新型鋼鐵材料的設(shè)計(jì)_第1頁(yè)
新型鋼鐵材料的設(shè)計(jì)_第2頁(yè)
新型鋼鐵材料的設(shè)計(jì)_第3頁(yè)
新型鋼鐵材料的設(shè)計(jì)_第4頁(yè)
新型鋼鐵材料的設(shè)計(jì)_第5頁(yè)
已閱讀5頁(yè),還剩7頁(yè)未讀 繼續(xù)免費(fèi)閱讀

下載本文檔

版權(quán)說(shuō)明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請(qǐng)進(jìn)行舉報(bào)或認(rèn)領(lǐng)

文檔簡(jiǎn)介

1、一、項(xiàng)目名稱:新型鋼鐵材料的設(shè)計(jì)、制備和性能研究二、推薦單位:中國(guó)科學(xué)院沈陽(yáng)分院三、項(xiàng)目簡(jiǎn)介:本項(xiàng)目以發(fā)展新型鋼鐵材料為目標(biāo),近10年來(lái)在多項(xiàng)國(guó)家及遼寧省科研項(xiàng)目的支持下,以合金化和結(jié)構(gòu)/功能一體化設(shè)計(jì)、顯微組織控制等為主要學(xué)術(shù)思想,通過(guò)成分優(yōu)化、純凈化冶煉、組織細(xì)化、相變控制、強(qiáng)韌化匹配、生物醫(yī)學(xué)功能化等途徑,在新型鋼鐵材料的設(shè)計(jì)、制備及性能研究方面開(kāi)展了系統(tǒng)而深入的研究工作,取得了眾多高水平研究成果,發(fā)展了一批具有自主知識(shí)產(chǎn)權(quán)和市場(chǎng)應(yīng)用前景的新型鋼鐵材料,在國(guó)內(nèi)外相關(guān)領(lǐng)域形成了很高的影響力。項(xiàng)目研究成果對(duì)于推動(dòng)我國(guó)鋼鐵材料的發(fā)展與應(yīng)用,提升鋼鐵材料的品質(zhì)具有重要指導(dǎo)意義。項(xiàng)目取得的主要?jiǎng)?chuàng)新

2、性研究成果包括:(1)高強(qiáng)高韌鋼鐵材料的設(shè)計(jì)理論,以解決鋼鐵結(jié)構(gòu)材料強(qiáng)度與塑(韌)性之間的矛盾為切入點(diǎn),形成了通過(guò)成分優(yōu)化、純凈化、細(xì)晶化和復(fù)相組織控制等手段獲得高強(qiáng)高韌鋼鐵材料的設(shè)計(jì)理論與制備技術(shù)。(2)結(jié)構(gòu)/功能一體化鋼鐵新材料的設(shè)計(jì)理論,以環(huán)境保護(hù)和生物醫(yī)用為主要方向,提出了具有抗菌抑菌、生物醫(yī)學(xué)等功能特性的結(jié)構(gòu)/功能一體化鋼鐵新材料設(shè)計(jì)思想,通過(guò)添加銅元素、以氮代鎳等方式,使不銹鋼具備了強(qiáng)烈和廣譜殺菌特性、在人體中無(wú)有害鎳離子溶出、抗凝血、抗感染、降低支架內(nèi)再狹窄等特殊功能。相關(guān)研究成果具有獨(dú)創(chuàng)性。(3)研究開(kāi)發(fā)出一批具有自主知識(shí)產(chǎn)權(quán)和應(yīng)用價(jià)值的高性能鋼鐵新材料,包括X80級(jí)高強(qiáng)度管線

3、鋼、X120級(jí)超高強(qiáng)度管線鋼、X65級(jí)抗大變形管線鋼、2800MPa級(jí)超高強(qiáng)度馬氏體時(shí)效鋼、2400MPa級(jí)無(wú)鉆超高強(qiáng)度馬氏體時(shí)效鋼、應(yīng)變誘發(fā)相變型高強(qiáng)韌馬氏體時(shí)效不銹鋼、氮化物強(qiáng)化型高鉻耐熱鋼、高速列車轉(zhuǎn)向架用特種彈簧鋼、系列抗菌不銹鋼、醫(yī)用高氮無(wú)鎳奧氏體不銹鋼、抗感染醫(yī)用不銹鋼、抗支架內(nèi)再狹窄不銹鋼等鋼鐵新材料,性能均達(dá)到國(guó)際先進(jìn)水平。在國(guó)內(nèi)外相關(guān)學(xué)術(shù)期刊上總計(jì)發(fā)表文章140篇(其中SCI收錄76篇,EI收錄125篇),他引次數(shù)超過(guò)400次,授權(quán)23項(xiàng)國(guó)家發(fā)明專利。四、完成人:第1完成人:楊柯學(xué)術(shù)貢獻(xiàn):全面負(fù)責(zé)項(xiàng)目的總體設(shè)計(jì)和實(shí)施,課題申請(qǐng),國(guó)際合作項(xiàng)目的申請(qǐng)和執(zhí)行,提出一系列創(chuàng)新學(xué)術(shù)思想

