Quenched pinning and collective dislocation dynamics

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Markus Ovaska
Lasse Laurson
Mikko J. Alava
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[1] COMP Centre of Excellence,Department of Applied Physics
[2] Aalto University,undefined
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Scientific Reports | / 5卷
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Several experiments show that crystalline solids deform in a bursty and intermittent fashion. Power-law distributed strain bursts in compression experiments of micron-sized samples and acoustic emission energies from larger-scale specimens, are the key signatures of the underlying critical-like collective dislocation dynamics - a phenomenon that has also been seen in discrete dislocation dynamics (DDD) simulations. Here we show, by performing large-scale two-dimensional DDD simulations, that the character of the dislocation avalanche dynamics changes upon addition of sufficiently strong randomly distributed quenched pinning centres, present e.g. in many alloys as immobile solute atoms. For intermediate pinning strength, our results adhere to the scaling picture of depinning transitions, in contrast to pure systems where dislocation jamming dominates the avalanche dynamics. Still stronger disorder quenches the critical behaviour entirely.
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  • [1] Sethna JP(2001)Crackling Noise Nature 410 242-250
  • [2] Dahmen KA(2006)Scale invariance in plastic flow of crystalline solids Adv. Phys. 55 185-245
  • [3] Myers CR(2014)Crackling noise in plasticity Eur. Phys. J. Special Topics 223 2353-2367
  • [4] Zaiser M(2007)Current theoretical approaches to collective behavior of dislocations Phys. Rep. 440 113-259
  • [5] Alava MJ(2009)Plasticity of micrometer-scale single crystals in compression Annu. Rev. Mater. Res. 39 361-386
  • [6] Laurson L(2006)Scale-Free Intermittent Flow in Crystal Plasticity Science 312 1188-1190
  • [7] Zapperi S(2007)Dislocation Avalanches, Strain Bursts and the Problem of Plastic Forming at the Micrometer Scale Science 318 251-254
  • [8] Ananthakrishna G(1997)Acoustic Emission in Single Crystals of Ice J. Phys. Chem. B 101 6113-6117
  • [9] Uchic MD(2001) Intermittent dislocation flow in viscoplastic deformation Nature 410 667-671
  • [10] Shade PA(2002)Two-loop functional renormalization group theory of the depinning transition Phys. Rev. B 66 174201-150