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Perpendicular to grain bearing strength of timber

 Perpendicular to grain bearing strength of timber
Auteur(s):
Présenté pendant IABSE Symposium: Sustainable Infrastructure - Environment Friendly, Safe and Resource Efficient, Bangkok, Thailand, 9-11 September 2009, publié dans , pp. 145-153
DOI: 10.2749/222137809796078540
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Compressive strength perpendicular to the grain of timber beams is a difficult problem as not only many different load cases occur in practice but also there is the lack of a reliable model that ac...
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Détails bibliographiques

Auteur(s):
Médium: papier de conférence
Langue(s): anglais
Conférence: IABSE Symposium: Sustainable Infrastructure - Environment Friendly, Safe and Resource Efficient, Bangkok, Thailand, 9-11 September 2009
Publié dans:
Page(s): 145-153 Nombre total de pages (du PDF): 7
Page(s): 145-153
Nombre total de pages (du PDF): 7
Année: 2009
DOI: 10.2749/222137809796078540
Abstrait:

Compressive strength perpendicular to the grain of timber beams is a difficult problem as not only many different load cases occur in practice but also there is the lack of a reliable model that accounts for beam size and load situations. Furthermore, in the US, Europe and Australia/ New Zealand the standardised test methods to determine the compressive strength lead to very different strength values. A physical model with a reference compressive strength as starting point, is presented and claims to account for the differences mentioned that kept the strength values incomparable too long. The evaluation accounts for a total of 590 radiate pine test results that cover four load cases and two specimen sizes. It is shown that the physical model presented has good potential to interrelate test results from previously regarded incompatible load cases. Therefore, the model offers a consistent and simple way to bridge the differences between ASTM, ISO, CEN, Australian and New Zealand test standards. When the model is introduced in structural design codes the designer will simply be able to transform the reference compressive strength to any other design situation and determine the bearing capacity accurately.

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