4、。通過(guò)純凈化、細(xì)晶化、均質(zhì)化來(lái)顯著提高高性能結(jié)構(gòu)鋼鐵材料的強(qiáng)度以及改善其強(qiáng)韌性配合。創(chuàng)造性地提出了鋼鐵材料的結(jié)構(gòu)/生物醫(yī)學(xué)功能一體化的創(chuàng)新思想,在國(guó)際上首次設(shè)計(jì)并開(kāi)發(fā)出具有抗細(xì)菌感染、抑制支架內(nèi)再狹窄等先進(jìn)生物醫(yī)學(xué)功能的醫(yī)用不銹鋼新材料。第2完成人:?jiǎn)我糟y學(xué)術(shù)貢獻(xiàn):超高強(qiáng)度管線鋼等新型微合金化鋼的成分設(shè)計(jì)、純凈化制備、控制軋制、相變特性、性能優(yōu)化等方面研究,發(fā)展出X80、X100、X120等高強(qiáng)度級(jí)別的新型高性能管線鋼原型材料。對(duì)管線鋼的組織構(gòu)成及其特征鑒別進(jìn)行了創(chuàng)造性研究,在此基礎(chǔ)上,進(jìn)一步研究了管線鋼的大變形特性。同時(shí),還深入研究了管線鋼的抗H2S腐蝕機(jī)理和疲勞裂紋擴(kuò)展性能,為管線鋼的工程

5、應(yīng)用提供了可靠的理論支持。第3完成人:嚴(yán)偉學(xué)術(shù)貢獻(xiàn):參與管線鋼、高鉻耐熱鋼、低活化馬氏體鋼等材料研究工作,在耐熱鋼的組織演變和穩(wěn)定化方面進(jìn)行了深入的研究,在此基礎(chǔ)上創(chuàng)新地設(shè)計(jì)和制備出具有高組織穩(wěn)定性的氮化物強(qiáng)化耐熱鋼新材料。對(duì)微合金鋼中內(nèi)生氮化鈦夾雜物的形成微觀機(jī)制及其對(duì)材料力學(xué)性能的影響進(jìn)行了系統(tǒng)的研究,該創(chuàng)新研究工作對(duì)工業(yè)生產(chǎn)有重要指導(dǎo)意義。第4完成人:任伊賓學(xué)術(shù)貢獻(xiàn):在“以氮代鎳”的創(chuàng)新設(shè)計(jì)思想指導(dǎo)下,設(shè)計(jì)和制備出中國(guó)首個(gè)高氮無(wú)鎳醫(yī)用奧氏體不銹鋼新材料,并研究了高氮不銹鋼的結(jié)構(gòu)穩(wěn)定性、高氮不銹鋼的抗凝血行為及相關(guān)機(jī)制、氮對(duì)高氮不銹鋼中的力學(xué)行為等。該創(chuàng)新性研究工作極大地推進(jìn)了高氮無(wú)鎳不銹

6、鋼的臨床應(yīng)用進(jìn)程。第5完成人:王威學(xué)術(shù)貢獻(xiàn):通過(guò)純凈化手段制備出多種強(qiáng)度級(jí)別的馬氏體時(shí)效鋼,發(fā)展出目前國(guó)內(nèi)強(qiáng)度級(jí)別最高的2800MPa級(jí)馬氏體時(shí)效鋼。在形變誘發(fā)馬氏體時(shí)效鋼的研究基礎(chǔ)上,提出了馬氏體時(shí)效鋼梯度組織強(qiáng)化的創(chuàng)新性強(qiáng)韌化機(jī)制。另外,還提出了控制馬氏體時(shí)效鋼中析出相尺寸等級(jí)來(lái)提高馬氏體時(shí)效鋼的疲勞強(qiáng)度的創(chuàng)新性思想。五、論文論著目錄1、高性能管線鋼方面(1)“微型拉伸試樣的設(shè)計(jì)及其在高性能管線鋼研究中的應(yīng)用”,初蘊(yùn)清,段贊強(qiáng),董翰,楊柯,李守新,王中光,金屬學(xué)報(bào),Vol.36(2000),p625。(SCI)MCP工藝對(duì)X60管線鋼組織和性能的影響,趙明純,單以銀,曲錦波,楊柯,鄭磊,高

