Results 1 to 10 of about 94,528 (322)

Decay resistance of cement-bonded oriented strand board

open access: goldBioResources, 2006
The objective of this study was to evaluate the decay resistance of cement-bonded oriented strand board (OSB) against brown (Coniophora puteana) and white rot (Termites versicolor ) fungi.
Papadopoulos, A. N.
doaj   +3 more sources

Physical and Mechanical Properties of Bamboo Oriented Strand Board Under Various Post-Thermal Treatment Duration [PDF]

open access: goldJurnal Sylva Lestari, 2022
Post-treatment of bamboo-oriented strand board (BOSB) through thermal modification can be an alternative to improve BOSB quality. This study aimed to analyze the effect of post-thermal treatment duration on the physical and mechanical properties of BOSB.
Silvia Uthari Nuzaverra Mayang Mangurai   +5 more
doaj   +9 more sources

Experimental and numerical study on the screw connection strength of bamboo-oriented strand board compared with wood-oriented strand board [PDF]

open access: goldJournal of Wood Science, 2021
The utilization of resourceful bamboo can alleviate the wood shortage problem. Bamboo-oriented strand board (BOSB) with the highest utilization of bamboo ratio and excellent mechanical properties was considered as a good engineering and furniture ...
Kaiting Zhang   +8 more
doaj   +3 more sources

Performance of Oriented Strand Board Made of Heat-Treated Bamboo (Dendrocalamus asper (Schult.) Backer) Strands [PDF]

open access: goldPolymers (Basel)
This study aimed to analyze the effect of pre-heat treatment on bamboo strand properties and its impact on the properties of the resulting bamboo-oriented strand board (BOSB). Giant bamboo (Dendrocalamus asper (Schult.) Backer) with a density of 0.53 g cm−3 was converted into bamboo strands.
Maulana S   +14 more
europepmc   +5 more sources

Physical-mechanical properties and heat transfer analysis of osb produced with phenol-formaldehyde and zno nanoparticles addition [PDF]

open access: yesMaderas: Ciencia y Tecnología, 2022
Oriented Strand Board is a structural wood composite with applications that require good physical and mechanical performance. The addition of ZnO nanoparticles is an alternative that has been studied in order to improve the properties of Oriented Strand
Maria Fernanda Felippe Silva   +3 more
doaj   +3 more sources

Oriented Strand Board (Durchschnitt DE)

open access: green, 2021
Repräsentativer Ökobilanzdatensatz für Oriented Strand Board gemäß EN 15804:2012 Methode: ISO EN 14040:2006, EN 15804:2012 Dateiformat: ILCD-Format ÖKOBAUDAT UUID: e82d39f1-fe17-44f6-b531 ...
Janke, Simon, Rüter, Sebastian
  +5 more sources

Environmental Evaluation of Experimental Heat-treated Oriented Strand Board

open access: yesBioResources, 2023
The use of wood-based panels such as Oriented Strand Board has grown in civil construction. This follows the contemporary trend towards low environmental impact materials. However, there is a lack of relevant information about their life cycle assessment,
Estefani S. Sugahara   +4 more
doaj   +4 more sources

Optimization of Production Parameters in Oriented Strand Board (OSB) Manufacturing by Using Taguchi Method

open access: diamondDrvna Industrija, 2021
Optimization of process conditions in oriented strand board (OSB) manufacturing is a very important issue for both reducing cost and improving the quality of panels.
Ahad Furugi, Fatih Yapici
doaj   +2 more sources

The Performance Optimization of Oriented Strand Board Veneer Technology [PDF]

open access: goldCoatings, 2020
Oriented strand board (OSB) veneer technology and its performance have been widely studied in order to expand the range of OSB substrates. In this paper, OSB was a modified composite with boards as substrates, Myanmar old mahogany bark as the veneer material, and a cornstarch adhesive.
Xiong, Ma, Ren
openaire   +3 more sources

Experimental Study of Oriented Strand Board Ignition by Radiant Heat Fluxes. [PDF]

open access: yesPolymers (Basel), 2021
Wood and composite panel materials represent a substantial part of the fuel in many building fires. The ability of materials to ignite when heated at elevated temperatures depends on many factors, such as the thermal properties of materials, the ignition temperature, critical heat flux and the environment.
Tureková I   +3 more
europepmc   +4 more sources

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