Mechanical behavior of nanocrystalline metals and alloys

Nanocrystalline metals and alloys, with average and range of grain sizes typically smaller than 100 nm, have been the subject of considerable research in recent years. Such interest has been spurred by progress in the processing of materials and by advances in computational materials science. It has...

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Published inActa materialia Vol. 51; no. 19; pp. 5743 - 5774
Main Authors Kumar, K.S, Van Swygenhoven, H, Suresh, S
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 25.11.2003
Elsevier Science
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Online AccessGet full text
ISSN1359-6454
1873-2453
DOI10.1016/j.actamat.2003.08.032

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Abstract Nanocrystalline metals and alloys, with average and range of grain sizes typically smaller than 100 nm, have been the subject of considerable research in recent years. Such interest has been spurred by progress in the processing of materials and by advances in computational materials science. It has also been kindled by the recognition that these materials possess some appealing mechanical properties, such as high strength, increased resistance to tribological and environmentally-assisted damage, increasing strength and/or ductility with increasing strain rate, and potential for enhanced superplastic deformation at lower temperatures and faster strain rates. From a scientific standpoint, advances in nanomechanical probes capable of measuring forces and displacements at resolutions of fractions of a picoNewton and nanometer, respectively, and developments in structural characterization have provided unprecedented opportunities to probe the mechanisms underlying mechanical response. In this paper, we present an overview of the mechanical properties of nanocrystalline metals and alloys with the objective of assessing recent advances in the experimental and computational studies of deformation, damage evolution, fracture and fatigue, and highlighting opportunities for further research.
AbstractList Nanocrystalline metals and alloys, with average and range of grain sizes typically smaller than 100 nm, have been the subject of considerable research in recent years. Such interest has been spurred by progress in the processing of materials and by advances in computational materials science. It has also been kindled by the recognition that these materials possess some appealing mechanical properties, such as high strength, increased resistance to tribological and environmentally-assisted damage, increasing strength and/or ductility with increasing strain rate, and potential for enhanced superplastic deformation at lower temperatures and faster strain rates. From a scientific standpoint, advances in nanomechanical probes capable of measuring forces and displacements at resolutions of fractions of a picoNewton and nanometer, respectively, and developments in structural characterization have provided unprecedented opportunities to probe the mechanisms underlying mechanical response. In this paper, we present an overview of the mechanical properties of nanocrystalline metals and alloys with the objective of assessing recent advances in the experimental and computational studies of deformation, damage evolution, fracture and fatigue, and highlighting opportunities for further research.
Author Suresh, S
Van Swygenhoven, H
Kumar, K.S
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Issue 19
Keywords Grain boundaries
Mechanical properties
Nanocrystalline materials
Grain refining
Modeling
Strain rate sensitivity
Nanostructures
Experimental study
Stress-strain relations
Thin films
Transmission electron microscopy
Fine grain structure
Electrodeposition
Nickel
Property structure relationship
Nanostructured materials
Tensile properties
Flow stress
Language English
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References Feichtinger D, Derlet PM, Van Swygenhoven H. Phys Rev B 2003;67:24113.
Komura S, Horita Z, Furukawa M, Nemoto M, Langdon TG. Metall Mater Trans 2001;32A:707.
Carsley JE, Fisher A, Milligan WW, Aifantis EC. Metall Mater Trans 1998;29A:2261.
Schiøtz JT, Vegge T, Di Tolla FD, Jacobsen KW. Phys Rev B 1999;60:11971.
Sanders PG, Fougere GE, Thompson LJ, Eastman JA, Weertman JR, Nanost Mater 1997;8:243.
Kim JJ, Choi Y, Suresh S, Argon AS. Science 2002;295:654.
Lu L, Li SX, Lu K. Scripta Mater 2001;45:1163.
Voronoi GZ. Reine Angew Math 1908;134:199.
Ma E. Scripta Mater 2003;49:663.
Farkas D, Van Petegem S, Van Swygenhoven H. unpublished results, 2003
Van Swygenhoven H, Spaczer M, Caro A, Farkas D. Phys Rev B 1999;60:22.
He G, Zhang ZF, Loser W, Eckert J, Schultz L. Acta Mater 2003;51:2383.
Wang YM, Wang K, Pan D, Lu K, Hemker KJ, Ma E. Scripta Mat 2003;48:1581.
Aust KT, Erb U, Palumbo G. Mater Sci Eng 1994;A176:329.