7、珊,金屬學(xué)報(bào),Vol.37(2001),No.2,179。(SCI)“電磁攪拌對(duì)管線鋼埋弧焊縫金屬低溫韌性的影響”,國(guó)旭明,錢百年,薜小懷,李晶麗,張艷,楊柯,金屬學(xué)報(bào),Vol.36(2000),177。(SCI)“加速冷卻對(duì)控軋管線鋼組織和性能的影響”,曲錦波,單以銀,趙明純,楊振國(guó),楊柯,高珊,鄭磊,鋼鐵,36(2001),No.9,46-49?!盁嶙冃院图铀倮鋮s對(duì)低碳微合金鋼組織的影響”,曲錦波,單以銀,趙明純,楊柯,高珊,鄭磊,鋼鐵研究學(xué)報(bào),13(2001),No.5,43-47。Influenceofhotdeformationandcoolingconditionsonthemic

8、rostructuresoflowcarbonmicroalloyedsteels,JinboQU,YiyinSHAN,MingchunZHAO,KeYANG,JournalofMaterialsScience&Technology,17(2001),S1,S135-S138.(SCI)“控制熱加工下管線鋼中針狀鐵素體的形成”,趙明純,單以銀,曲錦波,肖福仁,鐘勇,楊柯,金屬學(xué)報(bào),37(2001),No.8,820。(SCI)“熱變形工藝對(duì)超純凈管線鋼組織的影響”,鐘勇,肖福仁,王忠軍,單以銀,楊柯,材料研究學(xué)報(bào),17(2003),No.3,302。InvestigationontheH2S-

9、resistantbehaviorsofacicularferriteandultrafineferrite,Ming-ChunZhao,Yi-YingShan,Fu-RenXiao,KeYangandYu-HaiLi,MaterialsLetters,57(2002),p141-145.(SCI)Theeffectsofthermo-mechanicalcontrolprocessonmicrostructuresandmechanicalpropertiesofacommercialpipelinesteel,Ming-ChunZhao,KeYangandYiyingShan,Materi

10、alsScienceandEngineeringA,Vol.335(2002),14-20.(SCI)Comparisononstrengthandtoughnessbehaviorsofmicroalloyedpipelinesteelswithacicularferriteandultrafineferrite,Ming-ChunZhao,KeYangandYi-YinShan,MaterialsLetters,Vol.57(2003),1496-1500.(SCI)Roleofmicrostructureonsulfidestresscrackingofoilandgaspipeline

11、steels,Ming-ChunZhao,BeiTang,Yi-YinShanandKeYang,Metall.Mater.Trans.A,34(2003),May,1089-1096.(SCI)Acicularferriteformationduringhotplaterollingforpipelinesteels,Ming-ChunZhao,Yi-YinShan,Fu-RenXiaoandKeYang,JournalofMaterialsScienceandTechnology,19(2003),No.3,355-359.(SCI)Continuouscoolingtransformat

12、ionofundeformedanddeformedlowcarbonpipelinesteels,Ming-ChunZhao,KeYang,Fu-RenXiao,Yi-YinShan,MaterialsScienceandEngineeringA,355(2003),126-136.(SCI)“管線用超低碳鋼中針狀鐵素體的形成及強(qiáng)韌化行為”,趙明純,單以銀,楊柯,李玉海,蔣星華,材料研究學(xué)報(bào),Vol.16(2002),No.6,619。ProcessingofUltralowCarbonPipelineSteelswithAcicularFerrite,FurenXIAO,MingchunZ

13、HAO,YiyinSHAN,BoLIAO,KeYANG,JournalofMaterialsScience&Technology,20(2004),No.6,779-781.(SCI)“管線鋼疲勞特性研究進(jìn)展”,鐘勇,單以銀,霍春勇,楊柯,材料導(dǎo)報(bào),17(2003),No.8,11。“管線鋼的疲勞裂紋擴(kuò)展速率與疲勞壽命的關(guān)系研究”,鐘勇,肖福仁,單以銀,楊柯,金屬學(xué)報(bào),41(2005),No.5,523-528。(SCI)Strengtheningandimprovementofsulfidestresscrackingresistanceinacicularferritepipelinest

14、eelsbynano-sizedcarbonitrides,Ming-ChunZhao,KeYang,ScriptaMaterialia,52(2005),881-886.(SCI)Differenceintheroleofnon-quenchagingonmechanicalpropertiesbetweenacicularferriteandferrite-pearlitepipelinesteels,Ming-ChunZHAO,ToshihiroHANAMURA,HaiQIU,KotobuNAGAI,Yi-YinSHANandKeYANG,ISIJInternational,45(200

15、5),116-120.(SCI)Lathboundarythin-filmmartensiteinacicularferriteultralowcarbonpipelinesteels,Ming-ChunZhao,ToshihiroHanamura,HaiQiu,KeYang,MaterialsScienceandEngineeringA,395(2005),327-332.(SCI)(22)PrecipitationofCarbonitridesandTheirStrengtheninguponNon-quenchAgingforMicro-alloyedAcicularFerritePip

