简介:Al-Cu-Mg系铝合金具有较高的强度和良好的耐热性能,被广泛用于航空航天材料。微量Ag、Li的添加及复合添加能够改善Al-Cu-Mg系合金的性能,而析出相对合金的性能起决定作用。介绍了微量Ag、Li的添加及复合添加对Al-Cu-Mg合金析出相的影响,重点分析了不同析出相的结构特征、形成条件以及析出序列,并提出了存在的问题及应用前景。
简介:采用Gleeble-3800热模拟试验机对Zn-10Al-2Cu合金在变形温度为150~330℃、变形速率为0.01~10s-1条件下的流变行为进行研究。结果表明:Zn-10Al-2Cu合金在热压缩变形中,当应变速率一定时,流变应力随变形温度的升高而减小;而当变形温度一定时,流变应力随着变形速率的增大而增大,达到峰值后下降趋势平缓。Zn-10Al-2Cu合金的热压缩流变行为可用双曲正弦形式的本构方程来描述。在本实验条件下,该锌铝铜合金热变形应力指数n为5.4、热变形激活能Q为137kJ/mol,高温流变应力用含Zener-Hollomon参数的Arrhenius方程描述为:σ=123ln{(Z/(1.22×1013))1/5.4+[(Z/(1.22×1013))2/5.4+1]1/2}。
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简介:从同样渗出的镁合金Mg-3%Al-1%Zn(AZ31)营舍准备的样品在低周期的疲劳测试被利用以便调查频率依赖者疲劳生活。充分颠倒的控制紧张的紧张压缩疲劳测试在空中在1Hz和10Hz的频率被执行。微观结构被光显微镜学(OM)和扫描电子显微镜学(SEM)检验。当紧张振幅比0.2%低时,疲劳生活与装载频率展出了积极关联,并且twinning的活动在10Hz被增加。当紧张振幅比0.2%高时,重要twinning在生活被发现独立于频率的这二频率,和疲劳被观察。为这频率相关的疲劳一生的可能的原因可能由于在装载频率和紧张振幅之上的twinning的依赖。
简介:Thedeformationmechanismsandprocessingmapsoftheas-castAl-Zn-Mg-Cu(7075)aluminum(Al)alloywerestudiedandcomparedwiththoseofthehomogenized7075Alalloyinthetemperaturerangeof573–723Kandinthestrainraterangeof10~(-3)–10s~(-1)toexploreapossibilityfordirectlyusingtheascast7075Alalloyasabilletforhotworking.Theas-castandhomogenized7075Alalloyshadsimilargrainsizesandshowedsimilarhigh-temperaturedeformationbehaviors.Theas-cast7075Alalloy,however,exhibitedhigherpowerefficienciesandsmallerunstable?owregionscomparedtothehomogenized7075Alalloybecauseofthepresenceofsecondaryphases(MgZn_2)segregatedatthedendriticinterfacesintheas-castmicrostructure,whichwereformedduringnon-equilibriumsolidi?cation.Thesesegregatedphasesprovidednucleationsitesfordynamicrecoveryorcontinuousdynamicrecrystallization,andasaresulta?neandmorehomogeneous(sub)grainstructurecouldbeobtainedfromtheas-castmicrostructurecomparedtothehomogenizedmicrostructure.Thecurrentworksuggestedthepossibilityandadvantageofusingas-castmicrostructuresforhotworkingofaluminumalloyswithhighcontentofsolutes.
