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Diffusion in bulk metallic glasses

Applied Physics Letters, 2020
Due to the simple structure, bulk metallic glasses are very convenient model systems for studying the mechanism of atom diffusion in disordered media. In this paper, we analyze literature data on diffusion for a set of atoms in the metallic alloy Zr46.75Ti8.25Cu7.5Ni10Be27.5 (Vitreloy 4) above and below the glass transition temperature.
V. M. Syutkin, S. Grebenkin
openaire   +1 more source

Bulk stiffnesses of metallic glasses

Journal of Applied Physics, 1982
Determinations of density, Vickers microhardness, Young’s modulus, and Poisson’s ratio are reported for a series of Fe-B glasses, for glassy Fe40Ni38Mo4B18, and for glassy Cu68Zr32. From the last two parameters, one may calculate the shear and bulk stiffnesses of the glasses.
L. A. Davis, Y. T. Yeow, P. M. Anderson
openaire   +1 more source

The fracture of bulk metallic glasses

Progress in Materials Science, 2015
Abstract The fracture of metallic glasses has received relatively little attention until recently. The development of bulk metallic glasses (BMGs) with more compositions, large sample sizes and diverse fracture behaviors provides a series of ideal model systems for the study of fracture in glassy materials.
B.A. Sun, W.H. Wang
openaire   +1 more source

Electrodeposition in bulk metallic glasses

Materialia, 2018
Abstract Electrodeposition is a simple and economical method that can be employed for fabricating nanostructured surface coatings and bulk materials. This review presents applications of electrodeposition in the area of bulk metallic glasses (BMGs). BMGs are a key group of materials that have potential for diversified industrial applications; however,
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Decomposition of bulk metallic glasses

Materials Science and Engineering: A, 1998
Abstract An atom probe field ion microscopy (APFIM) characterization has been performed on the decomposition of several bulk metallic glasses. Evidence of short range order for aluminum has been detected in as-cast nickel-containing Zr60Al15Ni25 and Zr55Al10Cu5Ni30 metallic glasses.
openaire   +1 more source

Superior high-temperature wear resistance of an Ir-Ta-Ni-Nb bulk metallic glass

Journal of Materials Science and Technology, 2023
Pengfei Wang, Jiang Ma
exaly  

Mechanical Spectroscopy of Bulk Metallic Glasses

Defect and Diffusion Forum, 2002
Pelletier, Jean-Marc   +1 more
openaire   +2 more sources

2.11 Bulk metallic glasses

2022
Stefan Engel, Oliver Janka
openaire   +1 more source

Bulk Metallic Glasses

2010
C. Suryanarayana, A. Inoue
openaire   +1 more source

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