Disentangling the Effects of Curvature and Misorientation on the Shrinkage Behavior of Loop-Shaped Grain Boundaries

Publication date

2025-10-24

Authors

Camerin, FabrizioISNI 0000000512510574
Marín-Aguilar, SusanaISNI 0000000512552555
Griffioen, Tim
Baltussen, Mathieu G
Dullens, Roel P A
van der Meer, B.ISNI 0000000506288604
Dijkstra, MarjoleinISNI 0000000358257928

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Abstract

The material properties of polycrystals are strongly affected by the evolution and coarsening of their internal grain structures. Yet, studying this process is challenging due to the complex interactions within grain boundary networks. Here, we systematically investigate the shrinkage of isolated loop-shaped grain boundaries in 2D colloidal crystals using a combination of simulations and experiments. Unexpectedly, we find that shear coupling decreases with increasing grain misorientation, contrary to geometric predictions. This counterintuitive result is attributed to enhanced concurrent sliding driven by the annihilation of dislocations. Furthermore, by focusing on the evolution of the grain size, we reveal a transition in shrinkage kinetics between small and large loop sizes, providing an explanation for previously observed discrepancies in grain boundary mobility. These findings reveal a more intricate dependence of grain boundary behavior on curvature and misorientation than previously reported, offering new insights into polycrystal coarsening dynamics.

Keywords

General Physics and Astronomy

Citation

Camerin, F, Marín-Aguilar, S, Griffioen, T, Baltussen, M G, Dullens, R P A, van der Meer, B & Dijkstra, M 2025, 'Disentangling the Effects of Curvature and Misorientation on the Shrinkage Behavior of Loop-Shaped Grain Boundaries', Physical Review Letters, vol. 135, no. 17, 178202. https://doi.org/10.1103/krvx-hbt3