4.8 Review

Serration and noise behaviors in materials

期刊

PROGRESS IN MATERIALS SCIENCE
卷 90, 期 -, 页码 358-460

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.pmatsci.2017.06.004

关键词

High entropy alloys; Bulk metallic glasses; Serration behaviors; High entropy films; Al-Mg alloys

资金

  1. National High Technology Research and Development Program of China [2009AA03Z113]
  2. National Natural Science Foundation of China [51471025, 51671020, 51371122]
  3. 111 Project [B07003]
  4. US National Science Foundation [CMMI-1100080, DMR-1611180]
  5. U.S. Department of Energy (DOE), Office of Fossil Energy, National Energy Technology Laboratory (NETL) [DE-FE-0008855, DE-FE-0011194, DE-FE-0024054]
  6. US Army Research Office [W911NF-13-1-0438]
  7. Center for Materials Processing (CMP)
  8. NSF [CBET 1336634]
  9. Program for the Innovative Talents of Higher Learning Institutions of Shanxi
  10. Youth Natural Science Foundation of Shanxi Province, China [2015021005]
  11. Division Of Materials Research
  12. Direct For Mathematical & Physical Scien [1611180] Funding Source: National Science Foundation

向作者/读者索取更多资源

Serration and noise behaviors in plastically deforming solids are related to avalanches of deformation processes. In the stress-strain curves, the serration characteristics are visible as stress drops or strain jumps. In fact, similar serration characteristics are ubiquitous in many structural and functional materials, such as amorphous materials [also metallic glasses, or bulk metallic glasses (BMGs)], high-entropy alloys (HEAs), superalloys, ordered intermetallics, shape-memory alloys (SMAs), electrochemical noise, carbon steels, twinning-induced plasticity steels (TWIP steels), phase-transformation-induced plasticity steels (TRIP steels), Al-Mg alloys, nano-materials, magnetic functional materials, and so on. Because of their unique and universal properties, many researchers have focused on this field to find out what causes the serration behaviors and what can be learned about the material from the serration characteristics. For example, the serration characteristics contain information about the mechanisms of plastic deformation and the structural evolution during deformation. However, due to many factors affecting the serration behavior and some uncertain or uncontrolled factors, it's a difficult task to give a unified picture of a vast amount of serration data. This review article summarizes the results of previous studies in this rapidly-developing field, attempting to provide a new perspective in expounding the connection between macroscopic properties and micro-mechanisms. In this review paper, serration behavior of a wide range of materials will be discussed. One of the most important goals is to investigate the factors influencing serration characteristics and deformation mechanisms. Several statistical properties, such as distributions of stress drop sizes and waiting times, are reviewed and used to quantify the serration behavior. Moreover, models and theories on the serrated flow will be discussed, which quantify the deformation mechanism and provide physical intuition for the experiments, and methods to organize experimental data. Besides discussing serrations in stress-strain curves of many solid materials, this review paper will also cover other systems-with serrations and collective noise, such as crackling noise in the earth's crust (earthquakes), volume fluctuations in a granular medium and jamming behavior in random-packing systems. (C) 2017 Elsevier Ltd. All rights reserved.

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