Assessing the Long-Term Creep Behaviour of Hydrothermally Treated Japanese Cedar Wood Using the Short-Term Accelerated Stepped Isostress Method

Author:

Xu Jin-Wei1ORCID,Li Cheng-Chun1,Liu Jian-Wei1ORCID,Chang Wen-Chao2,Chang Wen-Shao3,Wu Jyh-Horng14ORCID

Affiliation:

1. Department of Forestry, National Chung Hsing University, Taichung 402, Taiwan

2. Tainan District Agricultural Research and Extension Station, Council of Agriculture, Tainan 712, Taiwan

3. Lincoln School of Architecture and the Built Environment, University of Lincoln, Lincoln LN6 7TS, UK

4. Advanced Plant and Food Crop Biotechnology Center, National Chung Hsing University, Taichung 402, Taiwan

Abstract

In this study, short-term accelerated creep tests were conducted using the stepped isostress method (SSM) to investigate the impact of hydrothermal treatment on the long-term creep behaviour of Japanese cedar wood and to determine optimal hydrothermal treatment conditions. The results showed that SSM can effectively predict the creep behaviour of hydrothermally treated wood. Among the treatment conditions tested, Japanese cedar wood treated hydrothermally at 180 °C for 4 h exhibited higher flexural strength retention (91%) and moisture excluding efficiency (MEE) (44%) and demonstrated superior creep resistance compared to untreated wood. When subjected to a 30% average breaking load (ABL) over 20 years, the specimen’s creep compliance, instantaneous creep compliance, b value, activation volume, and improvement in creep resistance (ICR) were 0.17 GPa−1, 0.139 GPa−1, 0.15, 1.619 nm3, and 4%, respectively. The results indicate that subjecting Japanese cedar wood to hydrothermal treatment at 180 °C for 4 h has a negligible effect on its flexural properties but results in significant improvements in both dimensional stability and creep resistance.

Funder

Ministry of Science and Technology

Advanced Plant and Food Crop Biotechnology Center from The Featured Areas Research Center Program within the framework of the Higher Education Sprout Project by the Ministry of Education

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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