简介:通过拉伸试验、晶间腐蚀与应力腐蚀实验,结合金相观察和高分辨透射电镜分析,研究微量Ti和Cr对Al-Zn-Mg-Cu-Zr合金弥散相、再结晶与性能的影响。结果表明:在Al-Zn-Mg-Cu-Zr合金中,添加0.04%Ti(质量分数,下同)可使合金抑制再结晶的能力降低,从而导致合金的力学性能和抗应力腐蚀性能降低;复合添加0.04%Ti和0.04%Cr,形成含有少量Cr的Al3(Zr,Ti)弥散相,合金抑制再结晶的能力显著增强,合金在保持高强度的同时,抗应力腐蚀性能显著提高,抗拉强度为687.6MPa,屈服强度为651.4MPa,比不含Ti和Cr的合金分别提高15.3MPa和7.8MPa,应力腐蚀裂纹萌生时间由161h延长至306h。
简介:Cr的Nanopowder:Cr的GGG和nanopowder,Nd:有从0.1at.%到1.5at.%的Cr3+的不同集中的GGG被大音阶的第五音胶化方法用醋酸和乙烯乙二醇综合。热gravimetric分析和微分扫描热量测定(TGA-DSC),X光检查衍射(XRD)和光致发光光谱学被用来描绘粉末。当在1000点对待时,雏晶尺寸是大约58nm?????????????????猯灵?匠?猼'T资???猼灵?????????猯'T??猼灵???? ̄?????猯'T????猯灵??猼'T?????吗????????????????‵渠????????浮??
简介:Inthiswork,asimpleandfacileone-potoleylaminesolvothermalsyntheticmethodwasdevelopedtosynthesizeCu_2ZnSnS_4(CZTS)nanocrystals.AndtheCu_2ZnSn(S,Se)_4(CZTSSe)thinfilmswerepreparedbyselenizingCZTSnanocrystals.TheobtainedCZTSnanocrystalsandCZTSSefilmswerestudiedusingX-raydiffraction(XRD),transmissionelectronmicroscopy(TEM),scanningelectronmicroscopy(SEM),energy-dispersiveX-rayspectroscopy(EDX),andultraviolet–visiblespectrophotometer(UV–Vis).TEMresultsshowthatthesphere–likeCZTSnanoparticleswithdiameterbetween12and35nmarepolydispersed.XRDstudiesindicatethatthepreparedCZTSnanocrystalsformkesteritecrystalstructure,andtheCZTSSefilmswithkesteritecrystalstructurearealsoobtainedattheannealingtemperaturesof500and550°C.Inparticularafterannealingat500°Cfor20min,theCZTSSefilmexhibitsasmooth,uniform,crack-free,andlarge-grainedtopographyandpossessesCu-poorandSn-richcomposition.Moreover,itshowsstrongopticalabsorptionfromvisibletonear-infrared(IR)region,anditsopticalbandgap(Eg)isfoundtobeabout1.44eV.
简介:Atacertainhightemperature,thiscyclewillbedominantandendtherp-processtoheavierregion[2].Itprovidesanuppertemperaturelimitforrp-processalongtheprotondriplinetoproducenuclidesbeyondA=84,includingthelightpnuclidesof92;94Mo,96;94Ru.TheexistenceofZr-Nbcycleisanimportantquestioninrp-process[2].α-separationenergy(Sα)of84Moplaysanimportantroleintheformationofthiscycle.Astrongenhancementof83Nb(p,α)reactionrateisduetoaverylowSαof84Mo[1].
简介:Zr和它的合金作为新结构的材料有优秀机械性质,但是在特定的申请环境,它的腐蚀抵抗仍然需要进一步被探索。在这个工作,两倍发光血浆表面alloying技术在纯Zr表面上被用于copperizing。而且,X光检查衍射(XRD),扫描电子显微镜(SEM)和精力分散光谱(版本)被采用描绘样品。而且,研究也在不同答案在样品的极化曲线上被进行。表面上的Copperizing能在3.5改进纯Zr的腐蚀抵抗?%NaCl并且0.5?摩尔
简介:在situcomposites在艾尔矩阵上研究严重塑料变丑的影响规则,10?wt%艾尔3在situ的Zr/2024Al增强粒子合成被准备由直接融化反应(DMR),然后,合成是由有90的一个方向的热伪造?%塑料变丑。然后,前进状态的微观结构合成被观察,并且机械性质的变化法律和磨擦表演在以后并且在塑料使变形前被比较。结果显示艾尔3增强Zr的粒子旋转并且闯入10-20的更小的尺寸?ng可溶的biopolymer有三个转变金属离子的牛的浆液白朊(BSA)(M,M=Cu,公司,Mn)。白朊一定的金属离子的有约束力的模式和比率被调查。BSA-M建筑群被紫外力的、圆形的二色性(CD)描绘系列和polyacrylamide胶化电气泳动(页)。当聚合物支架和金属建筑群作为催化活跃中心工作了,BSA服务了。当到BSA的转变金属离子建筑群的有约束力的比率是5:1时,结果证明BSA的结构仍然保持未改变。而且,清除superoxide阴离子自由的基(O\(_{2}^{\bullet-}\??
