Biography and Research Information
OverviewAI-generated summary
Tijesunimi Akintunde’s research focuses on thermal management and heat transfer in electronic devices, particularly power electronics. Akintunde has investigated experimental methods for cooling high-voltage silicon carbide modules using impinging air jets and explored temperature balancing strategies for reliability enhancement through airflow inversion cooling. Akintunde’s work also extends to materials science, with publications on nanoparticle-enhanced metal alloys, examining microstructural control, mechanical performance, and future prospects. Akintunde has co-authored publications with Yue Zhao, Joshua Tompkins, and Mohammad Hazzaz Mahmud at the University of Arkansas at Fayetteville.
Metrics
- Publications: 3
Positions
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Research Assistant 2023–presentUniversity of Arkansas at Fayetteville Mechanical Engineering ORCID
Selected Publications
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Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects (2026)
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Temperature Balancing for Reliability Enhancement of Power Electronics via Airflow Inversion Cooling (2026)
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Experimental Investigation of Heat Transfer Characteristics of an Impinging Air Jet for Cooling a High-Voltage Silicon Carbide Module (2025)
Collaboration Network
Top Collaborators
- Experimental Investigation of Heat Transfer Characteristics of an Impinging Air Jet for Cooling a High-Voltage Silicon Carbide Module
- Temperature Balancing for Reliability Enhancement of Power Electronics via Airflow Inversion Cooling
- Temperature Balancing for Reliability Enhancement of Power Electronics via Airflow Inversion Cooling
- Temperature Balancing for Reliability Enhancement of Power Electronics via Airflow Inversion Cooling
- Temperature Balancing for Reliability Enhancement of Power Electronics via Airflow Inversion Cooling
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
- Nanoparticle-Enhanced Metal Alloys: Advances in Microstructural Control and Mechanical Performance, and Future Prospects
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