Microstructural control of and mechanical properties of mechanically alloyed tungsten heavy alloys

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93W-5.6Ni-1.4Fe tungsten heavy alloys with controlled microstructures were fabricated by mechanically alloying of elemental powders of tungsten, nickel and iron by two different process routes. One was the full mechanical alloying of blended powders with a composition of 93W-5.6Ni-1.4Fe, and the other was the partial mechanical alloying of blended powders with a composition of 30W-56Ni-14Fe followed by blending with tungsten powders to form a final composition of 93W-5.6Ni-1.4Fe. The raw powders were consolidated by die compaction followed by solid state sintering at 1300 degrees C for 1 hour in a hydrogen atmosphere. The solid state sintered tungsten heavy alloys were subsequently Liquid phase sintered at 1445 similar to 1485 degrees C for 4 similar to 90 min. The two-step sintered tungsten heavy alloy using mechanically alloyed 93W-5.6Ni-1.4Fe powders showed tungsten particles of about 6 similar to 15 mu m much finer than those of 40 mu m in a conventional liquid phase sintered tungsten heavy alloy. An inhomogeneous distribution of the solid solution matrix phase was obtained in the two-step sintered tungsten heavy alloy using partially mechanically alloyed powders. The two-step sintered tungsten heavy alloy using mechanically alloyed 93W-5.6Ni-1.4Fe powders showed larger elongation of 16% than that of 1% in the solid state sintered tungsten heavy alloy due to the increase in matrix volume fraction and decrease in W/W contiguity. Dynamic torsional tests of the two-step sintered tungsten heavy alloys showed reduced shear strain at maximum shear stress than did the sintered tungsten heavy alloys using the conventional liquid phase sintering.
Publisher
Korean Inst Metals Materials
Issue Date
1999-04
Language
English
Article Type
Article
Keywords

DEFORMATION

Citation

METALS AND MATERIALS INTERNATIONAL, v.5, no.2, pp.185 - 191

ISSN
1598-9623
URI
http://hdl.handle.net/10203/6707
Appears in Collection
NE-Journal Papers(저널논문)MS-Journal Papers(저널논문)
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