An x‐ray diffraction study on the microstructures of cold‐worked face‐centered‐cubic Cu‐Mn‐Zn alloys. III. Role of additions of transitional solute Mn
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.334051
Reference15 articles.
1. An x‐ray diffraction study on the microstructures of cold‐worked fcc Cu‐Ni‐Zn alloys
2. An x‐ray diffraction study on the microstructures of cold‐worked face centered cubic Cu–Sn–Zn alloys. II. Role of addition of 1 wt. % Sn
3. X-ray diffraction study of cold-worked α-AgCd alloys
4. Relationship between stacking‐fault energy and x‐ray measurements of stacking‐fault probability and microstrain
5. Stacking fault energies of seven commercial austenitic stainless steels
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1. Cu-Mn-Zn (Copper-Manganese-Zinc);Non-Ferrous Metal Systems. Part 2;2007
2. X-ray diffraction line profile analysis for defect study in Cu-1 wt.% Cr-0.1 wt.% Zr alloy;Materials Characterization;2005-02
3. Microstructural evolution on ball-milling elemental blends of Ni, Al and Ti by Rietveld’s method;Materials Chemistry and Physics;2002-03
4. Microstructure and Phase-Transformation Studies of Cu-Ni-Sn Alloys;Japanese Journal of Applied Physics;1995-03-15
5. An X-ray diffraction line profile analysis in cold- worked Fcc Ag-1Sn-Zn alloys: Role of 1 wt pct Sn;Metallurgical Transactions A;1990-05
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