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准一维梯状结构化合物Sr14-xCaxCu24O41磁化率随外磁场的变化性质

汪丽莉 , , 熊锐 , 胡妮 , 林颖 , 朱本鹏 , 黄平 , 汤五丰 , 余祖兴 , 汤征 , 石兢

低温物理学报 doi:10.3969/j.issn.1000-3258.2007.03.003

采用常规的固相反应方法制备了Sr14-xCaxCu24O41系列样品(x=0.0,3.5,6.0,8.4).X-ray衍射结果显示,所有样品均为单相,并且随着掺杂离子含量的增加,样品的晶格常数a,b,c的值均逐渐减小.在10 K~200 K温度范围内测量了不同磁场强度(H=1 T,3 T,5 T)Ca掺杂样品(x=0,3.5,6,8.4)的磁化率温度曲线.磁化率测量结果表明,磁场的增强导致居里-外斯贡献降低,并且导致自旋能隙变小.进一步拟合结果表明,参与磁化率贡献的自旋数目随Ca掺杂浓度的变化不明显,而随磁场强度的增大而减小.

关键词: 强关联 , Sr14-xCaxCu24O41 , 自旋梯状结构 , 磁化率

环氧粉末涂层在高温稀氯化钠溶液中介质输行为研究

王震宇 , 李劲 , , 张立新 , 史志明

涂料工业 doi:10.3969/j.issn.0253-4312.2000.08.002

利用静态浸泡法通过绘制增重率-时间曲线及采用红外光谱研究了环氧粉末涂层在高温稀氯化钠溶液中抗介质渗透能力.探讨了高温(120℃)下该涂层在蒸馏水及稀氯化钠溶液中 ?传输行为.试验结果表明,交联度小的环氧涂层在氯化钠溶液中的增重率较水中的增重率无明显的变化;而交职大的环氧涂层在氯化钠溶液中的增重率则小于其在水中的增重率.

关键词: 环氧树脂 , 粉末涂料 , 介质传输 , 静态浸泡

第四届“吴仲华奖励基金”评选出获奖者

工程热物理学报

根据《吴仲华奖励基金章程》(吴奖[2008]01号),经各高等院校、中国工程热物理学会和中国科学院工程热物理研究所认真评选和推荐,吴仲华奖励基金理事会评审并确定授予青年学者戴、罗坤、唐桂华“吴仲华优秀青年学者奖”,授予程雪涛等10位同学“吴仲华优秀学生奖”。

关键词: 基金 , 奖励 , 评选 , 获奖者 , 中国科学院 , 青年学者 , 物理研究所 , 高等院校

初论胶东福山北部地区斑岩成矿系统

孙丰月 , 丁正江 , 刘殿浩 , 张丕建 , 于晓飞

黄金 doi:10.3969/j.issn.1001-1277.2011.01.004

福山北部地区位于胶东栖(霞)-蓬(莱)-福(山)成矿带北段.该区粉子山群大面积出露,褶皱断裂构造发育,中生代燕山晚期德山超单元幸福山单元和雨山超单元王家庄单元、水夼单元斑岩出露广泛,形成一套完整的斑岩多金属成矿系统.与该成矿系统有关的矿床成矿系列包括邢家山(钼钨)、王家庄(铜锌)、杜家崖(金银)和隆口(金铜)等矿床式.从现有研究成果看,该区具有较大找矿潜力,中-低温热液脉型、斑岩-矽卡岩型多金属矿应作为找矿主攻方向.

关键词: 斑岩 , 成矿系统 , 成矿系列 , 胶东 , 福山北部

原位生成金属间化合物/Fe-Cr-Ni复合材料的耐蚀性

杨霓虹 , , 张玉生

中国腐蚀与防护学报

原位生成金属间化合物/Fe-Cr-Ni复合材料的耐蚀性杨霓虹,柯,张玉生(西南交通大学成都610031)(中国科学院金属腐蚀与防护研究所沈阳110015)1前言铬、镍和铝含量很高的铁基合金在一定条件下可生成大量均匀分布的金属间化合物,形成原位生成的金属间化合物/Fe-Cr-Ni复合材料l‘].金属间化合物具有很高的硬度,而且耐蚀性良好,同具有优良耐蚀性的Fe-Cr-Ni合金基体复合所形成的?...

