Feasibility of using Uruguayan Eucalyptus for sustainable timber connections

Passarella, Diego - Bruzzone, Gastón - Quagliotti, Sebastián - Moya, Laura

Resumen:

Uruguayan fast-growing Eucalyptus grandis has emerged as a promising sustainable material for structural building components. However, traditional methods for joining timber components, such as beams and columns, typically rely on metallic fasteners, and mass timber products like glued laminated timber often use adhesives. In response to growing environmental concerns over the past five years, researchers have explored the substitution of petroleum-based adhesives and metallic fasteners with wooden pegs or dowels. To create effective connections, these dowels must be fashioned from denser wood than the lamellae. The embedment strength of both woods with varying densities is a critical factor in the design of timber connections using fasteners. This paper presents the results of a structural performance analysis of fully eucalyptus dowelled connections, constructed by combining Eucalyptus grandis (? = 473.2 kg|m3, COV = 13.2 %) for the lamellae and Eucalyptus tereticornis (? = 1042.4 kg|m^3, COV = 3.2 %) for the dowel. The bending strength of dowels was determined for specimens with 15- and 18-mm diameters, yielding 173.0 MPa (COV = 10.7 %) and 184.0 MPa (COV = 8.3 %), respectively. Four series of connections were tested, varying the fiber orientation of the lamellae (longitudinal L, transversal T) and dowel diameter (15, 18), following the half-hole method described in ASTM D 5764 standard. The embedment strength values obtained for the connections are as follows: L-15 = 31.3 MPa (COV = 9.3 %), T-15 = 11.2 MPa (COV = 28.7 %), L-18 = 29.6 MPa (COV = 10.1 %), T-18 = 16.7 MPa (COV = 25.7 %). These results reveal that the longitudinal application of the load, aligned with the fiber orientation, exhibits approximately twice the strength of the transversal orientation, with less variability in the outcomes. Furthermore, a strong correlation with the lamellae density was observed, while no significant dependency on the dowel diameter was found. These findings represent a crucial initial step in characterizing and designing glue-free wood-wood connections. The utilization of different eucalyptus species presents a promising path for the development of connections that promote more sustainable timber construction systems.

Detalles Bibliográficos
2023
ANII - FMV_1_2019_1_156162
ESTRUCTURAS DE MADERA
CONECTORES PARA MADERA
MADERA
CONSTRUCCIÓN EN MADERA
Inglés
Universidad ORT Uruguay
RAD
https://hdl.handle.net/20.500.11968/7042
http://hdl.handle.net/20.500.11968/7042
Acceso abierto
Creative Commons Attribution 4.0 International License
Acceso abierto
_version_ 1874659256666423296
author Passarella, Diego
author2 Bruzzone, Gastón
Quagliotti, Sebastián
Moya, Laura
author2_role author
author
author
author_facet Passarella, Diego
Bruzzone, Gastón
Quagliotti, Sebastián
Moya, Laura
author_role author
collection RAD
dc.creator.none.fl_str_mv Passarella, Diego
Bruzzone, Gastón
Quagliotti, Sebastián
Moya, Laura
dc.date.accessioned.none.fl_str_mv 2024-08-29T22:10:31Z
dc.date.available.none.fl_str_mv 2024-08-29T22:10:31Z
dc.date.issued.none.fl_str_mv 2023
dc.description.abstract.none.fl_txt_mv Uruguayan fast-growing Eucalyptus grandis has emerged as a promising sustainable material for structural building components. However, traditional methods for joining timber components, such as beams and columns, typically rely on metallic fasteners, and mass timber products like glued laminated timber often use adhesives. In response to growing environmental concerns over the past five years, researchers have explored the substitution of petroleum-based adhesives and metallic fasteners with wooden pegs or dowels. To create effective connections, these dowels must be fashioned from denser wood than the lamellae. The embedment strength of both woods with varying densities is a critical factor in the design of timber connections using fasteners. This paper presents the results of a structural performance analysis of fully eucalyptus dowelled connections, constructed by combining Eucalyptus grandis (? = 473.2 kg|m3, COV = 13.2 %) for the lamellae and Eucalyptus tereticornis (? = 1042.4 kg|m^3, COV = 3.2 %) for the dowel. The bending strength of dowels was determined for specimens with 15- and 18-mm diameters, yielding 173.0 MPa (COV = 10.7 %) and 184.0 MPa (COV = 8.3 %), respectively. Four series of connections were tested, varying the fiber orientation of the lamellae (longitudinal L, transversal T) and dowel diameter (15, 18), following the half-hole method described in ASTM D 5764 standard. The embedment strength values obtained for the connections are as follows: L-15 = 31.3 MPa (COV = 9.3 %), T-15 = 11.2 MPa (COV = 28.7 %), L-18 = 29.6 MPa (COV = 10.1 %), T-18 = 16.7 MPa (COV = 25.7 %). These results reveal that the longitudinal application of the load, aligned with the fiber orientation, exhibits approximately twice the strength of the transversal orientation, with less variability in the outcomes. Furthermore, a strong correlation with the lamellae density was observed, while no significant dependency on the dowel diameter was found. These findings represent a crucial initial step in characterizing and designing glue-free wood-wood connections. The utilization of different eucalyptus species presents a promising path for the development of connections that promote more sustainable timber construction systems.
