532
Views
27
CrossRef citations to date
0
Altmetric
Original Articles

Atomistic simulations of cross-slip nucleation at screw dislocation intersections in face-centered cubic nickel

, , , , &
Pages 3351-3369 | Received 16 Jun 2009, Accepted 25 Aug 2009, Published online: 01 Dec 2009

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

Read on this site (2)

S.I. Rao, D.M. Dimiduk, J.A. El-Awady, T.A. Parthasarathy, M.D. Uchic & C. Woodward. (2013) Spontaneous athermal cross-slip nucleation at screw dislocation intersections in FCC metals and L12 intermetallics investigated via atomistic simulations. Philosophical Magazine 93:22, pages 3012-3028.
Read now
S.I. Rao, D.M. Dimiduk, C. Woodward & T.A. Parthasarathy. (2011) On the Escaig obstacle hypothesis for cross-slip in face-centered-cubic materials. Philosophical Magazine Letters 91:7, pages 452-457.
Read now

Articles from other publishers (25)

. 2022. Nickel Base Single Crystals Across Length Scales. Nickel Base Single Crystals Across Length Scales 495 580 .
Francesca Boioli, Benoit Devincre & Marc Fivel. 2022. Nickel Base Single Crystals Across Length Scales. Nickel Base Single Crystals Across Length Scales 361 378 .
M. Longsworth & M. Fivel. (2021) The effect of stress on the cross-slip energy in face-centered cubic metals: A study using dislocation dynamics simulations and line tension models. Journal of the Mechanics and Physics of Solids 148, pages 104281.
Crossref
Darren C. Pagan, Gideon H. Schmidt, Andy D. Borum, Timothy J. Long & Armand J. Beaudoin. (2020) Informing Mechanical Model Development Using Lower-Dimensional Descriptions of Lattice Distortion. Integrating Materials and Manufacturing Innovation 9:4, pages 459-471.
Crossref
William P. Kuykendall, Yifan Wang & Wei Cai. (2020) Stress effects on the energy barrier and mechanisms of cross-slip in FCC nickel. Journal of the Mechanics and Physics of Solids 144, pages 104105.
Crossref
Vahid Samaee, Stefan Sandfeld, Hosni Idrissi, Jonas Groten, Thomas Pardoen, Ruth Schwaiger & Dominique Schryvers. (2020) Dislocation structures and the role of grain boundaries in cyclically deformed Ni micropillars. Materials Science and Engineering: A 769, pages 138295.
Crossref
Surya R. Kalidindi. (2019) A Bayesian framework for materials knowledge systems. MRS Communications 9:2, pages 518-531.
Crossref
Wolfram Georg Nöhring & W.A. Curtin. (2018) Cross-slip of long dislocations in FCC solid solutions. Acta Materialia 158, pages 95-117.
Crossref
E. Oren, E. Yahel & G. Makov. (2017) Kinetics of dislocation cross-slip: A molecular dynamics study. Computational Materials Science 138, pages 246-254.
Crossref
Mohammadreza Yaghoobi & George Z. Voyiadjis. (2017) Microstructural investigation of the hardening mechanism in fcc crystals during high rate deformations. Computational Materials Science 138, pages 10-15.
Crossref
J. Krebs, S. I. Rao, S. Verheyden, C. Miko, R. Goodall, W. A. Curtin & A. Mortensen. (2017) Cast aluminium single crystals cross the threshold from bulk to size-dependent stochastic plasticity. Nature Materials 16:7, pages 730-736.
Crossref
Wolfram Georg Nöhring & W.A. Curtin. (2017) Dislocation cross-slip in fcc solid solution alloys. Acta Materialia 128, pages 135-148.
Crossref
Ahmed M. Hussein & Jaafar A. El-Awady. (2016) Quantifying dislocation microstructure evolution and cyclic hardening in fatigued face-centered cubic single crystals. Journal of the Mechanics and Physics of Solids 91, pages 126-144.
Crossref
Ahmed M. Hussein & Jaafar A. El-Awady. (2016) Surface roughness evolution during early stages of mechanical cyclic loading. International Journal of Fatigue 87, pages 339-350.
Crossref
Jaafar A. El-Awady, Haidong Fan & Ahmed M. Hussein. 2016. Multiscale Materials Modeling for Nanomechanics. Multiscale Materials Modeling for Nanomechanics 337 371 .
S.I. Rao, D.M. Dimiduk, J.A. El-Awady, T.A. Parthasarathy, M.D. Uchic & C. Woodward. (2015) Screw dislocation cross slip at cross-slip plane jogs and screw dipole annihilation in FCC Cu and Ni investigated via atomistic simulations. Acta Materialia 101, pages 10-15.
Crossref
Ahmed M. Hussein, Satish I. Rao, Michael D. Uchic, Dennis M. Dimiduk & Jaafar A. El-Awady. (2015) Microstructurally based cross-slip mechanisms and their effects on dislocation microstructure evolution in fcc crystals. Acta Materialia 85, pages 180-190.
Crossref
Jun-Ping Du, Chong-Yu Wang & Tao Yu. (2014) Cross-slip process in model Ni(Al) solid solution: An embedded-atom method study. Computational Materials Science 91, pages 192-199.
Crossref
David Rodney & Joël Bonneville. 2014. Physical Metallurgy. Physical Metallurgy 1591 1680 .
S.I. Rao, D.M. Dimiduk, T.A. Parthasarathy, M.D. Uchic & C. Woodward. (2013) Atomistic simulations of surface cross-slip nucleation in face-centered cubic nickel and copper. Acta Materialia 61:7, pages 2500-2508.
Crossref
Benjamín R. Ramírez, Nasr Ghoniem & Giacomo Po. (2012) Ab initio continuum model for the influence of local stress on cross-slip of screw dislocations in fcc metals . Physical Review B 86:9.
Crossref
S.I. Rao, D.M. Dimiduk, T.A. Parthasarathy, M.D. Uchic & C. Woodward. (2012) Atomistic simulations of intersection cross-slip nucleation in L12 Ni3Al. Scripta Materialia 66:6, pages 410-413.
Crossref
S.I. Rao, D.M. Dimiduk, T.A. Parthasarathy, J. El-Awady, C. Woodward & M.D. Uchic. (2011) Calculations of intersection cross-slip activation energies in fcc metals using nudged elastic band method. Acta Materialia 59:19, pages 7135-7144.
Crossref
Olivier Couteau, Tomas Kruml & Jean-Luc Martin. (2011) About the activation volume for cross-slip in Cu at high stresses. Acta Materialia 59:10, pages 4207-4215.
Crossref
S.I. Rao, D.M. Dimiduk, J.A. El-Awady, T.A. Parthasarathy, M.D. Uchic & C. Woodward. (2010) Activated states for cross-slip at screw dislocation intersections in face-centered cubic nickel and copper via atomistic simulation. Acta Materialia 58:17, pages 5547-5557.
Crossref

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.