Mechanical annealing and memories in a disordered solid

Author:

Keim Nathan C.12ORCID,Medina Dani2

Affiliation:

1. Department of Physics, Pennsylvania State University, University Park, PA 16802, USA.

2. Department of Physics, California Polytechnic State University, San Luis Obispo, CA 93407, USA.

Abstract

Shearing a disordered or amorphous solid for many cycles with a constant strain amplitude can anneal it, relaxing a sample to a steady state that encodes a memory of that amplitude. This steady state also features a remarkable stability to amplitude variations that allows one to read the memory. Here, we shed light on both annealing and memory by considering how to mechanically anneal a sample to have as little memory content as possible. In experiments, we show that a “ring-down” protocol reaches a comparable steady state but with no discernible memories and minimal structural anisotropy. We introduce a method to characterize the population of rearrangements within a sample and show how it connects with the response to amplitude variation and the size of annealing steps. These techniques can be generalized to other forms of glassy matter and a wide array of disordered solids, especially those that yield by flowing homogeneously.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference73 articles.

1. B. Verlinden J. Driver I. Samajdar R. D. Doherty Thermo-Mechanical Processing of Metallic Materials (Elsevier 2007).

2. Bulk Metallic Glasses

3. Shear bands in metallic glasses

4. Thermomechanical processing of metallic glasses: extending the range of the glassy state

5. C. W. Macosko Rheology (Wiley-VCH 1994).

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