16、elineSteels,Ming-ChunZhao,ToshihiroHanamura,HaiQiuandKeYang,Mater.Trans.,46(2005),No.4,784-789.(SCI)(23)EffectsofNano-sizedMicroalloyedCarbonitridesand(23)High-densityPinnedDislocationsonSulfideStressCrackingResistanceofPipelineSteels,Ming-ChunZhao,KeYang,JournalofMaterialsResearch,20(2005),No.9,224

17、8.(SCI)Effectoftoughnessonlowcyclefatiguebehaviorofpipelinesteels,YongZhong,YiyinShan,FurenXiao,KeYang,MaterialsLetters,59(2005),1780-1784.(SCI)GraingrowthandHall-Petchrelationinsubmicron-grainedferrite/cementitesteelwithnano-sizedcementiteparticlesinaheterogeneousanddensedistribution,Ming-ChunZhao,

18、ToshihiroHanamura,HaiQiu,KotobuNagaiandKeYang,ScriptaMaterialia,vol.54(6),2006,1193-1197.(SCI)Dependenceofstrengthandstrength-elongationbalanceonthevolumefractionofcementiteparticlesinultrafinegrainedferrite/cementitesteels,Ming-ChunZhao,ToshihiroHanamura,HaiQiu,KotobuNagai,KeYang,ScriptaMaterialia,

19、vol.54(7),2006,1385-1389.(SCI)InsituTEMstudyoftheeffectofM/Afilmsatgrainboundariesoncrackpropagationinanultra-fineacicularferritepipelinesteel,YongZhong,FurenXiao,JingwuZhang,YiyinShan,WeiWang,KeYang,ActaMaterialia,Volume54(2006),Pages435-443.(SCI)(Top50HighlyCitedArticlesbyChineseMainlandAuthors,20

20、06-2010)Acicularferriticmicrostructureofalow-carbonMn-Mo-Nbmicroalloyedpipelinesteel,FurenXiao,BoLiao,DeliangRen,YiyinShan,KeYang,MaterialsCharacterization,54(2005),305-314.(SCI)Isothermaltransformationoflow-carbonmicroalloyedsteels,FurenXiao,BoLiao,YiyinShan,KeYang,MaterialsCharacterization,54(2005

21、),417-423.(SCI)EffectofSulfurContentonHydrogenInducedCrackinginPipelineSteels,KaiLiu,YiyinShan,JiayanXu,KeYang,Iron&Steel,Suppl.40(2005),189.Challengeofmechanicalpropertiesofanacicularferritepipelinesteel,FurenXiao,BoLiao,YiyinShan,GuiyingQiao,YongZhong,ChunlingZhangandKeYang,MaterialsScienceandEngi

22、neering:A,Vol.431(2006),Issues1-2,15September,41-52.(SCI)“超低碳微合金管線鋼中針狀鐵素體的組成對(duì)強(qiáng)度的影響”,王偉,單以銀,楊柯,金屬學(xué)報(bào),43(2007),No.6,578-582。(SCI)(33)添加Mo-B對(duì)超高強(qiáng)度管線鋼相變組織的影響,魏偉,單以銀,楊柯,王永權(quán),金屬學(xué)報(bào),43(2007),No.9,943-948。(SCI)Effectofappliedstressandmicrostructureonsulfidestresscrackingresistanceofpipelinesteelssubjectedtohydr

23、ogensulfide,Ming-ChunZhao,MingLiu,AndrejAntrens,Yi-YinShanandK.Yang,MaterialsScienceandEngineeringA,(2007),(SCI)StudyofHighStrengthPipelineSteelswithDifferentMicrostructures,WeiWang,YiyinShan,KeYang,MaterialsScienceandEngineeringA,Volume502(2009),Issues1-2,38-44.Relationamongrollingparameters,micros

24、tructuresandmechanicalpropertiesinanacicularferritepipelinesteel,WeiWang,WeiYan,LinZhu,PingHu,YiyinShan,KeYang,MaterialsandDesign,Volume30(2009),Issue93436-3443.(SCI)Processingofultralowcarbonpipelinesteelswithacicularferrite,XiaoFuren,LiaoBo,ShanYiyin,YangKe,JournalofMaterialsScienceandTechnology,2

25、0(2004),p779(.SCI)Acicularferriticmicrostructureofalow-carbonMnMoNbmicroalloyedpipelinesteel,FurenXiao,BoLiao,DeliangRen,YiyinShan,KeYang,MaterialsCharacterization,54(2005),p305-314,2005.(SCI)Challengeofmechanicalpropertiesofanacicularferritepipelinesteel,Fu-RenXiao,BoLiao*,Yi-YinShan,Gui-YingQiao,Y

26、ongZhong,ChunlingZhang,KeYang,MaterialsScienceandEngineeringA,431(2006),p4152.(SCI).Isothermaltransformationoflow-carbonmicroalloyedsteels,FurenXiao,BoLiao,YiyinShan,KeYang,MaterialsCharacterization,54(2005),p417-422.(SCI)(41)冷卻速度對(duì)低碳微合金鋼組織的影響,肖福仁,廖波,單以銀,趙明純,楊柯,NGSTEEL2001,Beijing,Nov.13-26,2001:357-

