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Impact of nano-aluminum-oxide impregnation, densification, and vapor pre-treatment on the physical and mechanical properties of white willow wood


Citation

Taghiyari, Hamid Reza and Ahmadi, Kazem and Majidi, Roya and Rassam, Ghonche and Antov, Petar and Lee, Seng Hua and Al Edrus, Syeed Saiful Azry Osman (2026) Impact of nano-aluminum-oxide impregnation, densification, and vapor pre-treatment on the physical and mechanical properties of white willow wood. Maderas: Ciencia y Tecnologia, 28. pp. 1-38. ISSN 0717-3644; eISSN: 0718-221X

Abstract

Fast-growing wood species are often characterized by low density, unsatisfactory mechanical properties, and poor biological durability. Therefore, various modification techniques have been tested to improve these disadvantages. The aim of this research work was to investigate the effects of densification of Salix alba (white willow) under hot pressing for 15 and 30 minutes on its physical and mechanical properties. Vapor pre-treatment for four and six hours was also applied to mitigate the negative effects of cracks and checks caused by breakage in wood cell wall under pressure. Markedly, separate sets of specimens were impregnated with aluminum oxide nano-suspension to evaluate if an increase in thermal conductivity would improve the properties of wood. The results indicated that densification significantly enhanced both the physical and mechanical properties of the wood. The four-hour vapor pre-treatment demonstrated the optimal improving results in both hot pressing durations. Though impregnation of specimens with the nano-suspension improved some properties (including spring back, hardness, and physical properties), most of the studied mechanical properties did not show any statistically significant improvement. Therefore, it was concluded that densifying willow wood for 15 minutes with a four-hour vapor pre-treatment yields optimal results. The enhancement in mechanical properties due to nano-aluminum oxide was not substantial enough to justify the associated costs, and thus, its use is not recommended for industrial applications.


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Additional Metadata

Item Type: Article
Subject: Forestry
Subject: Chemical Engineering (miscellaneous)
Subject: Materials Science (miscellaneous)
Divisions: Institute of Tropical Forestry and Forest Products
Institute of Ecosystem Science Borneo
DOI Number: https://doi.org/10.22320/s0718221x/2026.16
Publisher: Universidad del Bio-Bio
Keywords: Aluminum oxide nanoparticles; Fast-growing wood species; Physical and mechanical properties; White willow (salix alba); Wood impregnation
Sustainable Development Goals (SDGs): SDG 9: Industry, Innovation and Infrastructure, SDG 12: Responsible Consumption and Production, SDG 15: Life on Land
Depositing User: Ms. Siti Radziah Mohamed@mahmod
Date Deposited: 16 Jul 2026 06:26
Last Modified: 16 Jul 2026 06:26
Altmetrics: https://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.22320/s0718221x/2026.16
URI: http://psasir.upm.edu.my/id/eprint/126363
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