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Journals
6
Archives of Metallurgy and Materials
Years
4
2017
2
2015
Authors
6
Chang S. Y.
6
Lee W. H.
5
Kim Y. H.
4
Kim J. Y.
4
Lee Y. K.
4
Yoon Y. H.
2
Jo Y. J.
2
Van Tyne C. J.
1
Cheon Y. W.
1
Hong C. S.
1
Jang H. S.
1
Jo Y. H.
1
Seong J. G.
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Full text local access
Effect Of Heat-Treatment On Microstructure And Magnetic Properties Of Nanocrystallized Mn-Zn Ferrite Powders
100%
Lee W. H.
,
Hong C. S.
,
Chang S. Y.
Archives of Metallurgy and Materials
|
2015
|
issue
2
2
Full text local access
Self-Consolidation Mechanism Of Porous Ti-6Al-4V Implant Prototypes Produced By Electro-Discharge-Sintering Of Spherical Ti-6Al-4V Powders
76%
Lee W. H.
,
Jo Y. J.
,
Kim Y. H.
,
Jo Y. H.
,
Seong J. G.
,
Van Tyne C. J.
,
Chang S. Y.
Archives of Metallurgy and Materials
|
2015
|
issue
2
3
Full text local access
Spontaneous Formation of Titanium Nitride on the Surface of a Ti Rod Induced by Electro-Discharge-Heat-Treatment in an N2 Atmosphere
76%
Lee W. H.
,
Yoon Y. H.
,
Kim Y. H.
,
Lee Y. K.
,
Kim J. Y.
,
Chang S. Y.
Archives of Metallurgy and Materials
|
2017
|
vol.
62
|
issue
2
4
Full text local access
Self-Consolidation and Surface Modification of Mechanical Alloyed Ti-25.0 at.% Al Powder Mixture by Using an Electro-Discharge Technique
76%
Chang S. Y.
,
Jang H. S.
,
Yoon Y. H.
,
Kim Y. H.
,
Kim J. Y.
,
Lee Y. K.
,
Lee W. H.
Archives of Metallurgy and Materials
|
2017
|
vol.
62
|
issue
2
5
Full text local access
Self-Consolidation Mechanism of Ti5Si3 Compact Obtained by Electro-Discharge-Sintering Directly from Physically Blended Ti-37.5 at.% Si Powder Mixture
76%
Chang S. Y.
,
Cheon Y. W.
,
Yoon Y. H.
,
Kim Y. H.
,
Kim J. Y.
,
Lee Y. K.
,
Lee W. H.
Archives of Metallurgy and Materials
|
2017
|
vol.
62
|
issue
2
6
Full text local access
Surface Modification of Self-Consolidated Microporous Ti Implant Compacts Fabricated by Electro-Discharge-Sintering in Air
64%
Jo Y. J.
,
Yoon Y. H.
,
Kim Y. H.
,
Chang S. Y.
,
Kim J. Y.
,
Lee Y. K.
,
Van Tyne C. J.
,
Lee W. H.
Archives of Metallurgy and Materials
|
2017
|
vol.
62
|
issue
2
Page
/ 1
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