关键词: null , Intermetallics / Fe-Cr-Ni composite , Passivity

氢蚀程度对20G钢K_(IC)及△K_(th)的影响

郦建立 , 李晓刚 , 谢根栓 , 李彦 , 姚治铭 , 李劲 ,

中国腐蚀与防护学报

氢蚀程度对20G钢K_(IC)及△K_(th)的影响郦建立,李晓刚,谢根栓,李彦,姚治铭,李劲,柯(中国科学院金属腐蚀与防护研究所腐蚀与防护国家重点实验室沈阳110015)(抚顺石油学院,抚顺石油三厂)1引言氢腐蚀(HA)使材料的力学性能和疲劳断裂性能严重恶化,是化学工业、石油化工、煤转化工业临氨装置主要的损坏形式。对临氢后的2.25Cr-IMo$疲劳性能、断裂性能的研究结果表明,氢蚀使西K?...

关键词: null , Fracture toughness , Fatigue threshold , 20G carbon steel

点阵式LCD在电磁阀检测仪中的应用

李伟 , 周凤星

液晶与显示 doi:10.3969/j.issn.1007-2780.2010.01.022

采用点阵式LCD作为电磁阀检测仪的显示终端,介绍了一种在C语言环境下,在液晶显示屏上实现多级嵌套菜单显示并通过键盘和单片机通信的简便方法.给出了一个结构紧凑、实用的程序模型,编写了实际中经常用到的一些程序,这些程序已在福E6000/L仿真器中编译通过,在实际的检测过程中能让LCD正确显示电磁阀检测仪采集的电压、电流、压降等实时数据,还能很好地嵌套显示电磁阀检测仪其他的一些相关信息,显示图像稳定、清晰.

关键词: LCD , 汉字字模 , AT89C55 , C语言 , 嵌套菜单

INVESTIGATION OF HYDROGEN INDUCED DUCTILE BRITTLE TRANSITION IN 7175 ALUMINUM ALLOY

金属学报(英文版)