27、361。(42)“熱變形對(duì)低碳微合金鋼連續(xù)冷卻轉(zhuǎn)變的影響”,單以銀,肖福仁,趙明純,楊柯,廖波,NGSTEEL2001,eijing,Nov.13-26,2001:349-356。2、高強(qiáng)韌馬氏體時(shí)效鋼方面(1)超純凈18Ni馬氏體時(shí)效鋼的晶粒尺寸及其對(duì)拉伸性能的影響,何毅,楊柯,曲文生,孔凡亞,蘇國(guó)越,金屬學(xué)報(bào),Vol.38(2002),No.1,53-57。(SCI)(2)固溶溫度對(duì)超純凈18Ni(350)馬氏體時(shí)效鋼斷裂韌性及微觀組織的影響,何毅,劉凱,楊柯,金屬學(xué)報(bào),Vol.39(2003),No.1,381-386(3)超純凈化18Ni(350)馬氏體時(shí)效鋼的研究,何毅,楊柯,曲文生

28、,孔凡亞,蘇國(guó)越,金屬學(xué)報(bào),Vol.37(2001),No.8,852-856。(SCI)(4)2400MPa級(jí)無(wú)鉆馬氏體時(shí)效鋼的力學(xué)性能初探,何毅,楊柯,材料工程,2002年增刊,325。(5)超高強(qiáng)度18Ni無(wú)鉆馬氏體時(shí)效鋼的力學(xué)性能,何毅,楊柯,孔凡亞,曲文生,蘇國(guó)越,金屬學(xué)報(bào),38(2002),第3期,278-282。(SCI)EffectofSolutionTemperatureonGrainGrowthandMechanicalPropertiesofAHighStrength18NiCo-freeMaragingSteel,HeYi,YangKe,QuWensheng,KongF

29、anyaandSuGuoyue,J.MaterialsScienceandTechnology,19(2003),117-124.(SCI)StrengtheningandTougheningofA2800MPaGradeMaragingSteel,YiHe,KeYang,WenshengQu,FanyaKongandGuoyueSu,MaterialsLetter,56(2002),p763-769.(SCI)2400MPa級(jí)無(wú)鉆馬氏體時(shí)效鋼的力學(xué)性能初探,何毅,楊柯,材料工程,2002年增刊,325。Effectsofsolutiontreatmenttemperatureongraing

30、rowthandmechanicalpropertiesofhighstrength18%Nicobaltfreemaragingsteel,Y.He,K.Yang,W.-SQu,F.Y.KongandG.Y.Su,J.Mater.Sci.Technol.,Vol.19(2003),117.(SCI)(10)EffectofSolutionTemperatureonFractureToughnessandMicrostructureof18(350)MaragingSteel,YiHE,KaiLiu,KeYANG,ActaMetallurgicalSinica,2003,4,65.Micros

31、tructureandMechanicalPropertiesofa2000MPaCo-FreeMaragingSteelafterAgingat753K,Y.He,K.YANG,W.SHAandD.J.CLELAND,Metall.Mater.Trans.,Vol.35A(2004),2747.(SCI)MicrostructureandMechanicalPropertiesofa2000MPaGradeCo-FreeMaragingSteel,YIHe,KEYANGandWEISHA,Metall.Mater.Trans.,Vol.36A(2005),2273.(SCI)AgeHarde

32、ningandMechanicalPropertiesofa2400MPaGradeCobalt-FreeMaragingSteel,YIHE,KEYANG,WEISHA,ZHANGLIGUOandKAILIU,Metall.Mater.Trans.A,vol.37(2006),1107.(SCI)EffectofHeatTreatmentonPriorGrainSizeandMechanicalPropertyofaMaragingStainlessSteel,KaiLiu,YiyinShan,ZhiyongYang,JianxiongLiang,LunLuandKeYang,Journal

33、ofMaterialsScienceandTechnology,22(2006),No.6,769.(SCI)“未再結(jié)晶固溶處理對(duì)無(wú)鈷?cǎi)R氏體時(shí)效鋼組織和拉伸性能的影響”,季長(zhǎng)恩,王威,單以銀,楊柯,鋼鐵,43(2008),第9期,75-78。GeneticDesignandCharacterizationofNovelUltraHighStrengthStainlessSteelsStrengthenedbyNi3TiIntermetallicNanoprecipitates,W.Xu,P.E.J.Rivera-Diaz-del-Castillo,W.Wang,K.Yang,V.Blinznu

