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[1]Z.L.Long*,G.Q.Xie,H.Q.Wei,J.Peng,P.Zhang,A.Inoue.Onthenewcriteriontoassesstheglass-formingabilityofmetallicalloys,MaterialsScienceandEngineering:A,2009,509:23-30.(SCI,EI源刊)
[2]Z.L.Long*,Y.Shao,F.Xu,H.Q.Wei,Z.C.Zhang,P.Zhang,X.P.Su.YeffectsonmagneticandmechanicalpropertiesofFe-basedFe-Nb-Hf-Y-Bbulkmetallicglasseswithhighglass-formingability,MaterialsScienceandEngineering:B,2009,164:1-5.(SCI,EI源刊)
[3]Z.L.Long*,H.Q.Wei,Y.H.Ding,P.Zhang,G.Q.Xie,A.Inoue.Anewcriterionforpredictingtheglass-formingabilityofbulkmetallicglasses,JournalofAlloysandCompounds,2009,475:207-219.(SCI,EI源刊)
[4]P.Zhang,H.Q.Wei,X.L.Wei,Z.L.Long*,X.P.Su.Evaluationofglass-formingabilityforbulkmetallicglassesbasedoncharacteristictemperatures,JournalofNon-CrystallineSolids,2009,355:2183-2189.(SCI,EI源刊)
[5]Z.L.Long*,Y.H.Ding,Y.Shao,P.Zhang,A.Inoue,CorrosionbehaviourofFe-basedferromagnetic(Fe,Ni)-B-Si-Nbbulkglassyalloysinaqueouselectrolytes,JournalofNon-CrystallineSolids,2008,354:4609-4613.(SCI源刊)
[6]Z.L.Long*,Y.Shao,G.Q.Xie,P.Zhang,A.Inoue.Enhancedsoft-magneticandcorrosionpropertiesofFe-basedbulkglassyalloyswithimprovedplasticitythroughtheadditionofCr,JournalofAlloysandCompounds,2008,462:52-59.(SCI,EI源刊)
[7]Z.L.Long*,Y.Shao,X.H.Deng,Z.C.Zhang,Y.Jiang,P.Zhang,A.Inoue.CreffectsonmagneticandcorrosionpropertiesofFe-Co-Si-B-Nb-Crbulkglassyalloyswithhighglass-formingability,Intermetallics,2007,15:1453-1458.(SCI,EI源刊)
[8]Z.L.Long*,Y.Shao,Y.Q.Zeng,A.Inoue.Corrosionbehaviourof[(Fe0.6Co0.4)0.75B0.2Si0.05]96Nb4bulkglassyalloyinsulphuricacidsolutions.MaterialsTransactions,2006,47(10):2566-2570.(SCI源刊)
[9]Z.L.Long*,Y.C.Zhou,L.Xiao.Characterizationofblackchromateconversioncoatingontheelectrodepositedzinc-ironalloy,AppliedSurfaceScience,2003,218:123-136.(SCI源刊)
[10]Z.L.Long*,C.Q.Yang,Y.C.Zhou.Chromateconversioncoatingtreatmentsforelectrodepositedzinc-ironalloycoatings,TransactionsoftheInstituteofMetalFinishing,2003,81:1-6.(EI源刊)
[11]Z.L.Long*,Y.C.Zhou,Y.H.Zhuang,R.Z.Chen,J.Q.Liu,X.Y.Wang.PhaserelationintheNd-Al-Sisystemat5000C,JournalofAlloysandCompounds,2001,325:190-193.(SCI,EI源刊)
[12]Z.L.Long*,Y.C.Zhou,Y.H.Zhuang,R.Z.Chen,J.Q.Liu,Theisothermalsection(5000C)ofthephasediagramofNi-A1-Siternarysystem,TransactionsofNonferrousMetalsSocietyofChina,2001,11(2):278-280.(SCI,EI源刊)
[13]Z.L.Long*,Y.C.Zhou,Asurfacestudyoftheblackchromateconversionfilmonthezinc-ironalloydeposit,MechanicsandMaterialEngineeringforScienceandExperiments,SciencePress,NewYorkLtd.,2001,421-425.(ISTP收录)
