全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
金属学报  2013 

高分辨透射X射线三维成像在材料科学中的应用

DOI: 10.3724/SP.J.1037.2013.00107, PP. 897-910

Keywords: X射线,三维成像,材料科学,金属,复合材料,原位

Full-Text   Cite this paper   Add to My Lib

Abstract:

随着X射线光源、光学器件及图像分析技术的不断发展,微米甚至数十纳米空间分辨X射线三维数字化成像成为可能.在此基础上,提供了高分辨无损探测材料内部结构的技术和方法,预计高分辨X射线三维成像新技术将会进一步促进材料科学技术的发展.本文将简述X射线三维成像的产生背景和发展过程,介绍吸收衬度成像、相位衬度成像和全息成像的原理与特点,着重分析高分辨透射X射线三维成像在材料孔洞、裂纹与腐蚀、复合材料以及原位测试等方向的应用及其特点,比较同步辐射与实验室X射线高分辨透射三维成像技术的不同,以探讨高分辨透射X射线三维成像在材料科学研究中进一步应用的可能性.

References

[1]  http:/ /www.tms.org/Meetings/Specialty/3D2012/home.aspx
[2]  Ludwig W, King A, Reischig P, Herbig M, Lauridsen E M,Schmidt S, Proudhon H, Forest S, Cloetens P, du Roscoat S R,Buffiere J Y, Marrow T J, Poulsen H F. Mater Sci Eng, 2009;A524: 69
[3]  Salvo L, Cloetens P, Maire E, Zabler S, Blandin J J,Buffiere J Y, Ludwig W, Boller E, Bellet D, Josserond C.Nucl Instrum Meth, 2003; 200B: 273
[4]  Mobus G, Inkson B J. Mater Today, 2007; 10: 18
[5]  Epting W K, Gelb J, Litster S. Adv Funct Mater,2012; 22: 555 [4] Salvo L, Suery M, Marmottant A, Limodin N, Bernard D.C R Phys, 2010; 11: 641
[6]  Withers P J. Mater Today, 2007; 10: 26
[7]  Stock S R. Int Mater Rev, 1999; 44: 141
[8]  Radon J. Ber Verh Sachs Ak Mn, 1917; 69: 262
[9]  Cormack A M. J Appl Phys, 1963; 34: 2722
[10]  Beckmann F, Bonse U, Busch F, Gunnewig O. J Comput Assisted Tomography, 1997; 21: 539
[11]  Snigirev A, Snigireva I, Kohn V, Kuznetsov S, Schelokov I. Rev Sci Instrum, 1995; 66: 5486
[12]  Momose A, Fukuda J. Med Phys, 1995; 22: 375
[13]  Takeda T, Momose A, Itai Y, Wu J, Hirano K. Acad Radiol, 1995; 2: 799
[14]  Momose A, Takeda T, Itai Y, Hirano K. Nat Med,1996; 2: 473
[15]  Bonse U, Hart M. Appl Phys Lett, 1965; 6: 155
[16]  Forster E, Goetz K, Zaumseil P. Kristall Und Technik, 1980; 15: 937
[17]  Momose A, Kawamoto S, Koyama I, Hamaishi Y, Takai K,Suzuki Y. Jpn J Appl Phys, 2003; 42: L866
[18]  Ando M, Hosoya S. An Attempt at X------Ray Phase-Contrast Microscopy. Tokyo: University of Tokyo Press, 1972:63
[19]  Momose A. Opt Express, 2003; 11: 2303
[20]  Cloetens P, Barrett R, Baruchel J, Guigay J P, Schlenker M. J Phys, 1996; 29D: 133
[21]  Ingal V N, Beliaevskaya E A. J Phys, 1995; 28D:2314
[22]  Dilmanian F A, Zhong Z, Ren B, Wu X Y, Chapman L D, Orion I, Thomlinson W C. Phys Med Biol, 2000; 45: 933
[23]  Talbot H F. Philos Mag, 1836; 9: 401
[24]  Gibson L J. Annu Rev Mater Sci, 2000; 30: 191
[25]  Maire E. Annu Rev Mater Sci, 2012; 42: 163
[26]  Elmoutaouakkil A, Salvo L, Maire E, Peix G. Adv Eng Mater, 2002; 4: 803