简介:为了研究Ca的含量对MgZnMnCa四元生物镁合金的组织和性能的影响,制备了Mg2Zn0.2MnxCa(x=0.1,0.4,0.7)合金,比较不同Ca含量的Mg2Zn0.2MnxCa的组织和腐蚀性能。结果表明,Mg2Zn0.2Mn0.4Ca合金的显微组织较好,平均晶粒尺寸约为100μm,第二相含量适中;Mg2Zn0.2Mn0.4Ca的镁合金耐腐蚀性较好,腐蚀速率为0.569mm/a。
简介:TheevolutionofmicrostructureandmechanicalpropertiesofAl-0.4Cu-0.14Si-0.05Mg-0.2Fe(wt.%)alloys,micro-alloyedwithZr,TiandSc,wereinvestigated.Theadditionof0.2%ZrtobasealloyacceleratestheprecipitationofSi-richnano-phaseinα-Almatrix,whichplaysanimportantroleinimprovingthemechanicalpropertiesofanalloy.Thetensilestrengthincreasesfrom102MPaforthebasealloyto113MPafortheZr-modifiedalloy.Adding0.2%Zr+0.2%Titobasealloyeffectivelyrefinesa-AlgrainsizeandacceleratestheprecipitationofSiandCuelements,leadingtoheavysegregationatgrainboundary.Byfurtheradding0.2%SctoZr+Timodifiedalloy,thesegregationofSiandCuelementsissuppressedandmoreSiandCuprecipitatesappearedinα-Almatrix.AccompaniedwiththeformationofcoherentAl3Scphase,thetensilestrengthincreasesfrom108MPafortheZr+Timodifiedalloyto152MPafortheSc-modifiedalloy.DuetoexcellentthermalstabilityofAl3Scphase,theSc-modifiedalloyexhibitsobviousprecipitationhardeningbehaviorat350℃,andthetensilestrengthincreasesto203MPaafterholdingat350℃for200h.
简介:Thisstudywasconductedtodiscusstheeffectofrollingstrainonmicrostructureandtensilepropertiesofdual-phaseMg-8Li-3Al-2Zn-0.5Y(wt%)alloy,whichwaspreparedbycasting,andthenhomogenizedandrolledat200℃.Therollingprocesswasconductedwith10%reductionperpassandfivedifferentaccumulatedstrains,varyingfrom10%to70%.Theresultsindicatethattheas-castandas-rolledMg-8Li-3Al-2Zn-0.5Yalloysarecomposedofα-Mg,β-Li,AlLiandAl2Yphases.Afterrollingprocess,anisotropicmicrostructurewasobserved.a-Mgphasegotelongatedinbothrollingdirectionandtransversedirectionwiththeadditionofrollingstrain.Consequently,thestrengthofthealloyinbothdirectionswasnotablyimprovedwhereastheelongationdeclined,mainlycausedbystrainhardeninganddispersionstrengthening.Thetensilepropertiesoftheas-rolledalloysintheRD,nomattertheYS,UTSortheelongation,arehigherthanthoseoftheTDduetotheirlargerdeformationstrainandsignificantanisotropyinthehcpα-Mgphase.Inaddition,thefractureandstrengtheningmechanismofthetestedalloyswerealsoinvestigatedsystematically.
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简介:TheinteractionbetweenZn-AleutecticalloyandAl2O3p/6061Alcompositesinthevacuumfurnacewasinvestigated.Greatattentionhasbeenpaidtotheelementsdiffusion,themicrostructureandformationoftheinterfacebetweenZn-AIeutecticalloyandAl2O3p/6061Alcomposites.ExperimentalresultsshowthatZn-AleutecticalloyhasagoodwettingabilitytoAl2O3p/6061Alcompositesandthewettingangledecreaseswithincreasingthetemperatureinvacuum.Aftertheinteraction,aninteractionlayerformsbetweenZn-AIalloyandAl2O3p/6061Alcomposites.Thephasesintheinteractionlayermainlyconsistofα-Al(Zn),Al2O3andCuZn5resultedfromthediffusionofelementsfromtheZn-Alalloy.SeveralporositiesdistributeintheregionneartheinterfaceoftheZn-Alalloy/interactionlayer.TheamountofshrinkagevoidsintheinteractinglayerisrelevanttothepenetrationofZnelementintoAl2O3p/6061Alcompositeswhichisafunctionoftemperature.SoitisnecessarytolowerheatingtemperatureinordertolimittheZnpenetration.
