Wang, T.; Gwalani, B.; Silverstein, J.; Darsell, J.; Jana, S.; Roosendaal, T.; Ortiz, A.; Daye, W.; Pelletiers, T.; Whalen, S.
Microstructural Assessment of a Multiple-Intermetallic-Strengthened Aluminum Alloy Produced from Gas-Atomized Powder by Hot Extrusion and Friction Extrusion. Materials 2020, 13, 5333.
https://doi.org/10.3390/ma13235333
AMA Style
Wang T, Gwalani B, Silverstein J, Darsell J, Jana S, Roosendaal T, Ortiz A, Daye W, Pelletiers T, Whalen S.
Microstructural Assessment of a Multiple-Intermetallic-Strengthened Aluminum Alloy Produced from Gas-Atomized Powder by Hot Extrusion and Friction Extrusion. Materials. 2020; 13(23):5333.
https://doi.org/10.3390/ma13235333
Chicago/Turabian Style
Wang, Tianhao, Bharat Gwalani, Joshua Silverstein, Jens Darsell, Saumyadeep Jana, Timothy Roosendaal, Angel Ortiz, Wayne Daye, Tom Pelletiers, and Scott Whalen.
2020. "Microstructural Assessment of a Multiple-Intermetallic-Strengthened Aluminum Alloy Produced from Gas-Atomized Powder by Hot Extrusion and Friction Extrusion" Materials 13, no. 23: 5333.
https://doi.org/10.3390/ma13235333
APA Style
Wang, T., Gwalani, B., Silverstein, J., Darsell, J., Jana, S., Roosendaal, T., Ortiz, A., Daye, W., Pelletiers, T., & Whalen, S.
(2020). Microstructural Assessment of a Multiple-Intermetallic-Strengthened Aluminum Alloy Produced from Gas-Atomized Powder by Hot Extrusion and Friction Extrusion. Materials, 13(23), 5333.
https://doi.org/10.3390/ma13235333