34、k,L.A.I.Kestens,Z.vanderZwaag,ActaMaterialia,Vol.58(2010),No.10,3582-3593.(SCI)Studyonfatiguepropertyofanew2.8GPagrademaragingsteel,WeiWang,WeiYan,QiqiangDuan,YiyinShan,ZhefengZhang,KeYang,MaterialsScienceandEngineeringA,527(2010),3057-3063.(SCI)“新型形變誘發(fā)馬氏體時(shí)效不銹鋼的組織與性能”,鄧?yán)?,?yán)偉,王威,單以銀,楊柯,材料熱處理學(xué)報(bào),32(201

35、1),pp.92-96。Anewultrahigh-strengthstainlesssteelstrengthenedbyvariouscoexistingnanoprecipitates,W.Xu,P.E.J.Rivera-Diaz-del-Castillo,W.Yan,K.Yang,D.SanMartin,L.A.I.Kestens,S.vanderZwaag,ActaMaterialia,58(2010),pp.4067-4075.3、高氮不銹鋼方面“真空感應(yīng)爐冶煉高氮鋼的影響因素研究”,任伊賓,楊柯,張炳春,肖克沈,梁勇,材料與冶金學(xué)報(bào),3(2004),No.1,8-12?!坝谜婵崭?/p>

36、應(yīng)爐冶煉高氮不銹鋼的工藝研究”,任伊賓,楊柯,張炳春,楊慧賓,梁勇,特殊鋼,(2004),No.4,13。(3)高氮奧氏體不銹鋼與316L不銹鋼的冷變形行為研究,王松濤,楊柯,單以銀,李來(lái)風(fēng),金屬學(xué)報(bào),43(2007),No.2,171-176。(SCI)(4)冷變形對(duì)高氮奧氏體不銹鋼組織與力學(xué)行為的影響,王松濤,楊柯,單以銀,李來(lái)風(fēng),金屬學(xué)報(bào),43(2007),No.7,713-718。(SCI)CavitationerosionresistanceofhighnitrogenstainlesssteelincomparisonwithlowNcontentCrMnNstainlessste

37、el,Y.X.Qiao,Y.G.Zheng,X.Q,Wu,W.Ke,K.YangandZ.H.Jiang,Tribology,Vol.1(2007),No.3,165.(SCI)PlasticDeformationandFractureBehaviorsofNitrogenAlloyedAusteniticStainlessSteels,SongtaoWang,KeYang,YiyinShanandLaifengLi,MaterialsScienceandEngineeringA,490(2008),95-104.(SCI)InfluenceofColdWorkonPittingCorrosi

38、onBehaviorofaHighNitrogenStainlessSteel,YaoFu,XingqiangWu,EnhouHan,WeiKe,KeYang,andZhouhuaJiang,JournalofTheElectrochemicalSociety,155(2008),No.8,455-463.(SCI)TemperaturedependenceoftensilebehaviorofahighnitrogenFe-Cr-Mn-Mostainlesssteel,WeiWang,SongtaoWang,KeYang,YiyinShan,MaterialsandDesign,Volume

39、30(2009),Issue5,1822-1824.(SCI)EffectsofNitrogenonthePassivationofNicel-FreeHighNitrogenStainlessSteelsinAcidicChlorideSolutions,YFu,XQWu,EHHan,WKe,KYang,ZHJiang,ElectrochimicaActa,2009,54(16):4005-4014.(SCI)EffectsofColdWorandSensitiationTreatmentontheCorrosionesistanceofHighNitrogenStainlessSteeli

40、nChlorideSolutions,YFu,XQWu,EHHan,WKe,KYang,ZHJiang,ElectrochimicaActa,2009,54(5):1618-1629.(SCI)InvestigationonPittingCorrosionofNicelFreeandManganeseAlloyedHighNitrogenStainlessSteels,XQWu,YFu,JHuang,EHHan,WKe,KYang,ZHJiang,JournalofMaterialsEngineeringandPerformance,2009,18(3):287-298.(SCI)Temper

41、aturedependenceoftensileehaviorsofnitrogenalloyedausteniticstainlesssteelsWeiWang,WeiYan,KeYang,andYiyinShan,Journalofmaterialsengineeringperformance,2010,(19):1214-1219(SCI)UniformCorrosionandIntergranularCorrosionehaviorofNicelFreeandManganeseAlloyedHighNitrogenStainlessSteels,XQWu,SXu,JHuang,EHHa

42、n,WKe,KYang,ZHJiang,MaterialsandCorrosion,2008,59(8):676-684.(SCI)InVitroiocompatiilityofaNeHighNitrogenNicelFreeAusteniticStainlessSteel,Yen,HJYang,KYang,CZhang,KeyEngineeringMaterials,2007,342-343:605-608.(15)鎳對(duì)醫(yī)用金屬材料血小板粘附的影響,馬丹,任伊賓,李英民,黃晶晶,張炳春,楊柯,沈陽(yáng)工業(yè)大學(xué)學(xué)報(bào),30(2008)55-59。(16)雙相不銹鋼表面奧氏體高氮層的制備技術(shù),王耘濤,