Valiev RZ, Islamgaliev RK, Alexandrov IV. Prog Mater Sci 2000;45:103.
Derlet PM, Van Swygenhoven H. Phys Rev B 2002;67:14202.
Erb U. Nanost Mater 1995; 6:533.
Keblinski P, Phillpot SR, Wolf D, Gleiter H. Acta Mater 1997;45:987.
Sutton, Balluffi (BIB111) 1996
.
Van Swygenhoven H, Derlet PM, Budrovic Z, Zeits fur Metall 2003 (in press).
Van Swygenhoven H, Derlet PM, Hasnaoui A. Phys Rev B 2002;66:24101.
Derlet PM, Van Swygenhoven H, Hasnaoui A. Phil Mag A 2003 (in press).
Van Swygenhoven H, Spaczer M, Caro A. Acta Mater 1999;47:3117.
Schwaiger R, Moser B, Dao M, Chollacoop N, Suresh S. Acta Mater 2003;51:5159.
Van Swygenhoven H, Derlet PM. Phys Rev B 2001;64:224105.
Van Petegem S, Dalla Torre F, Seegers D, Van Swygenhoven H, Scripta Mater 2003;48:17.
Zhang X, Wang H, Scattergood RO, Narayan J, Koch CC, Sergueeva AV, Mukherjee AK. Acta Mater 2002;50:4823.
Wang JG, Choi BW, Nieh TG, Liu CT. J Mater 2000;15:798.
Kiely JD, Houston JE. Phys Rev B 1998;57:12588.
Ortiz M, Phillips R. Adv Appl Mech 1999;36:1.
Honeycutt DJ, Anderson HC. J Phys Chem 1987;91:4950.
Mishra RS, Valiev RZ, McFadden SX, Islamgaliev RK, Mukherjee AK, Philos Mag A 2001;81:37.
Li J, Van Vliet KJ, Zhu T, Yip S, Suresh S. Nature 2002;418:307.
El-Sharik AM, Erb U, Palumbo G, Aust KT. Scripta Metall Mater 1992;27:1185.
Han BQ, Lee Z, Nutt SR, Lavernia EJ, Mohamed FA. Metall Mater Trans A 2003;34:603.
Sylor DM, Rohrer GS. J Am Ceram Soc 2002;85:2799.
Wunderlich W, Ishida Y, Maurer R. Scripta Metall Mater 1990;24:403.
Gleiter H, Prog Mater Sci 1989;33:223–315.
Thomas GJ, Siegel RW, Eastman JA. Scripta Metall Mater 1990;24:201.
Vasudevan AK, Sadananda K, Rajan K. Inter Jour of Fatigue 1997;19:S151–S159.
Markmann J, Bunzel P, Rosner H, Liu KW, Padmanabhan KA, Birringer R, Gleiter H, Weissmüller J. Scripta Mater 2003;49:637.
Whang S, Nishimura C, McCormick PG. Scripta Mater 2001;44:1507.
Yamakov V, Wolf D, Phillpot SR, Gleiter H. Acta Mater 2002;50:5005.
Hasnaoui A, Van Swygenhoven H, Derlet PM. Phys Rev B 2002;66:184112.
Petch NJ. J Iron Steel Inst 1953;174:25.
Zhu X, Birringer R, Herr U, Gleiter H. Phys Rev B 1987;35:9085.
Agnew SR, Vinogradov A Yu, Hashimoto S, Weertman JR. Jour of Elec Mater 1999;28:1038.
Suresh S. Metall Trans 1985;16A:249.
Hasnaoui A, Van Swygenhoven H, Derlet PM. Science 2003;300:1550
Van Vliet KJ, Tsikata S, Suresh S. Appl Phys Lett 2003;83(5):xxx.
Yamakov V, Wolf D, Phillpot SR, Gleiter H. Acta Mater 2002;50:61.
Van Swygenhoven H, Spaczer M, Farkas D, Caro A. Nanostruct Mat 1999;12:323.
Schiøtz J, Di Tolla FD, Jacobsen KW. Nature 1998;391:561.
Popov AA, Pyshmintsev I Yu, Demakov SL, Illarionov AG, Lowe TC, Sergeyeva AV, Valiev RZ. Scripta Mater 1997;37:1089.
Hull, Bacon (BIB80) 2001
Koch CC. Nanostruct Mater 1997;9:13.
Dalla Torre F, Van Swygenhoven H, Victoria M. Acta Mater 2002;50:3957.
Zimmerman JA, Kelchner CL, Klein PA, Hamilton JC, Foiles SM. Phys Rev Lett 2001;87:165507.
Bragg WL, Nye JF. Proc Roy Soc London, Series A 1947;A190:474.
Jeong DH, Erb U, Aust KT, Palumbo G. Scripta Mater 2003;48:1067.
Youngdahl CJ, Weertman JR, Hugo RC, Kung HH. Scripta Mater 2001;44:1475.
He Y, Poon SJ, Shiflet GJ. Science 1998;241:1640.
Kelchner CL, Plimpton SJ, Hamilton JC, Phys Rev B 1998;58:85.
McFadden SX, Mishra RS, Valiev RZ, Zhilyaev AP, Mukherjee AK. Nature 1999;398:684.
Peker A, Johnson WL. Appl Phys Lett 1993;63:2342.
Van Swygenhoven H. Science 2002;April 5:66.
Keblinski P, Wolf D, Gleiter H. Interface Sci 1998;6:205.
Poulson HF, Nielsen SF, Lauridsen EM, Schmidt S, Suter RM, Lienert U, Margulies L, Lorentzen T, Juul Jensen D. J Appl Cryst 2001;34:751.
He G, Eckert J, Loser W, Schultz L, Nature Mater 2003;2:33.
Sanders PG, Youngdahl CJ, Weertman JR. Mater Sci Eng A 1997;234–236:77.
Wang N, Wang Z, Aust KT, Erb U. Mater Sci Eng 1997;A237:150.
Sanders PG, Eastman JA, Weertman JR, Acta Mater 1997;45:4019.
Inoue A, Zhang T, Masumoto T. Mater Trans Jpn 1990;31:177.
Cai B, Kong QP, Cui P, Lu L, Lu K. Scripta Mater 2001;45:1407.
Farkas D, Van Swygenhoven H, Derlet PM. Physical Review B 2002;66:60101.
Chen M, Ma E, Hemkar KJ, Sheng H, Wang Y, Cheng X. Science 2003;300:1275.
Murayama M, Howe JM, Hidaka H, Takaki S. Science 2002;295:2433.
Hall EQ. Proc Soc London 1951;B64:747.
Hasnaoui A, Van Swygenhoven H, Derlet PM. Acta Mater 2002;50:3927.
Müllner P, Solenthaler C, Speidel MO. In: Yoo MH, Wutig M, editors. Twinning in advanced materials, Warrendale, PA: The Minerals, Metals and Materials Society; 1994, p. 483–490.
Masumura RA, Hazzledine PM, Pande CS. Acta Mater 1998;46:4527.
Zhou F, Liao XZ, Zhu YT, Dallek S, Lavernia EJ, Acta Mater 2003;51:2777.
Thomson CB, Randle V. Scripta Mater 1996;35:385.
Gleiter H. Acta Mater 2000;48:1.
Van Swygenhoven H, Caro A. Phys Rev B 1998;58:11246.
Robertson IM, Birnbaum HK. Acta Metall 1986;34:353.
Van Vliet KJ, Li J, Zhu T, Yip S, Suresh S. Phys Rev B 2003;67:104105.
Gray III GT. Acta Metall 1988;36:1745.
Keblinski P, Wolf D, Phillpot SR, Gleiter H. Scripta Mater 1999;41:631.
Hanlon T, Kwon Y-N, Suresh S. Scripta Mater 2003;49:675.
Derlet PM, Van Swygenhoven H. Scripta Mater 2002;47:719.
Sanders PG, Rittmeer M, Kiedaisch E, Weertman J, Kung H, Lu YC. Nanost Mater 1997;9:433.
Chokshi AH, Rosen A, Karch J, Gleiter H. Scripta Metall 1989;23:1679.
Mirshams RA, Xiao CH, Whang SH, Yin WM. Mater Sci and Eng 2001;A315:21.
Van Petegem S. Positron annihilation study of nanocrystalline materials, Doctoral Thesis, University of Ghent, 2003.
Embury JD, Szczerba MS, Basinski ZS. In: Yoo MH, Wutig M, editors. Twinning in advanced materials, Warrendale, PA: The Minerals, Metals and Materials Society; 1994, p. 331–336.
Mills MJ, Daw MS. MRS Proceedings 1990;183:15.
