914
Views
137
CrossRef citations to date
0
Altmetric
Original Articles

Atomic modelling of strengthening mechanisms due to voids and copper precipitates in α-iron

, &
Pages 3623-3641 | Received 11 Oct 2002, Accepted 22 Feb 2003, Published online: 12 May 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (11)

Benjamin A. Szajewski, Joshua C. Crone & Jaroslaw Knap. (2019) Analytic model for the line tension of a bowing dislocation segment. Philosophical Magazine Letters 99:2, pages 77-86.
Read now
Yosuke Abe, Tomohito Tsuru, Shi Shi, Naoko Oono & Shigeharu Ukai. (2016) Effect of the dilation caused by helium bubbles on edge dislocation motion in α-iron: molecular dynamics simulation. Journal of Nuclear Science and Technology 53:10, pages 1528-1534.
Read now
S.M. Hafez Haghighat & R. Schäublin. (2010) Influence of the stress field due to pressurized nanometric He bubbles on the mobility of an edge dislocation in iron. Philosophical Magazine 90:7-8, pages 1075-1100.
Read now
Yu.N. Osetsky & D.J. Bacon. (2010) Atomic-scale mechanisms of void hardening in bcc and fcc metals. Philosophical Magazine 90:7-8, pages 945-961.
Read now
G. Monnet, Yu.N. Osetsky & D.J. Bacon. (2010) Mesoscale thermodynamic analysis of atomic-scale dislocation–obstacle interactions simulated by molecular dynamics. Philosophical Magazine 90:7-8, pages 1001-1018.
Read now
D.J. Bacon & Yu.N. Osetsky. (2009) Mechanisms of hardening due to copper precipitates in α-iron. Philosophical Magazine 89:34-36, pages 3333-3349.
Read now
F. Bergner, A. Ulbricht & H.-W. Viehrig. (2009) Acceleration of irradiation hardening of low-copper reactor pressure vessel steel observed by means of SANS and tensile testing. Philosophical Magazine Letters 89:12, pages 795-805.
Read now
T. Nogaret, C. Robertson & D. Rodney. (2007) Atomic-scale plasticity in the presence of Frank loops. Philosophical Magazine 87:6, pages 945-966.
Read now
A. C. Arokiam, A. V. Barashev, D. J. Bacon & Y. N. Osetsky. (2007) Atomic-scale computer simulation study of the interaction of Cu-rich precipitates with irradiation-produced defects in α-Fe. Philosophical Magazine 87:6, pages 925-943.
Read now
Y. N. Osetsky, D. Rodney & D. J. Bacon. (2006) Atomic-scale study of dislocation–stacking fault tetrahedron interactions. Part I: mechanisms. Philosophical Magazine 86:16, pages 2295-2313.
Read now

Articles from other publishers (126)

A.V. Karavaev, P.V. Chirkov, R.M. Kichigin & V.V. Dremov. (2023) Atomistic simulation of hardening in bcc iron-based alloys caused by nanoprecipitates. Computational Materials Science 229, pages 112383.
Crossref
Hideki Mori, Tomohito Tsuru, Masahiko Okumura, Daisuke Matsunaka, Yoshinori Shiihara & Mitsuhiro Itakura. (2023) Dynamic interaction between dislocations and obstacles in bcc iron based on atomic potentials derived using neural networks. Physical Review Materials 7:6.
Crossref
Changqiu Ji, Jianqiao Hu, Zhuo Zhuang & Yinan Cui. (2023) Atomistically-informed hardening and kinetics models of helium bubble in irradiated tungsten. International Journal of Plasticity 165, pages 103620.
Crossref
Qifan Bao, Zhenhuan Li, Bida Zhu, Shuang Liang, Jianchang Zhu, Minsheng Huang, Lv Zhao & Yaxin Zhu. (2023) Influence of kinetic effect on interaction between edge dislocation and irradiated dislocation loops in BCC Tantalum. International Journal of Plasticity 165, pages 103603.
Crossref
Spilios Dellis, Xiazi Xiao, Dmitry Terentyev, Efthymios Manios & Konstantina Mergia. (2023) Hardening mechanisms of “cold” rolled tungsten after neutron irradiation: Indentation and finite elements modelling. International Journal of Refractory Metals and Hard Materials 111, pages 106096.
