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Development of Amorphous Metals Using High Throughput Experiments

Published online by Cambridge University Press:  01 February 2011

C. Eric Ramberg
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
Y. Wang
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
Q. Fan
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
E. McDermott
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
J. Wang
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
K. Kenyon
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
M. Hornbostel
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
S. Guan
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
S. Nguyen
Affiliation:
Symyx Technologies, Inc., 3100 Central Expressway, Santa Clara, CA 95051.
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Abstract

High throughput, thin film synthesis and screening methods have been developed to investigate potential bulk metallic glass (BMG) compositions. Physical vapor deposition (PVD) was used for sample synthesis. A novel screening tool was developed to measure changes in resistance vs. temperature of these thin film samples. Example data for 34 compositions in the Mg-rich region of the Mg-Cu-Y ternary system are presented.

Type
Research Article
Copyright
Copyright © Materials Research Society 2004

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References

[1] U.S. Patents 6004617, 5985356, 6627571, 6045671, 6364956. Additional patents pending.Google Scholar
[2] Ramberg, Wang, Fan, McDermott, Wang, Kenyon, Field, Hornbostel, Guan, Nguyen, MRS Proceedings, December 2003, Symposium Symposium HH (Phase Change and Nonmagnetic Materials for Data Storage) Submitted (2003).Google Scholar
[3] Patents pendingGoogle Scholar
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