简介:DiffusionofAlinthinfilmnanocrystallineCu(18nm)hasbeeninvestigatedbymeansofsecondionmassspectroscopy(SIMS).Intheexperimentaltemperaturerangesfrom421to773K,thereseem-inglyexiststwodiffusionmechanisms.TheimpurityelementsOandCaresupposedtoaccumulatetothegrainboundariesandinhibitthefastgrainboundarydiffusion.
简介:Al-4。5Cu-5Pb合金被扔的沙和寒冷准备。一样的合金也是在1.6MPa的一个煤气的压力扔的水花。微结构特征展览一对为沙和寒冷铸石金的好树枝状的形态学粗糙。Equiaxed谷物被观察因为水花形成了合金。穿测试采用一根大头针--在圆盘上类型安装,揭示更加更低与寒冷和沙铸石金的相比水花穿扔的合金。词法特征在显示的标本和碎片上穿轨道混合oxidative-cum-adhesive为在现在的调查测试的这些合金穿机制。(编辑作者摘要)36个裁判员。
简介:这份报纸的主要目的是在与不同沉浸时间在模仿的身体液体(SBF)沉浸的Mg-Zn-Zr合金的机械行为上调查腐蚀的效果。在SBF的材料的腐蚀行为被沉浸测试决定。侵蚀的合金的表面被SEM检验。渗出的Mg-2Zn-0.8Zr镁合金的张力的样品为0,4,7,10,14,21和28d沉浸于SBF。测试样品的张力的机械行为在一台电子张力的测试机器上被执行。SEM被用来观察破裂形态学。与沉浸时间,最终的张力的力量(UTS),收益力量(YS)和Mg-2Zn-0.8Zr的延伸(EL)的扩展,样品起初很快减少了然后慢慢地减少了,这被发现。与增加的沉浸从可锻的骨折转变到劈开骨折的合金的主要破裂机制预定,它能被归因强调坑腐蚀引起的集中和embrittlement。
简介:喷洒的Zn和Zn15Al涂层被选择保护对的高张力水泥(PHC)的结束输送的金属的弧在东北中国在北瓷器和中立草地土壤对盐咸滩土壤的腐蚀堆。在二个模仿的土壤答案的涂的Q235钢样品的腐蚀行为被potentiodynamic极化和电气化学的阻抗光谱学(EIS)调查方法。试验性的结果证明在两个都模仿的答案的矩阵Q235钢的腐蚀被Zn和Zn15Al涂层显著地禁止。Zn和Zn15Al上的腐蚀产品厚、紧缩、坚挺、保护。Zn和Zn15Al涂的样品的腐蚀水流密度icorr与腐蚀时间,和费用转移电阻Rct显然被减少极大地被增加。在模仿的中立草地土壤答案的Zn和Zn15Al的腐蚀电阻索引是比在盐咸滩土壤的那些更突出的。在盐咸滩土壤的Zn15Al的腐蚀电阻比Zn的稍微优异。当喷洒的涂层与环氧基树脂树脂被封上时,涂层的腐蚀电阻进一步显著地被提高。
简介:SiCp/AI金属矩阵的表面上的紧缩的氧化物合成(SiCp/AIMMC)极大地取决于关节的性质。镶嵌的劈啪作响的目标被使用由血浆侵蚀在SiCp/AIMMC的结合的表面上完全蚀刻氧化物。在厚度的5妈妈的Cu/Ni/Cu电影被磁控管劈啪作响方法在一样的真空房间在干净结合表面上准备,它在结合的短暂液相(TLP)作为夹层被扮演过程。与单个Cu陪衬和Ni陪衬夹层的一样的厚度相比,200MPa的shear力量在TLP结合期间用Cu/Ni/Cu电影夹层被获得,它是89.7%碱金属的。另外,结合的区域的