Crossref
Feng Fang, Shangfeng Che, Fangqiu Wang, Yijun Zhao, Yuanxiang Zhang, Yang Wang, Guangming Cao, Guo Yuan, R.D.K. Misra & Guodong Wang. (2022) Microstructure evolution and strengthening mechanism in thin-gauge non-oriented silicon steel with high strength. Journal of Magnetism and Magnetic Materials 563, pages 169791.
Crossref
Changqiu Ji, Yinan Cui, Yang Li & Nasr Ghoniem. (2022) A concurrent irradiation-mechanics multiscale coupling model. Journal of the Mechanics and Physics of Solids 167, pages 105005.
Crossref
K. Tsugawa, S. Hayakawa, Y. Iwase, T. Okita, K. Suzuki, M. Itakura & M. Aichi. (2022) Molecular dynamics simulations to quantify the interaction of a rigid and impenetrable precipitate with an edge dislocation in Cu. Computational Materials Science 210, pages 111450.
Crossref
Wu-Rong Jian, Shuozhi Xu, Yanqing Su & Irene J. Beyerlein. (2022) Energetically favorable dislocation/nanobubble bypass mechanism in irradiation conditions. Acta Materialia 230, pages 117849.
Crossref
C.R. Lear, J.G. Gigax, O. El Atwani, M.R. Chancey, H. Kim, N. Li, Y. Wang & S.J. Fensin. (2022) Effects of helium cavity size and morphology on the strength of pure titanium. Scripta Materialia 212, pages 114531.
Crossref
Ping Yu, Guisen Liu, Kaitao Wu, Yanguang Cui, Guannan Zhao & Yao Shen. (2022) Exploring the effects of the sheared voids on the hardening of tungsten using atomistic simulations. Journal of Nuclear Materials 562, pages 153548.
Crossref
Ziqiang Wang, Miaosen Yu, Xuehao Long, Chen Yang, Ning Gao, Zhongwen Yao & Xuelin Wang. (2022) New mechanisms of dislocation line-loop interactions in BCC-Fe explored by molecular dynamics method. Results in Physics 34, pages 105226.
Crossref
Yuri Osetsky. (2021) Strengthening of tungsten by coherent rhenium precipitates formed during low fluence irradiation. Tungsten 4:1, pages 20-27.
Crossref
A. Dubinko, D. Terentyev, C. Yin, W. Van Renterghem, B. Rossaert, M. Rieth, E.E. Zhurkin, A. Zinovev, C.C. Chang, S. Van Dyck & G. Bonny. (2021) Microstructure and hardening induced by neutron irradiation in single crystal, ITER specification and cold rolled tungsten. International Journal of Refractory Metals and Hard Materials 98, pages 105522.
Crossref
Huiya Yang, Keqiang Li, Yeqiang Bu, Jinming Wu, Youtong Fang, Liang Meng, Jiabin Liu & Hongtao Wang. (2021) Nanoprecipitates induced dislocation pinning and multiplication strategy for designing high strength, plasticity and conductivity Cu alloys. Scripta Materialia 195, pages 113741.
Crossref
Benjamin A Szajewski, Joshua C Crone & Jaroslaw Knap. (2021) Dislocation precipitate bypass through elastically mismatched precipitates. Modelling and Simulation in Materials Science and Engineering 29:2, pages 025005.
Crossref
Yuri N. Osetsky. (2021) Atomic-scale mechanisms of void strengthening in tungsten. Tungsten 3:1, pages 65-71.
Crossref
Yuchi Cui, Eda Aydogan, Jonathan G. Gigax, Yongqiang Wang, Amit Misra, Stuart A. Maloy & Nan Li. (2021) In Situ Micro-Pillar Compression to Examine Radiation-Induced Hardening Mechanisms of FeCrAl Alloys. Acta Materialia 202, pages 255-265.
Crossref
Tomotsugu Shimokawa, Kiichiro Yasui, Tomoaki Niiyama, Keisuke Kinoshita & Hideaki Sawada. (2020) A Mechanism of Carbon-Cluster Strengthening through Atomic Simulations. MATERIALS TRANSACTIONS 61:11, pages 2139-2148.
Crossref
Yang Chen, Yanbin Liu, Qihong Fang, Jia Li, Yong Liu & Peter K Liaw. (2020) An unified model for dislocations interacting with complex-shape voids in irradiated metals. International Journal of Mechanical Sciences 185, pages 105689.
