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Documents dont l'auteur est "Chizari, Kambiz"

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Nombre de documents: 12

Langot, J., Gourcerol, E., Serbescu, A., Brassard, D., Chizari, K., Lapalme, M., Desautels, A., Sirois, F., & Therriault, D. (2023). Performance of painted and non-painted non-woven nickel-coated carbon fibers for lightning strike protection of composite aircraft. Composites Part A: Applied Science and Manufacturing, 175, 107772 (11 pages). Lien externe

Serbescu, A., Brassard, D., Langot, J., Gourcerol, E., Chizari, K., Desautels, A., Lapalme, M., Sirois, F., & Therriault, D. (2023). Silver-based conductive coatings as lightning strike protection for composite aircraft. Results in Materials, 19, 10 pages. Disponible

Langot, J., Gourcerol, E., Serbescu, A., Brassard, D., Chizari, K., Lapalme, M., Desautels, A., Sirois, F., & Therriault, D. (octobre 2022). A comparative study on the performance of nickel-based technologies for lightning strike protection of composite aircraft [Communication écrite]. 36th International Conference on Lightning Protection (ICLP 2022), Cape Town, South Africa. Lien externe

Serbescu, A., Brassard, D., Langot, J., Gourcerol, E., Chizari, K., Lapalme, M., Desautels, A., Sirois, F., & Therriault, D. (octobre 2022). Silver-based conductive materials for lightning strike protection of aircraft composite structures [Communication écrite]. 36th International Conference on Lightning Protection (ICLP 2022), Cape Town, South Africa. Lien externe

Wei, H., Cauchy, X., Navas, I. O., Abderrafai, Y., Chizari, K., Sundararaj, U., Liu, Y., Leng, J., & Therriault, D. (2019). Direct 3D Printing of Hybrid Nanofiber-Based Nanocomposites for Highly Conductive and Shape Memory Applications. ACS Applied Materials and Interfaces, 11(27), 24523-24532. Lien externe

Therriault, D., & Chizari, K. (2018). Electrically conductive ink for solvent-cast 3D printing. (Demande de brevet no US20180022023). Lien externe

Chizari, K., Arjmand, M., Liu, Z., Sundararaj, U., & Therriault, D. (2017). Three-dimensional printing of highly conductive polymer nanocomposites for EMI shielding applications. Materials Today Communications, 11, 112-118. Lien externe

Chizari, K., Daoud, M. A., Ravindran, A. R., & Therriault, D. (2016). 3D printing of highly conductive nanocomposites for the functional optimization of liquid sensors. Small, 12(44), 6076-6082. Disponible

Hughes, V., Tabiai, I., Chizari, K., & Therriault, D. (2016). 3D printable conductive nanocomposites of PLA and multi‑walled carbon nanotubes. Material Matters, 11(2), 61-63. Lien externe

Chizari, K., Daoud, M. A., Ravindran, A. R., & Therriault, D. (2016). Liquid Materials: 3D Printing of Highly Conductive Nanocomposites for the Functional Optimization of Liquid Sensors (Small 44/2016). Small, 12(44), 6176-6176. Lien externe

Farahani, R. D., Chizari, K., & Therriault, D. (2014). Three-dimensional printing of freeform helical microstructures: a review. Nanoscale, 6(18), 10470-10485. Disponible

Talwar, B. S., Guo, S., Chizari, K., & Therriault, D. (novembre 2014). Investigation of carbon nanotubes mixing methods and functionalizations for electrically conductive polymer composites [Communication écrite]. ASME International Mechanical Engineering Congress and Exposition (IMECE 2014), Montréal, Québec (5 pages). Lien externe

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