Weertman (BIB40) 2002
Van Swygenhoven H, Farkas D, Caro A. Phys Rev B 2000;62:831.
Yamakov V, Wolf D, Salazar M, Phillpot SR, Gleiter H. Acta Mater 2001;49:2713.
El-Sherik AM, Erb U. Jour Mater Sci 1995;30:5743.
Xu C, Furukawa M, Horita Z, Langdon TG. Adv Engin Mater 2003;5:359.
Hou M, Kharlamov VS, Zhurkin EE. Phys Rev B 2002;66:195408.
Feltner CE, Laird C. Acta Metall 1967;15:1621.
Müllner P, Solenthaler C, Speidel MO. Acta Metall Mater 1994;42:1727.
Cormier J, Rickman JM, Delph TJ. J Appl Phys 2001;89:99.
Ebrahimi F, Bourne GR, Kelly MS, Matthews TE, Nanost Mater 1999;11:343.
Gerberich WW, Nelson JC, Lilleodden ET, Anderson P, Wyrobek JT. Acta Mater 1996;44:3585.
Haubold T, Birringer R, Lengeler B, Gleiter H. J Less-Comm Metals 1988;145:557.
Milligan WW, Hackney SA, Ke M, Aifantis EC. Nanostr Mater 1993;2:267.
Schaefer HE, Würschum R, Birringer R, Gleiter H. Phys Rev B 1988;38:4595
Derlet PM, Van Swygenhoven H. Philos Mag A 2002;82:1.
Weertman, Weertman (BIB81) 1992
Suresh (BIB91) 1998
Kumar KS, Suresh S, Chisholm MF, Horton JA, Wang P. Acta Mater 2003;51:387.
Horita Z, Furukawa M, Nemoto M, Barnes AJ, Langdon TG. Acta Mater 2000;48:3633.
Karimpoor AA, Erb U, Aust KT, Palumbo G. Scripta Mater 2003;49:651.
Jia D, Ramesh KT, Ma E. Acta Mater 2003;51:3495.
Nanofoils from Integran Technologies Inc., Toronto, Canada
Hugo RC, Kung H, Weertman JR, Mitra R, Knapp JA, Follstaedt DM. Acta Mater 2003;51:1937.
McFadden SX, Sergueeva AV, Mishra RS, Mukherjee AK. Mater Sci Tech 2000:16;1340.
Herr U, Jing J, Birringer R, Gonser U, Gleiter H. Appl Phys Lett 1987;50:472.
Derlet PM, Hasnaoui A, Van Swygenhoven H. Scripta Mater 2003;49:629.
Yamakov V, Wolf D, Phillpot SR, Mukherjee AK, Gleiter H. Nature Materials 2002;1:1.
Ebrahimi F, Zhai Q, Kong D. Scripta Mater 1998;39:315.
Nakahara S. Acta Metall 1988;36:1669.
Tellkamp VL, Melmed A, Lavernia EJ. Metall Mater Trans 2001;32A:2335.
Mughrabi H, Höppel HW. Mater Res Symp Proc 2001;634:B2.1.1.
McFadden SX, Sergueeva AV, Kruml T, Martin J-L, Mukherjee AK. MRS Proceedings 2001;634:B1.3.1.
Vinogradov A, Hashimoto S. Advanced Engineering Materials 2003;5:351.
Zhang X, Wang H, Scattergood RO, Narayan J, Koch CC. Mat Sci Eng 2003;A 344:175.
Schuh C, Nieh TG, Yamasaki T. Scripta Mater 2002;46:735.
Legros M, Elliott BR, Rittner MN, Weertman JR, Hemkar KJ. Philos Mag A 2000;80:1017–1026.
Gouldstone A, Van Vliet KJ, Suresh S. Nature 2001;411:656.
Meyer R. MRS Symposium Proceedings 2000;634:B8.8.1.
Hanlon T, Prchlik L, Suresh S. unpublished results (2003).
Ovid’ko IA. Science 2002;295:2386.
Mukai T, Suresh S, Kita K, Sasaki H, Kobayashi N, Higashi K, Inoue A. Acta Mater 2003;51:4197.
Hanlon T, Suresh S. unpublished results, MIT; 2003.
Ashby MF. Philos Mag 1982;A46:737.
Weertman JR, Sanders PG. Solid State Phenom 1994;35–36:249.