Crossref
Benjamin A. Szajewski, Joshua C. Crone & Jaroslaw Knap. (2020) Analytic model for the Orowan dislocation-precipitate bypass mechanism. Materialia 11, pages 100671.
Crossref
Shehu Adam Ibrahim, Qingyu Wang, Yue Zhang, Mohammed Ado, Gyang Davou Chung & M. Mustafa Azeem. (2020) Molecular dynamics simulation of strengthening dependence on precipitate Cr composition in Fe-15at.%Cr alloy. Micron 131, pages 102823.
Crossref
M. Mustafa Azeem, Qingyu Wang, Zhongyu Li & Yue Zhang. (2020) Dislocation-oxide interaction in Y2O3 embedded Fe: A molecular dynamics simulation study. Nuclear Engineering and Technology 52:2, pages 337-343.
Crossref
Tomotsugu Shimokawa, Kiichiro Yasui, Tomoaki Niiyama, Keisuke Kinoshita & Hideaki Sawada. (2020) A Mechanism of Carbon-Cluster Strengthening though Atomic Simulations炭素クラスターの強化機構に関する原子論的研究. Journal of the Japan Institute of Metals and Materials 84:1, pages 19-27.
Crossref
F. Granberg, J. Byggmästar & K. Nordlund. (2020) Defect accumulation and evolution during prolonged irradiation of Fe and FeCr alloys. Journal of Nuclear Materials 528, pages 151843.
Crossref
Panagiotis Grammatikopoulos. 2020. Computational Modelling of Nanomaterials. Computational Modelling of Nanomaterials 161 186 .
Yuri Osetsky & David Rodney. 2020. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 663 688 .
Jian Yin, Yi Wang, Huaiyu Hou, Jing Tao Wang, Xiangbing Liu & Fei Xue. (2019) Atomistic simulation of interactions between an edge dislocation and Cu precipitates with different chemical compositions in α-Fe. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 458, pages 39-43.
Crossref
Liang Chen, Kenji Nishida, Kenta Murakami, Dongyue Chen, Li Liu, Tomohiro Kobayashi, Zhengcao Li & Naoto Sekimura. (2019) A model to evaluate the hardening effect of solute clusters in Fe-based alloys. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 455, pages 32-34.
Crossref
Fredric Granberg, Jesper Byggmästar & Kai Nordlund. (2019) Cascade overlap with vacancy-type defects in Fe. The European Physical Journal B 92:7.
Crossref
Dhriti Bhattacharyya, Takuya Yamamoto, Peter Wells, Emmanuelle Marquis, Mukesh Bachhav, Yuan Wu, Joel Davis, Alan Xu & G. Robert Odette. (2019) Microstructural changes and their effect on hardening in neutron irradiated Fe-Cr alloys. Journal of Nuclear Materials 519, pages 274-286.
Crossref
Ghiath Monnet & Chu Mai. (2019) Prediction of irradiation hardening in austenitic stainless steels: Analytical and crystal plasticity studies. Journal of Nuclear Materials 518, pages 316-325.
Crossref
Shi-Hao Li, Jing-Ting Li & Wei-Zhong Han. (2019) Radiation-Induced Helium Bubbles in Metals. Materials 12:7, pages 1036.
Crossref
Ghiath Monnet, Ludovic Vincent & Lionel Gélébart. (2019) Multiscale modeling of crystal plasticity in Reactor Pressure Vessel steels: Prediction of irradiation hardening. Journal of Nuclear Materials 514, pages 128-138.
Crossref
Yankun Dou, Dongjie Wang, Xinfu He, Muhammad Rizwan, Lixia Jia, Shi Wu, Han Cao & Wen Yang. 2019. High-Performance Computing Applications in Numerical Simulation and Edge Computing. High-Performance Computing Applications in Numerical Simulation and Edge Computing 135 151 .
Ghiath Monnet & Ludovic Vincent. 2019. Handbook of Mechanics of Materials. Handbook of Mechanics of Materials 167 197 .
Q. Xu, T. Yokotani, T. Onitsuka & K. Sato. (2018) Correlation between mechanical properties and Cu precipitates induced by neutron irradiation of Fe Cu alloys. Journal of Nuclear Materials 512, pages 314-319.
Crossref
YanKun Dou, XinFu He, DongJie Wang, Wu Shi, LiXia Jia & Wen Yang. (2018) The Study of Nanosized Cu–Mn Precipitates Contribution to Hardening in Body Centered Cubic Fe Matrix. Journal of Nuclear Engineering and Radiation Science 4:4.