[14]Y.H.Ding,P.Zhang,Z.L.Long,Y.Jiang,F.Xu.MorphologyandelectrochemicalpropertiesofAldopedLiNi1/3Co1/3Mn1/3O2nanofiberspreparedbyelectrospinning,JournalofAlloysandCompounds,2009,487:507-510.(SCI,EI源刊)
[15]Y.H.Ding,W.Di,Y.Jiang,F.Xu,Z.L.Long,F.M.Ren,P.Zhang.Themorphologicalevolution,mechanicalpropertiesandionicconductivitiesofelectrospinningP(VDF-HFP)membranesatvarioustemperatures,Ionics,2009,15:731-734.(SCI,EI源刊)
[16]H.M.Ren,Y.H.Ding,Y.Jiang,F.Xu,Z.L.Long,P.Zhang.SynthesisandpropertiesofZnOnanofiberspreparedbyelectrospinning,JournalofSol-GelScienceandTechnology,2009,52:287-290.(SCI,EI源刊)
[17]Y.H.Ding,P.Zhang,Z.L.Long,Y.Jiang,F.Xu,W.Di.TheionicconductivityandmechanicalpropertyofelectrospunP(VdF-HFP)/PMMAmembranesforlithiumionbatteries.Journalofmembranescience,2009,329:56-59.(SCI,EI源刊)
[18]Y.H.Ding,P.Zhang,Z.L.Long,Y.Jiang,J.R.Yin,F.Xu,Y.D.Zuo.TheelasticmoduleofAgnanowirespreparedfromelectrochemicaldeposition.JournalofAlloysandCompounds,2009,474:223-225.(SCI,EI源刊)
[19]Y.H.Ding,P.Zhang,Z.LLong,Y.Jiang,D.S.Gao.Themorphology,structureandelectrochemicalpropertiesofLiNi1/3Mn1/3Co1/3O2preparedbyelectrospunmethod,JournalofAlloysandCompounds,2008,462:340-342.(SCI源刊)
[20]Y.H.Ding,P.Zhang,Z.L.Long,Y.Jiang,F.Xu,J.G.Lei.FabricationandphotocatalyticpropertyofTiO2nanofibers,JournalofSol-GelScienceandTechnology,2008,46:176-179.(SCI源刊)
[21]Y.H.Ding,P.Zhang,Z.L.Long,Y.Jiang,F.Xu,W.Di.PreparationofPVdF-basedelectrospunmembranesandtheirapplicationasseparators,ScienceandTechnologyofAdvancedMaterials,2008,9:015005.(SCI源刊)
[22]Y.H.Ding,P.Zhang,Z.L.Long,Y.Jiang,J.N.Huang,W.J.Yan,G.Liu,SynthesisandelectrochemicalpropertiesofCo3O4nanofibersasanodematerialsforlithium-ionbatteries,MaterialsLetters,2008,62:3410-3412.(SCI源刊)
[23]危洪清,龙志林*,张志纯,李乡安,彭建,张平.块体非晶合金的黏度与玻璃形成能力的关系,物理学报,2009,58(4):2556-2564.(SCI源刊)
[24]彭建,龙志林*,危洪清,李乡安,张志纯.铁基块体非晶合金在纳米压痕过程中的蠕变行为,物理学报,2009,58(6):4059-4065.(SCI源刊)
[25]危洪清,龙志林*,张志纯,李乡安,彭建.基于特征温度的玻璃形成能力判据的分析,中国有色金属学报,2009,19(1):127-133.(SCIE收录,EI源刊)
[26]张志纯,龙志林*,危洪清,李乡安,彭建,唐平.Fe75-xMxHf3Y2B20(M=Co,Nb;x=0,4)块体非晶合金的制备及其热、软磁性能.稀有金属材料与工程,2009,38(3):481-484.(SCIE收录,EI源刊)
[27]张志纯,龙志林*,李乡安,彭建.Fe-Co-B-Si-Nb-Cr块体非晶合金在纳米压痕过程中的变形行为,中国有色金属学报,2009,19(7):1310-1315.(SCIE收录,EI源刊)
[28]张志纯,龙志林*,彭建,危洪清,唐平,邵勇.Fe73-xNb4Hf3YxB20(x=0-3at.%)块体非晶合金的形成及性能,中国有色金属学报,2009,19(3):523-528.(SCIE收录,EI源刊)
[29]张志纯,龙志林*,彭建,危洪清,唐平,李乡安.Fe-Co-B-Si-Nb-Cr软磁块体非晶合金的制备及性能,稀有金属材料与工程,2010,39(1):162-168.(SCIE收录,EI源刊)
[30]危洪清,龙志林*,彭建,张志纯,李乡安.块体非晶合金玻璃形成能力的新判据,材料科学与工程学报,2009,27(5):692-695.(CSCD收录)
[31]张平,李乡安,龙志林.钨纤维增强块体金属玻璃基复合材料压缩变形的有限元分析,湘潭大学自然科学学报,2009,31(2):44-50.
