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Original Articles

Void growth in bcc metals simulated with molecular dynamics using the Finnis–Sinclair potential

Pages 3133-3161 | Received 31 May 2009, Accepted 17 Jul 2009, Published online: 01 Dec 2009

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S. Z. Xu, Z. M. Hao, Y. Q. Su, W. J. Hu, Y. Yu & Q. Wan. (2012) Atomic collision cascades on void evolution in vanadium. Radiation Effects and Defects in Solids 167:1, pages 12-25.
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Haonan Sui, Long Yu, Wenbin Liu, Ying Liu, Yangyang Cheng & Huiling Duan. (2022) Theoretical models of void nucleation and growth for ductile metals under dynamic loading: A review. Matter and Radiation at Extremes 7:1.
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Ashutosh Rajput & Surajit Kumar Paul. (2021) Effect of void in deformation and damage mechanism of single crystal copper: a molecular dynamics study. Modelling and Simulation in Materials Science and Engineering 29:8, pages 085013.
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Sunil Rawat. (2021) Damage evolution in single crystal iron at high strain rate:A molecular dynamics study. Pramana 95:2.
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Renelle Dubosq, A. Rogowitz, D. A. Schneider, K. Schweinar & B. Gault. (2021) Fluid inclusion induced hardening: nanoscale evidence from naturally deformed pyrite. Contributions to Mineralogy and Petrology 176:2.
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Haonan Sui, Long Yu, Wenbin Liu, Lirong Chen & Huiling Duan. (2020) Three dimensional dislocation-loop emission criterion for void growth of ductile metals. International Journal of Plasticity 131, pages 102746.
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Carlos J. Ruestes, Graciela M. Bertolino, Margarita Ruda & Eduardo M. Bringa. (2020) A sigmoidal equation for the high strain rate compression of porous metals. International Journal of Impact Engineering 137, pages 103431.
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Adam Cywar, Zachary Woods, SangBum Kim, Matt BrightSky, Norma Sosa, Yu Zhu, Hyeong Soo Kim, Hyung Keun Kim, Chung Lam, Ali Gokirmak & Helena Silva. (2020) Modeling of void formation in phase change memory devices. Solid-State Electronics 164, pages 107684.
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Jiechao Cui, Min Li, Baoqin Fu & Qing Hou. (2019) Migration behaviors of helium atoms near tungsten surfaces: A molecular dynamics study. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 455, pages 1-6.
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Xudong Li & Jianqiu Zhou. (2018) Quantitative understanding of the effect of grain rotation on the nanovoid growth. Journal of Materials Research 34:2, pages 271-281.
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Yun-Tian Wang, Xiang-Guo Zeng & Xin Yang. (2019) Molecular dynamics simulation of effect of temperature on void nucleation and growth of single crystal iron at a high strain rate. Acta Physica Sinica 68:24, pages 246102.
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Sunil Rawat & P.M. Raole. (2018) Molecular dynamics investigation of void evolution dynamics in single crystal iron at extreme strain rates. Computational Materials Science 154, pages 393-404.
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Peng Jing, Lin Yuan, Rajiv Shivpuri, Chuanlong Xu, Yuqi Zhang, Debin Shan & Bin Guo. (2018) Evolution of spherical nanovoids within copper polycrystals during plastic straining: Atomistic investigation. International Journal of Plasticity 100, pages 122-141.
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Shuozhi Xu & Saeed Zare Chavoshi. (2018) Uniaxial deformation of nanotwinned nanotubes in body-centered cubic tungsten. Current Applied Physics 18:1, pages 114-121.
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A. Kedharnath, Ajay Singh Panwar & Rajeev Kapoor. (2017) Molecular dynamics simulation of the interaction of a nano-scale crack with grain boundaries in α-Fe. Computational Materials Science 137, pages 85-99.
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Chuanshi Hong, Søren Fæster, Niels Hansen, Xiaoxu Huang & Rozaliya I. Barabash. (2017) Non-spherical voids and lattice reorientation patterning in a shock-loaded Al single crystal. Acta Materialia 134, pages 16-30.
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Claire Grégoire & Mauricio Ponga. (2017) Nanovoid failure in Magnesium under dynamic loads. Acta Materialia 134, pages 360-374.
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Chuanshi Hong, Søren Fæster, Niels Hansen, Xiaoxu Huang & Rozaliya I. Barabash. (2017) Characterization of voids in shock-loaded Al single crystal by combining X-ray tomography and electron microscopy. IOP Conference Series: Materials Science and Engineering 219, pages 012027.
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Eric N. Hahn, Timothy C. Germann, Ramon Ravelo, James E. Hammerberg & Marc A. Meyers. (2017) On the ultimate tensile strength of tantalum. Acta Materialia 126, pages 313-328.
