Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads

Glued-laminated timber arches are widely used in gymnasiums, bridges, and roof trusses. However, studies on their mechanical behaviours and design methods are still insufficient. This paper investigates the in-plane loading capacity of circular glued-laminated timber arches made of Douglas fir. Expe...

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Main Authors: Jiale Zhou, Chuanxi Li, Lu Ke, Jun He, Zhifeng Wang
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2020/7987414
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spelling doaj-5941c28fd9f34c058f99c25fb8c82f682020-11-25T03:26:36ZengHindawi LimitedAdvances in Civil Engineering1687-80861687-80942020-01-01202010.1155/2020/79874147987414Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated LoadsJiale Zhou0Chuanxi Li1Lu Ke2Jun He3Zhifeng Wang4Key Laboratory of Bridge Engineering Safety Control by Department of Education, Changsha University of Science and Technology, Changsha 410114, ChinaKey Laboratory of Bridge Engineering Safety Control by Department of Education, Changsha University of Science and Technology, Changsha 410114, ChinaKey Laboratory of Bridge Engineering Safety Control by Department of Education, Changsha University of Science and Technology, Changsha 410114, ChinaKey Laboratory of Bridge Engineering Safety Control by Department of Education, Changsha University of Science and Technology, Changsha 410114, ChinaDepartment of Civil Engineering and Mechanics, Central South University of Forestry and Technology, Changsha 41004, ChinaGlued-laminated timber arches are widely used in gymnasiums, bridges, and roof trusses. However, studies on their mechanical behaviours and design methods are still insufficient. This paper investigates the in-plane loading capacity of circular glued-laminated timber arches made of Douglas fir. Experiments were conducted on four timber-arch models with different rise-to-span ratios under concentrated loads at mid-span and quarter-point locations. The structural responses, failure modes, and loading capacity of the timber arch specimens were obtained. The results show that the timber arches presented symmetric and antisymmetric deformation under mid-point and quarter-point loading conditions, respectively. The downward shifting of the neutral axis of the cross section was observed under mid-point loading condition, which contributes to higher loading capacity compared to that under quarter-point loading condition. The loading condition significantly affects the ultimate loads and the strain distribution in the cross section. Based on the design formula in current standards for timber structures, an equivalent beam-column method was introduced to estimate the loading capacity of the laminated timber arches under vertical concentrated loads. The moment amplification factor in the formula was compared and discussed, and the value provided in the National Design Specification for Wood Construction was recommended with acceptable accuracy.http://dx.doi.org/10.1155/2020/7987414
collection DOAJ
language English
format Article
sources DOAJ
author Jiale Zhou
Chuanxi Li
Lu Ke
Jun He
Zhifeng Wang
spellingShingle Jiale Zhou
Chuanxi Li
Lu Ke
Jun He
Zhifeng Wang
Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads
Advances in Civil Engineering
author_facet Jiale Zhou
Chuanxi Li
Lu Ke
Jun He
Zhifeng Wang
author_sort Jiale Zhou
title Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads
title_short Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads
title_full Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads
title_fullStr Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads
title_full_unstemmed Experimental Study on Loading Capacity of Glued-Laminated Timber Arches Subjected to Vertical Concentrated Loads
title_sort experimental study on loading capacity of glued-laminated timber arches subjected to vertical concentrated loads
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8086
1687-8094
publishDate 2020-01-01
description Glued-laminated timber arches are widely used in gymnasiums, bridges, and roof trusses. However, studies on their mechanical behaviours and design methods are still insufficient. This paper investigates the in-plane loading capacity of circular glued-laminated timber arches made of Douglas fir. Experiments were conducted on four timber-arch models with different rise-to-span ratios under concentrated loads at mid-span and quarter-point locations. The structural responses, failure modes, and loading capacity of the timber arch specimens were obtained. The results show that the timber arches presented symmetric and antisymmetric deformation under mid-point and quarter-point loading conditions, respectively. The downward shifting of the neutral axis of the cross section was observed under mid-point loading condition, which contributes to higher loading capacity compared to that under quarter-point loading condition. The loading condition significantly affects the ultimate loads and the strain distribution in the cross section. Based on the design formula in current standards for timber structures, an equivalent beam-column method was introduced to estimate the loading capacity of the laminated timber arches under vertical concentrated loads. The moment amplification factor in the formula was compared and discussed, and the value provided in the National Design Specification for Wood Construction was recommended with acceptable accuracy.
url http://dx.doi.org/10.1155/2020/7987414
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AT chuanxili experimentalstudyonloadingcapacityofgluedlaminatedtimberarchessubjectedtoverticalconcentratedloads
AT luke experimentalstudyonloadingcapacityofgluedlaminatedtimberarchessubjectedtoverticalconcentratedloads
AT junhe experimentalstudyonloadingcapacityofgluedlaminatedtimberarchessubjectedtoverticalconcentratedloads
AT zhifengwang experimentalstudyonloadingcapacityofgluedlaminatedtimberarchessubjectedtoverticalconcentratedloads
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