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Resistance of cross laminated timber members under axial loading—a review of current design rules

conference contribution
posted on 2019-01-01, 00:00 authored by Xin Li, Mahmud AshrafMahmud Ashraf, Mahbube SubhaniMahbube Subhani, Bidur KafleBidur Kafle, Paul Kremer
Cross laminated timber (CLT) has become an important type of engineered timber product due to its superior material properties, making it suitable for mass timber construction. CLT is manufactured from naturally grown sources, and hence, it offers significant environmental benefit within the construction sector in comparison to its traditional counterparts such as concrete and steel. As a naturally grown material, timber products possess some inherent variabilities in material properties. These uncertainties make it difficult to develop universally accepted design rules for timber products, as the basic material properties may vary significantly based on its origin. This paper presents a review of current design rules for CLT under axial loads. Design procedures outlined in Eurocode, North American and Chinese standards as well as other relevant CLT handbooks have been thoroughly investigated. Experimental evidences available from literature have been used to compare the performance of those design guidance in predicting axial resistance of CLT members, where appropriate. Overall, it was observed that despite having considerable variations in mechanical properties, similar reliability concepts are adopted for specifying characteristic values, design values as well as for devising design rules for CLT structures. Once the design rules are critically evaluated based on test evidences, some design rules for CLT members under ultimate limit states have been summarised herein.

History

Event

Geotechnics, Civil Engineering Works and Structures. International Conference (5th : 2019 : Hanoi, Vietnam)

Source

CIGOS 2019, Innovation for Sustainable Infrastructure

Volume

54

Series

Lecture Notes in Civil Engineering

Pagination

179 - 184

Publisher

Springer

Location

Hanoi, Vietnam

Place of publication

Singapore, Singapore

Start date

2019-10-31

End date

2019-11-01

ISSN

2366-2557

eISSN

2366-2565

ISBN-13

9789811508028

Language

eng

Publication classification

E1 Full written paper - refereed

Copyright notice

2020, Springer Nature Singapore Pte Ltd.

Editor/Contributor(s)

C Ha-Minh, D Dao, F Benboudjema, S Derrible, D Huynh, A Tang

Title of proceedings

CIGOS 2019 : Innovation for Sustainable Infrastructure : Proceedings of the 5th International Conference on Geotechnics, Civil Engineering Works and Structures

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