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ID:36790397
大小:2.83 MB
页数:72页
时间:2019-05-15
《Al-Pb合金组织性能及高温变形行为研究》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、哈尔滨工程大学硕士学位论文AbstractTheAI-Pballoywasfabricatedbymechanicalalloyingandvacuumhot-pressedsinteringandhotextrusion.ThemicrostructureofalloywasanalysedbyXRDandTEM.Thetensilepropertiesatroomtemperature,anddampingpropertieweremeasured.Hotcompressionpropertywasstudie
2、d.RadiationprotectionpropertyWasmeasured.TheprocessofmechanicalalloyingofAl-PballoyWasinvestigatedalloybySEMandXRD.TherestultsshowedthatnoreactinoccurredbetweenAIandPb.Withthemillingtimeincreasinginmechanicalalloyingprocess,PbparticlessizedecreasedandfinaUyten
3、dedtobestable.Intheprocessofalloying,Al-PballoyWasimpactedbysteelballs.Thedeformation,coldweldingandfragmentationaffectalloying.Atthesametime,the莎ainsizeofthealloyalsodecreasedwithmillingtimeincreasing,andWastendedtobestableafteraperiodoftime.Thealloyrepareing
4、vacuumhotpressingandhotextrusionwasinvestigatedbyXRD.Therewasalsononewphase.AI-PballoyWasobservedbySEM.HotextrusioncouldeffectivelyrefinethePbparticles,becauseliquidphasePbwasaffectbyAImatrixduringtheextrusion,andWasbrokenintomoresmallparticles.Thetensileprope
5、rtiesatroomtemperatureweremeasured.Becauseoftheroleofthefine—grainstrengthanddispersionstrengthwhichisduetothedistribution0fPbparticles,AI—PballoymechanicalpropertyisbetterthanpureAI.RadiationprotectionWascalculated.Throughthedampingtemperaturespectiumtest,AI-
6、PballoydampingperformanceWasstudied.ItsdampingpeakscomefromthegrainboundaryslidingandliquidphasePb,respectively.ThehotdeformationbehaviorofAI—PballoysWasanalyzed.TheapparentactivationenergyWascalculated.Theflowstressequationwasestablished,andⅡ哈尔滨工程大学硕士学位论文thet
7、hermaldeformationprocessiscontrolledbyheatactivation.Keywords:A1一Pballoy;mechanicalalloying;hotdeformation;dampingcapacity;radiationprotectionpropertyⅢ哈尔滨工程大学硕士学位论文目录第一章绪论⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯。11.1研究背景⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯。11.2舢.Pb合金研究现状⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯
8、⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯31.2.1A1.Pb合金的结构特点⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯31.2.2A1.Pb合金的力学性能⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯41.2.3甜.Pb合金的制备方法⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯.51.2.4A1.Pb合金目前应用状况⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯81.3热挤压工艺⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯⋯
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