Crossref
Ghiath Monnet. (2018) Multiscale modeling of irradiation hardening: Application to important nuclear materials. Journal of Nuclear Materials 508, pages 609-627.
Crossref
A. V. Bakaev, D. A. Terentyev & E. E. Zhurkin. (2018) Effect of Segregation of Ni and Cr at Dislocation Loops on Their Interaction with Gliding Dislocations in Irradiated Fe−Ni−Cr BCC Alloys. Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques 12:4, pages 783-791.
Crossref
Sumeet Mishra, Manasij Yadava, Kaustubh N Kulkarni & N P Gurao. (2018) A theoretical investigation of the effect of precipitate habit plane on plastic anisotropy in age hardenable aluminium alloys. Modelling and Simulation in Materials Science and Engineering 26:5, pages 055011.
Crossref
Y.T. Zhu & X.L. Wu. (2018) Ductility and plasticity of nanostructured metals: differences and issues. Materials Today Nano 2, pages 15-20.
Crossref
Amirreza Keyhani & Reza Roumina. (2018) Dislocation-precipitate interaction map. Computational Materials Science 141, pages 153-161.
Crossref
Ghiath Monnet & Ludovic Vincent. 2018. Handbook of Mechanics of Materials. Handbook of Mechanics of Materials 1 32 .
A.V. Karavaev, V.V. Dremov & G.V. Ionov. (2017) Atomistic simulations of dislocation dynamics in δ -Pu-Ga alloys. Journal of Nuclear Materials 496, pages 85-96.
Crossref
Song Xu, Jiang Xu, Paul Munroe & Zong-Han Xie. (2017) Nanoporosity improves the damage tolerance of nanostructured tantalum nitride coatings. Scripta Materialia 133, pages 86-91.
Crossref
Jia Li, Bin Liu, QiHong Fang, ZaiWang Huang & YouWen Liu. (2017) Atomic-scale strengthening mechanism of dislocation-obstacle interaction in silicon carbide particle-reinforced copper matrix nanocomposites. Ceramics International 43:4, pages 3839-3846.
Crossref
M. Bahramyan, R. Taherzadeh Mousavian & D. Brabazon. (2016) Molecular dynamic simulation of edge dislocation-void interaction in pure Al and Al-Mg alloy. Materials Science and Engineering: A 674, pages 82-90.
Crossref
Xiazi Xiao, Dmitry Terentyev, Long Yu, A. Bakaev, Zhaohui Jin & Huiling Duan. (2016) Investigation of the thermo-mechanical behavior of neutron-irradiated Fe-Cr alloys by self-consistent plasticity theory. Journal of Nuclear Materials 477, pages 123-133.
Crossref
A. Wagner, F. Bergner, R. Chaouadi, H. Hein, M. Hernández-Mayoral, M. Serrano, A. Ulbricht & E. Altstadt. (2016) Effect of neutron flux on the characteristics of irradiation-induced nanofeatures and hardening in pressure vessel steels. Acta Materialia 104, pages 131-142.
Crossref
B A Szajewski, F Pavia & W A Curtin. (2015) Robust atomistic calculation of dislocation line tension. Modelling and Simulation in Materials Science and Engineering 23:8, pages 085008.
Crossref
Joshua C. Crone, Lynn B. Munday & Jaroslaw Knap. (2015) Capturing the effects of free surfaces on void strengthening with dislocation dynamics. Acta Materialia 101, pages 40-47.
Crossref
Fuping Yuan & Xiaolei Wu. (2015) Size effect and boundary type on the strengthening of nanoscale domains in pure nickel. Materials Science and Engineering: A 648, pages 243-251.
Crossref
S. Kotrechko, V. Dubinko, N. Stetsenko, D. Terentyev, Xinfu He & M. Sorokin. (2015) Temperature dependence of irradiation hardening due to dislocation loops and precipitates in RPV steels and model alloys. Journal of Nuclear Materials 464, pages 6-15.
Crossref
Ghiath Monnet. (2015) Multiscale modeling of precipitation hardening: Application to the Fe–Cr alloys. Acta Materialia 95, pages 302-311.
Crossref
Xi-yuan YANG. (2015) Atomic simulation for influence of helium atom on movement of edge dislocation in nickel. Transactions of Nonferrous Metals Society of China 25:8, pages 2666-2674.
