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Original Articles

Simulation of plasticity in nanocrystalline silicon

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Pages 4253-4271 | Received 01 Feb 2007, Accepted 20 Mar 2007, Published online: 28 Aug 2007

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M.Yu. Gutkin, I.A. Ovid’ko & N.V. Skiba. (2008) Crack-stimulated generation of deformation twins in nanocrystalline metals and ceramics. Philosophical Magazine 88:8, pages 1137-1151.
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S. Veprek, A. S. Argon & R. F. Zhang. (2007) Origin of the hardness enhancement in superhard nc-TiN/a-Si3N4 and ultrahard nc-TiN/a-Si3N4/TiSi2 nanocomposites. Philosophical Magazine Letters 87:12, pages 955-966.
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Hosni Idrissi, Philippe Carrez & Patrick Cordier. (2022) On amorphization as a deformation mechanism under high stresses. Current Opinion in Solid State and Materials Science 26:1, pages 100976.
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Bingqiang Wei, Wenqian Wu, Dongyue Xie, Michael Nastasi & Jian Wang. (2021) Strength, plasticity, thermal stability and strain rate sensitivity of nanograined nickel with amorphous ceramic grain boundaries. Acta Materialia 212, pages 116918.
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Zan Li, Zhiqiang Li, Zhanqiu Tan, Ding-Bang Xiong & Qiang Guo. (2020) Stress relaxation and the cellular structure-dependence of plastic deformation in additively manufactured AlSi10Mg alloys. International Journal of Plasticity 127, pages 102640.
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H. B. Zhao, H. Feng, F. Liu, Y. W. Liu & P. H. Wen. (2017) Effect of nanoscale twin and dislocation pileup at twin boundary on crack blunting in nanocrystalline materials. Acta Mechanica 228:10, pages 3483-3495.
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Guoqiang Xu & Michael J. Demkowicz. (2016) Crack healing in nanocrystalline palladium. Extreme Mechanics Letters 8, pages 208-212.
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Eric N. Hahn & Marc A. Meyers. (2015) Grain-size dependent mechanical behavior of nanocrystalline metals. Materials Science and Engineering: A 646, pages 101-134.
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S.V. Bobylev & I.A. Ovid’ko. (2015) Stress-driven migration of deformation-distorted grain boundaries in nanomaterials. Acta Materialia 88, pages 260-270.
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Maneesh Mishra, Chaiyapat Tangpatjaroen & Izabela Szlufarska. (2014) Plasticity-Controlled Friction and Wear in Nanocrystalline SiC. Journal of the American Ceramic Society 97:4, pages 1194-1201.
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Nikos V. Galanis, Ioannis N. Remediakis & Georgios Kopidakis. (2013) Structure and mechanical properties of ultra-nanocrystalline diamond and nanocrystalline Cu from atomistic simulations. Mechanics of Materials 67, pages 79-85.
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Yingxin Zhao, Qihong Fang, Youwen Liu & Chunzhi Jiang. (2013) Shielding effects of disclinations on the elliptical blunt crack. International Journal of Engineering Science 70, pages 91-101.
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H. Feng, Q.H. Fang, L.C. Zhang & Y.W. Liu. (2013) Special rotational deformation and grain size effect on fracture toughness of nanocrystalline materials. International Journal of Plasticity 42, pages 50-64.
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Hong-Xian Xie, Bo Liu, Fu-Xing Yin & Tao Yu. (2013) Effect of grain boundary sliding on the toughness of ultrafine grain structure steel: A molecular dynamics simulation study. Chinese Physics B 22:1, pages 010204.
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A. M. Dongare, B. LaMattina & A. M. Rajendran. (2012) Strengthening Behavior and Tension–Compression Strength–Asymmetry in Nanocrystalline Metal–Ceramic Composites. Journal of Engineering Materials and Technology 134:4.
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Fabrizio Cleri. (2012) A two-phase model of large-strain plasticity in covalent nanostructures. International Journal of Plasticity 37, pages 31-52.
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I.A. Ovid’ko & A.G. Sheinerman. (2012) Generation and growth of nanocracks near blunt cracks in nanocrystalline solids. European Journal of Mechanics - A/Solids 33, pages 39-47.
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Hansung KimVikas Tomar. (2011) Nanometer to Micron Scale Atomistic Mechanics of Silicon Using Atomistic Simulations at Accelerated Time Steps. Journal of Nanomechanics and Micromechanics 1:4, pages 134-141.
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Yifei Mo, Donald Stone & Izabela Szlufarska. (2011) Strength of ultrananocrystalline diamond controlled by friction of buried interfaces. Journal of Physics D: Applied Physics 44:40, pages 405401.
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S. V. Bobylev, N. F. Morozov & I. A. Ovid’ko. (2011) Cooperative grain boundary sliding and nanograin nucleation process in nanocrystalline, ultrafine-grained, and polycrystalline solids. Physical Review B 84:9.
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Yingguang Liu, Jianqiu Zhou, T.D. Shen & David Hui. (2011) Grain rotation dependent fracture toughness of nanocrystalline materials. Materials Science and Engineering: A 528:25-26, pages 7684-7687.
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Fabrizio Cleri, Tadashi Ishida, Dominique Collard & Hiroyuki Fujita. (2010) Atomistic simulation of plasticity in silicon nanowires. Applied Physics Letters 97:15.
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M. L. Falk & C. E. Maloney. (2010) Simulating the mechanical response of amorphous solids using atomistic methods. The European Physical Journal B 75:4, pages 405-413.
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M. Yu. Gutkin & I. A. Ovid’ko. (2010) Plastic flow and fracture of amorphous intercrystalline layers in ceramic nanocomposites. Physics of the Solid State 52:4, pages 718-727.
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M. Yu. Gutkin & I. A. Ovid’ko. (2010) A composite model of the plastic flow of amorphous covalent materials. Physics of the Solid State 52:1, pages 58-64.
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M. Budnitzki & O.N. Pierron. (2009) Highly localized surface oxide thickening on polycrystalline silicon thin films during cyclic loading in humid environments. Acta Materialia 57:10, pages 2944-2955.
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Ioannis N. Remediakis, Georgios Kopidakis & Pantelis C. Kelires. 2009. IUTAM Symposium on Modelling Nanomaterials and Nanosystems. IUTAM Symposium on Modelling Nanomaterials and Nanosystems 171 179 .
D.H. Alsem, C.L. Muhlstein, E.A. Stach & R.O. Ritchie. (2008) Further considerations on the high-cycle fatigue of micron-scale polycrystalline silicon. Scripta Materialia 59:9, pages 931-935.
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H. Kahn, A. Avishai, R. Ballarini & A.H. Heuer. (2008) Surface oxide effects on failure of polysilicon MEMS after cyclic and monotonic loading. Scripta Materialia 59:9, pages 912-915.
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Ioannis N. Remediakis, Georgios Kopidakis & Pantelis C. Kelires. (2008) Softening of ultra-nanocrystalline diamond at low grain sizes. Acta Materialia 56:18, pages 5340-5344.
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M. J. Demkowicz, R. G. Hoagland & J. P. Hirth. (2008) Interface Structure and Radiation Damage Resistance in Cu-Nb Multilayer Nanocomposites. Physical Review Letters 100:13.
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S. V. Bobylev & I. A. Ovid’ko. (2008) Nanograin nucleation initiated by intergrain sliding and/or lattice slip in nanomaterials. Applied Physics Letters 92:8.
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