Reinforced Notched Cross-Laminated Timber Plates: Load-Bearing Capacity and Methodology for Predicting the Force in Reinforcement

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Abstract

This paper deals with the estimation of the design force in self-tapping screws used as a reinforcement of notched cross laminated timber plates (CLT). With the reinforcement, apart from an increased load-carrying capacity, a more ductile behaviour of this detail can be achieved. An analytical model based on the Timoshenko Beam Theory was developed, enabling the estimation of the axial force in the reinforcement. A parametric numerical analysis was conducted to verify the model and to provide possible ways for the calibration. The results show a good matching of the model with the numerical results. The load-bearing capacity is analysed using a simple fracture mechanics model taking into consideration the effect of the reinforcement to correctly depict the increase in performance. Theoretical and numerical results are compared with experimental findings and show acceptable correlations encouraging a further development and a subsequent implementation in EN 1995-1-1.

Original languageEnglish
Title of host publication13th World Conference on Timber Engineering, WCTE 2023
EditorsAnders Q. Nyrud, Kjell Arne Malo, Kristine Nore, Knut Werner Lindeberg Alsen, Saule Tulebekova, Efthymia Ratsou Staehr, Gabrielle Bergh, Wendy Wuyts
PublisherWorld Conference on Timber Engineering (WCTE)
Pages2442-2453
Number of pages12
Volume4
ISBN (Electronic)9781713873297
DOIs
Publication statusPublished - 2023
Event13th World Conference on Timber Engineering: Timber for a Livable Future: WCTE 2023 - Clarion The Hub, Oslo, Norway
Duration: 19 Jun 202322 Jun 2023

Conference

Conference13th World Conference on Timber Engineering: Timber for a Livable Future
Abbreviated titleWCTE 2023
Country/TerritoryNorway
CityOslo
Period19/06/2322/06/23

Keywords

  • CLT
  • fracture mechanics
  • notches
  • reinforcement
  • screw stiffness
  • self-tapping screw

ASJC Scopus subject areas

  • Plant Science
  • Civil and Structural Engineering
  • Building and Construction
  • Architecture
  • Forestry

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