Crossref
F. Bergner, F. Gillemot, M. Hernández-Mayoral, M. Serrano, G. Török, A. Ulbricht & E. Altstadt. (2015) Contributions of Cu-rich clusters, dislocation loops and nanovoids to the irradiation-induced hardening of Cu-bearing low-Ni reactor pressure vessel steels. Journal of Nuclear Materials 461, pages 37-44.
Crossref
F. Granberg, D. Terentyev & K. Nordlund. (2015) Interaction of dislocations with carbides in BCC Fe studied by molecular dynamics. Journal of Nuclear Materials 460, pages 23-29.
Crossref
Tomoaki Suzudo, Yasuyoshi Nagai, Daniel Schwen & Alfredo Caro. (2015) Hardening in thermally-aged Fe–Cr binary alloys: Statistical parameters of atomistic configuration. Acta Materialia 89, pages 116-122.
Crossref
Xiaoqiang Li, Zhun Cheng, Ke Hu, Huojin Chen & Chao Yang. (2015) Crystallization kinetics and spark plasma sintering of amorphous Ni53Nb20Ti10Zr8Co6Ta3 powders prepared by mechanical alloying. Vacuum 114, pages 93-100.
Crossref
B A Szajewski & W A Curtin. (2015) Analysis of spurious image forces in atomistic simulations of dislocations. Modelling and Simulation in Materials Science and Engineering 23:2, pages 025008.
Crossref
A.V. Karavaev, V.V. Dremov & G.V. Ionov. (2015) Atomistic modeling of the dislocation dynamics and evaluation of static yield stress. EPJ Web of Conferences 94, pages 04007.
Crossref
A. Dutta, M. Bhattacharya & P. Barat. (2014) Statistics of dislocation pinning at localized obstacles. Journal of Applied Physics 116:14.
Crossref
Peri Landau, Qiang Guo, Peter Hosemann, Yongqiang Wang & Julia R. Greer. (2014) Deformation of as-fabricated and helium implanted 100nm-diameter iron nano-pillars. Materials Science and Engineering: A 612, pages 316-325.
Crossref
Boris Minov, Dmitry Terentyev, Wouter Van Renterghem, Yuri Osetsky & Milan J. Konstantinović. (2014) Effect of low-temperature phase transition on mechanical behavior of Fe–Cu alloys. Materials Science and Engineering: A 597, pages 46-51.
Crossref
C. Yang, L.H. Liu, Y.G. Yao, Y.H. Li & Y.Y. Li. (2014) Intrinsic relationship between crystallization mechanism of metallic glass powder and microstructure of bulk alloys fabricated by powder consolidation and crystallization of amorphous phase. Journal of Alloys and Compounds 586, pages 542-548.
Crossref
S.M. Hafez Haghighat, R. Schäublin & D. Raabe. (2014) Atomistic simulation of the a0 〈100〉 binary junction formation and its unzipping in body-centered cubic iron. Acta Materialia 64, pages 24-32.
Crossref
Yuhki Satoh, Takahiro Hatano, Nobuyasu Nita, Kimihiro Nogiwa & Hideki Matsui. (2014) Simulation of Transmission Electron Microscope Images of Dislocations Pinned by Obstacles. MATERIALS TRANSACTIONS 55:3, pages 413-417.
Crossref
Tomotsugu Shimokawa & Soya Kitada. (2014) Dislocation Multiplication from the Frank–Read Source in Atomic Models. MATERIALS TRANSACTIONS 55:1, pages 58-63.
Crossref
K. Asari, O.S. Hetland, S. Fujita, M. Itakura & T. Okita. (2013) The effect of stacking fault energy on interactions between an edge dislocation and a spherical void by molecular dynamics simulations. Journal of Nuclear Materials 442:1-3, pages 360-364.
Crossref
D. Terentyev, G. Bonny, C. Domain, G. Monnet & L. Malerba. (2013) Mechanisms of radiation strengthening in Fe–Cr alloys as revealed by atomistic studies. Journal of Nuclear Materials 442:1-3, pages 470-485.
Crossref
C. Yang, L.H. Liu, Q.R. Cheng, D.D. You & Y.Y. Li. (2013) Equiaxed grained structure: A structure in titanium alloys with higher compressive mechanical properties. Materials Science and Engineering: A 580, pages 397-405.