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Robert E. Rudd, H.-S. Park, R. M. Cavallo, A. Arsenlis, D. A. Orlikowski, S. T. Prisbrey, C. E. Wehrenberg & B. A. Remington. Modeling of grain size strengthening in tantalum at high pressures and strain rates. Modeling of grain size strengthening in tantalum at high pressures and strain rates.
Chuanguo Zhang, Xianlong Wang, Jie Zhang, Kaishuai Yang, Ya Cheng, Zhi Zeng, Xianming Zhou & Haiqing Lin. (2017) Schottky defects induced effects on the behaviors of high velocity shock compression of MgO. RSC Advances 7:72, pages 45304-45310.
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Shuozhi Xu & Yanqing Su. (2016) Nanovoid growth in BCC α -Fe: influences of initial void geometry . Modelling and Simulation in Materials Science and Engineering 24:8, pages 085015.
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Qitao Liu, Lei Deng & Xinyun Wang. (2016) Interactions between prismatic dislocation loop and coherent twin boundary under nanoindentation investigated by molecular dynamics. Materials Science and Engineering: A 676, pages 182-190.
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Daniel Esqué-de los Ojos, Eva Pellicer & Jordi Sort. (2016) The Influence of Pore Size on the Indentation Behavior of Metallic Nanoporous Materials: A Molecular Dynamics Study. Materials 9:5, pages 355.
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Xiaojuan Peng, Wenjun Zhu, Kaiguo Chen, Xiaoliang Deng & Yongkai Wei. (2016) Molecular dynamics simulations of void coalescence in monocrystalline copper under loading and unloading. Journal of Applied Physics 119:16.
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Lynn B. Munday, Joshua C. Crone & Jaroslaw Knap. (2016) Prismatic and helical dislocation loop generation from defects. Acta Materialia 103, pages 217-228.
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C. J. Ruestes, E. M. Bringa, R. E. Rudd, B. A. Remington, T. P. Remington & M. A. Meyers. (2015) Probing the character of ultra-fast dislocations. Scientific Reports 5:1.
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V S Krasnikov & A E Mayer. (2015) Initial stage of fracture of aluminum with ideal and defect lattice. Journal of Physics: Conference Series 653, pages 012094.
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M. Ponga, M. Ortiz & M.P. Ariza. (2015) Finite-temperature non-equilibrium quasi-continuum analysis of nanovoid growth in copper at low and high strain rates. Mechanics of Materials 90, pages 253-267.
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V.S. Krasnikov & A.E. Mayer. (2015) Plasticity driven growth of nanovoids and strength of aluminum at high rate tension: Molecular dynamics simulations and continuum modeling. International Journal of Plasticity 74, pages 75-91.
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Viktor V. Pogorelko & Alexander E. Mayer. (2015) Influence of copper inclusions on the strength of aluminum matrix at high-rate tension. Materials Science and Engineering: A 642, pages 351-359.
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Lynn B. Munday, Joshua C. Crone & Jaroslaw Knap. (2015) The role of free surfaces on the formation of prismatic dislocation loops. Scripta Materialia 103, pages 65-68.
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Vlado A. Lubarda. (2014) Circular inclusion near a circular void: determination of elastic antiplane shear fields and configurational forces. Acta Mechanica 226:3, pages 643-664.
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Diwu Min-Jie & Hu Xiao-Mian. (2015) Plastic deformation in nanoporous aluminum subjected to high-rate uniaxial compression. Acta Physica Sinica 64:17, pages 170201.
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Fuping Yuan & Xiaolei Wu. (2014) Scaling laws and deformation mechanisms of nanoporous copper under adiabatic uniaxial strain compression. AIP Advances 4:12.
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Diego Tramontina, Carlos Ruestes, Yizhe Tang & Eduardo Bringa. (2014) Orientation-dependent response of defective Tantalum single crystals. Computational Materials Science 90, pages 82-88.
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Joel Berry, Nikolas Provatas, Jörg Rottler & Chad W. Sinclair. (2014) Phase field crystal modeling as a unified atomistic approach to defect dynamics. Physical Review B 89:21.
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Laura Smith, Jonathan A Zimmerman, Lucas M Hale & Diana Farkas. (2014) Molecular dynamics study of deformation and fracture in a tantalum nano-crystalline thin film. Modelling and Simulation in Materials Science and Engineering 22:4, pages 045010.
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C.J. Ruestes, E.M. Bringa, A. Stukowski, J.F. Rodríguez Nieva, Y. Tang & M.A. Meyers. (2014) Plastic deformation of a porous bcc metal containing nanometer sized voids. Computational Materials Science 88, pages 92-102.
