简介:采用编织-粉料铺填法制备Cf/ZrB2预制体,经过“浸渍-炭化”制得C/C-ZrB2复合材料,研究材料的微观结构与力学性能、抗氧化性能和抗烧蚀性能。结果表明:ZrB2颗粒由树脂炭包裹,在C/C-ZrB2复合材料内部均匀分布。材料的氧化质量损失率随氧化时间延长呈线性增长,在1100℃温度下氧化10min和60min后质量损失率分别为2.67%和20.47%。该材料的抗弯强度为81.1MPa,氧化10min后抗弯强度仍保持在氧化前的80%,氧化前后均呈假塑性断裂模式。ZrB2粉体的加入可显著改善C/C复合材料的抗烧蚀性能,等离子烧蚀120s后,其质量烧蚀率和线性烧蚀率分别为0.30mg/s和8.75μm/s。玻璃态ZrO2的阻氧作用以及B2O3的挥发吸热是复合材料主要的抗烧蚀机理。
简介:以粒径53~150μm的WC、Cr3C2(Cr3C2质量分数为10%~40%)和NiCrBSi粉末为原料,采用Stellite等离子转移弧(PTA)堆焊系统在45#钢基体上制备焊层。应用金相显微镜、X-射线衍射仪、扫描电镜、硬度计等设备分析焊层的结构和性能。结果表明:NiCrBSi自熔合金焊层组织由γ-(Ni,Fe)和其间弥散分布的CrB和(Cr,Fe,Ni)7C3相组成;Cr3C2加入后,焊层中出现Cr3C2衍射峰。随Cr3C2含量增加,焊层硬度、孔隙率和耐磨性逐渐提高,Cr3C2含量为30%时,硬度和耐磨性均达到峰值。铸造WC加入后,以WC、W2C为主,并有少量(Cr,Fe,Ni)7C3和(Ni,Cr,W)3C产生。Cr3C2含量为40%的Cr3C2焊层较Ni50A焊层耐磨性提高197.6%,比加入相同含量铸造WC焊层耐磨性提高97.6%。Cr3C2、铸造WC加入后,焊层的磨损机理不同:Cr3C2/Ni属于均匀磨损,WC/Ni属于非均匀磨损。
简介:在中密度C/C复合材料基体上采用催化化学气相沉积方法生长碳化硅纳米线(SiCnw)及制备碳化硅纳米线/碳化硅(SiCnw/SiC)涂层,研究中密度C/C复合材料基体上加载催化剂后涂层沉积及其抗氧化性能,结果表明:中密度基体上催化制备SiCnw涂层,可改善沉积效率,同时可抑制裂纹扩展,明显改善SiC涂层在1200℃的氧化防护能力。另外,在1500℃的空气中氧化10h后,SiCnw/SiC涂层氧化质量损失率仅为1.34%,明显低于质量损失率为8.67%的单层SiC涂层。
简介:Differentrareearth(RE)ionsdopantswereaddedintotheSrAl2SiO7:Eu2+phosphorsinordertoenhancethephosphorescenceproperties,andtheeffectoftheREionsincludingYb3+,Ce3+,Nd3+,Dy3+andTm3+,wascomparativelyinvestigated.ItwasfoundthatNd3+additionimprovedthephosphorescencepropertiesobviouslyamongallthestudiedREions.Therefore,Sr1.96–xAl2SiO7:xEu2+,yNd3+phosphorswerestudiedindetail,andtheoptimumEu2+andNd3+concentrationsweredeterminedwiththeafterglowtimeofabout20min.Thephasestructures,photoluminescence(PL)properties,long-lastingphosphorescence(LLP)properties,afterglowdecaycurvesandthermo-luminescence(TL)fortheselectedphosphorsduringthecorrespondingstudywereinvestigated.AllthephosphorsexhibitedgreenPLemissionandLLPemission.ThereweretwoTLbandslocatedatabout325and380Kforthestudiedsamples,andtherelationshipbetweenREadditionandphosphorescencepropertieswasdiscussed.