Crossref
Qiang Guo, Peri Landau, Peter Hosemann, Yongqiang Wang & Julia R. Greer. (2013) Helium Implantation Effects on the Compressive Response of Cu Nanopillars. Small 9:5, pages 691-696.
Crossref
N. Naveen Kumar, E. Martinez, B. K. Dutta, G. K. Dey & A. Caro. (2013) Nodal effects in -iron dislocation mobility in the presence of helium bubbles . Physical Review B 87:5.
Crossref
N. I. Medvedeva, A. S. Murthy, V. L. Richards, D. C. Van Aken & J. E. Medvedeva. (2012) First principle study of cobalt impurity in bcc Fe with Cu precipitates. Journal of Materials Science 48:3, pages 1377-1386.
Crossref
A. Certain, H.-J. Lee Voigt, T.R. Allen & B.D. Wirth. (2013) Investigation of cascade-induced re-solution from nanometer sized coherent precipitates in dilute Fe–Cu alloys. Journal of Nuclear Materials 432:1-3, pages 281-286.
Crossref
P. Ravadgar, R. H. Horng & S. L. Ou. (2012) A visualization of threading dislocations formation and dynamics in mosaic growth of GaN-based light emitting diode epitaxial layers on (0001) sapphire. Applied Physics Letters 101:23, pages 231911.
Crossref
A. Dutta, M. Bhattacharya, N. Gayathri, G.C. Das & P. Barat. (2012) The mechanism of climb in dislocation–nanovoid interaction. Acta Materialia 60:9, pages 3789-3798.
Crossref
M. Bhattacharya, A. Dutta, A. Giri, N. Gayathri & P. Barat. 2012. Supplemental Proceedings. Supplemental Proceedings 683 689 .
J. Takahashi, K. Kawakami & Y. Kobayashi. (2012) Consideration of particle-strengthening mechanism of copper-precipitation-strengthened steels by atom probe tomography analysis. Materials Science and Engineering: A 535, pages 144-152.
Crossref
N. Naveen Kumar, P.V. Durgaprasad, B.K. Dutta & G.K. Dey. (2012) Modeling of radiation hardening in ferritic/martensitic steel using multi-scale approach. Computational Materials Science 53:1, pages 258-267.
Crossref
Y.N. Osetsky & D.J. Bacon. 2012. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 333 356 .
Dmitry Terentyev, Lorenzo Malerba, Giovanni Bonny, A.T. Al-Motasem & M. Posselt. (2011) Interaction of an edge dislocation with Cu–Ni-vacancy clusters in bcc iron. Journal of Nuclear Materials 419:1-3, pages 134-139.
Crossref
G. Bonny, D. Terentyev & L. Malerba. (2011) Interaction of screw and edge dislocations with chromium precipitates in ferritic iron: An atomistic study. Journal of Nuclear Materials 416:1-2, pages 70-74.
Crossref
Q.M. Wei, N. Li, N. Mara, M. Nastasi & A. Misra. (2011) Suppression of irradiation hardening in nanoscale V/Ag multilayers. Acta Materialia 59:16, pages 6331-6340.
Crossref
S. Queyreau, J. Marian, M. R. Gilbert & B. D. Wirth. (2011) Edge dislocation mobilities in bcc Fe obtained by molecular dynamics. Physical Review B 84:6.
Crossref
Akiyuki Takahashi & Yutaro Terada. (2011) Molecular Dynamics Simulation of Dislocation-γ-Precipitate Interactions in γ’-Precipitates. Key Engineering Materials 462-463, pages 425-430.
Crossref
Akiyuki Takahashi & Yutaro Terada. (2011) Numerical Simulation of Dislocation-Precipitate Interactions Using Dislocation Dynamics Combined with Voxel-Based Finite Elements. Key Engineering Materials 462-463, pages 395-400.
Crossref
Sylvain Queyreau, Ghiath Monnet, Brian D. Wirth & Jaime Marian. (2011) Modeling the dislocation-void interaction in a dislocation dynamics simulation. MRS Proceedings 1297.
Crossref
P Grammatikopoulos, D J Bacon & Yu N Osetsky. (2011) The influence of interaction geometry on the obstacle strength of voids and copper precipitates in iron. Modelling and Simulation in Materials Science and Engineering 19:1, pages 015004.