[27]  Fife J L, Li J C, Dunand D C, Voorhees P W. J Mater Res, 2009; 24: 117
[28]  Chaijaruwanich A, Lee P D, Dashwood R J, Youssef Y M, Nagaumi H. Acta Mater, 2007; 55: 285
[29]  Fonda R W, Lauridsen E M, Ludwig W, Tafforeau P, Spanos G.Metall Mater Trans, 2007; 38A: 2721
[30]  Bouchard P O, Bourgeon L, Lachapele H, Maire E, Verdu C,Forestier R, Loge R E. Mater Sci Eng, 2008; A496: 223
[31]  Lashkari O, Yao L, Cockcroft S, Maijer D. Metall Mater Trans, 2009; 40A: 991
[32]  Youssef Y M, Chaijaruwanich A, Hamilton R W, Nagaumi H,Dashwood R J, Lee P D. Mater Sci Technol, 2006; 22: 1087
[33]  Link T, Zabler S, Epishin A, Haibel A, Bansal A, Thibault X. Mater Sci Eng, 2006; A425: 47
[34]  Weiler J P, Wood J T, Klassen R, Maire E, Berkmortel R,Wang G. Mater Sci Eng, 2005; A395: 315
[35]  Khan S, Wilde F, Beckmann F, Mosler J. Int J Fatigue, 2012; 38: 92
[36]  Zhang H, Toda H, Qu P C, Sakaguchi Y, Kobayashi M, Uesugi K, Suzuki Y. Acta Mater, 2009; 57: 3287
[37]  Li P, Lee P D, Maijer D M, Lindley T C. Acta Mater, 2009; 57: 3539
[38]  Hung Y C, Bennett J A, Garcia--Pastor F A, Di Michlel M,Buffiere J Y, Doel T J A, Bowen P, Withers P J. Acta Mater,2009; 57: 590
[39]  Verdu C, Adrien J, Buffiere J Y. Mater Sci Eng,2008; A483-484: 402
[40]  Xue Y, Pascu A, Horstemeyer M F, Wang L, Wang P T.Acta Mater, 2010; 58: 4029
[41]  Buffiere J Y, Ferrie E, Proudhon H, Ludwig W.Mater Sci Technol, 2006; 22: 1019
[42]  Ludwig W, Buffiere J Y, Savelli S, Cloetens P.Acta Mater, 2003; 51: 585
[43]  Buffiere J Y, Savelli S, Jouneau P H, Maire E, Fougeres R.Mater Sci Eng, 2001; A316: 115
[44]  Gao H L, Shen Y, Xu J. J Mater Res, 2011; 26:2087
[45]  Houndfield G N. Br J Radiol, 1973; 46: 1016
[46]  Kalender W A. Phys Med Biol, 2006; 51: R29
[47]  Copley D C, Eberhard J W, Mohr G A. J Miner Met Mater Soc, 1994; 46: 14
[48]  Elliott J C, Dover S D. J Microsc--Oxford, 1982;126: 211
[49]  Flannery B P, Deckman H W, Roberge W G, Damico K L.Science, 1987; 237: 1439
[50]  Haddad W S, McNulty I, Trebes J E, Anderson E H, Levesque R A, Yang L. Science, 1994; 266: 1213
[51]  Guvenilir A, Breunig T M, Kinney J H, Stock S R.Acta Mater, 1997; 45: 1977
[52]  Nielsen S F, Poulsen H F, Beckmann F, Thorning C, Wert J A. Acta Mater, 2003; 51: 2407
[53]  Stock S R. Int Mater Rev, 2008; 53: 129
[54]  Maire E, Buffiere J Y, Salvo L, Blandin J J, Ludwig W,Letang J M. Adv Eng Mater, 2001; 3: 539
[55]  Banhart J, Borbely A, Dzieciol K, Garcia--Moreno F, Manke I, Kardjilov N, Kaysser-Pyzalla A R, Strobl M, Treimer W.Int J Mater Res, 2010; 101: 1069