Agnew SR, Weertman JR. Mater Sci and Eng A 1998;A244:145.
Schuh C, Nieh TG, Iwasaki H. Acta Mater 2003;51:431.
Lu L, Sui ML, Lu K. Science 2000;287:1463.
Siegel RW, Thomas GJ. Ultramicroscopy 1992;40:376.
References_xml – reference: Yamakov V, Wolf D, Phillpot SR, Gleiter H. Acta Mater 2002;50:5005.
– reference: Derlet PM, Van Swygenhoven H, Hasnaoui A. Phil Mag A 2003 (in press).
– reference: Aust KT, Erb U, Palumbo G. Mater Sci Eng 1994;A176:329.
– year: 1996
  ident: BIB111
  article-title: Interfaces in crystalline materials
– reference: Poulson HF, Nielsen SF, Lauridsen EM, Schmidt S, Suter RM, Lienert U, Margulies L, Lorentzen T, Juul Jensen D. J Appl Cryst 2001;34:751.
– reference: El-Sharik AM, Erb U, Palumbo G, Aust KT. Scripta Metall Mater 1992;27:1185.
– reference: Ebrahimi F, Bourne GR, Kelly MS, Matthews TE, Nanost Mater 1999;11:343.
– year: 1998
  ident: BIB91
  article-title: Fatigue of materials
– reference: Mughrabi H, Höppel HW. Mater Res Symp Proc 2001;634:B2.1.1.
– reference: Hasnaoui A, Van Swygenhoven H, Derlet PM. Acta Mater 2002;50:3927.
– reference: Xu C, Furukawa M, Horita Z, Langdon TG. Adv Engin Mater 2003;5:359.
– reference: Agnew SR, Weertman JR. Mater Sci and Eng A 1998;A244:145.
– reference: Petch NJ. J Iron Steel Inst 1953;174:25.
– reference: He G, Eckert J, Loser W, Schultz L, Nature Mater 2003;2:33.
– reference: Whang S, Nishimura C, McCormick PG. Scripta Mater 2001;44:1507.
– reference: Chen M, Ma E, Hemkar KJ, Sheng H, Wang Y, Cheng X. Science 2003;300:1275.
– reference: Honeycutt DJ, Anderson HC. J Phys Chem 1987;91:4950.
– year: 2001
  ident: BIB80
  article-title: Introduction to dislocations
– reference: Keblinski P, Wolf D, Phillpot SR, Gleiter H. Scripta Mater 1999;41:631.
– reference: Van Swygenhoven H, Derlet PM. Phys Rev B 2001;64:224105.
– reference: Gerberich WW, Nelson JC, Lilleodden ET, Anderson P, Wyrobek JT. Acta Mater 1996;44:3585.
– reference: Van Vliet KJ, Li J, Zhu T, Yip S, Suresh S. Phys Rev B 2003;67:104105.
– reference: Müllner P, Solenthaler C, Speidel MO. In: Yoo MH, Wutig M, editors. Twinning in advanced materials, Warrendale, PA: The Minerals, Metals and Materials Society; 1994, p. 483–490.
– reference: He Y, Poon SJ, Shiflet GJ. Science 1998;241:1640.
– reference: Ma E. Scripta Mater 2003;49:663.
– reference: Ovid’ko IA. Science 2002;295:2386.
– reference: Van Swygenhoven H, Derlet PM, Budrovic Z, Zeits fur Metall 2003 (in press).
– reference: Sanders PG, Fougere GE, Thompson LJ, Eastman JA, Weertman JR, Nanost Mater 1997;8:243.
– reference: Schaefer HE, Würschum R, Birringer R, Gleiter H. Phys Rev B 1988;38:4595
– reference: Van Swygenhoven H, Spaczer M, Caro A. Acta Mater 1999;47:3117.
– reference: Ashby MF. Philos Mag 1982;A46:737.
– reference: Siegel RW, Thomas GJ. Ultramicroscopy 1992;40:376.
– reference: Hasnaoui A, Van Swygenhoven H, Derlet PM. Science 2003;300:1550
– reference: Kim JJ, Choi Y, Suresh S, Argon AS. Science 2002;295:654.
– reference: Jeong DH, Erb U, Aust KT, Palumbo G. Scripta Mater 2003;48:1067.
– reference: Gouldstone A, Van Vliet KJ, Suresh S. Nature 2001;411:656.
