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September 5, 2025Materials and Structures2 citationsOpen Access

Tensile behaviour of four LVL-truss end connections for timber spatial structures

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AFAndrea FabbriFMFabio MinghiniNTNerio Tullini

Key Points

  • Bolted connections exhibited high load-carrying capacities but increased steel usage, raising sustainability concerns.
  • Dowel-nut connections combined impressive mechanical performance with low aesthetic impact, making them a viable option.
  • Screwed connections displayed high stiffness but lower load-carrying capacity, although performance improved with transverse confinement.
  • None of the dowel connections met code compliance for edge distance, highlighting design considerations for safety.

Abstract

Abstract This study analyzes four types of steel-to-timber connections for potential use in spatial truss structures with high-performance, small-section Laminated Veneer Lumber (LVL) elements. The experiments were comprised of 42 monotonic pull-pull tests, including 30 tests on dowel-type connections and 12 tests on screwed connections. Dowel-type connections were subdivided into dowel-nut connections and bolted connections featuring either one inner or two outer steel plates. None of the dowel-type connections met code requirements on minimum lateral-edge distance. For some configuration, also loaded-end distance was non-conforming. Screwed connections used a threaded insert parallel to the longitudinal element axis, accommodating a metric threaded rod. Even in this case, the connection was non-conforming due to violation of code requirements on edge distance and inclination angle with respect to veneer planes. Bolted connections showed high load-carrying capacities, but at the cost of a significant steel usage. The screwed connection, while reducing steel usage, exhibited high stiffness but relatively small load-carrying capacity. This last one, however, was shown to be improved by the application of transverse confinement. The dowel-nut connection proved to be particularly effective, combining good mechanical performance with a low aesthetic impact. These results provide valuable insights into the design of safe and efficient connections for LVL spatial structures, contributing to the growth of knowledge on sustainable engineering applications.

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Cite This Study

Fabbri et al. (2025) studied this question.

synapsesocial.com/papers/68bb421a2b87ece8dc95886dhttps://doi.org/10.1617/s11527-025-02763-1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Cyclic behavior of laminated veneer lumber bracing2026
  2. 2Experimental and numerical analysis of tensile properties in steel-timber bonded-screwed hybrid single-lap joints with different drilling directions2024
  3. 3Timber connections with increased friction in the shear plane: Experimental and analytical investigations into strength and stiffness2026
  4. 4In-plane testing and hysteretic modeling of steel-spline cross-laminated timber diaphragm connection with self-tapping screws2024 · 2 citations
  5. 5Shear capacity and slip modulus prediction of LVL and LVL-C nailed connections for LVL-I-beams2025