MDP Panels Manufactured with Hevea Brasiliensis Overlaid with Bamboo Foil of Phyllostachys Edulis

Article Preview

Abstract:

The objective of the present work was to study the use of bamboo foils as structural reinforcement for MDP wooden panels. Four wooden panels of homogeneous layer were produced using particles of GT1 and RRIM 600 clones of Hevea brasiliensis (rubber tree), and glued with urea-formaldehyde resin (UF). These panels were also overlaid with foils of Phyllostachys edulis (mossô bamboo). The tests were realized to evaluate the physical-mechanical characterization according to European standards (EN). The production of the particleboards with reinforcement of bamboo improves the physical-mechanical characteristics of these commercial wooden panels.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

686-689

Citation:

Online since:

February 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Society of Wood Science and Technology: Environmental implications of the use of wood-based products, (1997).

Google Scholar

[2] Iwakiri S, J. L. M. Matos, R. Trianoski and J. G. Prata: Produção de painéis aglomerados homogêneos e multicamadas de Melia azedarach (Cinamomo) e Pinus taeda com diferentes teores de resina. Cerne, Lavras, 8(3): 465-470, (2012).

DOI: 10.1590/s0104-77602012000300014

Google Scholar

[3] Iwakiri S, A. B. M. Stinghen, E. L. Silveira, E. H. C. Zamarian, J. G. Prata and M. Bronoski: Influência da massa específica sobre as propriedades mecânicas de painéis aglomerados. Revista Floresta, Curitiba, 38(3): 487 -493, (2008).

DOI: 10.5380/rf.v38i3.12414

Google Scholar

[4] Information on http: /www. abipa. org. br/numeros. php.

Google Scholar

[5] Kollmann,F. F.P. ; Kuenzi, E.W. ; Stamm. J. Principies of wood science and technology. Wood based materiais. Properties of Particleboard. Nail-Holding and Screw Holding Ability. New York, (1975).

DOI: 10.1007/978-3-642-87931-9_5

Google Scholar

[6] Sociedade Brasileira de Silvicultura: Fatos e Números do Brasil Florestal. São Paulo, (2006).

Google Scholar

[7] Anuário Estatístico da ABRAF: Ano Base 2007. ABRAF. Brasília, (008).

Google Scholar

[8] Anuário Estatístico da ABRAF: Ano Base 2007. ABRAF. Brasília, (2013).

Google Scholar

[9] Santos, R. S. A: A seringueira e a importância da borracha natural no Brasil e no mundo. Revista Eletrônica de Ciências, São Carlos, 49: (2011).

Google Scholar

[10] Kurdthongmee, W: Colour classification of rubberwood boards for fingerjoint manufacturing using a SOM neural network and image processing. Computers And Electronics In Agriculture., 64: 85-92, (2008).

DOI: 10.1016/j.compag.2008.04.002

Google Scholar

[11] Leonello, E. C. Ballarin, A. W. Ohto, J. M. Palma, H. A. L. Escobar, J. F: Classificação Estrutural e Qualidade da Madeira do Clone GT 1 de Hevea brasiliensis Muell. Arg. Floresta e Ambiente., 19: 229-235, (2012).

DOI: 10.4322/floram.2012.027

Google Scholar

[12] American Society of Materials: ASM Handbook - Composites. Materials Park, Ohio: American Society of Metals, v. 21, (2001).

Google Scholar

[13] MICHELON, A L S.: Estudo-comparativo-de-dois-tipos-de-painéis-de-mdp-com-adição-de-pape- impregnado-e-lâminas-de-bambu Itapeva, (2011).

Google Scholar

[14] MOIZÉS F. - A.: Painéis- de- Bambu-uso-e-aplicações. Uma-experiência-didática-nos-cursos-de-Design-em-Bauru Bauru, (2007).

Google Scholar

[15] LIMA JÚNIOR, H. C. DIAS, A. A. Vigas mistas de madeira de reflorestamento e bambu laminado colado: Análise teórica e experimental. Revista Brasileira de Engenharia Agrícola e Ambiental, Campina Grande. 5(3). (2011).

DOI: 10.1590/s1415-43662001000300025

Google Scholar

[16] BARBOSA J. C: Reforço de bambu em derivados de madeira. In: Congresso Ibero-Latino Americano da Madeira na Construção, Coimbra, (2011).

Google Scholar

[17] BARBOSA J. C.: Estudo preliminar das propriedades mecânicas do material composto – EGP de pinus com reforço de bambu. In: XII Encontro Brasileiro de Madeiras e Estruturas em Madeira, Lavras, (2010).

Google Scholar

[18] European Committee for Standardization. European Standard EN 323- Particleboards and Fiberboards – Determination of density. Bruxelas: (1993).

Google Scholar

[19] European Committee for Standardization. European Standard EN 310- Particleboards and Fiberboards – Determination of modulus of elasticity in bending and bending strength. Bruxelas: (1993).

Google Scholar

[20] European Committee for Standardization. European Standard EN 312, Particleboards – Specifications. Dordrecht, (2003).

Google Scholar