– reference: Horita Z, Furukawa M, Nemoto M, Barnes AJ, Langdon TG. Acta Mater 2000;48:3633.
– reference: Meyer R. MRS Symposium Proceedings 2000;634:B8.8.1.
– reference: Zimmerman JA, Kelchner CL, Klein PA, Hamilton JC, Foiles SM. Phys Rev Lett 2001;87:165507.
– reference: Bragg WL, Nye JF. Proc Roy Soc London, Series A 1947;A190:474.
– reference: Zhu X, Birringer R, Herr U, Gleiter H. Phys Rev B 1987;35:9085.
– reference: McFadden SX, Sergueeva AV, Kruml T, Martin J-L, Mukherjee AK. MRS Proceedings 2001;634:B1.3.1.
– reference: Van Swygenhoven H. Science 2002;April 5:66.
– reference: Embury JD, Szczerba MS, Basinski ZS. In: Yoo MH, Wutig M, editors. Twinning in advanced materials, Warrendale, PA: The Minerals, Metals and Materials Society; 1994, p. 331–336.
– reference: Mishra RS, Valiev RZ, McFadden SX, Islamgaliev RK, Mukherjee AK, Philos Mag A 2001;81:37.
– reference: Feichtinger D, Derlet PM, Van Swygenhoven H. Phys Rev B 2003;67:24113.
– reference: Popov AA, Pyshmintsev I Yu, Demakov SL, Illarionov AG, Lowe TC, Sergeyeva AV, Valiev RZ. Scripta Mater 1997;37:1089.
– reference: Lu L, Sui ML, Lu K. Science 2000;287:1463.
– reference: Agnew SR, Vinogradov A Yu, Hashimoto S, Weertman JR. Jour of Elec Mater 1999;28:1038.
– reference: Zhou F, Liao XZ, Zhu YT, Dallek S, Lavernia EJ, Acta Mater 2003;51:2777.
– reference: Hugo RC, Kung H, Weertman JR, Mitra R, Knapp JA, Follstaedt DM. Acta Mater 2003;51:1937.
– reference: Yamakov V, Wolf D, Phillpot SR, Gleiter H. Acta Mater 2002;50:61.
– reference: Van Petegem S. Positron annihilation study of nanocrystalline materials, Doctoral Thesis, University of Ghent, 2003.
– reference: Zhang X, Wang H, Scattergood RO, Narayan J, Koch CC, Sergueeva AV, Mukherjee AK. Acta Mater 2002;50:4823.
– reference: Gleiter H, Prog Mater Sci 1989;33:223–315.
– reference: Yamakov V, Wolf D, Phillpot SR, Mukherjee AK, Gleiter H. Nature Materials 2002;1:1.
– reference: Nanofoils from Integran Technologies Inc., Toronto, Canada (
– reference: Derlet PM, Van Swygenhoven H. Scripta Mater 2002;47:719.
– reference: Hanlon T, Suresh S. unpublished results, MIT; 2003.
– reference: Schuh C, Nieh TG, Iwasaki H. Acta Mater 2003;51:431.
– reference: Hasnaoui A, Van Swygenhoven H, Derlet PM. Phys Rev B 2002;66:184112.
– reference: Van Swygenhoven H, Caro A. Phys Rev B 1998;58:11246.
– reference: Feltner CE, Laird C. Acta Metall 1967;15:1621.
– reference: Thomson CB, Randle V. Scripta Mater 1996;35:385.
– reference: Robertson IM, Birnbaum HK. Acta Metall 1986;34:353.
– reference: Farkas D, Van Swygenhoven H, Derlet PM. Physical Review B 2002;66:60101.
– reference: Van Swygenhoven H, Farkas D, Caro A. Phys Rev B 2000;62:831.
– reference: Mills MJ, Daw MS. MRS Proceedings 1990;183:15.
– reference: He G, Zhang ZF, Loser W, Eckert J, Schultz L. Acta Mater 2003;51:2383.
– reference: Chokshi AH, Rosen A, Karch J, Gleiter H. Scripta Metall 1989;23:1679.
– reference: Keblinski P, Phillpot SR, Wolf D, Gleiter H. Acta Mater 1997;45:987.
– reference: Gray III GT. Acta Metall 1988;36:1745.
– reference: Dalla Torre F, Van Swygenhoven H, Victoria M. Acta Mater 2002;50:3957.
