Dr. Olusanmi Adeniran

Solid background in Materials Science and author of 10+ technical publications across industrial, manufacturing, & systems engineering. United States patents Grantee with 16 years of industry experience.

Dallas, TX

Research Interests

Ceramics and Composites
Materials Chemistry
Polymers and Plastics
Mechanical Engineering
Mechanics of Materials
Industrial and Manufacturing Engineering
Energy Engineering and Power Technology
Fuel Technology
Surfaces, Coatings and Films

About

Dr. Olusanmi Adeniran is a highly skilled and experienced engineer with expertise in materials and energy systems. He received his Ph.D. in Systems Engineering - Materials & Manufacturing from Texas Tech University in 2022, where he focused on developing advanced materials for diverse applications ranging from aerospace to energy and automotive. Before this, he obtained his M.S. in Materials Science & Engineering from The University of Texas at Arlington in 2013. With over 16 years of industry experience under his belt, Dr. Adeniran has worked in various roles, including as a Staff Engineer at Lockheed Martin, where he was involved in various developments in defense manufacturing. He also served as a Principal Consultant at Abacoll Solutions LLC, providing engineering support services to a range of industries. His other experiences include a Principal Process Engineer role with Simens Energy, and a Senior Development Engineer with Schaeffler Group, amongst others. Dr. Adeniran's research interests include the development of advanced materials for diverse applications including, aerospace, energy, automotive, environmental, etc. He has published numerous articles in peer-reviewed journals and has presented his research at various conferences and symposiums. In addition to his technical skills, Dr. Adeniran is also a skilled leader and communicator, having led teams in various engineering projects and mentored undergraduate and graduate students in their research. He is passionate about using his knowledge and experience to contribute to the advancement of materials and energy technologies.

Publications

A machine learning approach to characterise fabrication porosity effects on the mechanical properties of additively manufactured thermoplastic composites

Journal of Reinforced Plastics and Composites / Mar 04, 2024

Udu, A. G., Osa-uwagboe, N., Adeniran, O., Aremu, A., Khaksar, M. G., & Dong, H. (2024). A machine learning approach to characterise fabrication porosity effects on the mechanical properties of additively manufactured thermoplastic composites. Journal of Reinforced Plastics and Composites. https://doi.org/10.1177/07316844241236696

Finite element model of fiber volume effect on the mechanical performance of additively manufactured carbon fiber reinforced plastic composites

Forces in Mechanics / Feb 01, 2023

Adeniran, O., Cong, W., Aremu, A., & Oluwole, O. (2023). Finite element model of fiber volume effect on the mechanical performance of additively manufactured carbon fiber reinforced plastic composites. Forces in Mechanics, 10, 100160. https://doi.org/10.1016/j.finmec.2022.100160

Fabrication Temperature-Related Porosity Effects on the Mechanical Properties of Additively Manufactured CFRP Composites

Journal of Composites Science / Jan 05, 2023

Adeniran, O., Osa-uwagboe, N., Cong, W., & Ramoni, M. (2023). Fabrication Temperature-Related Porosity Effects on the Mechanical Properties of Additively Manufactured CFRP Composites. Journal of Composites Science, 7(1), 12. https://doi.org/10.3390/jcs7010012

Material design factors in the additive manufacturing of Carbon Fiber Reinforced Plastic Composites: A state-of-the-art review

Advances in Industrial and Manufacturing Engineering / Nov 01, 2022

Adeniran, O., Cong, W., & Aremu, A. (2022). Material design factors in the additive manufacturing of Carbon Fiber Reinforced Plastic Composites: A state-of-the-art review. Advances in Industrial and Manufacturing Engineering, 5, 100100. https://doi.org/10.1016/j.aime.2022.100100

Thermoplastic matrix material influences on the mechanical performance of additively manufactured carbon-fiber-reinforced plastic composites

Journal of Composite Materials / Mar 04, 2022

Adeniran, O., Cong, W., & Oluwabunmi, K. (2022). Thermoplastic matrix material influences on the mechanical performance of additively manufactured carbon-fiber-reinforced plastic composites. Journal of Composite Materials, 56(9), 1391–1405. https://doi.org/10.1177/00219983221077345

Environmental affected mechanical performance of additively manufactured carbon fiber–reinforced plastic composites

Journal of Composite Materials / Feb 08, 2022

Adeniran, O., Cong, W., Bediako, E., & Adu, S. P. (2022). Environmental affected mechanical performance of additively manufactured carbon fiber–reinforced plastic composites. Journal of Composite Materials, 56(7), 1139–1150. https://doi.org/10.1177/00219983211066548

Additive Manufacturing of Carbon Fiber Reinforced Plastic Composites: The Effect of Fiber Content on Compressive Properties

Journal of Composites Science / Dec 16, 2021

Adeniran, O., Cong, W., Bediako, E., & Aladesanmi, V. (2021). Additive Manufacturing of Carbon Fiber Reinforced Plastic Composites: The Effect of Fiber Content on Compressive Properties. Journal of Composites Science, 5(12), 325. https://doi.org/10.3390/jcs5120325

Influence of Engine Age on Morphology and Chemistry of Diesel Soot Extracted from Crankcase Oil

Energy & Fuels / Feb 10, 2016

Sharma, V., Bagi, S., Patel, M., Aderniran, O., & Aswath, P. B. (2016). Influence of Engine Age on Morphology and Chemistry of Diesel Soot Extracted from Crankcase Oil. Energy & Fuels, 30(3), 2276–2284. https://doi.org/10.1021/acs.energyfuels.5b02512

Structure and Chemistry of Soot and Its Role in Wear of Diesel Engines

Tribology Online / Jan 01, 2016

Sharma, V., Bagi, S., Patel, M., Aderniran, O., & Aswath, P. B. (2016). Structure and Chemistry of Soot and Its Role in Wear of Diesel Engines. Tribology Online, 11(5), 551–555. https://doi.org/10.2474/trol.11.551

Soot Nanoparticles Generated from Tribofilm Decomposition under Real Engine Conditions for Identifying Lubricant Hazards

Soot Nanoparticles Generated from Tribofilm Decomposition under Real Engine Conditions for Identifying Lubricant Hazards. (n.d.). American Chemical Society (ACS). https://doi.org/10.1021/acsanm.0c02536.s001

Education

Texas Tech University

Ph.D., Systems Engineering - Materials and Manufacturing / August, 2022

Lubbock, Texas, United States of America

The University of Texas at Arlington

M.S., Materials Science & Engineering / December, 2013

Arlington, Texas, United States of America

Experience

Lockheed Martin

Staff Engineer / April, 2023Present

Abacoll Solutions LLC

Principal Consultant / October, 2022Present

Siemens Energy

Schaeffler

University of Texas at Arlington

Links & Social Media

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