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Original Articles

The inherent tensile strength of iron

Pages 141-147 | Published online: 14 Nov 2010

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Stephen M. Handrigan & Sam Nakhla. (2022) Examination of critical grain size of isotropic nanocrystalline iron through molecular dynamics analysis. Molecular Simulation 48:11, pages 976-990.
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Qing-Jie Li & Evan Ma. (2018) When ‘smaller is stronger’ no longer holds. Materials Research Letters 6:5, pages 283-292.
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T.I. Mazilova, V.A. Ksenofontov, V.N. Voyevodin, E.V. Sadanov & I.M. Mikhailovskij. (2011) Mechanical recrystallization of ultra-strength tungsten nanoneedles. Philosophical Magazine Letters 91:4, pages 304-312.
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W. Luo, M.L. Cohen & J.W. Morris$suffix/text()$suffix/text(). (2009) On the possibility of cleavage in Nb. Philosophical Magazine Letters 89:1, pages 23-32.
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M. Friák, M. Šob & V. Vitek. (2003) Ab initio calculation of tensile strength in iron . Philosophical Magazine 83:31-34, pages 3529-3537.
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Articles from other publishers (40)

Songchang LIU, Xingang YU & Nianmei ZHANG. (2023) An embedded-atom method interatomic potential for lithium-iron binary system and its applications in the liquid first wall system. Journal of Nuclear Materials, pages 154867.
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Qian Chen, Jing Zhang, Zhongmin Liu, Yang Wang, Yusuke Ootani, Jingxiang Xu, Nobuki Ozawa & Momoji Kubo. (2021) Heterogeneous yielding mechanisms of body centered cubic iron for high resistance to chemical reaction-induced deterioration in supercritical water environments: A reactive molecular dynamics study. Scripta Materialia 202, pages 113997.
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Peiyu Cao, Fuyang Tian, Wei Li, Levente Vitos & Yandong Wang. (2021) Ideal superelasticity in Ni-based Heusler alloys. Acta Materialia 210, pages 116816.
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Abril Azócar Guzmán, Jeongwook Jeon, Alexander Hartmaier & Rebecca Janisch. (2020) Hydrogen Embrittlement at Cleavage Planes and Grain Boundaries in Bcc Iron—Revisiting the First-Principles Cohesive Zone Model. Materials 13:24, pages 5785.
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L Sun, H R Gong & X Gong. (2020) Magnetic ground state of face-centered-cubic structure of iron. Journal of Physics: Condensed Matter 32:16, pages 165806.
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Y. J. Shen, L. C. Liu, S. T. Mi, H. R. Gong & S. F. Zhou. (2020) Construction of an n -body Fe–Cu potential and its application in atomistic modeling of Fe–Cu solid solutions . Journal of Applied Physics 127:4.
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H K D H Bhadeshia. (2019) Length scales and alloys of iron. IOP Conference Series: Materials Science and Engineering 580:1, pages 012002.
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S.H. Zhang, Z.H. Fu & R.F. Zhang. (2019) ADAIS: Automatic Derivation of Anisotropic Ideal Strength via high-throughput first-principles computations. Computer Physics Communications 238, pages 244-253.
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Petr Šesták, Martin Friák, David Holec, Monika Všianská & Mojmír Šob. (2018) Strength and Brittleness of Interfaces in Fe-Al Superalloy Nanocomposites under Multiaxial Loading: An ab initio and Atomistic Study. Nanomaterials 8:11, pages 873.
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S.S. Kulkov, A.V. Bakulin & S.E. Kulkova. (2018) Effect of boron on the hydrogen-induced grain boundary embrittlement in α-Fe. International Journal of Hydrogen Energy 43:3, pages 1909-1925.
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Harshad Bhadeshia & Robert Honeycombe. 2017. Steels: Microstructure and Properties. Steels: Microstructure and Properties 23 57 .
Harshad Bhadeshia & Robert Honeycombe. 2017. Steels: Microstructure and Properties. Steels: Microstructure and Properties 1 22 .
Xiaoqing Li, Stephan Schönecker, Jijun Zhao, Börje Johansson & Levente Vitos. (2016) Alloying effect on the ideal tensile strength of ferromagnetic and paramagnetic bcc iron. Journal of Alloys and Compounds 676, pages 565-574.
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S. Sampath, R. Rementeria, X. Huang, J.D. Poplawsky, C. Garcia-Mateo, F.G. Caballero & R. Janisch. (2016) The role of silicon, vacancies, and strain in carbon distribution in low temperature bainite. Journal of Alloys and Compounds 673, pages 289-294.
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J. Pokluda, M. Černý, M. Šob & Y. Umeno. (2015) Ab initio calculations of mechanical properties: Methods and applications. Progress in Materials Science 73, pages 127-158.
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Wei-Zhong Han, Ling Huang, Shigenobu Ogata, Hajime Kimizuka, Zhao-Chun Yang, Christopher Weinberger, Qing-Jie Li, Bo-Yu Liu, Xi-Xiang Zhang, Ju Li, Evan Ma & Zhi-Wei Shan. (2015) From “Smaller is Stronger” to “Size-Independent Strength Plateau”: Towards Measuring the Ideal Strength of Iron. Advanced Materials 27:22, pages 3385-3390.
