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Stress Relaxation of Chemically Treated Wood during Processes of Temperature Elevation and Decline

Xie Man-hua Zhao Guang-jie

中国林学(英文版)2005,Vol.7Issue(2):26-30,5.
中国林学(英文版)2005,Vol.7Issue(2):26-30,5.

Stress Relaxation of Chemically Treated Wood during Processes of Temperature Elevation and Decline

Stress Relaxation of Chemically Treated Wood during Processes of Temperature Elevation and Decline

Xie Man-hua 1Zhao Guang-jie1

作者信息

  • 1. College of Material Science and Technology, Beijing Forestry University, Beijing 100083, P. R. China
  • 折叠

摘要

Abstract

In order to clarify the effect of drying on structural changes of DMSO swell treated and DEA-SO2-DMSO decrystallization treated Chinese fir (Cunninghamia lanceolate) wood, the stress relaxation of treated oven-dry specimens during the processes of temperature elevation and reduction and that of treated wet specimens at constant temperature were determined. A stress decrease process and a stress increase process were observed in all stress ratio curves of wood during the processes of decreasing temperature. Untreated wood, during the process of temperature reduction under higher initial temperature conditions and during the process of temperature elevation, has a larger stress decrease than treated woods. In a wet state this trend is reversed. It indicated that the drying set made treated woods have a smaller increase in fluidity of wood constituents with increasing temperature. Some bonding between decrystallization reagents and wood molecules may occur.

关键词

wood/stress relaxation/chemical treatment/structural changes/interaction

Key words

wood/stress relaxation/chemical treatment/structural changes/interaction

分类

生物科学

引用本文复制引用

Xie Man-hua ,Zhao Guang-jie..Stress Relaxation of Chemically Treated Wood during Processes of Temperature Elevation and Decline[J].中国林学(英文版),2005,7(2):26-30,5.

基金项目

Supported by the National Natural Science Foundation of China (Grant No. 30070606) and Graduate Cultivation Foundation of Beijing Forestry University(Grant No. 304) (Grant No. 30070606)

中国林学(英文版)

2095-6355

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