Effects of moisture-induced thickness swelling on the microstructure of oriented strand board

When wood becomes wet and then dries, restraint of shrinkage at the surface of wood by wetter surface and also sub-surface layers causes tensile stresses to develop resulting in micro-checking. Wood elements in composites such as oriented strand board (OSB) also swell and shrink when they become wet...

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Main Author: Lube, Vinicius Munaldi
Language:English
Published: University of British Columbia 2016
Online Access:http://hdl.handle.net/2429/59774
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-597742018-01-05T17:29:25Z Effects of moisture-induced thickness swelling on the microstructure of oriented strand board Lube, Vinicius Munaldi When wood becomes wet and then dries, restraint of shrinkage at the surface of wood by wetter surface and also sub-surface layers causes tensile stresses to develop resulting in micro-checking. Wood elements in composites such as oriented strand board (OSB) also swell and shrink when they become wet and dry. Furthermore, some wood elements are large enough to develop unbalanced surface and sub-surface tensile stresses. Hence, moisture changes and swelling and shrinkage of OSB might result in micro-checking. I test this hypothesis in this thesis. I also examine whether micro-checking contributes to thickness swelling of OSB. I used macro-photography, X-ray micro-computed tomography, and field emission scanning electron microscopy to probe the microstructure of OSB exposed to wetting and drying. These techniques were used to visualize and quantify the thickness swelling of OSB and the dimensions of micro-checks and other voids in OSB during and after wetting and drying. The spatial micro-distribution of a zinc borate biocide in OSB was also examined before and after samples were exposed to wetting and drying. Numerous surface and internal micro-checks developed in OSB exposed to wetting and drying as I hypothesized. Micro-checks developed during wetting, unlike the pattern of checking found in solid wood. Enlargement of voids was also observed during wetting and drying. Micro-checks occurred at the interface between latewood and earlywood and in the rays of softwood flakes and, less commonly, in the rays of aspen flakes. My results indicate that the pattern of micro-checking of OSB is different in some respects to that of solid wood, and suggest that micro-checking contributes to the irreversible thickness swelling of OSB. I briefly discuss the implications of my findings for the development of treatments designed to reduce the irreversible thickness swelling of OSB. Forestry, Faculty of Graduate 2016-11-22T15:50:32Z 2017-01-21T04:13:23 2016 2017-02 Text Thesis/Dissertation http://hdl.handle.net/2429/59774 eng Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/ University of British Columbia
collection NDLTD
language English
sources NDLTD
description When wood becomes wet and then dries, restraint of shrinkage at the surface of wood by wetter surface and also sub-surface layers causes tensile stresses to develop resulting in micro-checking. Wood elements in composites such as oriented strand board (OSB) also swell and shrink when they become wet and dry. Furthermore, some wood elements are large enough to develop unbalanced surface and sub-surface tensile stresses. Hence, moisture changes and swelling and shrinkage of OSB might result in micro-checking. I test this hypothesis in this thesis. I also examine whether micro-checking contributes to thickness swelling of OSB. I used macro-photography, X-ray micro-computed tomography, and field emission scanning electron microscopy to probe the microstructure of OSB exposed to wetting and drying. These techniques were used to visualize and quantify the thickness swelling of OSB and the dimensions of micro-checks and other voids in OSB during and after wetting and drying. The spatial micro-distribution of a zinc borate biocide in OSB was also examined before and after samples were exposed to wetting and drying. Numerous surface and internal micro-checks developed in OSB exposed to wetting and drying as I hypothesized. Micro-checks developed during wetting, unlike the pattern of checking found in solid wood. Enlargement of voids was also observed during wetting and drying. Micro-checks occurred at the interface between latewood and earlywood and in the rays of softwood flakes and, less commonly, in the rays of aspen flakes. My results indicate that the pattern of micro-checking of OSB is different in some respects to that of solid wood, and suggest that micro-checking contributes to the irreversible thickness swelling of OSB. I briefly discuss the implications of my findings for the development of treatments designed to reduce the irreversible thickness swelling of OSB. === Forestry, Faculty of === Graduate
author Lube, Vinicius Munaldi
spellingShingle Lube, Vinicius Munaldi
Effects of moisture-induced thickness swelling on the microstructure of oriented strand board
author_facet Lube, Vinicius Munaldi
author_sort Lube, Vinicius Munaldi
title Effects of moisture-induced thickness swelling on the microstructure of oriented strand board
title_short Effects of moisture-induced thickness swelling on the microstructure of oriented strand board
title_full Effects of moisture-induced thickness swelling on the microstructure of oriented strand board
title_fullStr Effects of moisture-induced thickness swelling on the microstructure of oriented strand board
title_full_unstemmed Effects of moisture-induced thickness swelling on the microstructure of oriented strand board
title_sort effects of moisture-induced thickness swelling on the microstructure of oriented strand board
publisher University of British Columbia
publishDate 2016
url http://hdl.handle.net/2429/59774
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