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Nanoglass–Nanocrystal Composite—a Novel Material Class for Enhanced Strength–Plasticity Synergy

  • Shyam Katnagallu
  • , Ge Wu
  • , Shiv Prakash Singh
  • , Sree Harsha Nandam
  • , Wenzhen Xia
  • , Leigh T. Stephenson
  • , Herbert Gleiter
  • , Ruth Schwaiger
  • , Horst Hahn
  • , Michael Herbig
  • , Dierk Raabe
  • , Baptiste Gault
  • , Shanoob Balachandran
  • Max Planck Institute for Iron Research
  • Karlsruhe Institute of Technology
  • Jülich Research Centre
  • Imperial College London

科研成果: 期刊稿件文章同行评审

19 引用 (Scopus)

摘要

The properties of a material can be engineered by manipulating its atomic and chemical architecture. Nanoglasses which have been recently invented and comprise nanosized glassy particles separated by amorphous interfaces, have shown promising properties. A potential way to exploit the structural benefits of nanoglasses and of nanocrystalline materials is to optimize the composition to obtain crystals forming within the glassy particles. Here, a metastable Fe-10 at% Sc nanoglass is synthesized. A complex hierarchical microstructure is evidenced experimentally at the atomic scale. This bulk material comprises grains of a Fe90Sc10 amorphous matrix separated by an amorphous interfacial network enriched and likely stabilized by hydrogen, and property-enhancing pure-Fe nanocrystals self-assembled within the matrix. This composite structure leads a yield strength above 2.5 GPa with an exceptional quasi-homogeneous plastic flow of more than 60% in compression. This work opens new pathways to design materials with even superior properties.

源语言英语
文章编号2004400
期刊Small
16
39
DOI
出版状态已出版 - 1 10月 2020
已对外发布

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