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循环热处理对ti-v微合金钢组织和力学性能的影响

Keywords: 金属材料,循环热处理,ti-v微合金钢,晶粒细化,复杂碳化物,力学性能

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Abstract:

?研究了循环热处理对ti-v微合金钢组织和力学性能的影响。根据显微组织观察结果对各个循环次数的试验钢晶粒尺寸进行统计和计算,并结合sem二次电子像揭示了试验钢在循环热处理过程中的组织演变规律,进而解释了晶粒细化机制;对试验钢进行tem实验,观察了沉淀相粒子的尺寸、成分随循环次数的变化规律。并对不同循环次数下的试验钢进行了室温抗拉强度和冲击韧性实验。结果表明,ti-v微合金钢的平均晶粒尺寸随着循环次数的增加持续减小(至第7次循环);受复杂碳化物平均尺寸的影响,抗拉强度rm随着循环次数的增加逐渐降低(自第1次循环开始);而冲击吸收功aku则因平均晶粒尺寸和先共析铁素体比例的共同影响,随循环次数的增加先升高后降低,并在第3次循环时达到最大。

References

[1]  b.smoljan,ananalysisofcombinedcyclicheattreatmentperformance,journalofmaterialsprocessingtechnology,155,1704(2004)
[2]  a.saha,d.k.mondal,k.biswas,j.maity,microstructuralmodificationsandchangesinmechanicalpropertiesduringcyclicheattreatmentof0.16%carbonsteel,materialsscienceandengineering:a,534,465(2012)
[3]  j.n.wang,j.yang,q.xia,y.wang,onthegrainsizerefinementoftialalloysbycyclicheattreatment,materialsscienceandengineering:a,329,118(2002)
[4]  j.fernández,s.illescas,j.m.guilemany,effectofmicroalloyingelementsontheausteniticgraingrowthinalowcarbonhslasteel,materialsletters,61(11),2389(2007)
[5]  a.i.fernández,p.uranga,b.lopezb,j.m.rodriguez-ibabe,dynamicrecrystallizationbehaviorcoveringawideaustenitegrainsizerangeinnbandnb-timicroalloyedsteels,materialsscienceandengineering:a,361(1),367(2003)
[6]  r.d.k.misra,h.nathani,j.e.hartmann,f.siciliano,microstructuralevolutioninanew770mpahotrollednb-timicroalloyedsteel,materialsscienceandengineering:a,394(1),339(2005)
[7]  p.a.manohar,m.ferry,t.chandra,fivedecadesofthezenerequation,isijinternational,38(9),913(1998)
[8]  m.prikryl,a.kroupa,g.c.weatherly,s.v.subramanian,precipitationbehaviorinamediumcarbon,ti-vnmicroalloyedsteel,metallurgicalandmaterialstransactionsa,27(5),1149(1996)
[9]  r.a.grange,strengtheningsteelbyaustenitegrainrefinement,asmtransquart,59(1),26(1966)
[10]  r.kumar,physicalmetallurgyofironandsteel(bombay,asiapublishinghouse,1968)p.92
[11]  a.saha,d.k.mondal,j.maity,effectofcyclicheattreatmentonmicrostructureandmechanicalpropertiesof0.6wt%carbonsteel,materialsscienceandengineering:a,527(16),4001(2010)
[12]  lvzheng,renxueping,tongjianguo,tuyouhuan,effectofaustenitizingtemperatureonthemechanicalpropertiesofquenchedandtemperedti-vmicroalloyedsteel,journalofuniversityofscienceandtechnologybeijing,36(1),42(2014)(吕政,任学平,佟建国,涂友欢,奥氏体化温度对调质ti-v微合金钢力学性能的影响,北京科技大学学报,36(1),42(2014))
[13]  s.gündüz,r.c.cochrane,influenceofcoolingrateandtemperingonprecipitationandhardnessofvanadiummicroalloyedsteel,materials&design,26(6),486(2005)
[14]  m.t.nagata,j.g.speer,d.k.matlock,titaniumnitrideprecipitationbehaviorinthin-slabcasthigh-strengthlow-alloysteels,metallurgicalandmaterialstransactionsa,33(10),3099(2002)
[15]  k.balasubramanian,a.kroupa,j.s.kirkaldy,experimentalinvestigationofthethermodynamicsofthefe-ti-causteniteandthesolubilityoftitaniumcarbide,metallurgicaltransactionsa,23(3),709(1992)
[16]  1616z.morita,t.tanaka,t.yanai,equilibriaofnitrideformingreactionsinliquidironalloys,metallurgicaltransactionsb,18(1),195(1987)
[17]  k.narita,physicalchemistryofthegroupsiva(ti,zr),va(v,nb,ta)andtherareearthelementsinsteel,transisij,15,145(1975)
[18]  a.pandit,a.murugaiyan,a.s.podder,a.haldar,d.bhattacharjee,s.chandra,r.k.ray,straininducedprecipitationofcomplexcarbonitridesinnb-vandti-vmicroalloyedsteels,scriptamaterialia,53(11),1309(2005)

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