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Experimental investigations of a new highly ductile hold-down with adaptive stiffness for timber seismic bracing walls

K. Maître; P. Lestuzzi; M. Geiser
Bulletin of Earthquake Engineering · Vol. 21, Issue 5 · pp. 2603-2634 · 2023

Abstract

An efficient implementation of the capacity design requires high ductility combined with a low overstrength of the critical regions. Conventional timber connections do not generally offer such ideal combination, resulting in modest behaviour and relatively high overstrength factors. Inspired by the Buckling Restrained Brace a new hold-down has been developed where the timber wall directly acts as a casing. The new hold-down has been given an adaptive stiffness allowing the structure to be stiff in the wind, while becoming more flexible in the case of an earthquake. Furthermore, local crushing of the timber members is completely avoided, and the new hold-down could be replaced after an earthquake. Experimental investigations were performed on hold-down specimens. The results show ultimate displacement values v u,c of more than 30 mm in a cyclic test according to EN12512. Eleven Cross Laminated Timber shear walls, in which the new hold-down has been implemented, were tested following monotonic and static-cyclic tests procedures, with and without vertical load. A very high ductility has been achieved with almost no strength degradation, little pinching and limited overstrength.

Bibliographic Information

JournalBulletin of Earthquake Engineering
PublisherSpringer
Publication Date2023-03-01
Publication Year2023
Volume21
Issue5
Pages2603-2634
Document TypeJournal Article
Print ISSN1570-761X
eISSN1573-1456
DOI10.1007/s10518-022-01607-5

Access Information

NARA Access Coverage2003-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10518
Publisher PageOpen Publisher Page
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