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Documents publiés en "2022"

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Nombre de documents: 5

Département de génie mécanique

Batmaz, R., Zardoshtian, A., Sabiston, T. D., Tangestani, R., Chakraborty, A., Krutz, N., Pendurti, S., Natarajan, A., & Martin, É. (2022). Correction to: An Investigation into Sinterability Improvements of 316L Binder Jet Printed Parts (vol 53, pg 915, 2022). Metallurgical and Materials Transactions A-Physical Metallurgy and Materials Science, 53(5), 1919-1919. Lien externe

Batmaz, R., Zardoshtian, A., Sabiston, T. D., Tangestani, R., Chakraborty, A., Krutz, N., Pendurti, S., Natarajan, A., & Martin, É. (2022). An Investigation into Sinterability Improvements of 316L Binder Jet Printed Parts. Metallurgical and Materials Transactions A, 53(3), 915-926. Lien externe

Chakraborty, A., Tangestani, R., Muhammad, W., Sabiston, T., Masse, J.-P., Batmaz, R., Wessman, A., & Martin, É. (2022). Micro-cracking mechanism of RENE 108 thin-wall components built by laser powder bed fusion additive manufacturing. Materials Today Communications, 30, 103139 (14 pages). Lien externe

Muhammad, W., Batmaz, R., Natarajan, A., & Martin, É. (2022). Effect of binder jetting microstructure variability on low cycle fatigue behavior of 316L. Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 839, 142820 (12 pages). Lien externe

Département de mathématiques et de génie industriel

Chakraborty, A., Tangestani, R., Batmaz, R., Muhammad, W., Plamondon, P., Wessman, A., Yuan, L., & Martin, E. (2022). In-process failure analysis of thin-wall structures made by laser powder bed fusion additive manufacturing. Journal of Materials Science and Technology, 98, 233-243. Lien externe

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