Crossref
Panagiotis Grammatikopoulos, David John Bacon & Yuri Osetsky. Geometrical Aspects of Dislocation-Obstacle Interaction in Iron. Geometrical Aspects of Dislocation-Obstacle Interaction in Iron.
D. Terentyev, G. Bonny, C. Domain & R. C. Pasianot. (2010) Interaction of a screw dislocation with Cr precipitates in bcc Fe studied by molecular dynamics . Physical Review B 81:21.
Crossref
A Takahashi & K Kurata. (2010) Dislocation dynamics based modelling of dislocation-precipitate interactions in bcc metals. IOP Conference Series: Materials Science and Engineering 10, pages 012081.
Crossref
Wolfgang Hoffelner. (2010) Damage assessment in structural metallic materials for advanced nuclear plants. Journal of Materials Science 45:9, pages 2247-2257.
Crossref
D. Terentyev, S. M. Hafez Haghighat & R. Schäublin. (2010) Strengthening due to Cr-rich precipitates in Fe–Cr alloys: Effect of temperature and precipitate composition. Journal of Applied Physics 107:6.
Crossref
Zhengzheng Chen, Nicholas Kioussis & Nasr Ghoniem. (2009) Influence of nanoscale Cu precipitates in on dislocation core structure and strengthening . Physical Review B 80:18.
Crossref
Hyon-Jee Lee & Brian D. Wirth. (2009) Molecular dynamics simulation of dislocation–void interactions in BCC Mo. Journal of Nuclear Materials 386-388, pages 115-118.
Crossref
D.C. Chrzan, J.W. MorrisJr.Jr., Y.N. Osetsky, R.E. Stoller & S.J. Zinkle. (2011) What is the Limit of Nanoparticle Strengthening?. MRS Bulletin 34:3, pages 173-177.
Crossref
G. Bonny, D. Terentyev & L. Malerba. (2009) The hardening of iron–chromium alloys under thermal ageing: An atomistic study. Journal of Nuclear Materials 385:2, pages 278-283.
Crossref
Jae-Hyeok Shim, Dong-Ik Kim, Woo-Sang Jung, Young Whan Cho & Brian D. Wirth. (2009) Strengthening of Nanosized bcc Cu Precipitate in bcc Fe: A Molecular Dynamics Study. MATERIALS TRANSACTIONS 50:9, pages 2229-2234.
Crossref
David J. Bacon & Yuri N. Osetsky. (2009) Dislocation—Obstacle Interactions at Atomic Level in Irradiated Metals. Mathematics and Mechanics of Solids 14:1-2, pages 270-283.
Crossref
D.J. Bacon, Y.N. Osetsky & D. Rodney. 2009. 1 90 .
Siegfried Schmauder & Leon MishnaevskyJrJrSiegfried Schmauder & Leon MishnaevskyJrJr. 2009. Micromechanics and Nanosimulation of Metals and Composites. Micromechanics and Nanosimulation of Metals and Composites 311 418 .
S.M. Hafez Haghighat, J. Fikar & R. Schäublin. (2008) Effect of interatomic potential on the behavior of dislocation-defect interaction simulation in α-Fe. Journal of Nuclear Materials 382:2-3, pages 147-153.
Crossref
D Terentyev, D J Bacon & Yu N Osetsky. (2008) Interaction of an edge dislocation with voids in α-iron modelled with different interatomic potentials. Journal of Physics: Condensed Matter 20:44, pages 445007.
Crossref
Jae-Hyeok Shim, Dong-Ik Kim, Woo-Sang Jung, Young Whan Cho, Kyung Tae Hong & Brian D. Wirth. (2008) Atomistic study of temperature dependence of interaction between screw dislocation and nanosized bcc Cu precipitate in bcc Fe. Journal of Applied Physics 104:8.
Crossref
D. Terentyev, P. Grammatikopoulos, D.J. Bacon & Yu. N. Osetsky. (2008) Simulation of the interaction between an edge dislocation and a 〈100〉 interstitial dislocation loop in α-iron. Acta Materialia 56:18, pages 5034-5046.
Crossref
Y. Nishiyama, K. Onizawa, M. Suzuki, J.W. Anderegg, Y. Nagai, T. Toyama, M. Hasegawa & J. Kameda. (2008) Effects of neutron-irradiation-induced intergranular phosphorus segregation and hardening on embrittlement in reactor pressure vessel steels. Acta Materialia 56:16, pages 4510-4521.