43、毛萍莉,陳立佳,任伊賓,張炳春,楊柯,沈陽(yáng)工業(yè)大學(xué)學(xué)報(bào),29(2007)285-288。(17)氮對(duì)冷變形高氮奧氏體不銹鋼的微觀結(jié)構(gòu)的作用機(jī)理,王威,陳淑梅,嚴(yán)偉,趙立君,單以銀,楊柯,材料熱處理學(xué)報(bào),31(2010),59-65。4、新型耐熱鋼方面StudyonLavesphaseinanadvancedheat-resistantsteel,P.HU,W.YAN,W.SHA,W.WANG,Z.l.GUO,Y.Y.SHAN,K.YANG.,Front.Mater.Sci.China,30(2009),pp.434-441.Nitride-strengthenedreducedactivati

44、onferritic/martensiticsteels,PingHu,WeiYan,Li-fenDeng,WeiSha,Yi-yinShan,KeYang,FusionEngineeringandDesign,85(2010),1632-1637.(SCI)MicrostructureEvolutionofa10CrHeat-resistantSteelduringHighTemperatureCreep,PingHu,WeiYan,WeiSha,WeiWang,YiyinShan,KeYang,JournalofMaterialsScience&Technology,27(2011),pp

45、.344-351.(SCI)Constitutiveequationsoftheminimumcreepratefor9%Crheatresistantsteels,YunXiangChen,WeiYan,WeiWang,YiYinShan,KeYang,MaterialScienceEngineerA,534(2012),649-653.(SCI)“EffectofheattreatmentonmicrostructureandhardnessofEurofer97,EuroferODSandT92steels”,Lu,Z.,Faulkner,R.G.,Riddle,N.,Martino,F

46、.D.,Yang,K.,JournalofNuclearMaterials,386-388(2009),p445-448.(SCI)EffectofCarbonReductionontheToughnessof9CrWVTaNSteels,WeiYan,PingHu,LifenDeng,WeiWang,WeiSha,YiyinShan,KeYang,MetallurgicalMaterialsTransactionA,online.(SCI)“CLAM鋼在600c長(zhǎng)期時(shí)效過(guò)程中的組織與性能變化,楊春光,嚴(yán)偉,王威,單以銀,楊柯,吳宜燦.,金屬學(xué)報(bào),47(2011)pp.917-920。(SCI

47、)“T/P91鋼在高應(yīng)力條件下蠕變行為的CDM模型模擬”,陳云翔,嚴(yán)偉,胡平,單以銀,楊柯,金屬學(xué)報(bào),47(2011),pp.1372-1377。(SCI)“釔對(duì)9Cr-2WVTa低活化馬氏體鋼理學(xué)性能的影響”,嚴(yán)偉,胡平,王偉,趙立君,單以銀,楊柯,核科學(xué)與工程,29(2009),No.1,50?!?Cr馬氏體耐熱鋼膨脹-溫度曲線上的斜率變化研究”,胡平,嚴(yán)偉,單以銀,楊柯,金屬熱處理,34(2009),52-55?!靶滦湍蜔徜揘F12的熱處理工藝”,嚴(yán)偉,胡平,趙立君,單以銀,楊柯,金屬熱處理,34(2009),59-61。5、新型醫(yī)用不銹鋼方面(1)新型醫(yī)用不銹鋼性能研究,任伊賓,楊柯,

48、張炳春,梁勇,功能材料,Suppl.,35(2004),2351-2354。(2)Nickel-freestainlesssteelformedicalapplications,RenYibin.YangKe.ZhangBingchun,WangYaqingandLiangYong,JournalofMaterialsScienceandTechnology,20(2004),571.(SCI)(3)含Cu抗菌不銹鋼的微觀組織及其抗菌性能,陳四紅,呂曼祺,張敬黨,董加勝,楊柯,金屬學(xué)報(bào),40(2004),314。(SCI)(4)“抗菌不銹鋼及其在醫(yī)療衛(wèi)生領(lǐng)域中的應(yīng)用”,楊柯,陳四紅,董加勝,宋

49、莉,呂曼祺,中國(guó)公共關(guān)系,21(增刊),2005,97-100。(5)含Cu鐵素體抗菌不銹鋼的抗菌特性,呂曼祺,陳四紅,董加勝,楊柯,材料研究學(xué)報(bào),19(2005年),6期,581-588?!拌F素體抗菌不銹鋼的抗菌特性研究”,楊柯,陳四紅,董加勝,呂曼祺,金屬功能材料,12(2005年),6期,6-9?!拌F素體抗菌不銹鋼抗菌過(guò)程與機(jī)理初探”,呂曼祺,陳四紅,董加勝,楊柯,金屬功能材料,12(2005年),6期,10-13。(8)含Cu抗菌不銹鋼的工藝與耐蝕性能,楊柯,董加勝,陳四紅,呂曼祺,材料研究學(xué)報(bào),20(2006年),5期,524。(9)含La醫(yī)用316L不銹鋼的體外抗凝血性能研究,楊化

