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Development of an analytical model to predict the bending behavior of composite glulam beams in tension and compression

Identifiers
URI: http://hdl.handle.net/20.500.12251/3010
View/Open: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85122515333&doi=10.1016%2fj.jobe.2021.103471&partnerID=40&md5=4947d177e585418429c718e71df9e44e
ISSN: 2352-7102
DOI: 10.1016/j.jobe.2021.103471
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Author
Timbolmas, Cristian Ioan; Bravo, R.; Rescalvo Fernández, Francisco José; Gallego Molina, Antolino
Date
2022
Subject/s

Madera estructural

Chopo -madera-

Pino silvestre

Fibra de carbono

Ensayos (propiedades o materiales)

Resistencia mecánica

Ensayo No Destructivo (END)

Estructura de madera

Unesco Subject/s

3313.04 Material de Construcción

2211.02 Materiales Compuestos

3305.39 Construcciones de Madera

3305.33 Resistencia de Estructuras

3312.08 Propiedades de Los Materiales

3312.09 Resistencia de Materiales

3312.13 Tecnología de la Madera

Abstract

This research paper describes the mechanical results of an experimental test program and presents an analytical model that analyzes the relations between the global, tension and compresion moduli of elasticity of different layouts of composite glulam beams made with poplar wood in combination with pine wood and/or carbon fiber reinforced polymer (CFRP) subjected to bending. The experimental campaign was conducted employing acoustic non-destructive tests (NDT) as well as destructive mechanical ones (four-point bending tests). The aim is to evaluate the elastic global modulus and the moduli of timber in tension and compression along with the corresponding relations and consequent improvements for composite beams using the analytical model, based on the data from experimental tests. The analytical procedure entails two different approaches to estimate the timber behavior in tension and compression. The obtained analytical results of both approaches are subsequently compared for all of the beam layouts and experimental data, in which the maximum mean variation is up to 15%. In addition, the proposed analytical model is used in a parametric analysis that provides insights for the optimal design of a composite beam in terms of poplar wood percentage. © 2021 Elsevier Ltd

This research paper describes the mechanical results of an experimental test program and presents an analytical model that analyzes the relations between the global, tension and compresion moduli of elasticity of different layouts of composite glulam beams made with poplar wood in combination with pine wood and/or carbon fiber reinforced polymer (CFRP) subjected to bending. The experimental campaign was conducted employing acoustic non-destructive tests (NDT) as well as destructive mechanical ones (four-point bending tests). The aim is to evaluate the elastic global modulus and the moduli of timber in tension and compression along with the corresponding relations and consequent improvements for composite beams using the analytical model, based on the data from experimental tests. The analytical procedure entails two different approaches to estimate the timber behavior in tension and compression. The obtained analytical results of both approaches are subsequently compared for all of the beam layouts and experimental data, in which the maximum mean variation is up to 15%. In addition, the proposed analytical model is used in a parametric analysis that provides insights for the optimal design of a composite beam in terms of poplar wood percentage. © 2021 Elsevier Ltd

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