Papers
3
Total Citations
61
H-Index
3
About
Farzad Yadegari’s research lies at the intersection of additive manufacturing and materials science, with a focused expertise in fused deposition modeling (FDM). His most cited work, “Impact of temperature and material variation on mechanical properties of parts fabricated with fused deposition modeling (FDM) additive manufacturing,” has garnered over 60 citations, establishing him as a key voice in understanding how process parameters affect part performance. Yadegari systematically investigates how variations in printing temperature and filament material—such as PLA, ABS, or PETG—alter tensile strength, stiffness, and layer adhesion. His findings provide critical guidelines for engineers and manufacturers seeking to optimize FDM for functional, load-bearing applications. By bridging the gap between thermal dynamics and mechanical behavior, Yadegari’s contributions help standardize quality control in desktop and industrial 3D printing. His work is particularly valuable for students and researchers exploring process-structure-property relationships in polymer-based additive manufacturing. Through rigorous experimentation and clear reporting, Yadegari continues to advance the reliability of FDM as a production technology, making his research a foundational reference for anyone aiming to improve printed part consistency and durability.
Research Focus
Key Achievements
Top Papers
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