[56]  Cazaux J, Erre D, Mouze D, Patat J M, Rondot S, Sasov A,Trebbia P, Zolfaghari A. J Phys IV, 1993; 3: 2099
[57]  Mayo S C, Stevenson A W, Wilkins S W. Materials,2012; 5: 937
[58]  Abbe S, Honorat P, Vincent M N. In: Nair C G K, Raj B,Nurthy C R L, Jayakumar T eds., Proc 14th world Conf on Non-Destruct Testing, Rotterdam: A. A. Balkema, 1996: 1397
[59]  Allen A J. J Am Ceram Soc, 2005; 88: 1367
[60]  Andersson L, Jones A C, Knackstedt M A, Bergstrom L.J Eur Ceram Soc, 2010; 30: 2547
[61]  Appoloni C R, Macedo A, Fernandes C P, Philippi P C.X-Ray Spectrom, 2002; 31: 124
[62]  Atwood R C, Jones J R, Lee P D, Hench L L. Scr Mater, 2004; 51: 1029
[63]  Alemdar A, Zhang H, Sain M, Cescutti G, Mussig J.Adv Eng Mater, 2008; 10: 126
[64]  Aldica G V, Nita P, Tiseanu I, Craciunescu T, Badica P.J Optoelectron Adv Mater, 2008; 10: 929
[65]  Asghar Z, Requena G, Degischer H P, Cloetens P.Acta Mater, 2009; 57: 4125
[66]  Dupuy L, Blandin J J. Acta Mater, 2002; 50: 3251
[67]  Fabregue D, Deschamps A, Suery M, Proudhon H. ScrMater, 2008; 59: 324
[68]  Gonazalez M, Dominguez G, Bathias C. J ComposTechnol Res, 2000; 22: 45
[69]  Hamilton R W, Forster M F, Dashwood R J, Lee P D.Scr Mater, 2002; 46: 25
[70]  Balla V K, Bose S, Bandyopadhyay A. Philos Mag,2010; 90: 3081
[71]  Benouali A H, Froyen L, Delerue J F, Wevers M.Mater Sci Technol, 2002; 18: 489
[72]  Caty O, Buffiere J Y, Maire E, Adrien J. Adv Eng Mater, 2011; 13: 194
[73]  Lorthios J, Nguyen F, Gourgues A F, Morgeneyer T F, CugyP. Scr Mater, 2010; 63: 1220
[74]  Puncreobutr C, Lee P D, Hamilton R W, Phillion A B.JOM, 2012; 64: 89
[75]  Sinclair R, Preuss M, Maire E, Buffiere J Y, Bowen P,Withers P J. Acta Mater, 2004; 52: 1423
[76]  Van Bael S, Kerckhofs G, Moesen M, Pyka G, Schrooten J,Kruth J P. Mater Sci Eng, 2011; A528: 7423
[77]  Wang S G, Sun M Y, Song Z Q, Xu J.Intermetallics, 2012; 29: 123
[78]  Adrien J, Maire E, Gimenez N, Sauvant--Moynot V.Acta Mater, 2007; 55: 1667
[79]  Aroush D R B, Maire E, Gauthier C, Youssef S, Cloetens P,Wagner H D. Compos Sci Technol, 2006; 66: 1348
[80]  Babout L, Maire E, Buffiere J Y, Fougeres R. Acta Mater, 2001; 49: 2055
[81]  Babout L, Marrow T J, Engelberg D, Withers P J.Mater Sci Technol, 2006; 22: 1068
[82]  Bareggi A, Maire E, Bouaziz O, Di Michiel M. Int J Fracture, 2012; 174: 217
[83]  Bayraktar E, Garza M A G, Bathias C. J Mater Process Technol, 2008; 200: 133
[84]  Berek H, Ballaschk U, Aneziris C G. Adv Eng Mater, 2011; 13: 1101
[85]  Bernard D, Gendron D, Heintz J M, Bordere S, Etourneau J.Acta Mater, 2005; 53: 121
[86]  Terzi S, Salvo L, Suery M, Dahle A K, Boller E.Acta Mater, 2010; 58: 20
[87]  Long Y, Fessler J A, Balter J M. IEEE Trans Med Imaging, 2010; 29: 1839
[88]  Attix F H. Radiation Dosimetry. 2 Ed., Salt Lake City: Academic Press, 1968: 405
[89]  http:/ /www.nist.gov/pml/data/xraycoef/index.cfm
[90]  Cloetens P, Ludwig W, Baruchel J, Van Dyck D, Van Landuyt J, Guigay J P, Schlenker M. Appl Phys Lett, 1999; 75: 2912
[91]  Cloetens P, Ludwig W, Guigay J P, Baruchel J, Schlenker M, Van Dyck D. In: Baruchel J, Buffiere J Y, Maire E, Merle P, Peix G eds., X-Ray Tomography in Material Science. Paris: Hermes Science Publications, 2000: 29
[92]  David C, Nohammer B, Solak H H, Ziegler E. Appl Phys Lett, 2002; 81: 3287
[93]  Pfeiffer F, Weitkamp T, Bunk O, David C. Nat Phys, 2006; 2: 258
[94]  Wilkins S W, Gureyev T E, Gao D, Pogany A, Stevenson A W.Nature, 1996; 384: 335
[95]  Cloetens P, Guigay J P, DeMartino C, Baruchel J, Schlenker M. Opt Lett, 1997; 22: 1059
[96]  Marrow T J, Buffiere J Y, Withers P J, Johnson G,Engelberg D. Int J Fatigue, 2004; 26: 717
[97]  Clement P, Angeli J P, Pineau A. Fatigue Frat Eng Mater Struct, 1984; 7: 251
[98]  Ferrie E, Buffiere J Y, Ludwig W. Int J Fatigue,2005; 27: 1215
[99]  Knight S P, Salagaras M, Trueman A R. Corros Sci,2011; 53: 727
[100]  Eckermann F, Suter T, Uggowitzer P J, Afseth A, Davenport A J, Connolly B J, Larsen M H, De Carlo F, Schmutz P. Corros Sci, 2008; 50: 3455
[101]  Davenport A J, Padovani C, Connolly B J, Stevens N P C, Beale T A W, Groso A, Stampanoni M. Electrochem Solid State Lett, 2007; 10: C5
[102]  Ghahari S M, Davenport A J, Rayment T, Suter T, Tinnes J P, Padovani C, Hammons J A, Stampanoni M, Marone F, Mokso R.Corros Sci, 2011; 53: 2684
[103]  Horner D A, Connolly B J, Zhou S, Crocker L, Turnbull A. Corros Sci, 2011; 53: 3466
[104]  Fuloria D, Lee P D, Bernard D. Mater Sci Eng,2008; A494: 3
[105]  Dobrich K M, Rau C, Krill C E. Metall Mater Trans, 2004; 35A: 1953
[106]  Wang M Y, Williams J J, Jiang L, De Carlo F, Jing T,Chawla N. Scr Mater, 2011; 65: 855
[107]  Landron C, Maire E, Adrien J, Suhonen H, Cloetens P, Bouaziz O. Scr Mater, 2012; 66: 1077
[108]  Qian L, Toda H, Uesugi K, Kobayashi T, Ohgaki T, Kobayashi M. Appl Phys Lett, 2005; 87: 241907
[109]  Scheck C, Zupan M. Scr Mater, 2011; 65: 1041
[110]  Birosca S, Buffiere J Y, Garcia-Pastor F A, Karadge M, Babout L, Preuss M. Acta Mater, 2009; 57: 5834
[111]  Buffiere J Y, Maire E, Cloetens P, Lormand G, Fougeres R. Acta Mater, 1999; 47: 1613
