Scale invariance in plastic flow of crystalline solids
作者:Michael Zaiser · 发表于:Advances In Physics · 年份:2006 · DOI:10.1080/00018730600583514 · 被引用次数:369 · 研究领域:Theoretical and Computational Physics、Rheology and Fluid Dynamics Studies、Material Dynamics and Properties
From the traditional viewpoint of continuum plasticity, plastic deformation of crystalline solids is, at least in the absence of so-called plastic instabilities, envisaged as a smooth and quasi-laminar flow process. Recent theoretical and experimental investigations, however, demonstrate that crystal plasticity is characterized by large intrinsic spatio-temporal fluctuations with scale-invariant characteristics: In time, deformation proceeds through intermittent bursts with power-law size distributions; in space, deformation patterns and deformation-induced surface morphology are characterized by long-range correlations, self-similarity and/or self-affine roughness. We discuss this scale-invariant behaviour in terms of robust scaling associated with a non-equilibrium critical point (‘yielding transition’). TableDownload CSVDisplay Table