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中国腐蚀与防护学报  2004, Vol. 24 Issue (1): 55-64     
  综述 本期目录 | 过刊浏览 |
铝合金剥蚀敏感性及其定量研究方法
李劲风;曹发和;张昭;程英亮;张鉴清;曹楚南
长沙中南大学材料科学与工程学院
Review on Exfoliation Susceptibility of Aluminium Alloys and Quantitative Measurement Method
Li Jinfeng;Cao Fahe;Zhang Zhao;Cheng Yingliang;Zhang Jianqing;Cao Chu'nan
全文: PDF(242 KB)  
摘要: 介绍了铝合金剥蚀敏感性的3种定量研究方法:电化学阻抗法、腐蚀产物外推力测试法及电阻法,阐述了这3种方法的原理和特点。报道了2′′′、5′′′、7′′′系及Al-Li合金的剥蚀敏感性与其热处理制度的关系及其影响机制。同时提出了有关铝合金剥蚀尚需进一步研究的几个方面。
关键词 铝合金剥蚀敏感性定量研究热处理    
Abstract:Some quantitative measurement methods for exfoliation susceptibility of aluminium alloys are introduced, including electrochemical impedance measurement, electrical resistance survey and wedging force measurement of corrosion product. The basic theories and features of these methods are described. The effects of heat teat treatment, such as aging and annealing, on exfoliation susceptibility of 2′′′, 5′′′, 7′′′ series and Al-Li alloys are reviewed. The effect mechanisms, such as nonuniform distribution of aging microstructure and difference of electrochemical properties among the constituent phases, are illuminated. Meanwhile, some aspects of next research objectives are outlined.
Key wordsaluminium alloys    exfoliation susceptibility    quantitative measurement    heat treatment
收稿日期: 2003-01-22     
ZTFLH:  TG174.3/O646  
通讯作者: 李劲风     E-mail: jfli2000@163.net

引用本文:

李劲风; 曹发和; 张昭; 程英亮; 张鉴清; 曹楚南 . 铝合金剥蚀敏感性及其定量研究方法[J]. 中国腐蚀与防护学报, 2004, 24(1): 55-64 .
Li Jinfeng, Cao Fahe, Zhang Zhao, Cheng Yingliang, Zhang Jianqing, Cao Chu'nan. Review on Exfoliation Susceptibility of Aluminium Alloys and Quantitative Measurement Method. J Chin Soc Corr Pro, 2004, 24(1): 55-64 .

链接本文:

