原子探针层析技术(APT)是具有原子尺度空间和质量分辨率的材料表征和分析手段.近几年来,在原子探针设备和数据软件分析技术方面有很大改善和进步.本文在介绍APT最新进展的基础上,以高强度低合金(HSLA)钢和铝合金为研究对象,讨论了APT在传统结构材料研究中的独特优势.
参考文献
[1] | Blavette D,Deconihout B,Bostel A,Sarrau J M,Bouet M,Menand A.Rev Sci Instrum,1993; 64:2911 |
[2] | Deconihout B,Bostel A,Bas P,Chambrel S,Letellier L,Danoix F,Blavette D.Appl Surf Sci,1994; 76-77:145 |
[3] | Blavette D,Deconihout B,Chambrel S,Bostel A.Ultramicroscopy,1998; 70:115 |
[4] | Müller E W,Panitz J A,McLane S B.Rev Sci Instrum,1968; 39:83 |
[5] | Cerezo A,Godfrey T J,Smith G D W.Rev Sci Instrum,1988; 59:862 |
[6] | Cerezo A,Smith G D W.Microchim Acta,1991; 104:401 |
[7] | Cerezo A,Godfrey T J,Sijbrandij S J,Smith G D W,Warren P J.Rev Sci Instrum,1998; 69:49 |
[8] | Vella A,Vurpillot F,Gault B,Menand A,Deconihout B.Phys Rev,2006; 73B:165416 |
[9] | Cerezo A,Clifton P H,Gomberg A,Smith G D W.Ultramicroscopy,2007; 107:720 |
[10] | Blavette D,Al-Kassab T,Cadel E,Mackel A,Vurpillot F,Cojocaru O,Deconihout B,Gilbert M.Int J Mater Res,2008; 99:454 |
[11] | Cerezo A,Clifton P H,Lozano-Perez S,Panayi P,Sha G,Smith G D W.Microsc Microanal,2007; 13:408 |
[12] | Kelly T F.Microsc Microanal,2011; 17:1 |
[13] | Kelly T F,Thompson K,Marquis E A,Larson D J.Microsc Today,2006; 14:34 |
[14] | Miller M K.Atom Probe Tomography:Analysis at the Atomic Level.New York:Kluwer Academic/Plenum Publishers,2000:1 |
[15] | Hellman O C,Vandenbroucke J A,Blatzdu Rivage J,Seidman D N.Mater Sci Eng,2002; A327:29 |
[16] | Vaumousse D,Cerezo A,Warren P J.Ultramicroscopy,2003; 95:215 |
[17] | Vurpillot F,DeGeuser F,DaCosta G,Blavette D,Microsc J.J Microsc,2004; 216:234 |
[18] | Stephenson L T,Moody M P,Liddicoat P V,Ringer S P.Microsc Microanal,2007; 13:448 |
[19] | Lefebvre W,Philippe T,Vurpillot F.Ultramicroscopy,2011; 111:200 |
[20] | Hyde J M,Marquis E A,Wilford K B,Williams T J.Ultramicroscopy,2011; 111:440 |
[21] | Thompson K,Flaitz P L,Ronsheim P,Larson D J,Kelly T F.Science,2007; 317:1370 |
[22] | Marquis E A,Miller M K,Blavette D,Ringer S P,Sudbrack C K,Smith G D W.MRS Bull,2009; 34:726 |
[23] | Seidman D N,Stiller K.MRS Bull,2009; 34:717 |
[24] | Miller M K,Forbes R G.Mater Charact,2009; 60:416 |
[25] | Kelly T F,Larson D J,Thompson K,Alvis R L,Bunton J H,Olson J D,Gorman B P.Ann Rev Mater Res,2007;37:681 |
[26] | Kelly T F,Larson D J.Ann Rev Mater Res,2012; 42:1 |
[27] | Kelly T F,Larson D J.MRS Bull,2012; 37:150 |
[28] | Kelly T F,Miller M K,Rajan K,Ringer S P.Microsc Microanal,2013; 19:652 |
[29] | Miller M K,Kelly T F,Rajan K,Ringer S P.Mater Today,2012; 15:158 |
[30] | Gault B,Moody M P,Cairney J M,Ringer S P.Mater Today,2012; 15:378 |
[31] | Zhou B X,Liu W Q.Mater Sci Technol,2007; 15:405(周邦新,刘文庆.材料科学与工艺,2007; 15:405) |
[32] | Zhou B X.Chin J Nat,2005; 27:125(周邦新.自然杂志,2005; 27:125) |
[33] | Liu Q D,Zhao S J.Metall Mater Trans,2013; 44A:163 |
[34] | Liu Q D,Liu W Q,Xiong X Y.J Mater Res,2012; 27:1060 |
[35] | Liu Q D,Zhao S J.MRS Commun,2012; 2:127 |
[36] | Kolli R P,Mao Z,Seidman D N,Keane D T.Appl Phys Lett,2007; 91:241903 |
[37] | Zhang Z W,Liu C T,Miller M K,Wang X,Wen Y R,Fujita T,Hirata A,Chen M W,Chen G,Chin B A.Sci Rep,2013; 3:1327 |
[38] | Clouet E,Laé L,(E)picier T,Lefebvre W,Nastar M,Deschamps A.Nat Mater,2006; 5:482 |
[39] | Liddicoat P V,Liao X Z,Zhao Y H,Zhu Y T,Murashkin M Y,Lavernia E J,Valiev R Z,Ringer S P.Nat Commun,2010; 1:63 |
[40] | Radmilovic V,Ophus C,Marquis E A,Rossell M D,Tolley A,Gautam A,Asta M,Dahmen U.Nat Mater,2011; 10:710 |
[41] | Zheng Z Q,Liu W Q,Liao Z Q,Ringer S P,Sha G.Acta Mater,2013; 61:3724 |
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