[112]  Beckmann F, Grupp R, Haibel A, Huppmann M, Noethe M, Pyzalla A, Reimers W, Schreyer A, Zettler R. Adv Eng Mater,2007; 9: 939
[113]  Maire E, Carmona V, Courbon J, Ludwig W. Acta Mater, 2007; 55: 6806
[114]  Gammage J J, Wilkinson D S, Embury J D, Maire E. Philos Mag, 2005; 85: 3191
[115]  Limodin N, Salvo L, Boller E, Suery M, Felberbaum M, Gailliegue S, Madi K. Acta Mater, 2009; 57: 2300
[116]  Baruchel J, Buffiere J Y, Cloetens P, Di Michiel M, Ferrie E, Ludwig W, Maire E, Salvo L. Scr Mater, 2006; 55:41
[117]  Zhu P P, Wang J Y, Yuan Q X, Huang W X, Shu H, Gao B, Hu T D, Wu Z Y. Appl Phys Lett, 2005; 87: 264101
[118]  Wang J Y, Zhu P P, Yuan Q X, Huang W X, Shu H, Chen B, Hu T D, Wu Z Y. Phys Med Biol, 2006; 51: 3391
[119]  Huang Z F, Kang K J, Li Z, Zhu P P, Yuan Q X, Huang W X, Wang J Y, Zhang D, Yu A M. Appl Phys Lett, 2006; 89: 041124
[120]  Zhu P P, Yuan Q X, Huang W X, Wang J Y, Shu H, Chen B, Liu Y J, Li E R, Wu Z Y. J Phys, 2006; 39D: 4142
[121]  Egbert A, Brunke O. In: Medvids As ed., Int Academia 2010: Global Research and Education, Zurich: Trans Tech Publications, 2011: 48
[122]  Kastner J, Harrer B, Degischer H P. Mater Charact, 2011; 62: 99
[123]  Connolly B J, Horner D A, Fox S J, Davenport A J,Padovani C, Zhou S, Turnbull A, Preuss M, Stevens N P, Marrow T J, Buffiere J Y, Boller E, Groso A, Stampanoni M. Mater Sci Technol, 2006; 22: 1076
[124]  Gebert J M, Wanner A, Piat R, Guichard M, Rieck S,Paluszynski B, Bohlke T. Mech Adv Mater Struct, 2008; 15:467
[125]  Jakubek J, Granja C, Dammer J, Hanus R, Holy T, Pospisil S, Tykva R, Uher J, Vykydal Z. Nucl Instrum Meth, 2007;571A: 69
[126]  Engelhardt M, Baumann J, Schuster M, Kottler C, Pfeiffer F, Bunk O, David C. Appl Phys Lett, 2007; 90: 224101
[127]  Kashyap Y S, Yadav P S, Roy T, Sarkar P S, Shukla M, Sinha A. Appl Radiat Isotopes, 2008; 66: 1083
[128]  Kastner J, Plank B, Requena G. Mater Charact,2012; 64: 79
[129]  Ignatyev K, Munro P R T, Speller R D, Olivo A. In:McNulty I, Eyberger C, Lai B eds., 10th Int Conf on X-Ray Microscopy, New York: Amer Inst Physics, 2011: 254
[130]  Mayo S C, Davis T J, Gureyev T E, Miller P R, Paganin D,Pogany A, Stevenson A W, Wilkins S W. Opt Express, 2003;11: 2289
[131]  Limodin N, Rethore J, Buffiere J Y, Gravouil A, Hild F,Roux S. Acta Mater, 2009; 57: 4090
[132]  Gao D Z, Ma X J, Jia P, Ye C G. High Power Laser Part Beams, 2010; 22: 2331
[133]  (高党忠, 马小军, 贾鹏, 叶成钢. 强激光与离子束, 2010; 22:2331)

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133