109
Views
25
CrossRef citations to date
0
Altmetric
Original Articles

Measurement methods for longitudinal surface strain in trees: a review

, , , &
Pages 34-43 | Received 12 Oct 2004, Published online: 15 Apr 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Yani Japarudin, Mahadir Lapammu, Agus Alwi, Kim-Choon Chiu, Mohammad Ghaffariyan, Mark Brown & Roger Meder. (2021) Veneering and sawing performance of plantation-grown Eucalyptus pellita, aged 7–23 years, in Borneo Malaysia. International Wood Products Journal 12:2, pages 116-127.
Read now
Yan Peng, Roger Arnold, Russel Washusen, Dongyun Xiang, Gufu Wu & Shaoxiong Chen. (2015) Processing sawn wood from thinned, unpruned 17-year-old Eucalyptus dunnii in southern China. Australian Forestry 78:2, pages 73-85.
Read now
Yan Peng, Russel Washusen, Dongyun Xiang, Jun Lan, Shaoxiong Chen & Roger Arnold. (2014) Grade and value variations in Eucalyptus urophylla × E. grandis veneer due to variations in initial plantation spacings. Australian Forestry 77:1, pages 39-50.
Read now
TimothyN. Murphy, Michael Henson & JeromeK. Vanclay. (2005) Growth stress in Eucalyptus dunnii . Australian Forestry 68:2, pages 144-149.
Read now

Articles from other publishers (21)

Carlos Rozas, Barbara Zapata, Fernando Muñoz, Virna Ortiz-Araya & Oswaldo Erazo. (2023) Characterization and Yield of Eucalyptus regnans F. Muell Logs for Lumber Production. Forests 14:12, pages 2359.
Crossref
Arnoul Van Rooij, Eric Badel, Jean-François Barczi, Yves Caraglio, Tancrede Almeras & Joseph Gril. (2023) Modelling the growth stress in tree branches: eccentric growth vs. reaction wood. Peer Community Journal 3.
Crossref
Carlos Rozas, Ricardo Burgos, Alexander Opazo, Pablo Moreno, Oswaldo Erazo & Jean Pierre Lasserre. (2023) Distribution of Growth Stresses in Eucalyptus nitens Maiden Logs Immersed in Water. Forests 14:8, pages 1517.
Crossref
Tianhui Wang, Qiongling Dai, Yunlin Fu & Penglian Wei. (2023) Effect of Continuous Planting on Tree Growth Traits and Growth Stress in Plantation Forests of Eucalyptus urophylla × E. grandis. Sustainability 15:12, pages 9624.
Crossref
Mauricio Acuna, Sandra Sánchez-García & Elena Canga. (2022) An Optimization Approach to Assess the Impact of Drying and Dry Matter Losses of Eucalyptus globulus Roundwood and Biomass on Supply Chains Costs and GHG Emissions. Forests 13:5, pages 701.
Crossref
Bernard Thibaut & Joseph Gril. (2021) Tree growth forces and wood properties. Peer Community Journal 1.
Crossref
Te Ma, Tetsuya Inagaki, Masato Yoshida, Mayumi Ichino & Satoru Tsuchikawa. (2021) Measuring the tensile strain of wood by visible and near-infrared spatially resolved spectroscopy. Cellulose 28:17, pages 10787-10801.
Crossref
Róger Moya & Carolina Tenorio. (2021) Reduction of growth stresses in logs of Hieronyma alchorneoides Allemão from fast-growth plantations using steaming and heating: effects on the quality of lumber. Annals of Forest Science 78:3.
Crossref
Roger Moya, Carolina Tenorio & Juan David Conde Torres. (2021) Steaming and Heating Dipteryx panamensis Logs from Fast-Grown Plantations: Reduction of Growth Strain and Effects on Quality . Forest Products Journal 71:1, pages 3-10.
Crossref
Frederico José Nistal França, Tâmara Suely Filgueira Amorim França & Graziela Baptista Vidaurre. (2020) Effect of growth stress and interlocked grain on splitting of seven different hybrid clones of Eucalyptus grandis × Eucalyptus urophylla wood . Holzforschung 74:10, pages 917-926.
Crossref
Fei Guo, Marlene Cramer & Clemens M. Altaner. (2019) Evaluation of near infrared spectroscopy to non-destructively measure growth strain in trees. Cellulose 26:13-14, pages 7663-7673.
Crossref
Fei Guo & Clemens M. Altaner. (2019) Measuring Molecular Strain in Rewetted and Never-Dried Eucalypt Wood with Raman Spectroscopy. Biomacromolecules 20:8, pages 3191-3199.
Crossref
Bernard Thibaut. (2019) Three-dimensional printing, muscles, and skeleton: mechanical functions of living wood. Journal of Experimental Botany 70:14, pages 3453-3466.
Crossref
Fei Guo & Clemens Michael Altaner. (2018) Properties of rotary peeled veneer and laminated veneer lumber (LVL) from New Zealand grown Eucalyptus globoidea. New Zealand Journal of Forestry Science 48:1.
Crossref
Gregory A. Dahle. (2017) Influence of bark on the mapping of mechanical strain using digital image correlation. Wood Science and Technology 51:6, pages 1469-1477.
Crossref
Mario Vega, Matthew G. Hamilton, David P. Blackburn, Robert L. McGavin, Henri Baillères & Brad M. Potts. (2015) Influence of site, storage and steaming on Eucalyptus nitens log-end splitting. Annals of Forest Science 73:2, pages 257-266.
Crossref
Bernard Thibaut, Louis Denaud, Robert Collet, Rémy Marchal, Jacques Beauchêne, Frédéric Mothe, Pierre-Jean Méausoone, Patrick Martin, Pierre Larricq & Florent Eyma. (2016) Wood machining with a focus on French research in the last 50 years. Annals of Forest Science 73:1, pages 163-184.
Crossref
Silvia Monteoliva & Mariano Hernández. (2014) Tensiones de crecimiento en Eucalytpus dunnii Maiden.: parámetros dendrométricos y anatomía de la madera. Revista Árvore 38:4, pages 755-763.
Crossref
Delphine Jullien, Robert Widmann, Caroline Loup & Bernard Thibaut. (2012) Relationship between tree morphology and growth stress in mature European beech stands. Annals of Forest Science 70:2, pages 133-142.
Crossref
Ken Watanabe, Kana Yamashita & Shuichi Noshiro. (2011) Non-destructive evaluation of surface longitudinal growth strain on Sugi (Cryptomeria japonica) green logs using near-infrared spectroscopy. Journal of Wood Science 58:3, pages 267-272.
Crossref
Juan Valencia, Chris Harwood, Russell Washusen, Andrew Morrow, Matthew Wood & Peter Volker. (2010) Longitudinal growth strain as a log and wood quality predictor for plantation-grown Eucalyptus nitens sawlogs. Wood Science and Technology 45:1, pages 15-34.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.