Crossref
D.A. Terentyev, G. Bonny & L. Malerba. (2008) Strengthening due to coherent Cr precipitates in Fe–Cr alloys: Atomistic simulations and theoretical models. Acta Materialia 56:13, pages 3229-3235.
Crossref
Y. Nishiyama, X.Y. Liu & J. Kameda. (2008) Mechanisms of Neutron Irradiation Hardening in Impurity-Doped Ferritic Alloys. Metallurgical and Materials Transactions A 39:5, pages 1118-1131.
Crossref
David Rodney. (2008) Atomic modeling of irradiation-induced hardening. Comptes Rendus Physique 9:3-4, pages 418-426.
Crossref
Akihisa Inoue, Takeshi Wada & Dmitri V. Louzguine-Luzgin. (2007) Improved mechanical properties of bulk glassy alloys containing spherical pores. Materials Science and Engineering: A 471:1-2, pages 144-150.
Crossref
S. M. Hafez Haghighat & R. Schaeublin. (2008) Molecular dynamics modeling of cavity strengthening in irradiated iron. Journal of Computer-Aided Materials Design 14:S1, pages 191-201.
Crossref
D Terentyev, L Malerba, D J Bacon & Yu N Osetsky. (2007) The effect of temperature and strain rate on the interaction between an edge dislocation and an interstitial dislocation loop in α-iron. Journal of Physics: Condensed Matter 19:45, pages 456211.
Crossref
J. Henry, L. Vincent, X. Averty, B. Marini & P. Jung. (2007) Effect of a high helium content on the flow and fracture properties of a 9Cr martensitic steel. Journal of Nuclear Materials 367-370, pages 411-416.
Crossref
D. J. Bacon & Yu. N. Osetsky. (2007) The atomic-scale modeling of dislocation-obstacle interactions in irradiated metals. JOM 59:4, pages 40-45.
Crossref
Jae-Hyeok Shim, Young Whan Cho, Sang Chul Kwon, Whung Whoe Kim & Brian D. Wirth. (2007) Screw dislocation assisted martensitic transformation of a bcc Cu precipitate in bcc Fe. Applied Physics Letters 90:2.
Crossref
K Tapasa, D J Bacon & Yu N Osetsky. (2006) Computer simulation of dislocation–solute interaction in dilute Fe–Cu alloys. Modelling and Simulation in Materials Science and Engineering 14:7, pages 1153-1166.
Crossref
R.L. Klueh, N. Hashimoto, M.A. Sokolov, P.J. Maziasz, K. Shiba & S. Jitsukawa. (2006) Mechanical properties of neutron-irradiated nickel-containing martensitic steels: II. Review and analysis of helium-effects studies. Journal of Nuclear Materials 357:1-3, pages 169-182.
Crossref
Takahiro Hatano & Hideki Matsui. (2005) Molecular dynamics investigation of dislocation pinning by a nanovoid in copper. Physical Review B 72:9.
Crossref
Christopher Kohler, Peter Kizler & Siegfried Schmauder. (2005) Atomistic simulation of the pinning of edge dislocations in Ni by Ni3Al precipitates. Materials Science and Engineering: A 400-401, pages 481-484.
Crossref
D.J. Bacon & Yu.N. Osetsky. (2005) Modelling dislocation–obstacle interactions in metals exposed to an irradiation environment. Materials Science and Engineering: A 400-401, pages 353-361.
Crossref
Takeshi Wada, Akihisa Inoue & Alan Lindsay Greer. (2005) Enhancement of room-temperature plasticity in a bulk metallic glass by finely dispersed porosity. Applied Physics Letters 86:25.
Crossref
Christopher Kohler, Peter Kizler & Siegfried Schmauder. (2005) Atomistic simulation of precipitation hardening in α-iron: influence of precipitate shape and chemical composition. Modelling and Simulation in Materials Science and Engineering 13:1, pages 35-45.
Crossref
E. Rodary, D. Rodney, L. Proville, Y. Bréchet & G. Martin. (2004) Dislocation glide in model solid solutions by molecular dynamics . Physical Review B 70:5.
Crossref
Yu. N. Osetsky & D. J. Bacon. 2004. IUTAM Symposium on Mesoscopic Dynamics of Fracture Process and Materials Strength. IUTAM Symposium on Mesoscopic Dynamics of Fracture Process and Materials Strength 193 202 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.