟分析》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、上海交通大学硕士学位论文钢活塞锻造过程的数值模拟分析姓名:汪磊申请学位级别:硕士专业:材料工程指导教师:陈军;王以华20081101上海交通大学硕士学位论文摘要预成形的影响,优化了模具型腔设计,解决了成形过程中产生的折叠和充不满缺陷,并将成形工步减少到两个,同时有利于提高了模具使用寿命。新产品开发达到一次试制成功,使试制费用降低一半。(2)选用多种规格的坯料进行模拟,研究了坯料尺寸对锻件成形过程的影响,确定了所用原材料的直径和长度,将原材料利用率从国外平均水平83.10%提高到85.15%,节约能源,提高了经济效益。关键词:锻钢活塞
2、,预成形,数值模拟II上海交通大学硕士学位论文摘要RESEARCHONFESIMULATIONOFFORGINGPROCESSOFSTEELPISTONABSTRACTAsoneofthemainengineparts,pistonplaysanimportantroleintheperformanceparametersofthewholeengine.Enginehasbeenincontinuousdevelopment.Andthisisbasedonthedevelopmentofpropertiesandlife-cir
3、cleofitsprimarycomponents.Foryears,traditionalaluminumalloyPistonhasbeenbecomingharderandhardertomeetthecontinuouslystrengthenedrequirementsandsevereemissionregulations(EuroIII,EuroIV,EuroV).Itbecomesessentialtodesignnewtypepistonwhenaluminumalloypistoncan’tadapttheeng
4、ine’sreliabilityanymore,especiallywhenpeakpressureisupto20MPaandmore.Asakeypart,thedemandsofthesteelpistonareupperonthesurfacequalityandinteriorstructureanddimension.Ontheotherhand,theenginewithasteelpistonhasbeingwidelyusedinindustry,agriculture,trafficandnationaldefe
5、nsefields.Thedemandofthesteelpistonislarge.139piston,thesteelpistonforgingisresearchedinthisthesis.Wewillsimulatetheforgingprocessindifferenttechnicsparameterswiththefiniteelementanalysissoftware,QForm.Theeffectisresearchedtosurfacequalityanddimensionandlifeofmouldduri
6、ngthesimulation.Theforgingtechnicsparametersareoptimizedaccordingtotheresultofsimulation.Forthis,theempolderingcycleisshortened.Thepistonisproducedinbatchtobringincrementalbenefit.Thecontentandconclusionarewrittenasfollows.(1)Weresearchthathowthecavityofthepreforgingmo
7、uldeffectstheforgingprocess.Wesolvethedisfigurementsuchaslap,underfillwiththeoptimizedforgingtechnicsparameters,improvingthemouldlife.Thenumberofformingstepsislessenedtotwo.Thecostislessenedwiththeonlytrial-produce.(2)Weresearchthathowthedimensionofbilleteffectstheforg
8、ingprocess.Weascertainareasonablesizebillettoproduceeconomically.Theutilizingrateofmaterialisimprovedfrom83.10%to85.1
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