Otwarty dostęp

Experimental Investigation of High-Force-To-Volume Extrusion Damper Subjected to Cyclic and Time History Loading


Zacytuj

Barroso, L.R., Chase, J.G. and Hunt, S., 2003. Resettable smart dampers for multi‐level seismic hazard mitigation of steel moment frames. Journal of Structural Control, 10(1), pp.41-58. Search in Google Scholar

Chase, J.G., Mulligan, K.J., Gue, A., Alnot, T., Rodgers, G., Mander, J.B., Elliott, R., Deam, B., Cleeve, L. and Heaton, D., 2006. Re-shaping hysteretic behaviour using semi-active resettable device dampers. Engineering Structures, 28(10), pp.1418-1429. Search in Google Scholar

Housner et al., 1997. Structural Control: Past, Present, and Future. Journal of Engineering Mechanics September 1997, pp 897-971. Pearsons, C. E. & Parkins, R. N., The Extrusion of Metals. pp. 201-221, 1960. Search in Google Scholar

Cousins, W. J. & Porritt, T. E., 1993. Improvements to lead-extrusion damper technology. Bulletin of the New Zealand National Society for Earthquake Engineering, vol. 26, pp. 342-348. Search in Google Scholar

Robinson W. H., Lead-Rubber Hysteretic Bearings Suitable For Protecting Structures during Earthquakes. Earthquake Engineering and Structural Dynamics, vol. 10, pp. 593-604, 1982. Search in Google Scholar

Robinson W. H., Recent research and applications of seismic isolation in New Zealand. Bulletin of the New Zealand National Society for Earthquake Engineering, vol. 28, pp. 253-264, 1995. Search in Google Scholar

Pekcan G., Mander J. B., & Chen S. S., Fundamental Considerations for The Design of Non-linear Viscous Dampers. Earthquake Engineering and Structural Dynamics, vol. 28, pp. 1405-1425, 1999. Search in Google Scholar

Rodgers, GW, Leach, N, Denmead, C, Chase, JG, & Mander, JB. Spectral evaluation of high force-volume lead dampers for structural response reductions. Proc. New Zealand Society for Earthquake Engineering Annual Conference, Napier, New Zealand, March 10-12, 2006. Search in Google Scholar

Chanchí, J. C., MacRae, G.A., Chase, J.G., Rodgers, G.W., and Clifton, G.C. (2011). Behaviour of HF2V devices and possible applications on steel structures. STESSA 2012, Santiago de Chile, Chile. Search in Google Scholar

Mander T.J., Rodgers G.W., Chase J.G., Mander J.B., MacRae G. A. & Dhakal R. (2009). A Damage Avoidance Design Steel Beam-Column Moment Connection Using High-Force-To-Volume Dissipators. American Society of Civil Engineering – Journal of Structural Engineering. Vol. 135 (11), pp 1390 – 1397. Search in Google Scholar

Rodgers, G.W., Chase, J.G., Mander, J.B., Leach, N. C., and Denmead, C.S. (2007). Experimental Development, Tradeoff Analysis and Design Implementation of High Force- To Volume Damping Technology. Bulletin of the New Zealand Society for Earthquake Engineering. Vol.40 (2), pp. 35 – 48. Search in Google Scholar

Rodgers, G. W. (2009). Next Generation Structural Technologies: Implementing High Force-to-Volume Energy Absorbers. PhD Thesis, Dept. of Mechanical Engineering, University of Canterbury, Christchurch, New Zealand. Search in Google Scholar

Rodgers, G.W., Solberg, K.M., Mander, J.B., Chase, J.G., Bradley, B.A., and Dhakal, R.P. (2012). High-Force-to-Volume Seismic Dissipators Embedded in a Jointed Pre-Cast Concrete. Search in Google Scholar

Rodgers, G. W., Mander, J. B., & Chase, J. G. (2018, June). Precision design modelling of HF2V devices. In Structures. Vol. 14, pp. 243-250. Search in Google Scholar

Abdeli Bisafar, M., & Manafpour, A. (2022). Development and experimental validation of a new self-centering HF2V damper with disc springs. Bulletin of Earthquake Engineering, Vol. 20 (13), pp .7417-7440. Search in Google Scholar

eISSN:
2284-7197
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Engineering, Introductions and Overviews, other, Electrical Engineering, Energy Engineering, Geosciences, Geodesy