[32]C.Q.Yang,Y.C.Zhou,Z.L.Long.Electrodepositionandphysico-chemicalpropertiesofZn-Fealloycoatingsfromsulfatesolution,JournalofMaterialsScienceLetters,2002,21:1677-1680.(SCI源刊)
[33]C.Q.Yang,Z.L.Long,Y.Pan,Y.C.Zhou.Surfacemorphologyandphasestructureinvestigationofzincandzinc-irondepositselectrodepositedfromsulfatesolution.MechanicsandMaterialEngineeringforScienceandExperiments,SciencePress,NewYorkLtd,2001,432-434.(ISTP收录)
[34]C.Q.Yang,Z.L.Long,Y.C.Zhou.AsulphatebathforthepreparationofZn-Fealloycoatings,TransactionsoftheInstituteofMetalFinishing,2002,80(5):161-163.(EI源刊)
[35]许福,龙志林*,彭建,张平.块体非晶合金剪切带的原子力纳米压痕行为,中国有色金属学报,2011,21(6):1444-1449.(EI源刊)
[36]廖光开,李乡安,邹萍,陈舒敏,龙志林*.基于均匀化方法的钨丝增强锆基块体非晶复合材料等效弹性常数预测,中国有色金属学报,2014,24(6):1449-1458.(EI源刊)
[37]F.Xu,Z.L.Long*,X.H.Deng,P.Zhang.LoadingratesensitivityofnanoindentationcreepbehaviorinaFe-basedbulkmetallicglass,TransactionsofNonferrousMetalsSocietyofChina,2013,23:1646-1651.(EI源刊,SCIE收录)
[38]危洪清,龙志林,许福,张平,唐翌.Cu45Zr55-xAlx(x=3,7,12)块体非晶合金的第一性原理分子动力学模拟研究,物理学报,2014,63(11):118101.(SCI源刊)
[39]F.Xu,Y.H.Ding,X.H.Deng,P.Zhang,Z.L.Long.Indentationsizeeffectsinthenano-andmicro-hardnessofaFe-basedbulkmetallicglass,PhysicaB,2014,450:84-89.(SCI源刊)
[40]廖光开,龙志林*,杨妙,陈舒敏,邹萍,钨纤维增强锆基块体非晶复合材料的黏弹性响应,2014,24(11):2762-2768.(EI源刊)
[41]邹萍,钟鸣,龙志林*,陈舒敏,廖光开,杜雪林.Mohr-Coulomb屈服准则与Drucker-Prager屈服准则在块体非晶合金中的应用,中国有色金属学报,2015,25(5):1200-1208.(EI源刊)
[42]廖光开,龙志林*,刘为,邹萍,张志洋.分数阶流变模型在块体非晶合金纳米压痕蠕变行为研究的应用,物理学报,2015,64(13):136101.(SCI源刊)
[43]赵卫锋,曹勇龙,周靖,张武东,龙志林*.薄壁方钢管/竹胶合板组合空芯柱偏压试验研究,建筑材料学报,2015,18(4):606-612.(EI源刊)
[44]赵卫锋,张武东,周靖,曹勇龙,龙志林*.薄壁方型钢管/竹胶板组合空芯柱轴心抗压性能,农业工程学报,2014,30(6):37-45.(EI源刊)
[45]W.F.Zhao,J.Zhou,Z.L.Long*.Compressiontestsonsquare,thin-walledsteeltube/bamboo-plywoodcompositehollowcolumns,ScienceandEngineeringofCompositeMaterials,2016,23(5):511-522.(SCI源刊)
[46]W.F.Zhao,X.Q.Hu,Z.L.Long*.Seismicductilityreductionofflexural-typestructureswithverticalirregularities,TheOpenCivilEngineeringJournal,2016,10:1-11.(SCI源刊)
[47]许福,李科峰,邓旭辉,张平,龙志林*.基于分数阶微分流变模型的非晶合金黏弹性行为及流变本构参数研究,物理学报,2015,65(4):046101.(SCI源刊)
[48]赵卫锋,谷伟,周靖,龙志林*.带约束拉杆钢管/竹胶板组合空芯短柱的偏心抗压性能.农业工程学报,2016,32(15):75-82.(EI源刊)
[49]Z.M.Yang,P.Zhang,Y.H.Ding,Y.Jiang,Z.L.Long,W.L.Dai.FacilesynthesisofAg/ZnOheterostructuresassistedbyuv-irradiationhighlyphotocatalyticpropertyandenhancedphotostability.MaterialsResearchBulletin,2011,46:1625-1631.(SCI源刊)
[50]赵卫锋,李欣俊,刘正才,龙志林.高阶振型阻尼对混凝土框剪结构抗震延性折减系数的影响.湘潭大学自然科学学报,2015,37(1):24-30.
[51]赵卫锋,何方平,刘田,龙志林.水平与竖向近场强震作用下混凝土框架结构的抗剪性能.湘潭大学自然科学学报,2015,37(2):45-52.
[52]唐东峰,张平,龙志林,胡仕刚,吴笑峰.MOS器件直接隧穿栅电流及其对CMOS逻辑电路的影响.中南大学学报(自然科学版),2013,44(4):1438-1443.
[53]赵卫锋,唐凯,周靖,龙志林*.带约束拉杆薄壁型钢管/胶合竹板组合空芯短柱偏心抗压性能,农业工程学报,2016,32(15):75-82.(EI源刊)
[54]赵卫锋,屈鹏,周靖,龙志林*.带约束拉杆方形薄壁钢管/竹胶合板组合空芯短柱轴心抗压性能.复合材料学报,2016,33(10):2325-2335.(EI源刊)
[55]Z.L.Long*,W.Liu,M.Zhong,Y.Zhang,M.S.Z.Zhao,G.K.Liao,Z.Chen,Anewcorrelationbetweenthecharacteristicstemperatureandglass-formingabilityforbulkmetallicglasses,JournalofThermalAnalysisandCalorimetry,2018,132:1645-1660.(SCI源刊)
[56]G.K.Liao,Z.L.Long*,M.S.Z.Zhao,L.Peng,W.Chai,Z.H.Ping,NanoindentationstudyonthecharacteristicofsheartransformationzoneinaPd-basedbulkmetallicglassduringserratedflow,PhysicaB:CondensedMatter,2018,534:163-168.(SCI源刊)
[57]G.K.Liao,Z.L.Long*,M.S.Z.Zhao,M.Zhong,W.Liu,W.Chai,SerratedflowbehaviorinaPd-basedbulkmetallicglassundernanoindentation,JournalofNon-CrystallineSolids,2017,460:47-53.(SCI源刊)
[58]G.K.Liao,Z.L.Long*,M.S.Z.Zhao,L.Peng,W.Chai,X.J.Xu,Z.H.Ping,Y.Zhang,C.P.Yan.NanoindentationstudyofthecreepbehaviorinaFe-basedbulkmetallicglass,MaterialsResearchExpress,2017,4:115202.(SCI源刊)
[59]Z.H.Ping,M.Zhong,Z.L.Long*,X.J.Xu,G.K.Liao,H.Chen.Universalpercolationthresholdforductile-brittletransitionofamorphousalloys,JournalofNon-CrystallineSolids,2018,488:14-18.(SCI源刊)
[60]平志海,钟鸣,龙志林*.基于逾渗理论的非晶合金屈服行为研究,物理学报,2017,66:186101.(SCI源刊)
[61]X.J.Xu,Z.L.Long*,W.Liu,G.K.Liao.Effectsoffragilityandreducedglasstransitiontemperatureontheglassformationabilityofamorphousalloys,MaterialsResearchExpress,2017,4:115201.(SCI源刊)
[62]X.J.Xu,Z.L.Long*,Z.H.Ping,C.P.Yan,W.Chai.Correlationsbetweenplasticdeformationcapacityandfragility/characteristicfreevolumeinamorphousalloys,MaterialsResearchExpress,2019,6:015201.(SCI源刊)