简介:Mg-12Gd-2Er-1Zn-0.6Zr(wt%)合金的机械性质上的homogenization和等温的老化处理的效果被调查。猛抛的长时期的叠顺序(LPSO)结构和调节合金的变老的降水顺序分别地被观察并且分析。结果显示14H-LPSO结构在等温的老化过程以后发生在homogenization处理和阶段形式以后。这二个独立过程能被降水温度范围控制。在homogenization处理以后的当演员组合金的延伸的重要增加被归因于粗糙的主要Mg5(Gd,的消失嗯,Zn)阶段和14H-LPSO结构的存在。调查合金的降水顺序是-Mg(SSS)/(D019)/(cbco)/。而且,张力的力量(YTS)和最终的张力的力量(UTS)等温的老化合金珍视的收益有大改进,它能被归因于猛抛的阶段的高密度。图形的AbstractWith延长的变老的时间,阶段在合金被猛抛。14H-LPSO结构和阶段在498K为84h在老化以后在合金共存。14H-LPSO的层结构显然被观察[11\(\overline{2}\)0]Mg方向,它在高分辨率的传播电子显微镜学(HRTEM)被显示出图象。14H类型结构与c的一个时期显示一份叠的订单?=?3.67?nm,它不在等温的老化过程期间变化。
简介:Vanadiumalloys(V-Cr-Tiseries)areimportantcandidatematerialsforblanketcomponentsoffusionreactorsduetotheirlowactivationandhighstrengthatelevatedtemperatures.Low-temperatureirradiationembrittlementdeterminestheoperationtemperaturelimitofVanadiumalloysfortheapplicationtostructuralmaterialsoffusionreactorsirradiationresponseofvanadiumalloysneedstobeclarifiedfortheirapplication.Inthepresentstudy,specimensoftwoalloys(V-4Cr-4TiandV-5Cr-5Ti)wereirradiatedwithenergeticHeionsandheavyionstounderstandhardeningofthealloysduetoheliumaccumulationandcascadedamageproduction.
简介:采用纯Al片表面浸Zn后再电镀厚Cu层的方法制备Cu/Al层状复合材料。在473~673K温度范围内对该复合材料进行退火,研究退火过程中Cu/Al界面扩散与反应、界面金属间化合物(IMCs)层的长大动力学以及Cu/Al层状复合材料电阻率。结果表明,经过473K、360h的退火处理,未观察到Cu.AlIMCs层,显示Zn中间层能有效抑制Cu/Al界面扩散。可是,当复合材料经573K及以上温度退火时,Zn层中的Zn原子主要向Cu中扩散,从Al侧到Cu侧形成CuAl2/CuAl/Cu9Al4三层结构的反应产物。IMC层遵循扩散控制的生长动力学,Cu/Al复合材料的电阻率随退火温度及时间的增加而增大。
简介:摘要;本设计采用电感耦合等离子发射光谱法(ICP—OES)对岩石样品中的Cu,Pb,Zn,Mn,Ni进行了测定,样品用四酸()熔矿,不经分离杂质,即可直接测定。该方法选择Cu,Pb,Zn,Mn,Ni的测定分析波长分别为324.7nm,220.3nm,202.5nm,257.6nm,221.6nm分析了用HCl提取与用王水提取,样品首先经磨样机碎至200目,用去离子水湿润后,用四酸熔矿,再将坩埚放置恒温电热板上加热,最后分别用王水或盐酸提取再定容,对其中的Cu,Pb,Zn,Mn,Ni做探究实验。
简介:Theadsorptionandelectronicpropertiesofisolatedcobaltphthalocyanine(CoPc)moleculeonanultrathinlayerofNaClhavebeeninvestigated.High-resolutionSTMimagesgiveadetailedpictureofthelowestunoccupiedmolecularorbital(LUMO)ofanisolatedCoPc.ItisshownthattheNaClultrathinlayerefficientlydecouplestheinteractionofthemoleculesfromtheunderneathmetalsubstrate,whichmakesitanidealsubstrateforstudyingthepropertiesofsinglemolecules.Moreover,strongdependenceoftheappearanceofthemoleculesonthesamplebiasintheregionofrelativelyhighbias(>3.1V)isascribedtotheimagepotentialstates(IPSs)ofNaCl/Cu(100),whichmayprovideuswithapossiblemethodtofabricatequantumstoragedevices.