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Diego Tramontina, Paul Erhart, Timothy Germann, James Hawreliak, Andrew Higginbotham, Nigel Park, Ramón Ravelo, Alexander Stukowski, Mathew Suggit, Yizhe Tang, Justin Wark & Eduardo Bringa. (2014) Molecular dynamics simulations of shock-induced plasticity in tantalum. High Energy Density Physics 10, pages 9-15.
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Karanvir Saini & Navin Kumar. (2014) Effect of Surface Crack and its Size on Mechanical Characteristics of Gold Nano-wires. Procedia Materials Science 6, pages 161-170.
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H-J Chang, J Segurado, O Rodríguez de la Fuente, B M Pabón & J LLorca. (2013) Molecular dynamics modeling and simulation of void growth in two dimensions. Modelling and Simulation in Materials Science and Engineering 21:7, pages 075010.
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Yizhe Tang, Eduardo M. Bringa & Marc A. Meyers. (2013) Inverse Hall–Petch relationship in nanocrystalline tantalum. Materials Science and Engineering: A 580, pages 414-426.
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Jian Qiu Zhou, Lu Wang & Zhi Xiong Ye. (2013) Micromechanics Model for Nanovoid Growth in Nanocrystalline Materials. Applied Mechanics and Materials 364, pages 754-759.
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Danny Perez, Sheng-Nian Luo, Arthur F. Voter & Timothy C. Germann. (2013) Entropic Stabilization of Nanoscale Voids in Materials under Tension. Physical Review Letters 110:20.
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C.J. Ruestes, E.M. Bringa, A. Stukowski, J.F. Rodríguez Nieva, G. Bertolino, Y. Tang & M.A. Meyers. (2013) Atomistic simulation of the mechanical response of a nanoporous body-centered cubic metal. Scripta Materialia 68:10, pages 817-820.
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Jorge Alcalá, Roger Dalmau, Oliver Franke, Monika Biener, Juergen Biener & Andrea Hodge. (2012) Planar Defect Nucleation and Annihilation Mechanisms in Nanocontact Plasticity of Metal Surfaces. Physical Review Letters 109:7.
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Yizhe Tang, Eduardo M. Bringa & Marc A. Meyers. (2012) Ductile tensile failure in metals through initiation and growth of nanosized voids. Acta Materialia 60:12, pages 4856-4865.
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Robert E. Rudd, William H. Cabot, Kyle J. Caspersen, Jeffrey A. Greenough, David F. Richards, Frederick H. Streitz & Paul L. Miller. (2012) Self-diffusivity and interdiffusivity of molten aluminum-copper alloys under pressure, derived from molecular dynamics. Physical Review E 85:3.
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EnQiang Lin, LiSha Niu, HuiJi Shi & Zheng Duan. (2011) Molecular dynamics study on the nano-void growth and coalescence at grain boundary. Science China Physics, Mechanics and Astronomy 55:1, pages 86-93.
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Changwen Mi, Daniel A. Buttry, Pradeep Sharma & Demitris A. Kouris. (2011) Atomistic insights into dislocation-based mechanisms of void growth and coalescence. Journal of the Mechanics and Physics of Solids 59:9, pages 1858-1871.
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Lu Wang, Jianqiu Zhou, Yingguang Liu, Shu Zhang, Ying Wang & Wei Xing. (2011) Nanovoid growth in nanocrystalline metal by dislocation shear loop emission. Materials Science and Engineering: A 528:16-17, pages 5428-5434.
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S.Z. Xu, Z.M. Hao, Y.Q. Su, Y. Yu, Q. Wan & W.J. Hu. (2011) An analysis on nanovoid growth in body-centered cubic single crystalline vanadium. Computational Materials Science 50:8, pages 2411-2421.
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Vlado A. Lubarda. (2011) Image force on a straight dislocation emitted from a cylindrical void. International Journal of Solids and Structures 48:5, pages 648-660.
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Vlado A. Lubarda. (2011) Emission of dislocations from nanovoids under combined loading. International Journal of Plasticity 27:2, pages 181-200.
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Yizhe Tang, Eduardo M. Bringa, Bruce A. Remington & Marc A. Meyers. (2011) Growth and collapse of nanovoids in tantalum monocrystals. Acta Materialia 59:4, pages 1354-1372.
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R. E. Rudd, T. C. Germann, B. A. Remington & J. S. Wark. (2011) Metal deformation and phase transitions at extremely high strain rates. MRS Bulletin 35:12, pages 999-1006.
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Eduardo M. Bringa, Sirirat Traiviratana & Marc A. Meyers. (2010) Void initiation in fcc metals: Effect of loading orientation and nanocrystalline effects. Acta Materialia 58:13, pages 4458-4477.
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E.M. Bringa, V.A. Lubarda & M.A. Meyers. (2010) Response to “Shear Impossibility—Comments on ‘Void Growth by Dislocation Emission’ and ‘Void Growth in Metals’”. Scripta Materialia 63:1, pages 148-150.
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