dc.description.none.fl_txt_mv Ponencia presentada a: International Union of Forest Research Organizations (IUFRO) Conference, Montevideo, 20-24 de noviembre de 2023.
dc.description.sponsorship.none.fl_txt_mv ANII - FMV_1_2019_1_156162
dc.identifier.citation.none.fl_str_mv Passarella, D., Bruzzone, G., Quagliotti, S., & Moya, L. (2023). Feasibility of using Uruguayan Eucalyptus for sustainable timber connections. Agrociencia Uruguay, 27(NE2). Doi: 10.31285/AGRO.27.1312.
dc.identifier.doi.none.fl_str_mv https://doi.org/10.31285/AGRO.27.1312
dc.identifier.issn.none.fl_str_mv 2730-5066
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.11968/7042
http://hdl.handle.net/20.500.11968/7042
dc.language.iso.none.fl_str_mv eng
dc.publisher.none.fl_str_mv Agronomy College (FAgro), Universidad de la República (Udelar)
National Institute of Agricultural Research (INIA)
dc.rights.license.none.fl_str_mv Creative Commons Attribution 4.0 International License
Acceso abierto
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.no.none.fl_str_mv NE2
dc.source.none.fl_str_mv reponame:RAD
instname:Universidad ORT Uruguay
instacron:Universidad ORT
dc.source.title.none.fl_str_mv Agrociencia Uruguay
dc.source.vol.none.fl_str_mv 27
dc.subject.none.fl_str_mv ESTRUCTURAS DE MADERA
CONECTORES PARA MADERA
MADERA
CONSTRUCCIÓN EN MADERA
dc.title.none.fl_str_mv Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
dc.type.none.fl_str_mv Artículo
info:eu-repo/semantics/article
dc.type.version.none.fl_str_mv info:eu-repo/semantics/publishedVersion
description Ponencia presentada a: International Union of Forest Research Organizations (IUFRO) Conference, Montevideo, 20-24 de noviembre de 2023.
eu_rights_str_mv openAccess
format article
id RAD_0da8dbdbad4d04f05b1ce77ea70dff72
identifier_str_mv Passarella, D., Bruzzone, G., Quagliotti, S., & Moya, L. (2023). Feasibility of using Uruguayan Eucalyptus for sustainable timber connections. Agrociencia Uruguay, 27(NE2). Doi: 10.31285/AGRO.27.1312.