[63]旷杜敏,龙志林*,周益春,任辉启,等.珊瑚礁岩土材料的物理力学性能研究综述,湘潭大学学报自然科版,2018,40(5):108-126
[64]柴维,龙志林*,旷杜敏,陈佳敏.闫超萍.直剪剪切速率对钙质砂强度及变形特征的影响,岩土力学,2019,40:359-366.(EI源刊)
[65]闫超萍,龙志林*,周益春,旷杜敏,陈佳敏.钙质砂剪切特性的围压效应和粒径效应研究,岩土力学,2020,41:1-11.(EI源刊)
[66]旷杜敏,龙志林*,闫超萍,陈佳敏.基于BP神经网络的岩土胶结材料率效应预测研究,岩土力学,2019,40:390-399.(EI源刊)
[67]F.L.Kuang,Z.Li,Z.L.Long,M.W.Liu.Simulationsofelectricalpropertiesofcylindrical3d-trenchelectricalsidetectorsunderdifferentradiationfluencesandmipincidentposition.IOPConf.Series:MaterialsScienceandEngineering,2019,479:012029-1-012029-5.(SCI源刊)
[68]O.Ikechukwu,Z.L.Long,I.O.Moses,O.Moses.TowardsenhancingtheeffectivenessofclassroomdesignsfornaturalventilationcomfortinYola,Nigeria,OpenJournalofEnergyEfficiency,2019,8:129-148.(SCI源刊)
[69]R.J.Deng,Z.L.Long*,L.Peng,D.M.Kuang,B.Y.Ren.Anewmathematicalexpressionfortherelationbetweencharacteristictemperatureandglass-formingabilityofmetallicglasses,JournalofNon-CrystallineSolids,2019(https://doi.org/10.1016/j.jnoncrysol.2019.119829)(SCI源刊)
[70]D.M.Kuang,Z.L.Long*,R.Q.Guo,T.Zhao,K.Wu.Experimentalandnumericalstudyonthefragmentationmechanismofasinglecalcareoussandparticleundernormalcompression,FrontiersofStructuralandCivilEngineering.2019(Accepted)(SCI源刊)
[71]D.M.Kuang,Z.L.Long*,R.Q.Guo,P.Y.Yu.Experimentalandnumericalinvestigationonsizeeffectoncrushingbehaviorsofsinglecalcareoussandparticles,MarineGeoresources&Geotechnology,2020(Tolinktothisarticle:https://doi.org/10.1080/1064119X.2020.1725194)(SCI源刊)
[72]D.M.Kuang,Z.L.Long*,etal.NumericalinvestigationonthecushionandsizeeffectduringsingleparticlecrushingviaDEM,ActaMechanicaSolidaSinica,2020(Accepted)(SCI源刊)
[73]赵明胜子,龙志林*,廖光开,彭黎,徐小巾.非晶合金形变中剪切转变区体积的变化趋势,2017年全国塑性力学会议,长沙,2017.10.27-30.
[74]平志海,龙志林*,廖光开,柴维,徐小巾,张雲,颜文俊,陈卓.非晶合金韧脆转变的普适阈值,2017年全国塑性力学会议,长沙,2017.10.27-30.
[75]廖光开,龙志林*,赵明胜子,彭黎,平志海,闫超萍.非晶合金在纳米压痕蠕变过程中的微观结构演化,2017年全国塑性力学会议,长沙,2017.10.27-30.
[76]徐小巾.块体非晶合金的脆值参数与其剪切带形成之间的内在关联,2017年全国塑性力学会议,长沙,2017.10.27-30
[77]许福,曾楠,李科锋,邓旭辉,龙志林,张平.两类块体非晶合金的室温纳米压痕应力松弛行为研究,湖南省力学学会2015学术年会,湘潭,2015.12.18-19.