Abdullah A. Alazemi
Engineering · Purdue University West Lafayette
Publications
30
Citations
363
Est. group size
—
Recurring co-author estimate
Active years
12
Publishing since 2015
Abdullah A. Alazemi's research centers on tribology (the study of friction, lubrication, and wear between surfaces) and materials engineering, including lubricant additives made from recycled or waste materials, protective coatings for metal fibers at high temperatures, and the processing of nanoscale materials such as ball-milled flours and carbon nanosheets. His work often combines experimental testing of mechanical and surface properties with applications spanning automotive lubrication, food processing, and energy storage materials.
Publication output has grown over the past decade, rising from occasional papers in 2017-2019 to a more consistent 3-6 publications per year between 2023 and 2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- From Waste to Lubrication Resource: A Systematic Review of Waste Cooking Oil-Based Greases and Liquid Lubricants
Lubricants · 2026
- Ball milling of mung bean seeds into nanoflour: Studies on particle size, surface morphology, microstructure, rheology, and thermal properties
Powder Technology · 2025
- Tribological Impact of Carbon Black Nanoparticles Obtained From Recycled Waste Tires as Additive to Motor Oil
Journal of Tribology · 2025
- Viable Use of Tire Pyrolysis Oil as an Additive to Conventional Motor Oil: A Tribological and Physical Study
Lubricants · 2025
- The effect of thin coating on the formation of the oxide-scale layer on FeCrAl metal fibers at elevated temperature
Results in Surfaces and Interfaces · 2025
- Influence of Built Orientation and Surface Conditions on Friction Co-efficient and Sliding Wear of Electron Beam Powder Bed Fused Ti-6Al-4V
SSRN Electronic Journal · 2025
- Synthesis and surface characterization of boehmite and activated alumina coatings on FeCrAl sintered fibers
Results in Surfaces and Interfaces · 2025
- Transformation of quinoa seeds to nanoscale flour by ball milling: Influence of ball diameter and milling time on the particle sizing, microstructure, and rheology
Journal of Food Engineering · 2024
- Encapsulation of Cinnamon and Thyme Essential Oils in γ-Cyclodextrin: Studies on Tribology and Rheology of Diluted Emulsions and Morphologies of Encapsulates
ACS Food Science & Technology · 2024
- Ultrathin (15 nm) Carbon Sheets with Surface Oxygen Functionalization for Efficient Pseudocapacitive Na‐ion Storage
ChemElectroChem · 2024
- Investigation of Chemical, Physical, and Tribological Properties of Pyrolysis Oil Derived from End-of-Life Tires (ELTs) against Conventional Engine Oil
Lubricants · 2024
- Effects of Short-Term Annealing on the Thermal Stability and Microstructural Evolution of Oxygen-Free Copper Processed by High-Pressure Torsion
Materials · 2024
- Microstructural and mechanical properties study of various lattice structures of SS316L-CNTs nano composites fabricated through additive manufacturing
Journal of Physics D Applied Physics · 2024
- Morphological, thermo-mechanical, and barrier properties of coextruded multilayer polylactide composite films reinforced with graphene nanoplatelets and encapsulated thyme essential oil
Food Packaging and Shelf Life · 2023
- Enhancing vitamin D3 – iron blends via twin-screw dry granulation: Microstructural properties and cellular uptake analysis of vitamin D3
Food Chemistry · 2023
- Lubricants×5
- Materials×3
- Carbon×2
- Tribology Letters×2
- Results in Surfaces and Interfaces×2
- Yulong Li
Engineering · Purdue University West Lafayette
- Haijun Su
Engineering · The Ohio State University
- Rodney W. Trice
Materials Science · Purdue University West Lafayette
- K.T. Chiang
Engineering · Purdue University West Lafayette
- Jung-Ting Tsai
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile