The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling

One of the problems of sustainable development is the technologies improvement for the rational use of wood and other raw materials of plant origin. The literature reflects a large amount of applied research that was conducted to justify new technologies for the production of particle boards (PB). T...

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Autores principales: Vasiliev Sergey Borisovich, Panov Nikolai Gennadievich, Dospekhova Natalia Anatolyevna, Rakovskaya Marina Ivanovna, Pronin Ilya Olegovich, Kolesnikov Gennady Nikolaevich
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Publicado: Institut za istrazivanja i projektovanja u privredi 2021
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spelling oai:doaj.org-article:046a870e5a394e24874c9b20052a122e2021-12-05T21:23:07ZThe effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling1451-41171821-319710.5937/jaes0-29059https://doaj.org/article/046a870e5a394e24874c9b20052a122e2021-01-01T00:00:00Zhttps://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2021/1451-41172102383V.pdfhttps://doaj.org/toc/1451-4117https://doaj.org/toc/1821-3197One of the problems of sustainable development is the technologies improvement for the rational use of wood and other raw materials of plant origin. The literature reflects a large amount of applied research that was conducted to justify new technologies for the production of particle boards (PB). The main attention in the known works is paid to the influence of the particle size distribution on the strength of PB. The influence of particle shape on the PB strength has been studied to a lesser extent. In this regard, this article considers the influence of the shape and size of particles on the tensile strength perpendicular to the plane of the PB. A geometric analysis of the particle shape is performed. It was taken into account that the PB strength depends on the shape and size of the particles, as well as on the number of adhesive contacts between particles. To obtain quantitative estimates, formulas were substantiated confirming that an increase in the length of the particles and a decrease in their transverse dimensions lead to an increase in the PB strength. Experimental research methods were used, and mathematical modeling of the sample failure area was performed.Vasiliev Sergey BorisovichPanov Nikolai GennadievichDospekhova Natalia AnatolyevnaRakovskaya Marina IvanovnaPronin Ilya OlegovichKolesnikov Gennady NikolaevichInstitut za istrazivanja i projektovanja u privrediarticleengineeringmodelingcomposite materialparticle boardtensile strengthTechnologyTEngineering (General). Civil engineering (General)TA1-2040ENIstrazivanja i projektovanja za privredu, Vol 19, Iss 2, Pp 383-389 (2021)
institution DOAJ
collection DOAJ
language EN
topic engineering
modeling
composite material
particle board
tensile strength
Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle engineering
modeling
composite material
particle board
tensile strength
Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
Vasiliev Sergey Borisovich
Panov Nikolai Gennadievich
Dospekhova Natalia Anatolyevna
Rakovskaya Marina Ivanovna
Pronin Ilya Olegovich
Kolesnikov Gennady Nikolaevich
The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling
description One of the problems of sustainable development is the technologies improvement for the rational use of wood and other raw materials of plant origin. The literature reflects a large amount of applied research that was conducted to justify new technologies for the production of particle boards (PB). The main attention in the known works is paid to the influence of the particle size distribution on the strength of PB. The influence of particle shape on the PB strength has been studied to a lesser extent. In this regard, this article considers the influence of the shape and size of particles on the tensile strength perpendicular to the plane of the PB. A geometric analysis of the particle shape is performed. It was taken into account that the PB strength depends on the shape and size of the particles, as well as on the number of adhesive contacts between particles. To obtain quantitative estimates, formulas were substantiated confirming that an increase in the length of the particles and a decrease in their transverse dimensions lead to an increase in the PB strength. Experimental research methods were used, and mathematical modeling of the sample failure area was performed.
format article
author Vasiliev Sergey Borisovich
Panov Nikolai Gennadievich
Dospekhova Natalia Anatolyevna
Rakovskaya Marina Ivanovna
Pronin Ilya Olegovich
Kolesnikov Gennady Nikolaevich
author_facet Vasiliev Sergey Borisovich
Panov Nikolai Gennadievich
Dospekhova Natalia Anatolyevna
Rakovskaya Marina Ivanovna
Pronin Ilya Olegovich
Kolesnikov Gennady Nikolaevich
author_sort Vasiliev Sergey Borisovich
title The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling
title_short The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling
title_full The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling
title_fullStr The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling
title_full_unstemmed The effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: Experiments and modeling
title_sort effect of the size and shape of wood particles on the tensile strength perpendicular to the plane of the particleboard: experiments and modeling
publisher Institut za istrazivanja i projektovanja u privredi
publishDate 2021
url https://doaj.org/article/046a870e5a394e24874c9b20052a122e
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