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时间:2020-03-25
《新型Al-Cu-Li合金时效过程中组织和性能的变化研究.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36卷第4期矿冶工程V〇1.36^42016年08月MININGANDMETALLURGICALENGINEERINGAugust2016新型Al-Cu-Li合金时效过程中组织和性能的变化研究$汪啸虎,刘志义,柏松,刘梦(中南大学材料科学与工程学院,湖南长沙410083)摘要::通过拉伸试验和透射电镜(TEM)等分析测试手段,研究了一种新型A1-Cu-Li合金在固溶+预拉伸+人工时效过程中组织和性能的变化。结果表明,143尤下时效65h后合金的强度达到峰值,抗拉强度为559MPa,屈服强度为472MPa,延伸率为6.7%,塑性损失较
2、为严重;透射电镜(TEM)观察分析表明,合金中的主要析出相是T1相,S'相析出较少。2%预拉伸引人的适量密度位错为T1相提供了形核位置,既提高了T1相的形核率,又使T1相的分布均匀弥散。T1相的数量密度和尺寸随着时效的进行而增大。峰时效状态下,T1相长大较为明显,尺寸达到200nm,尺寸均匀性减弱。结合显微组织和拉伸性能比较分析,合金时效35h后可得到良好的组织和力学性能匹配。关键词:热处理;时效;A1-Cu-Li合金;预拉伸;微观组织;力学性能;T1相中图分类号:TG146.2文献标识码:Adoi:10.3969/j.issn.02
3、53-6099.2016.04.025文章编号:0253-6099(2016)04-0096-04InvestigationonMicrostructureandPropertyofNewlyDevelopedAl-Cu-LiAlloyduringAgingWANGXiao-hu,LIUZhi-yi,BAISong,LIUMeng(SchoolofMaterialsScienceandEngineering,CentralSouthUniversity,Changsha410083,Hunan,China)Abstract:Theev
4、olutionolmicrostructureandmechanicalpropertiesolanewlydevelopedA1-Cu-Lialloyduringtheprocessolsolutiontreatmentandpre-stretchingplusagingwasinvestigatedbytransmissionelectronmicroscopy(TEM)andtensiletesting.Theresultsshowedthatagingat143^lor65hresultedinthestrengtholAl-
5、Cu-Lialloyreachingthepeakvalue,thetensilestrength,yieldstrengthandelongationbeingat559MPa,472MPaand6.7%,respectively,withgreatplasticloss.TheTEMresultsshowedthatT1phasewasthemajorprecipitatewithlittleprecipitationolS'phase.Anappropriatedensityoldislocationsintroducedby2
6、%pre-stretchingprovidedanucleationpositionlorT1phase,notonlyincreasingthenucleationrateolT1phase,butalsomakingtheT1distributionhomogeneousanddispersive.ThenumberdensityandsizeolT1phaseincreasedwiththeincreaseolagingtime.Underthepeak-agedcondition,thegrowtholT1phasewasap
7、parentwiththesizereachingto200nm.However,thesizeunilormityolT1phasewasreduced.ThecomparativeanalysisolTEMandtensiletestingresultsindicatedthatagoodcombinationolmicrostructureandmechanicalpropertylortheAl-Cu-Lialloywasobtainedalteragingat143^lor35h.Keywords:heat-treatedp
8、rocess;aging;Al-Cu-Lialloy;pre-stretching;microstructure;mechanicalproperty;T1phase第三代Al-Li合金以其低密度、高强度、高韧性、基于这
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