2730-5066
https://doi.org/10.31285/AGRO.27.1312
instacron_str Universidad ORT
institution Universidad ORT
instname_str Universidad ORT Uruguay
language eng
network_acronym_str RAD
network_name_str RAD
oai_identifier_str oai:rad.ort.edu.uy:20.500.11968/7042
publishDate 2023
publisher.none.fl_str_mv Agronomy College (FAgro), Universidad de la República (Udelar)
National Institute of Agricultural Research (INIA)
reponame_str RAD
repository.mail.fl_str_mv rodriguez_v@ort.edu.uy
repository.name.fl_str_mv RAD - Universidad ORT Uruguay
repository_id_str 3927
rights_invalid_str_mv Creative Commons Attribution 4.0 International License
Acceso abierto
spelling 98fa4e6c-b60f-49d1-841f-0a45084e9102-1b419e770-daed-49cb-8e9c-505ae5e6725b-17cc8e283-947e-46c0-95a2-1797ba08bff4-19d10cc86-04ab-4e20-9005-8e8d544b3439-12024-08-29T22:10:31Z2024-08-29T22:10:31Z2023Passarella, D., Bruzzone, G., Quagliotti, S., & Moya, L. (2023). Feasibility of using Uruguayan Eucalyptus for sustainable timber connections. Agrociencia Uruguay, 27(NE2). Doi: 10.31285/AGRO.27.1312.2730-5066https://hdl.handle.net/20.500.11968/7042http://hdl.handle.net/20.500.11968/7042 https://doi.org/10.31285/AGRO.27.1312Ponencia presentada a: International Union of Forest Research Organizations (IUFRO) Conference, Montevideo, 20-24 de noviembre de 2023.Uruguayan fast-growing Eucalyptus grandis has emerged as a promising sustainable material for structural building components. However, traditional methods for joining timber components, such as beams and columns, typically rely on metallic fasteners, and mass timber products like glued laminated timber often use adhesives. In response to growing environmental concerns over the past five years, researchers have explored the substitution of petroleum-based adhesives and metallic fasteners with wooden pegs or dowels. To create effective connections, these dowels must be fashioned from denser wood than the lamellae. The embedment strength of both woods with varying densities is a critical factor in the design of timber connections using fasteners. This paper presents the results of a structural performance analysis of fully eucalyptus dowelled connections, constructed by combining Eucalyptus grandis (? = 473.2 kg|m3, COV = 13.2 %) for the lamellae and Eucalyptus tereticornis (? = 1042.4 kg|m^3, COV = 3.2 %) for the dowel. The bending strength of dowels was determined for specimens with 15- and 18-mm diameters, yielding 173.0 MPa (COV = 10.7 %) and 184.0 MPa (COV = 8.3 %), respectively. Four series of connections were tested, varying the fiber orientation of the lamellae (longitudinal L, transversal T) and dowel diameter (15, 18), following the half-hole method described in ASTM D 5764 standard. The embedment strength values obtained for the connections are as follows: L-15 = 31.3 MPa (COV = 9.3 %), T-15 = 11.2 MPa (COV = 28.7 %), L-18 = 29.6 MPa (COV = 10.1 %), T-18 = 16.7 MPa (COV = 25.7 %). These results reveal that the longitudinal application of the load, aligned with the fiber orientation, exhibits approximately twice the strength of the transversal orientation, with less variability in the outcomes. Furthermore, a strong correlation with the lamellae density was observed, while no significant dependency on the dowel diameter was found. These findings represent a crucial initial step in characterizing and designing glue-free wood-wood connections. The utilization of different eucalyptus species presents a promising path for the development of connections that promote more sustainable timber construction systems.ANII - FMV_1_2019_1_156162engAgronomy College (FAgro), Universidad de la República (Udelar)National Institute of Agricultural Research (INIA)Creative Commons Attribution 4.0 International LicenseAcceso abiertoinfo:eu-repo/semantics/openAccessESTRUCTURAS DE MADERACONECTORES PARA MADERAMADERACONSTRUCCIÓN EN MADERAFeasibility of using Uruguayan Eucalyptus for sustainable timber connectionsArtículoinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionAgrociencia Uruguay27NE2reponame:RADinstname:Universidad ORT Uruguayinstacron:Universidad ORTPassarella, DiegoBruzzone, GastónQuagliotti, SebastiánMoya, Laura20.500.11968/70422024-08-30 15:51:23.18metadata.onlyoai:rad.ort.edu.uy:20.500.11968/7042https://rad.ort.edu.uyhttps://rad.ort.edu.uy/Universidadhttps://www.ort.edu.uy/https://rad.ort.edu.uy/server/oai/requestrodriguez_v@ort.edu.uyUruguayopendoar:39272024-08-30T18:51:23RAD - Universidad ORT Uruguayfalse
spellingShingle Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
Passarella, Diego
ESTRUCTURAS DE MADERA
CONECTORES PARA MADERA
MADERA
CONSTRUCCIÓN EN MADERA
status_str publishedVersion
title Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
title_full Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
title_fullStr Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
title_full_unstemmed Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
title_short Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
title_sort Feasibility of using Uruguayan Eucalyptus for sustainable timber connections
topic ESTRUCTURAS DE MADERA
CONECTORES PARA MADERA
MADERA
CONSTRUCCIÓN EN MADERA
url https://hdl.handle.net/20.500.11968/7042
http://hdl.handle.net/20.500.11968/7042