简介:利用平衡合金法,采用扫描电镜-能谱仪和X射线衍射方法对Al-Fe-Sn三元系973和593K等温截面的相关系进行实验测定。实验结果表明:在此两个截面上均未检测到三元化合物;973K时液相中Fe的最大固溶度为1.6%(摩尔分数),而593K时Fe和Al在液相中的最大固溶度分别为0.6%和5.1%(摩尔分数);在973和593K等温截面上,Sn在Fe-Al化合物中的最大固溶度分别为4.2%和2.3%(摩尔分数);Fe-Al化合物均能与液相保持平衡。
简介:采用扩散偶实验方法研究Fe含量对Ti6Al4V合金显微组织和性能的影响。通过制作Ti6Al4V-Ti6Al4V20Fe扩散偶,在1000°C经600h扩散退火,在一个样品内获得具有连续成分梯度的合金。结合电子探针、扫描电镜和纳米压痕,确定Ti6Al4VxFe合金成分-组织-硬度的关系。当合金中Fe含量增加到5%(质量分数)时,时效状态下合金中的α相体积分数降低到55%,同时合金具有最高的硬度,Ti6Al4V5Fe合金将是Ti6Al4VxFe体系中最具前景的合金。HAADF-STEM和XRD结果表明,Ti6Al4V5Fe合金在固溶淬火阶段生成纳米尺寸α''层片,这些亚稳的α''层片在随后的时效过程中逐渐长大,并作为α相的形核核心,形成稳定α相。
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:铁(Fe)在铝(艾尔)有低稳固的溶解度,并且它通常形成Fe富有的金属间化合的混合物。钪(Sc)是能充当谷物的一个元素更精制,修改最容易溶解的硅并且同时改变Fe富有的金属间化合的混合物的形态学。现在的工作被进行在Al-7Si-0.3Mg的机械性质上学习Sc的效果。合金被准备由压榨在Fe的二个层次扔(0.2和0.4?wt%)并且Sc的三个层次(0wt%,0.2wt%并且0.4?wt%)。Sc被发现增加合金的机械性质,包括它的坚硬,收益力量和最终的张力的力量。在0.2点?wt%Fe,当维持好延伸时,增加的Sc增加力量。在0.4点?wt%Fe,增加的Sc增加力量,但是减少延伸稍微。金属间化合的混合物和最容易溶解的硅的分布和形态学影响延伸。Fe富有的金属间化合的混合物和Sc富有的金属间化合的混合物充当裂缝开始地点。0.2?wt%Fe?+?0.2?wt%Sc合金有这些金属间化合的混合物的最低数量,并且最容易溶解的硅小、含纤维。那么,它有最高的延伸。
简介:FenanowirearraywithstrongshapeanisotropywasemployedasthesoftphaseinNd-Fe-Bbasednanocomposites.TheeffectsoftheFenanowiredistributiononmagneticpropertiesofthenanocompositeswereinvestigatedbymicromagneticsimulation.TheresultsindicatethattheshapeanisotropyofFewiresaddedinthesamedirectionastheuniaxialmagnetocrystallineanisotropyofthehardphasecannotincreasethecoercivityofthenanocomposite.Whenthenanowiresaredistributedperpendiculartotheeasyaxisofthehardphase,theshapeanisotropyofsoftphasecanretardthemomentsfromrotatingtothefullreverseddirection,leadingtoenhancedcoercivity.Inaddition,withincreasingthenanowirediameter,thecoercivityofthenanocompositedecreases,butthedipolarinteractionshowsdifferentrolesinmagneticreversalofnanocompositefordifferentdistributionsofnanowires.ThecurrentresultssuggestthatthecoercivityoftheNd2Fe14B/α-Fenanocompositecanbeenhancedbyintroducingthesoftmagneticnanowirearraywiththediameterlessthantheexchangelengthandwiththelongaxisalongthedirectionotherthantheeasyaxisofhardphase.
简介:AdditionofAl-5Ti-1Balloytomoltenaluminumalloyscanrefineα-Algrainseffectivelyandtherebyimprovetheirstrengthandtoughness.TiAl3andTiB2inAl-5Ti-1Balloyarethemainsecondary-phaseparticlesforrefinement,whiletheunderstandingontheeffectoftheirsizesonα-Algrainrefinementcontinuestobefragmented.Therefore,Al-5Ti-1Balloyswithvarioussizesandmorphologiesofthesecondary-phaseparticleswerepreparedbyequalchannelangularpressing(ECAP).Evolutionofthesecondary-phaseparticlesduringECAPprocessandtheirimpactonα-AlgrainrefinementwerestudiedbyX-raydiffractionandscanningelectronmicroscope(SEM).ResultsshowthatduringtheECAPprocess,micro-cracksfirstlyappearedinsideTiAl3particlesandthengraduallyexpanded,whichresultedincontinuousrefinementofTiAl3particles.Inaddition,micro-distributionuniformityofTiB2particleswasimprovedduetotheimpingementofTiAl3particlestoTiB2clustersduringdeformation.ExcessivelylargesizesofTiAl3particleswouldreducethenumberofeffectiveheterogeneousnucleusandthusresultedinpoorgrainrefinementeffectiveness.Moreover,excessivelysmallTiAl3particleswouldreduceinhibitoryfactorsforgraingrowthQandweakengrainrefinementeffectiveness.Therefore,anoptimalsizerangeof18-22μmforTiAl3particleswassuggested.
简介:摘要新疆卡拉贝利水利枢纽工程位于新疆克孜勒苏柯尔克孜自治州乌恰县境内,是克孜河上具有季调节性能的控制性工程,具有以防洪、灌溉为主,兼顾发电等综合效益。库区降水量小而蒸发强烈,冬季气温较低且漫长,气温日、年变幅大,气候干燥且多风,恶劣的自然气候条件要求我们在保证混凝土本身抗冻、防渗性能的基础上,需通过在面板混凝土表面涂刷聚氨酯防冻涂层,进一步提高其耐久性。本文根据卡拉贝利大坝面板混凝土弹性聚氨酯防冻涂层施工实践,从其涂层设计的意图、材料选择、施工工艺、应用效果等方面进行阐述。