Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw

In current design procedures, the capacities of single-shear timber connections with lag screws are determined based on their governing failure modes, which are assumed to occur independently. In this study, the capacity and failure modes of single-shear timber connections with lag screws are evalua...

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Main Authors: Hartono Hansen Marchel, Tjahjanto Helmy Hermawan, Nugroho Wivia Octarena
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/66/e3sconf_iccim2023_05010.pdf
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author Hartono Hansen Marchel
Tjahjanto Helmy Hermawan
Nugroho Wivia Octarena
author_facet Hartono Hansen Marchel
Tjahjanto Helmy Hermawan
Nugroho Wivia Octarena
author_sort Hartono Hansen Marchel
collection DOAJ
description In current design procedures, the capacities of single-shear timber connections with lag screws are determined based on their governing failure modes, which are assumed to occur independently. In this study, the capacity and failure modes of single-shear timber connections with lag screws are evaluated experimentally and numerically. Six specimens of Red Meranti wood and lag screws with different penetration lengths are tested to obtain their lateral load capacities and failure modes. Nonlinear 3D finite element analyses using Abaqus are conducted to simulate the test condition. The experimental and numerical results are evaluated in terms of connection failure modes and capacities. Moreover, the result will be compared with NDS 2018 predictions. The study results show that the connection capacities between experimental tests and numerical analysis are similar if the minimum penetration requirement of NDS 2018 is satisfied. It can also be seen that the dominant failure modes, both from experimental and numerical results, match with those predicted using NDS 2018, although they are slightly combined with the other failure modes.
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spelling doaj.art-6490e6c417f64ee4be2bcb1dd12f9c272023-09-26T10:12:13ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014290501010.1051/e3sconf/202342905010e3sconf_iccim2023_05010Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screwHartono Hansen Marchel0Tjahjanto Helmy Hermawan1Nugroho Wivia Octarena2Department of Civil Engineering, Universitas Katolik ParahyanganDepartment of Civil Engineering, Universitas Katolik ParahyanganDepartment of Civil Engineering, Universitas Katolik ParahyanganIn current design procedures, the capacities of single-shear timber connections with lag screws are determined based on their governing failure modes, which are assumed to occur independently. In this study, the capacity and failure modes of single-shear timber connections with lag screws are evaluated experimentally and numerically. Six specimens of Red Meranti wood and lag screws with different penetration lengths are tested to obtain their lateral load capacities and failure modes. Nonlinear 3D finite element analyses using Abaqus are conducted to simulate the test condition. The experimental and numerical results are evaluated in terms of connection failure modes and capacities. Moreover, the result will be compared with NDS 2018 predictions. The study results show that the connection capacities between experimental tests and numerical analysis are similar if the minimum penetration requirement of NDS 2018 is satisfied. It can also be seen that the dominant failure modes, both from experimental and numerical results, match with those predicted using NDS 2018, although they are slightly combined with the other failure modes.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/66/e3sconf_iccim2023_05010.pdf
spellingShingle Hartono Hansen Marchel
Tjahjanto Helmy Hermawan
Nugroho Wivia Octarena
Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw
E3S Web of Conferences
title Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw
title_full Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw
title_fullStr Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw
title_full_unstemmed Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw
title_short Experimental and numerical evaluation on the behavior of single-shear timber connections using lag screw
title_sort experimental and numerical evaluation on the behavior of single shear timber connections using lag screw
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/66/e3sconf_iccim2023_05010.pdf
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