Crystalline–Amorphous Nanostructures: Microstructure, Property and Modelling

Author:

Wei Bingqiang1,Li Lin2,Shao Lin3,Wang Jian1ORCID

Affiliation:

1. Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, USA

2. School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, AZ 85287, USA

3. Department of Nuclear Engineering, Texas A&M University, College Station, TX 77843, USA

Abstract

Crystalline metals generally exhibit good deformability but low strength and poor irradiation tolerance. Amorphous materials in general display poor deformability but high strength and good irradiation tolerance. Interestingly, refining characteristic size can enhance the flow strength of crystalline metals and the deformability of amorphous materials. Thus, crystalline–amorphous nanostructures can exhibit an enhanced strength and an improved plastic flow stability. In addition, high-density interfaces can trap radiation-induced defects and accommodate free volume fluctuation. In this article, we review crystalline–amorphous nanocomposites with characteristic microstructures including nanolaminates, core–shell microstructures, and crystalline/amorphous-based dual-phase nanocomposites. The focus is put on synthesis of characteristic microstructures, deformation behaviors, and multiscale materials modelling.

Funder

the US National Science Foundation

Publisher

MDPI AG

Subject

General Materials Science

Reference154 articles.

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