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Processing and Characterization of β Titanium Alloy Composite Using Power Metallurgy Approach
Krystian Zyguła1, Marek Wojtaszek1
1Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland.
This study demonstrates in situ synthesis of titanium alloy matrix composites using elemental powders. High temperatures and specific holding times control the formation and kinetics of strengthening phases like TiB and TiC.
Area of Science:
- Materials Science
- Metallurgy
- Composite Materials
Background:
- Titanium alloys are crucial in various industries.
- Developing advanced titanium matrix composites with enhanced properties is an ongoing research area.
- In situ synthesis offers a promising route for creating complex microstructures and strengthening phases.
Purpose of the Study:
- To investigate the in situ synthesis of titanium alloy matrix composites from elemental powders.
- To analyze the formation and diffusion kinetics of reinforcing phases (TiB and TiC).
- To establish the relationship between microstructure, strengthening phases, and hardness.
Main Methods:
- High-temperature sintering of elemental metal powders including boron carbide.
- Phase identification using X-ray diffraction (XRD) and microstructural analysis.
- Evaluation of diffusion kinetics via Scanning Electron Microscopy (SEM) and Energy Dispersive Spectroscopy (EDS).
Main Results:
- Successful in situ synthesis of TiB and TiC reinforcing phases within the titanium alloy matrix.
- Identification of unreacted B4C particles and surrounding reaction layers.
- Determination of alloying element diffusion direction and its influence on in situ synthesis.
- Correlation established between microstructural components, strengthening phases, and hardness.
- Demonstration that high temperature and adequate holding time control synthesis kinetics, influenced by alloying element concentrations.
Conclusions:
- In situ reinforcement of titanium alloys from elemental powder mixtures is feasible under specific conditions.
- The kinetics of strengthening phase synthesis are controllable and dependent on alloying element concentrations.
- This approach enables the development of advanced titanium matrix composites with tailored properties.
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