Investigation of microstructure and chemical stability in composites of Ni3Al reinforced by alumina–silica fibers
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference48 articles.
1. Improvement in Room Temperature Ductility of the L12 Type Intermetallic Compound Ni3Al by Boron Addition
2. Structural Intermetallics, Proceedings of the First International Symposium on structural Intermetallics (ISSI);Liu,1993
3. Physical and mechanical metallurgy of Ni3Al and its alloys
4. Effect of boron on grain-boundaries in Ni3Al†
5. Environmental embrittlement: The major cause of room-temperature brittleness in polycrystalline Ni3Al
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1. High-resolution transmission electron microscopy analysis of the microstructures of Cr4+:Y3Al5O12 double-clad crystal fibers prepared by LHPG method;Journal of Materials Science: Materials in Electronics;2012-08-09
2. Compression properties and work-hardening effect of the NiAl-matrix composite with TaB2 and TaB;Intermetallics;2012-08
3. Near-Field Spectroscopy of Broadband Emissions from γ-Al2O3Nanocrystals in Cr-Doped Double-Clad Fibers;The Journal of Physical Chemistry C;2011-09-28
4. Ordering and disordering processes in MA and MM intermetallic iron aluminide powders;Journal of Materials Science;2009-04
5. Synthesis, microstructure and mechanical properties of Al2O3 reinforced Ni3Al matrix composite;Materials Science and Engineering: A;2009-01
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