Microstructure and mechanical properties of Ti2AlC-reinforced TiAl composites
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- Type
- article
- Published
- 2014-11-10
- Cited by
- 6
- References
- 18
- OpenAlex
- https://openalex.org/W599801158
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137062938
Keywords
Materials science, Composite material, Microstructure, Flexural strength, Composite number
References
- High-Temperature Oxidation Behavior of Ti2AlC in Air
- Study of effect of Mn addition on the mechanical properties of Ti2AlC/TiAl composites through first principles study and experimental investigation
- Crack deflection processes—I. Theory
- The influence of composition and processing on the structure and properties of TiAl-based alloys
- The MN+1AXN phases: A new class of solids
- Preparation and tribological properties of TiAl matrix composites reinforced by multilayer graphene
- Gamma titanium aluminides as prospective structural materials
- Enhancing the performance of front-illuminated dye-sensitized solar cells with highly [001] oriented, single-crystal-like TiO2 nanotube arrays
- Effect of consumption amount of lithium salt on the properties of LiFePO4/C cathode materials
- Investigation of TiAl/Ti2AlC composites prepared by spark plasma sintering
- Deformation behavior of differently processed γ-titanium aluminides
- Advances in gamma titanium aluminides and their manufacturing techniques
- Comparative study of the compression properties of TiAl matrix composites reinforced with nano-TiB2 and nano-Ti5Si3 particles
- Microstructures, Electrical, Thermal, and Mechanical Properties of Bulk Ti2AlC Synthesized by Self‐Propagating High‐Temperature Combustion Synthesis with Pseudo Hot Isostatic Pressing
- Characterization of surface hardened layers on Q235 low-carbon steel treated by plasma electrolytic borocarburizing
- Effect of TiB2 on dry-sliding tribological properties of TiAl intermetallics
- On the elastic properties and mechanical damping of Ti3SiC2, Ti3GeC2, Ti3Si0.5Al0.5C2 and Ti2AlC in the 300–1573 K temperature range
Cited by
- Tailoring ultrafine grained and dispersion-strengthened Ti2AlC/TiAl composite via a new fabrication route
- In situ Ti2AlN reinforced TiAl-based composite with a novel network structure: Microstructure and flexural property at elevated temperatures
- Strengthening and toughening of laminated TiAl composite sheets by titanium alloy layers and carbide particles
- Development and future of TiAl composites – microstructural characteristics and high-temperature service performance
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