50、娟,楊柯,張炳春,金屬學(xué)報(bào),42(2006),No.9,959-964。PittingCorrosionResistanceofLaAdded316LStainlessSteelinSimulatedBodyFluids,HuajuanYang,KeYang,BingchunZhang,MaterialsLetters,61(2007),Issues4-5,1154-1157.(SCI)“含銅抗菌不銹鋼的抗菌特性研究”,南黎,劉永前,楊偉超,徐慧,李瑛,呂曼祺,楊柯,金屬學(xué)報(bào),43(2007),No.10,1065-1070。(SCI)Invitrostudiesofplateletadhes

51、iononmedicalnickel-freestainlesssteelsurface,YibinRen,KeYang,BingchunZhang,MaterialLetters,59(2005),1785-1789.(SCI)InVitroBiocompatibilityofANewHighNitrogenNickelFreeAusteniticStainlessSteel,YibinRen,HuajuanYang,KeYang,BingchunZhang,KeyEngineeringMaterials,342-343(2007),605-608.(SCI)AntibacterialMec

52、hanismofCopper-bearingAntibacterialStainlessSteelagainstE.Coli,LiNAN,WeichaoYANG,YongqianLIU,HuiXU,YingLI,ManqiLUandKeYANG,JournalofMaterialsScienceandTechnology,Vol.24(2008),No.2,197-201.(SCI)StudyonAntibacterialMechanismofCopper-bearingAusteniticStainlessSteelbyAtomicForceMicroscopy,LiNAN,Yongqian

53、LIU,ManqiLU,KeYANG,JournalofMaterialsScience:MaterialsinMedicine,19(2008),No.9,3057-3062.(SCI)“含銅馬氏體抗菌不銹鋼的研究”,劉永前,南黎,陳德敏,楊柯,稀有金屬材料與工程,37(2008),No.8,1380-1383。(SCI)StudyofCuIonsDissolutionfromCu-bearingAntibacterialStainlessSteel,NanLi,YangKe,JournalofMaterialsScienceandTechnology,26(2010),No.10,941-

54、944(.SCI)StudyofNickel-freeAusteniticStainlessSteelsforMedicalApplicationScienceandTechnologyofAdvancedMaterials,KeYangandYibinRen,ScienceandTechnologyofAdvancedMaterials,11(2010),(13pp).Effectofnitrogenonbloodcompatibilityofnickel-freehighnitrogenstainlesssteelforbiomaterial,P.Wan,Y.Ren,B.Zhang,K.Y

55、ang,MaterialsScienceandEngineering:C,30(2010),8,1183-1189.(SCI)“新型抗菌不銹鋼微螺釘種植體的細(xì)胞毒性分析”,張丹,張揚(yáng),盧利,楊柯,薛楠,中國(guó)組織工程與臨床康復(fù),2010(4),14(16):2916-2920。“抗菌不銹鋼材料的細(xì)胞毒性評(píng)價(jià)研究”,薛楠,張丹,張揚(yáng),楊柯,南黎,郭艷,口腔醫(yī)學(xué),30(2010),No.12,712-715?!搬t(yī)用不銹鋼的研究與發(fā)展”,楊柯,任伊賓,中國(guó)材料進(jìn)展,2010,12期:1-10.InvitroStudyonaNewHighNitrogenNickel-freeAusteniticStainlessSteelforCoronaryStents,YibinRen,PengWan,FengLiu,BingchunZhangandKeYang,JournalofMaterialsScienceandTechnology,27(2011),4,325-331.(SCI)Studyofcopperprecipitationbehavi

溫馨提示

  • 1. 本站所有資源如無(wú)特殊說(shuō)明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請(qǐng)下載最新的WinRAR軟件解壓。
  • 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請(qǐng)聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
  • 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁(yè)內(nèi)容里面會(huì)有圖紙預(yù)覽,若沒(méi)有圖紙預(yù)覽就沒(méi)有圖紙。
  • 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
  • 5. 人人文庫(kù)網(wǎng)僅提供信息存儲(chǔ)空間,僅對(duì)用戶上傳內(nèi)容的表現(xiàn)方式做保護(hù)處理,對(duì)用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對(duì)任何下載內(nèi)容負(fù)責(zé)。
  • 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請(qǐng)與我們聯(lián)系,我們立即糾正。
  • 7. 本站不保證下載資源的準(zhǔn)確性、安全性和完整性, 同時(shí)也不承擔(dān)用戶因使用這些下載資源對(duì)自己和他人造成任何形式的傷害或損失。

評(píng)論

0/150

提交評(píng)論