The potential use of organosilane water soluble nanomaterials as water vapor diffusion retarders for wood

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Auteur principal: Hadi Gholamiyan
Format: Artículo científico
Langue:en
Publié: Universidad del Bío Bío 2012
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author Hadi Gholamiyan
author_facet Hadi Gholamiyan
contents The potential use of organosilane water soluble nanomaterials as water vapor diffusion retarders for wood Hadi Gholamiyan Asghar Tarmian Kazem Doost Hosseini Mohammad Azadfallah Agrociencias poplar wood Clear coating nanomaterials retarding effect water vapor diffusion The retarding effect of organosilane water soluble nanomaterials (nano-zycosil and nano-zycofil) on water vapor diffusion through poplar wood (P.nigra) was evaluated in comparison with that of clear coatings (sealer and nitrocellulose lacquer and polyester lacquer) using cup and sorption methods. Two drying methods were applied to dry the nanomaterials -coated substrates: oven drying at temperature of 103 ± 2 °C for 24 hrs, and climatically drying at temperature of 25 °C and relative humidity of 65% for 20 minutes. The results showed that both coating materials decreased the water vapor diffusion rate through the wood. The sealer and nitrocellulose lacquer coating represented a stronger effect on the diffusion coefficient of wood compared to the other coatings. In this case, the nano-zycosil represented a better performance compared to the nano-zycofil. Furthermore, the drying method of the nanomaterials -coated substrates can impact the nanomaterials performance. The water vapor diffusion through the oven-dried substrates was faster than that through the climatically dried ones. 2012 artículo científico 0717-3644 https://www.redalyc.org/articulo.oa?id=48522716004 en http://www.redalyc.org/revista.oa?id=485 Maderas. Ciencia y Tecnología application/pdf Universidad del Bío Bío Maderas. Ciencia y Tecnología (Chile) Num.1 Vol.14
format Artículo científico
id redalyc_48522716004
institution Redalyc
language en
publishDate 2012
publisher Universidad del Bío Bío
spellingShingle The potential use of organosilane water soluble nanomaterials as water vapor diffusion retarders for wood
Hadi Gholamiyan
Agrociencias
poplar wood
Clear coating
nanomaterials
retarding effect
water vapor diffusion
The potential use of organosilane water soluble nanomaterials as water vapor diffusion retarders for wood Hadi Gholamiyan Asghar Tarmian Kazem Doost Hosseini Mohammad Azadfallah Agrociencias poplar wood Clear coating nanomaterials retarding effect water vapor diffusion The retarding effect of organosilane water soluble nanomaterials (nano-zycosil and nano-zycofil) on water vapor diffusion through poplar wood (P.nigra) was evaluated in comparison with that of clear coatings (sealer and nitrocellulose lacquer and polyester lacquer) using cup and sorption methods. Two drying methods were applied to dry the nanomaterials -coated substrates: oven drying at temperature of 103 ± 2 °C for 24 hrs, and climatically drying at temperature of 25 °C and relative humidity of 65% for 20 minutes. The results showed that both coating materials decreased the water vapor diffusion rate through the wood. The sealer and nitrocellulose lacquer coating represented a stronger effect on the diffusion coefficient of wood compared to the other coatings. In this case, the nano-zycosil represented a better performance compared to the nano-zycofil. Furthermore, the drying method of the nanomaterials -coated substrates can impact the nanomaterials performance. The water vapor diffusion through the oven-dried substrates was faster than that through the climatically dried ones. 2012 artículo científico 0717-3644 https://www.redalyc.org/articulo.oa?id=48522716004 en http://www.redalyc.org/revista.oa?id=485 Maderas. Ciencia y Tecnología application/pdf Universidad del Bío Bío Maderas. Ciencia y Tecnología (Chile) Num.1 Vol.14
title The potential use of organosilane water soluble nanomaterials as water vapor diffusion retarders for wood
topic Agrociencias
poplar wood
Clear coating
nanomaterials
retarding effect
water vapor diffusion
url https://www.redalyc.org/articulo.oa?id=48522716004