简介:Asamemberof1Dnanostructuredmaterials,theferromagneticandnonmagneticmultilayernanowiresexhibittremendouspotentialapplicationsinmanyfieldsduetotheiruniquemagneticandelectricalproperties.Thebasicpropertyofmultilayernanowirearrays,suchascoercivity,iscrucialimportantforthefutureapplication.Inordertoobtainthecoercivityinformation,besidesdirectlymeasuringitthroughexperiment,theoreticalcalculationalsoprovidesausefulandfastwaytoevaluatethemultilayer’scoervicity.Fig.1(a)and(b)demonstrateasinglemultilayernanowireandnanowirearraysembodiedinamatrix,respectively.Inthiswork,byimprovingPant’smodel,wedevelopedthenewmodelandsuccessfullypredictedtherelationshipbetweenthecoercivitychangingofCu/Nimultilayernanowirearraysandstructualparameters.Fig.
简介:PhasesandmicrostructuresofthreehighZncontainingAl–Zn–Mg–Cualloyswereinvestigatedbymeansofthermodynamiccalculationmethod,opticamicroscopy(OM),scanningelectronmicroscopy(SEM)energydispersivespectroscopy(EDS),X-raydiffraction(XRD),anddifferentialscanningcalorimetry(DSC)analysis.TheresultsindicatethatsimilardendriticnetworkmorphologiesarefoundinthesethreeAl–Zn–Mg–Cualloys.Theas-cast7056aluminumalloyconsistsofaluminumsolidsolution,coarseAl/Mg(Cu,Zn,Al)2eutecticphases,andfineintermetalliccompoundsg(MgZn2).Bothofas-cast7095and7136aluminumalloysinvolvea(Al)eutecticAl/Mg(Cu,Zn,Al)2,intermetallicg(MgZn2),andh(Al2Cu).Duringhomogenizationat450°C,fineg(MgZn2)candissolveintomatrixabsolutely.Afterhomogenizationat450°Cfor24h,Mg(Cu,Zn,Al)2phasein7136alloytransformsintoS(Al2CuMg)whilenochangeisfoundin7056and7095alloys.ThethermodynamiccalculationcanbeusedtopredictthephasesinhighZncontainingAl–Zn–Mg–Cualloys.
简介:碱性体系中以水玻璃和硅溶胶为双硅源,硫酸铝为铝源,在硅铝酸盐凝胶形成过程中加入氧氯化锆,用水热晶化法成功合成了Zr-ZSM-5分子筛。通过XRD、Raman、UV-VIS、BET、SEM、NH3-TPD、Py-IR等手段对其进行表征。研究结果表明:Zr成功进入ZSM-5分子筛骨架,且随着锆摩尔含量的增加,分子筛的比表面积减小,孔径和孔体积增大,势必会影响到分子筛的择形催化性能;此外,分子筛的酸类型重新分布,L酸比例增大,总酸量和酸强度有所减小,势必会影响其酸催化性能;同时分子筛的生长方式也发生了改变,晶体结构由三维棺状变为二维层片状,相对结晶度有所降低,但其骨架结构依然保持完整。
简介:Lifetimemeasurementsoflow-lyingexcitedstatesin^87Zrhavebeenperformedviaβ-γcoincidences.The127MeV^32SbeamwasdeliveredfromtheSector-FocusingCyclotron(SFC)oftheHeavyIonResearchFacilityinLanzhou(HIRFL).Theparentnuclei^87Nbwereproducedbythereaction58Ni(32S,2p1n),atabeamenergy127MeVthrougha8umAldegrader.A200ug/cm^2layerof58Nievaporatedontoa200ug/cm^2thickcarbonfoilwasemployedasthetarget.Afterevaporationresidueswereseparatedfromtheprojectilebeamsbythegas-filledrecoilseparatorSHANS[1],thenucleiofinterest87Zrcanbeobtainedwithahigherpurityandthenwereimplantedintoa300umsilicondetector.
简介:第三的Ni-5%Cu-5%Sn和Ni-10%Cu-10%Sn合金的液体状态undercoolability和水晶生长动力学被玻璃fluxing方法调查。在这二合金,304K的试验性的最大的undercoolings(0.18TL)和286K(0.17TL)被完成,树枝状的生长速度分别地达到39.8和25.1m/s。从进equiaxed结构的粗糙的树突的形态学的转变发生并且谷物尺寸(Ni)当undercooling增加时,显著地分阶段执行减少。格子常数和microhardness与undercooling的改进显然增加。Cu和Sn溶质内容的丰富减少树枝状的生长速度,当时提高格子常数和microhardness(Ni)阶段。
简介:AnefficientprocessfortheconversionofdimethyloxalateintoethyleneglycolwithhighselectivityandhighyieldoverCu2Owasinvestigated.InsituformedCuasatruecatalyticallyactivespeciesshowedagoodcatalyticperformanceforDMOconversiontoproduceEGin95%yield.