– reference: Mukai T, Suresh S, Kita K, Sasaki H, Kobayashi N, Higashi K, Inoue A. Acta Mater 2003;51:4197.
– reference: Van Petegem S, Dalla Torre F, Seegers D, Van Swygenhoven H, Scripta Mater 2003;48:17.
– reference: Van Swygenhoven H, Spaczer M, Farkas D, Caro A. Nanostruct Mat 1999;12:323.
– reference: Van Swygenhoven H, Derlet PM, Hasnaoui A. Phys Rev B 2002;66:24101.
– reference: Carsley JE, Fisher A, Milligan WW, Aifantis EC. Metall Mater Trans 1998;29A:2261.
– reference: Sylor DM, Rohrer GS. J Am Ceram Soc 2002;85:2799.
– reference: Farkas D, Van Petegem S, Van Swygenhoven H. unpublished results, 2003
– reference: Tellkamp VL, Melmed A, Lavernia EJ. Metall Mater Trans 2001;32A:2335.
– reference: Sanders PG, Rittmeer M, Kiedaisch E, Weertman J, Kung H, Lu YC. Nanost Mater 1997;9:433.
– reference: Wunderlich W, Ishida Y, Maurer R. Scripta Metall Mater 1990;24:403.
– reference: Schiøtz J, Di Tolla FD, Jacobsen KW. Nature 1998;391:561.
– reference: Ortiz M, Phillips R. Adv Appl Mech 1999;36:1.
– reference: Peker A, Johnson WL. Appl Phys Lett 1993;63:2342.
– year: 2002
  ident: BIB40
  article-title: Mechanical behaviour of nanocrystalline metals in nanostructured materials: Processing, properties, and potential applications
– reference: Wang N, Wang Z, Aust KT, Erb U. Mater Sci Eng 1997;A237:150.
– reference: Schwaiger R, Moser B, Dao M, Chollacoop N, Suresh S. Acta Mater 2003;51:5159.
– reference: McFadden SX, Mishra RS, Valiev RZ, Zhilyaev AP, Mukherjee AK. Nature 1999;398:684.
– reference: Valiev RZ, Islamgaliev RK, Alexandrov IV. Prog Mater Sci 2000;45:103.
– reference: El-Sherik AM, Erb U. Jour Mater Sci 1995;30:5743.
– reference: Vasudevan AK, Sadananda K, Rajan K. Inter Jour of Fatigue 1997;19:S151–S159.
– reference: Hanlon T, Prchlik L, Suresh S. unpublished results (2003).
– reference: Hanlon T, Kwon Y-N, Suresh S. Scripta Mater 2003;49:675.
– reference: Lu L, Li SX, Lu K. Scripta Mater 2001;45:1163.
– reference: Jia D, Ramesh KT, Ma E. Acta Mater 2003;51:3495.
– reference: Van Vliet KJ, Tsikata S, Suresh S. Appl Phys Lett 2003;83(5):xxx.
– reference: Milligan WW, Hackney SA, Ke M, Aifantis EC. Nanostr Mater 1993;2:267.
– reference: Wang YM, Wang K, Pan D, Lu K, Hemker KJ, Ma E. Scripta Mat 2003;48:1581.
– reference: Weertman JR, Sanders PG. Solid State Phenom 1994;35–36:249.
– reference: Nakahara S. Acta Metall 1988;36:1669.
– reference: Inoue A, Zhang T, Masumoto T. Mater Trans Jpn 1990;31:177.
– reference: Haubold T, Birringer R, Lengeler B, Gleiter H. J Less-Comm Metals 1988;145:557.
– year: 1992
  ident: BIB81
  article-title: Elementary dislocation theory
– reference: Wang JG, Choi BW, Nieh TG, Liu CT. J Mater 2000;15:798.
– reference: Murayama M, Howe JM, Hidaka H, Takaki S. Science 2002;295:2433.
– reference: Voronoi GZ. Reine Angew Math 1908;134:199.
– reference: Koch CC. Nanostruct Mater 1997;9:13.
– reference: Schuh C, Nieh TG, Yamasaki T. Scripta Mater 2002;46:735.
– reference: Hall EQ. Proc Soc London 1951;B64:747.
– reference: ).
– reference: Masumura RA, Hazzledine PM, Pande CS. Acta Mater 1998;46:4527.
– reference: Kelchner CL, Plimpton SJ, Hamilton JC, Phys Rev B 1998;58:85.
