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Effects of Bolt Number and Pattern on the Failure Time of Minimally Fire-Protected Glulam Beam Connections Reinforced with Self-tapping Screws

  • 11-09-2023
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Abstract

The increasing prevalence of high-rise timber buildings has sparked interest in studying the structural performance of critical components like beam-to-column connections under fire conditions. This article focuses on the effects of bolt number and pattern on the failure time and rotational behavior of minimally fire-protected glulam beam connections reinforced with self-tapping screws. Experimental tests were conducted on four different connection configurations, varying the number of bolts and bolt patterns. The results show that self-tapping screws effectively prevent wood splitting and enhance the fire resistance of the connections. The study also reveals that increasing the number of bolts and optimizing bolt patterns can significantly improve the failure time of the connections. The findings provide valuable insights into designing more fire-resistant timber connections for high-rise buildings.

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Title
Effects of Bolt Number and Pattern on the Failure Time of Minimally Fire-Protected Glulam Beam Connections Reinforced with Self-tapping Screws
Authors
Oluwamuyiwa Okunrounmu
Osama (Sam) Salem
George Hadjisophocleous
Publication date
11-09-2023
Publisher
Springer US
Published in
Fire Technology / Issue 5/2024
Print ISSN: 0015-2684
Electronic ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-023-01477-6
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