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Xiaoqing Li, Stephan Schönecker, Jijun Zhao, Börje Johansson & Levente Vitos. (2014) Anomalous ideal tensile strength of ferromagnetic Fe and Fe-rich alloys. Physical Review B 90:2.
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N. Garvik, Ph. Carrez & P. Cordier. (2013) First-principles study of the ideal strength of Fe3C cementite. Materials Science and Engineering: A 572, pages 25-29.
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Göran Grimvall, Blanka Magyari-Köpe, Vidvuds Ozoliņš & Kristin A. Persson. (2012) Lattice instabilities in metallic elements. Reviews of Modern Physics 84:2, pages 945-986.
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Igor Telichev & Oleg Vinogradov. (2010) The application of inverse Broyden’s algorithm for modeling of crack growth in iron crystals. Journal of Molecular Modeling 17:7, pages 1707-1717.
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M. Friák, T. Hickel, F. Körmann, A. Udyansky, A. Dick, J. von Pezold, D. Ma, O. Kim, W.A. Counts, M. Šob, T. Gebhardt, D. Music, J. Schneider, D. Raabe & J. Neugebauer. (2011) Determining the Elasticity of Materials Employing Quantum-mechanical Approaches: From the Electronic Ground State to the Limits of Materials Stability. steel research international 82:2, pages 86-100.
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H. K. D. H. Bhadeshia. (2009) Nanostructured bainite. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 466:2113, pages 3-18.
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Hong-Bo Zhou, Ying Zhang, Yue-Lin Liu, Masanori Kohyama, Peng-Gang Yin & Guang-Hong Lu. (2009) First-principles characterization of the anisotropy of theoretical strength and the stress–strain relation for a TiAl intermetallic compound. Journal of Physics: Condensed Matter 21:17, pages 175407.
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Sami Kamran, Kuiying Chen & Liang Chen. (2009) Ab initio examination of ductility features of fcc metals . Physical Review B 79:2.
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John William Morris, Jr.. (2008) Comments on the Microstructure and Properties of Ultrafine Grained Steel. ISIJ International 48:8, pages 1063-1070.
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Miroslav Černý & Jaroslav Pokluda. (2007) Influence of superimposed biaxial stress on the tensile strength of perfect crystals from first principles. Physical Review B 76:2.
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Y.L. Liu, L.M. Liu, S.Q. Wang & H.Q. Ye. (2007) First-principles study of shear deformation in TiAl and Ti3Al. Intermetallics 15:3, pages 428-435.
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J. W. MorrisJr.Jr.. 2005. Handbook of Materials Modeling. Handbook of Materials Modeling 2777 2785 .
Mojmír Šob, Martin Friák, Dominik Legut & Václav Vitek. 2005. Complex Inorganic Solids. Complex Inorganic Solids 307 325 .
M. Šob, M. Friák, D. Legut, J. Fiala & V. Vitek. (2004) The role of ab initio electronic structure calculations in studies of the strength of materials. Materials Science and Engineering: A 387-389, pages 148-157.
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L.G. HectorJr.Jr. & J.F. Herbst. (2004) Electronic and elastic properties of RCo5 and RCo5H (R = La, Ce, Pr). Journal of Alloys and Compounds 379:1-2, pages 41-53.
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Jaroslav Pokluda. (2004) Theoretical Strength of Solids. Communications - Scientific letters of the University of Zilina 6:2, pages 5-11.
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J. Pokluda, M. Černý, P. Šandera & M. Šob. (2005) Calculations of theoretical strength: State of the art and history. Journal of Computer-Aided Materials Design 11:1, pages 1-28.
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M. Friák, M. Šob & V. Vitek. (2003) Ab initio study of the ideal tensile strength and mechanical stability of transition-metal disilicides . Physical Review B 68:18.
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D.M. Clatterbuck, D.C. Chrzan & J.W. MorrisJr.Jr.. (2003) The influence of triaxial stress on the ideal tensile strength of iron. Scripta Materialia 49:10, pages 1007-1011.
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D.M Clatterbuck, D.C Chrzan & J.W MorrisJr.Jr.. (2003) The ideal strength of iron in tension and shear. Acta Materialia 51:8, pages 2271-2283.
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M. Černý, J. Pokluda, M. Šob, M. Friák & P. Šandera. (2003) Ab initio calculations of elastic and magnetic properties of Fe, Co, Ni, and Cr crystals under isotropic deformation . Physical Review B 67:3.
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D.M. Clatterbuck, D.C. Chrzan & J.W. MorrisJr.Jr.. 2003. Nano and Microstructural Design of Advanced Materials. Nano and Microstructural Design of Advanced Materials 173 190 .
Weidong Luo, D. Roundy, Marvin L. Cohen & J. W. Morris. (2002) Ideal strength of bcc molybdenum and niobium. Physical Review B 66:9.
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Qian Chen, Jing Zhang, Zhongmin Liu, Yang Wang, Yusuke Ootani, Jingxiang Xu, Nobuki Ozawa & Momoji Kubo. (2021) Heterogeneous Yielding Mechanisms of Body Center Cubic Iron for High Resistance to Chemical Reaction-Induced Deterioration in Supercritical Water Environments: A Reactive Molecular Dynamics Study. SSRN Electronic Journal.
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