– reference: Yamakov V, Wolf D, Salazar M, Phillpot SR, Gleiter H. Acta Mater 2001;49:2713.
– reference: Herr U, Jing J, Birringer R, Gonser U, Gleiter H. Appl Phys Lett 1987;50:472.
– reference: Suresh S. Metall Trans 1985;16A:249.
– reference: Gleiter H. Acta Mater 2000;48:1.
– reference: Kumar KS, Suresh S, Chisholm MF, Horton JA, Wang P. Acta Mater 2003;51:387.
– reference: Derlet PM, Van Swygenhoven H. Phys Rev B 2002;67:14202.
– reference: Van Swygenhoven H, Spaczer M, Caro A, Farkas D. Phys Rev B 1999;60:22.
– reference: Sanders PG, Eastman JA, Weertman JR, Acta Mater 1997;45:4019.
– reference: Kiely JD, Houston JE. Phys Rev B 1998;57:12588.
– reference: Derlet PM, Hasnaoui A, Van Swygenhoven H. Scripta Mater 2003;49:629.
– reference: Sanders PG, Youngdahl CJ, Weertman JR. Mater Sci Eng A 1997;234–236:77.
– reference: Han BQ, Lee Z, Nutt SR, Lavernia EJ, Mohamed FA. Metall Mater Trans A 2003;34:603.
– reference: Ebrahimi F, Zhai Q, Kong D. Scripta Mater 1998;39:315.
– reference: Komura S, Horita Z, Furukawa M, Nemoto M, Langdon TG. Metall Mater Trans 2001;32A:707.
– reference: Youngdahl CJ, Weertman JR, Hugo RC, Kung HH. Scripta Mater 2001;44:1475.
– reference: Schiøtz JT, Vegge T, Di Tolla FD, Jacobsen KW. Phys Rev B 1999;60:11971.
– reference: Erb U. Nanost Mater 1995; 6:533.
– reference: Cormier J, Rickman JM, Delph TJ. J Appl Phys 2001;89:99.
– reference: Legros M, Elliott BR, Rittner MN, Weertman JR, Hemkar KJ. Philos Mag A 2000;80:1017–1026.
– reference: Müllner P, Solenthaler C, Speidel MO. Acta Metall Mater 1994;42:1727.
– reference: Karimpoor AA, Erb U, Aust KT, Palumbo G. Scripta Mater 2003;49:651.
– reference: Hou M, Kharlamov VS, Zhurkin EE. Phys Rev B 2002;66:195408.
– reference: McFadden SX, Sergueeva AV, Mishra RS, Mukherjee AK. Mater Sci Tech 2000:16;1340.
– reference: Li J, Van Vliet KJ, Zhu T, Yip S, Suresh S. Nature 2002;418:307.
– reference: Thomas GJ, Siegel RW, Eastman JA. Scripta Metall Mater 1990;24:201.
– reference: Markmann J, Bunzel P, Rosner H, Liu KW, Padmanabhan KA, Birringer R, Gleiter H, Weissmüller J. Scripta Mater 2003;49:637.
– reference: Vinogradov A, Hashimoto S. Advanced Engineering Materials 2003;5:351.
– reference: Zhang X, Wang H, Scattergood RO, Narayan J, Koch CC. Mat Sci Eng 2003;A 344:175.
– reference: Keblinski P, Wolf D, Gleiter H. Interface Sci 1998;6:205.
– reference: Cai B, Kong QP, Cui P, Lu L, Lu K. Scripta Mater 2001;45:1407.
– reference: Mirshams RA, Xiao CH, Whang SH, Yin WM. Mater Sci and Eng 2001;A315:21.
– reference: Derlet PM, Van Swygenhoven H. Philos Mag A 2002;82:1.
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Snippet Nanocrystalline metals and alloys, with average and range of grain sizes typically smaller than 100 nm, have been the subject of considerable research in...
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SubjectTerms Applied sciences
Cross-disciplinary physics: materials science; rheology
Deformation, plasticity, and creep
Exact sciences and technology
Grain boundaries
Grain refining
Materials science
Mechanical properties
Metals. Metallurgy
Modeling
Nanocrystalline materials
Nanoscale materials and structures: fabrication and characterization
Physics
Treatment of materials and its effects on microstructure and properties
Title Mechanical behavior of nanocrystalline metals and alloys
URI https://dx.doi.org/10.1016/j.actamat.2003.08.032
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