https://www.jcscp.org/CN/      或      https://www.jcscp.org/CN/Y2004/V24/I1/55

[1]TanChengyu,ZhengZiqiao,PanYin,etal.EffectofexfoliationcorrosiononmechanicalpropertiesofAl-Lialloy[A].ZhengZiqiao.Proceedingsofthe2 ndNationalSymposiumonAl-LiAlloys[C].Changsha:Publi cationPressofCentralSouthUniversityofTechnology,1993,154-157.(谭澄宇,郑子樵,潘颖等.剥落腐蚀对铝锂合金力学性能的影响[A].郑子樵主编.第二届全国铝锂合金研讨会论文集[C].长沙:中南工业大学出版社,1993,154-157)
[2]HeJianping,ChenWenli,XuWei,FanWeixun.EffectofexfoliationonstructureandtensilestrengthofLC4CSaluminiumalloyatconstanttem perature[J].J .NanjingUniv.ofAeronauticsandAstronautics,1999,31(5):575-579(何建平,陈文理,许玮,樊蔚勋.恒温剥蚀对LC4CS铝合金结构和力学性能的影响[J].南京航空航天大学学报,1999,31(5):575-579)
[3]HeBin,SunYouchao,FanWeixun.Influenceofexfoliationcorrosiononthefatigueofaluminiumalloy[J].J.NanjingUniv.ofAeronauticsandAstronautics.1998,30(3):306-310(贺斌,孙有朝,樊蔚勋.剥蚀对铝合金疲劳性能的影响[J].南京航空航天大学学报,1998,30(3):306-310)
[4]Exfoliationcorrosionsusceptibilityin2×××and7×××seriesalu miniumalloys(EXCOtest)[S].ASTMG34-79.
[5]Aceticacid-saltspray(fog)testing-methodB287[S].ASTMG85-ANNEXA1
[6]Standardtestmethodforvisualassessmentofexfoliationcorrosionsus ceptibilityof5×××seriesaluminiumalloys(ASSETtest)[S].ASTMG67-86.
[7]CondeA ,DamboreneaJde.Electrochemicalmodellingofexfoliationcor rosionbehaviorof8090alloy[J].Electrochim.Acta,1998,43(8):849-860
[8]CondeA ,DamboreneaJde.Evaluationofexfoliationsusceptibilitybymeansofelectrochemicalimpedancespectroscopy[J].Corros.Sci.,2000,42(8):1363-1377
[9]RobinsonMJ.Theroleofwedgingstressintheexfoliationcorrosionofhighstrengthaluminiumalloy[J].Corros.Sci.,1983,25(2):887-899
[10]HabashiM ,BonteE ,GallandJ,BoduJJ.Quantitativemeasurementsofthedegreeofexfoliationonaluminiumalloys[J].Corros.Sci.,1993,35(1-4):169-183
[11]KellyDJ,RobinsonMJ.InfluenceofheattreatmentandgrainshapeonexfoliationcorrosionofAl-Lialloy8090[J].Corrosion,1993,49(10):787-795
[12]LiDi,GuoBaolan,ZhangYumei.Themeasurementoftheexfoliationrateofaluminiumalloys[J].ActaAeronauticaAstronauticaSinica,1995,16(3):304-308(李荻,郭宝兰,张玉梅.硬铝合金剥蚀速率测试方法[J].航空学报,1995,16(3):304-308)
[13]LiDi,ZuoShangzhi,GuoBaolan.StudyonexfoliationcorrosionbehaviorofLY12aluminiumalloy[J].J .Chin.Soc.Corros.Prot.,1995,15(3):203-208(李荻,左尚志,郭宝兰.LY12铝合金剥蚀行为的研究[J].中国腐蚀与防护学报,1995,15(3):203-208)
[14]GanZhu,WangYun.Influenceofmicrostructureonexfoliationcorrosionof2024aluminiumalloy[J].Corros.Sci.Prot.Technol.,1995,7(3):208-209(甘株,王云.微观结构对LY12铝合金剥蚀的影响[J].腐蚀科学与防护技术,1995,7(3):208-209)
[15]JiangTaifu.ElectricalconductivityandexfoliationcorrosionresistanceofLF6alloy[J].AluminiumAlloyFabrication,1997,20(6):46-49(蒋太富.LF6合金的电导率及耐剥蚀性能[J].铝加工,1997,20(6):46-49)
[16]GaoShuming,LiGuangyu,FengZhenghai.Studyofcorrosionresistanceof5A06aluminiumalloyplate[J].LightAlloyFabricationTechnol.,2001,29(6):45-47(高淑明,李广宇,冯正海.5A06铝合金板材腐蚀性能的研究[J].轻合金加工技术,2001,29(6):45-47)
[17]WangZhutang.Applicationofaluminiumalloytoshipcraftandrelationbetweenexfoliationandtechnologicalprocessof5083alloy[J].LightAlloyFabricationTechnol.,1993,21(10):6-11(王祝堂.铝合金在船舶中的应用暨5083合金的剥落腐蚀与工艺因素的关系[J].轻合金加工技术,1993,21(10):6-11)
[18]ZhangQi,LiDi,DingXueyi,ZhangYumei.ElectrochemicalmechanismofintergranularcorrosionofLC4aluminiumalloy[J].Mater.Prot.,1996,29(8):6-8(张琦,李荻,丁学谊,张玉梅.LC4铝合金晶间腐蚀的电化学机理[J].材料保护,1996,29(8):6-8)
[19]LuXiaomei.Studyonexfoliationcorrosionofextrudedsectionalalumini umalloys[J].Xi’anAircraftSci.Technol.,1995,(2):12-16,11(鲁效梅.铝合金挤压型材剥层腐蚀的研究[J].西飞科技,1995,(2):12-16,11)
[20]ZhangYun,ZhuZiyong,WangZhengfu,LiuYulin,etal.IntergranularandexfoliationcorrosionofAl-Lialloys[J].J.Chin.Soc.Corros.Prot.,1992,12(2):180-184(张匀,朱自勇,王政富,刘玉林等.铝锂合金晶间腐蚀和剥落腐蚀行为[J].中国腐蚀与防护学报,1992,12(2):180-184)
[21]LiJinfeng,ZhangZhao,CaoFahe,ChengYingliang,etal.ExfoliationcorrosionandelectrochemicalimpedancebehaviourofLC4alloy[J].TheChin.J.NonferrousMetals,2002,12(6):1189-1193(李劲风,张昭,曹发和,程英亮等.LC4铝合金剥蚀及其电化学阻抗谱行为[J].中国有色金属学报,2002,12(6):1189-1193)
[22]YanDajing,ZhangYudong,WangHongshun,WangShaoman,etal.Ef fectofagingconditiononSCCresistanceandexfoliationbehaviourof7475and7075Alalloys[J].Mater.Eng.,1993,(2):13-16(阎大京,张宇东,王洪顺,王少曼等.时效制度对7475和7075铝合金应力腐蚀和剥层腐蚀性能的影响[J].材料工程,1993,(2):13-16)
[23]ZhangYun,LiuYulin,ZhaoHong′en,HuZhuangqi.Intergranularandexfoliationcorrosionbehaviourof8090Al-Lialloy[J].ActaMetall.Sin.,1991,21(4):B271-B277(张匀,刘玉林,赵洪恩,胡壮麒.8090Al-Li合金晶间腐蚀与剥落腐蚀性能研究[J].金属学报,1991,21(4):B271-B277)
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