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Documents dont l'auteur est "Béland, Thierry"

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Nombre de documents: 8

Article de revue

Béland, T., Bradley, C. R., Nelson, J., Sizemore, J. G., Davaran, A., Tremblay, R., Hines, E. M., & Fahnestock, L. A. (2020). Experimental Parametric Characterization of Bolted Angle Connection Behavior. Journal of Structural Engineering, 146(8), 17 pages. Lien externe

Béland, T., Tremblay, R., Hines, E. M., & Fahnestock, L. A. (2020). Full-Scale Cyclic Rotation and Shear-Load Testing of Double Web with Top and Seat Angle Beam-Column Connections. Journal of Structural Engineering, 146(8), 14 pages. Lien externe

Béland, T., Tremblay, R., Hines, E. M., & Fahnestock, L. A. (2020). Rotational Capacity of Bolted Double-Web-Angle Beam-Column Gravity Connections through Full-Scale Experimental Testing. Journal of Structural Engineering (United States), 146(7), 11 pages. Lien externe

Communication écrite

Béland, T., Tremblay, R., Fahnestock, L. A., & Hines, E. M. (septembre 2020). Contribution of the gravity beam-column connections to the seismic reserve capacity of steel buildings [Communication écrite]. 17th world Conference on Earthquake Engineering (17WCEE), Sendai, Japan (13 pages). Lien externe

Nelson, J., Davaran, A., Béland, T., Bradley, C., Hines, E. M., Tremblay, R., & Fahnestock, L. A. (avril 2014). Cyclic experimental behavior of angles and applications for connection design and modeling [Communication écrite]. Structures Congress 2014, Boston, MA, United states. Lien externe

Davaran, A., Tremblay, R., Béland, T., Fahnestock, L. A., & Hines, E. M. (avril 2014). Experimental behavior of low-ductility brace connection limit states [Communication écrite]. Structures Congress 2014, Boston, MA, United states. Lien externe

Fahnestock, L. A., Hines, E. M., Tremblay, R., Bradley, C., Nelson, J., Béland, T., Davaran, A., & Sizemore, J. (juillet 2014). Reserve capacity and implications for seismic collapse prevention for low-ductility braced frames in moderate seismic regions [Communication écrite]. 10th U.S. National Conference on Earthquake Engineering: Frontiers of Earthquake Engineering (NCEE 2014), Anchorage, AK, United states. Lien externe

Thèse de doctorat

Béland, T. (2020). Improving the seismic robustness of Conventional Construction concentrically braced steel frames by mobilizing the gravity load framing system [Thèse de doctorat, Polytechnique Montréal]. Disponible

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