Structural property relationships for Canadian dimension lumber

Lumber property data from Canadian In-Grade Program for visually-graded dimension lumber are used to model lumber property relationships. The lumber properties studied are modulus of elasticity (MOE), modulus of rupture (MOR), ultimate tensile stress parallel to the grain (UTS), and ultimate comp...

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Main Author: Liliefna, Leonard Dantje
Format: Others
Language:English
Published: 2009
Online Access:http://hdl.handle.net/2429/5174
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-51742018-01-05T17:32:27Z Structural property relationships for Canadian dimension lumber Liliefna, Leonard Dantje Lumber property data from Canadian In-Grade Program for visually-graded dimension lumber are used to model lumber property relationships. The lumber properties studied are modulus of elasticity (MOE), modulus of rupture (MOR), ultimate tensile stress parallel to the grain (UTS), and ultimate compression stress parallel to the grain (UCS) for Douglas-fir, Hem-Fir and Spruce-Pine-Fir species groups. Structural property relationships based on three different approaches using Canadian dimension lumber have been modeled. The nonlinear models were adopted for the general stiffness-strength property relationships. The fitted regression models for the general stiffhess-strength property relationships then were used to model the strength property relationships. Band-width method was used to derive the relationships between modulus of elasticity and lower exclusion limits of strength values. The fitted models then were used to model the strength property relationships. The resulted models represent the relationship between two strength properties at the lower exclusion limit for lumber selected on the basis of modulus of elasticity. The strength property relationships derived using equal-rank method agree with that derived using general stiffness-strength property relationships. Therefore, for lumber selected on the basis of modulus of elasticity, the models derived using equal-rank method yield an average or mean trend for the estimated properties. The results of the analysis show that there exist good relationships between lumber strength properties. The strength property ratios for Canadian dimension lumber show significant species dependency particularly at the higher strength level. Property relationships trends are consistent across the species and methods of analyses. The property ratio models are intended to provide property estimates of characteristic values for untested properties. The property ratios for Canadian dimension lumber are significantly higher than that proposed by the American Society for Testing and Materials (ASTM) standard D 1990. Forestry, Faculty of Graduate 2009-02-26T23:03:30Z 2009-02-26T23:03:30Z 1994 1994-11 Text Thesis/Dissertation http://hdl.handle.net/2429/5174 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. 3484888 bytes application/pdf
collection NDLTD
language English
format Others
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description Lumber property data from Canadian In-Grade Program for visually-graded dimension lumber are used to model lumber property relationships. The lumber properties studied are modulus of elasticity (MOE), modulus of rupture (MOR), ultimate tensile stress parallel to the grain (UTS), and ultimate compression stress parallel to the grain (UCS) for Douglas-fir, Hem-Fir and Spruce-Pine-Fir species groups. Structural property relationships based on three different approaches using Canadian dimension lumber have been modeled. The nonlinear models were adopted for the general stiffness-strength property relationships. The fitted regression models for the general stiffhess-strength property relationships then were used to model the strength property relationships. Band-width method was used to derive the relationships between modulus of elasticity and lower exclusion limits of strength values. The fitted models then were used to model the strength property relationships. The resulted models represent the relationship between two strength properties at the lower exclusion limit for lumber selected on the basis of modulus of elasticity. The strength property relationships derived using equal-rank method agree with that derived using general stiffness-strength property relationships. Therefore, for lumber selected on the basis of modulus of elasticity, the models derived using equal-rank method yield an average or mean trend for the estimated properties. The results of the analysis show that there exist good relationships between lumber strength properties. The strength property ratios for Canadian dimension lumber show significant species dependency particularly at the higher strength level. Property relationships trends are consistent across the species and methods of analyses. The property ratio models are intended to provide property estimates of characteristic values for untested properties. The property ratios for Canadian dimension lumber are significantly higher than that proposed by the American Society for Testing and Materials (ASTM) standard D 1990. === Forestry, Faculty of === Graduate
author Liliefna, Leonard Dantje
spellingShingle Liliefna, Leonard Dantje
Structural property relationships for Canadian dimension lumber
author_facet Liliefna, Leonard Dantje
author_sort Liliefna, Leonard Dantje
title Structural property relationships for Canadian dimension lumber
title_short Structural property relationships for Canadian dimension lumber
title_full Structural property relationships for Canadian dimension lumber
title_fullStr Structural property relationships for Canadian dimension lumber
title_full_unstemmed Structural property relationships for Canadian dimension lumber
title_sort structural property relationships for canadian dimension lumber
publishDate 2009
url http://hdl.handle.net/2429/5174
work_keys_str_mv AT liliefnaleonarddantje structuralpropertyrelationshipsforcanadiandimensionlumber
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