MOMENT RESISTING TIMBER FRAMES USING MECHANICAL FASTENER AND ADHESIVE CONNECTIONS: REVIEW AND EXPERIMENTAL TESTS

dc.affiliation.institutionUniversity of Waterloo
dc.affiliation.institutionQueen's University
dc.affiliation.institutionUniversity of Waterloo
dc.affiliation.institutionDept. of Wood Science
dc.contributor.authorTesfamariam, Solomon
dc.contributor.authorWoods, Joshua
dc.contributor.authorTeweldebrhan, Biniam Tekle
dc.contributor.authorLam, Frank
dc.date.accepted2025-12-29
dc.date.accessioned2026-03-02T14:00:48Z
dc.date.issued2025-12-29
dc.date.revised2025-10-26
dc.date.submitted2025-07-31
dc.description.abstractThis paper presents a comprehensive review and bibliometric study on various moment resisting timber frame (MRTF) connections, including doweled, adhesive (glued-in rods), and ductile fuse types, highlighting their ductility and energy dissipation capacities under static pushover and reverse-cyclic loading. Complementing this review, an experimental program was undertaken to evaluate the cyclic performance of bolted slotted-in steel plate beam column timber connections, investigating the influence of bolt size, bolt spacing, and self-tapping screw (STS) reinforcement. The experimental results show that STSs effectively prevent splitting failures, and that spacing has limited impact on connection strength and ductility when reinforcement is provided. All tested connections exhibited stable, pinched hysteretic responses with significant rotational ductility, with failure governed by bolt yielding and localized wood crushing.
dc.description.disclaimerThe presentation of the authors' names and (or) special characters in the title of the pdf file of the accepted manuscript may differ slightly from what is displayed on the item page. The information in the pdf file of the accepted manuscript reflects the original submission by the author.
dc.identifier.doi10.1139/cjce-2025-0320
dc.identifier.issn0315-1468
dc.identifier.urihttps://hdl.handle.net/1807/151666
dc.publication.journalCanadian Journal of Civil Engineering
dc.publisherCanadian Science Publishing
dc.titleMOMENT RESISTING TIMBER FRAMES USING MECHANICAL FASTENER AND ADHESIVE CONNECTIONS: REVIEW AND EXPERIMENTAL TESTS
dc.typeReview
dc.typeArticle Post-Print

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