简介:ToimprovethemechanicalpropertiesofWC-Al2O3composites,theeffectsoftraceamountofCeO2additivesonthemicrostructureandmechanicalpropertiesoftheWC-Al2O3compositespreparedbyhotpressingwereinvestigated.TheresultsrevealedthattheWC-Al2O3compositesdopedwith0.1%CeO2possessedrefinedmicrostructureandenhancedmechanicalpropertiescomparedwiththatoftheundopedWC-Al2O3composites.TraceCeO2suppressedthedecarburizationofWC,promotedthemicrostructuralrefinement,andimprovedtheinterfacecoherenceoftheWCmatrixandAl2O3.When0.1%CeO2wasaddedtotheWC-Al2O3composites,theeffectofCeO2resultedintheachievementofarelativedensityof98.82%withanexcellentVickershardnessof16.89GPa,combiningafracturetoughnessof9.85MPa·m1/2withanacceptableflexuralstrengthof1024.05MPa.
简介:Sr1.995–1.5xGdxSiO4:0.005Eu2+phosphorserieswithx=0–0.08molfornear-ultravioletwhitelight-emittingdiodes(NUVw-LEDs)weresynthesizedviasolid-statereactionmethod.XRDprofilepatternandrefinementresultsdemonstratedthatdopingGd3+ionsresultedinthephasetransformation(β-Sr2SiO4→α’-Sr2SiO4).Thephotoluminescencespectrumofthesamplewithx=0moldisplayedtwoemissionpeakscenteredat470and525nm.Thetwo-peakspectrabecameone-peakspectrawiththeGd3+concentrationincreasing.Actually,thefittingresultsdemonstratedthattheone-peakspectrawerestillcomposedoftwosingleemissionspectra.ThephotoluminescenceintensitywasimprovedandtheCIEchromaticitycoordinateswereadjustedviadopingGd3+.
简介:通过添加W粉或C粉调整WC原料粉末的总碳含量(质量分数)为6.04%~6.16%,采用低压烧结法制备WC-9Ni-1Cr细晶硬质合金。采用光学金相显微镜、X射线衍射、扫描电镜等,研究碳含量对WC-9Ni-1Cr细晶硬质合金组织结构及性能的影响。结果表明:在WC-Ni系合金中添加适量的Cr元素,得到无磁WC-Ni硬质合金,并且其无磁特性不随合金中碳含量的变化而发生转变。WC粉末的总碳含量为6.04%~6.16%时WC-9Ni-1Cr细晶硬质合金为二相区的正常组织,只存在WC相和Ni相,没有石墨夹杂或η相;而且在此二相区范围内WC的碳含量变化对WC-9Ni-1Cr细晶硬质合金的耐腐蚀性没有明显影响。随WC粉末的碳含量增加,合金硬度(HRA)与密度都逐渐降低,但降低幅度较小,而合金的抗弯强度逐渐提高。碳含量由6.04%增加至6.16%时,抗弯强度由2250MPa提高到2850MPa,提高26.6%。
简介:Inthepresentstudy,sampleswereextensivelycollectedthroughoutthestainlesssteelmanufacturingprocess.Thethree-dimensionalmorphologyofinclusionswasrevealedbynon-aqueoussolutionelectrolysis.Thehighconcentrationofaluminuminferrosiliconcausedtheincrementof[Al]sinsteelandAl2O3ininclusions,whichledtothehighermeltingtemperatureofinclusions.ItwasconcludedthattheapplicationoflowAlferrosiliconandcalciumtreatmentcouldpreventtheformationofAl2O3-richinclusions.
简介:以四氯化锡和氨水作为原料,采用水热合成法制备SnO2纳米粉体。探讨反应溶液浓度、水热合成温度、水热合成时间和初始溶液pH值对纳米SnO2粉体性能及形貌的影响规律,并确定最佳工艺参数,同时对水热合成过程中出现的SnO2纳米棒异常现象进行初步分析。结果表明:采用水热合成法制备的SnO2纳米粉体均为四方晶系金红石型结构,粉末粒径为5~12nm,呈近球形。在反应溶液浓度0.5~2.0mol/L条件下,随反应溶液浓度升高,制备的粉体晶粒平均粒径呈线性增长;在水热合成温度160~220℃范围内,随温度升高,SnO2粉体的平均粒径从5.1nm增大到9.8nm,在200℃时会出现降低;在水热合成时间6~30h条件下,随反应时间延长,SnO2粉体的平均粒径增大,在20h时降低;随溶液pH值升高,制备的粉体晶粒平均粒径减小。在1.0mol/L、pH值10的反应溶液中,在200℃保温20h的工艺条件下进行水热合成反应,所制备的粉体平均粒径为5.5~8.5nm,粉体均匀性和分散性良好。