桑危郑牛樱裕桑牵粒裕桑希。希啤。龋伲模遥希牵牛。桑危模眨茫牛摹。模眨茫裕桑蹋拧。拢遥桑裕裕蹋拧。裕遥粒危樱桑裕桑希。桑。罚保罚怠。粒蹋眨停桑危眨汀。粒蹋蹋希?##2##3##4##5INVESTIGATIONOFHYDROGENINDUCEDDUCTILEBRITTLETRANSITIONIN7175ALUMINUMALLOY$R.G.Seng:B.JZhong,MG.ZengandP.Geng(DepartmentofMaterialsScierce,ScienceCollege,NorthearsternUniveisity,Shenyang110006,ChinaMaruscriptreceived4September1995inrevisedform20April1996)Abstrac:Effectsofhydrogenonthemechanicalpropertiesofdifferentlyaged7175aluminumalloyswereinvestigatedbyusingcathodicH-permeation,slowstrainratetensionandsoon.Theresultsindicatethatboththeyieldstressandthepercentagereductionofareadecreasewithincreasinghydrogenchargingtime,andthedegreeofreductiondecreasesasagingtimeincreasesforthesamehydrogenchargingtime.Keywords:hydrogeninducedductile-brittletransition,7175aluminumalloy,mechanicalproperty,cathodicH-permeation1.IntroductionForalongtimehydrogenembrittlementproblemwasthoughttobeabsentinhighstrengthaluminiumalloybecausethesolutiondegreeofhydrogeninaluminumatcommontemperatureandpressureisverysmall.However,hydrogenembrittlementphenomenonwasfoundinaluminumalloyduringtheinvestigationofstresscorrosionandcorrosionfatigue[1-5].Therehavebeenonlyafewreportsofhydrogeninducedsofteningandhardening.Inthispaper,theeffectsofhydrogenonmechanicalpropertiesof7175aluminumalloywereinvestigatedbyusingcathodicalchargingwithhydrogenandslowtensiontests.2.ExperimentalProcedureTheexperimentalmaterialwas7175aluminumalloyforgingintheformofa43mminthicknessandwithcomposition(wt%).5.41Zn,2.54Mg.1.49Cu,0.22Cr,0.1Mn.0.1Ti,0.16Fe.0.11Si,balancedbyA1.Alloyplateof1.5mminthicknesswasobtainedbyhot(465℃)andtoldrollingto83%reductioninthickness.Thelongaxisofhydrogenchargedspecimensisalongtherollingdirection.Allspecimensweresolidsolutionedat480℃for70min,followedtyimmediatequenchinginwaterandthenagedat140℃for6h(A),16h(B)and98h(C).Thetreatmentof6hiscorrespondingtotheunderagedstate.16hthefirstpeak-agedstateand98hthesecondpeak-agedstate.Thespecimenswerepolishedsuccessivelyusingemerypaperbeforehydrogencharging.Thetensilespecimenswerecathodicallychargedina2NH_2SO_4solutionwithasmallamountofAs_2O_3forpromotinghydrogenabsorption,andwithacurrentdensityof20±1mA/cm ̄2atroomtemperature.ThehydrogencontentanalysiswascarriedoutonanLT-1Amodelionmassmicroprobeafterthesputteringdepthreached8nm.Theioncurrentsofhydrogenandaluminuminvariousagedstateswererecordedunderthesamecondition.ThetensiletestswereperformedonanAG-10TAmodeltestmachinewhichwascontrolledbycomputer.3.ExperimentalResultsTheratioofioncurrentstrengthofhydrogentoaluminumisrelatedtohydrogenconcentrationinhydrogenchargedspecimen.TheresultswereshowninTable1Thehydrogencontentincreaseswiththeincreaseincharingtime.Ofthethreeagedstates,theunderagedspecimenhasthehighesthydrogencontent.Theratioofyieldstrengthofhydrogenchargedandunchargedspecimenschangeswithhydrogenchargingtime,asshowninFig.1Itcanbeseenthattheyieldstrengthofhydrogenchargedspecimendecreasewithincreasinghydrogenchargingtime.Atthesamechargingtime,theyieldstressdecreasestheleastinthesecondpeak-agedstate,anddecreasesthemostintheunderagedstate.Itindicatesthattheunderagedspecimenismostsensitivetohydrogeninducedsoftening,whichisconsistentwiththeresultsofanotherhighstrengthaluminumalloy[6].TherelativechangesoftheradioofreductionofareawithhydrogenchargingtimearesummarizedinFig.2,whereΨ ̄0andΨ ̄Harethepercentagereductionofareaofthesamplewithoutandwithhydrogenchargingrespectively.Theradioofreductionofareareduceswhenhydrogenchargingtimeincreases,andthedecreasingdegreeofreductionofareaincreaseswithincreasingagingtime,ie,,theunderagedstateisthemostsensitivetohydrogenembrittlement.4.DiscussionItisknownfromtheresultsabovethatcathodicalchargingwithhydrogenleadstotheobviousdecreaseinthetensilestrengthandplasticityThisisbecausealargeamountofsolidsolutionhydrogenentersthespecimenintheprocessofhydrogenchargingSolidsolutionhydrogenisliabletoenterthecentreofdislocationundertheactionofdislocationtrap,henceraisingthemovabilityofdislocation.Thereforethedislocationsinhydrogenchargedspecimenmoveeasierthaninunchargedspecimen.soresultinginthereductionofyieldstrength[7].Whendislocationstartstomove,thecrystallatticeresistance(P-Nforce)whichitmustovercomeisgivenby:whereμismodulusofshear,visPoissonratio,aisspanofslipplane,bisatomspanofslipdirection.Moreover.theotherresistanceofdislocationmotionmayarisefromtheelasticinteractionofdislocation,theactionwithtreedislocationandetc.,itcanbeexpressedasfollows:whereαisconstant,XisdislocationspanSotheresistanceofdislocationmotioncanbewrittenasfollows:Becausehydrogenatomsreducetheatombondingstrengthafterhydrogencharging,shearmodulusμdecreasesandresultsinthereductionoff,therebytheyieldstressdecreases.Asthecentreofdislocationistheseriousdistortionzoneoflattice.thestresscanberelaxedafterhydrogenatomstuffing,andthesystemenergydecreases.Thusthecentreofdislocationisastrongtrapofhydrogen[8].Therefore,amovabledislocationcaptureshydrogenandmigratestograinboundaries.phaseboundariesorsurfaceofthespecimen,promotingthecrackiesformationandgrowth,thuscausingthelossofplasticity.Sincethelocalenrichmentofhydrogenisrealizedbydislocationtransporting(inthestageofdeformation),thelargerthereductionofyieldstress.theearlierarehydrogenatomstransportedtotheplaceofenrichment.Inaddition,thedamageofatombondingstrengthinducedbyhydrogenmakesthefracturestressdecrease[9]:whereCHishydrogenconcentration.σ_thisfracturestrengthbeforehydrogenchargingandisfracturestrengthafterhydrogencharging.Eq.(4)showsthatthematerialsmaybefracturedatalowerstraini.e.,brittlefractureoccurs.5.Conclusions(1)Hydrogencontentofdifferentlyagedspecimensincreaseswithincreasinghydrogenchargingtimethecapabilityofthealloytoabsorbhydrogeninunderagedstateisthestrongest.(2)Theyieldstressaswellasthepercentagereductionofareaof7175aluminumalloydecreaseashydrogenchargingtimeincreasesundervariousagedstates.(3)Underagedstateismostsensitivetohydrogeninducedsofteningandhardening.(4)Anexplanationwasofferedforthephenomenonofhydrogeninducedsofteninginthestageofdeformation,andhardeninginthestageoffracture.REFERENCES||1G.KKock,Corrosion35(1979)73.2M.K.TsengandH.LMarcus,Scr.Metall.15(1981)427.3PSFao.M.GaoandR.P.Wei,Scr.Metall.19(1985)265.4R.G.SongandM.K.TsengJ.NortheasternUniversity15(1994)5(inChinese).5R.K.Viswanadham,T.S.sunandJ.A.S.Green,Metall.Trans.11A(1980)85.6J.Liu,M.KTsengandB.R.Liu.NonferrousMiningandMetallrgy5(1989)33(inChinese).7LChen,WXChen,ZHLiuandZ.Q.Hu,InFrocofthe1stNationalConfonAl-LiAlloys(Sheryang.China,1991)p.328(inChinese).8Z.HLiuL.ChenW.XChenY.X.ShaoandZ.Q.Hu,InProc.ofthe1stNationalConfonAl-LiAlloys(Shenyang,China,1991)p.334(inChinese).9R.A.OrianiandF.H.Josephic,ActaMetall.22(1974)1065.##61G.KKock,Corrosion35(1979)73.2M.K.TsengandH.LMarcus,Scr.Metall.15(1981)427.3PSFao.M.GaoandR.P.Wei,Scr.Metall.19(1985)265.4R.G.SongandM.K.TsengJ.NortheasternUniversity15(1994)5(inChinese).5R.K.Viswanadham,T.S.sunandJ.A.S.Green,Metall.Trans.11A(1980)85.6J.Liu,M.KTsengandB.R.Liu.NonferrousMiningandMetallrgy5(1989)33(inChinese).7LChen,WXChen,ZHLiuandZ.Q.Hu,InFrocofthe1stNationalConfonAl-LiAlloys(Sheryang.China,1991)p.328(inChinese).8Z.HLiuL.ChenW.XChenY.X.ShaoandZ.Q.Hu,InProc.ofthe1stNationalConfonAl-LiAlloys(Shenyang,China,1991)p.334(inChinese).9R.A.OrianiandF.H.Josephic,ActaMetall.22(1974)1065.##A##BINVESTIGATION OF HYDROGEN INDUCED DUCTILE BRITTLE TRANSITION IN 7175 ALUMINUM ALLOY$$$$R.G.Seng: B.J Zhong, MG. Zeng and P. Geng(Department of Materials Scierce, Science College,Northearstern Univeisity, Shenyang 110006, China Maruscript received 4 September 1995 in revised form 20 April 1996)Abstrac:Effects of hydrogen on the mechanical properties of differently aged 7175 aluminum alloys were investigated by using cathodic H-permeation, slow strain rate tension and so on. The results indicate that both the yield stress and the percentage reduction of area decrease with increasing hydrogen charging time, and the degree of reduction decreases as aging time increases for the same hydrogen charging time.

关键词: :hydrogen induced ductile-brittle transition , null , null , null

化学镀镍研讨班在京举办

腐蚀学报(英文)

化学镀镍研讨班在京举办中国腐蚀与防护学会咨询工作委员会于93年12月7日至14日在北京科技大学举办了全国化学镀镍技术研讨班.来自全国25个单位近30人参加了研讨班.研讨班学员大多来自从事化学镀镍的厂矿企业.中科院金属研究所姜晓霞研究员,机电部武汉材保所沈高级工程师,北京科技大学杨德钧教授,孙冬柏博士分别就化学镀镍工艺的原理、特点、应用、设备以及质量控制、三废处理等广大工程技术人员所关心的主题进行了系统,全面?...

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