原木热处理对桉树生长应力释放的影响

IF 0.8 4区 工程技术 Q3 FORESTRY
C. Rozas, Marcia Vásquez, Patricia T. Vega, Arijit Sinha, Claudio Montero
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引用次数: 2

摘要

桉树的使用以前所未有的方式使智利木材工业多样化。然而,生长诱导的菌株会引起分裂和翘曲。本研究的目的是确定热处理对niten桉原木的影响,以减少生长应力和提高木材的质量。在树的不同高度提取15年和20年树龄的原木。锯木厂工艺允许在两种厚度(25和50毫米)下获得径向,混合和切向平面片。MC和翘曲的评定按智利国家标准进行。本研究结果表明,通过对桉树原木进行热处理,可以显著减少生长菌株。热处理还提高了工件在弯曲、弯曲和扭转方面的质量。因此,使用热处理来减少由生长应变引起的缺陷,从而提高木材的质量并减少其翘曲,具有实质性的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Log Heat Treatment on Release of Growth Stresses in Eucalyptus Nitens
The use of  Eucalyptus nitens  has diversified the Chilean lumber industry in unprecedented ways. However, growth-induced strains cause splitting and warping. The objective of this investigation was to determine the effect of the heat treatment applied to logs of  Eucalyptus niten s on the reduction of growth stresses and improvement of quality in sawn wood. Logs were extracted at different heights of the tree for 15-yr and 20-yr-old trees. The sawmill process was allowed to obtain radial, mixed, and tangential plane pieces, at two thicknesses (25 and 50 mm). The evaluation of MC and warping was according to Chilean National Standards. The results obtained in this research suggest that by applying the heat treatment to  Eucalyptus nitens  logs, a significant reduction in growth strains can be achieved. Heat treatment also increased the quality of the pieces in terms of bow, crooking, and twisting. Therefore, there are substantial benefits of using heat treatments to reduce defects caused by growth strains and thus increase the quality of the wood and reduce its warp.
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来源期刊
Wood and Fiber Science
Wood and Fiber Science 工程技术-材料科学:纺织
CiteScore
7.50
自引率
0.00%
发文量
23
审稿时长
>12 weeks
期刊介绍: W&FS SCIENTIFIC ARTICLES INCLUDE THESE TOPIC AREAS: -Wood and Lignocellulosic Materials- Biomaterials- Timber Structures and Engineering- Biology- Nano-technology- Natural Fiber Composites- Timber Treatment and Harvesting- Botany- Mycology- Adhesives and Bioresins- Business Management and Marketing- Operations Research. SWST members have access to all full-text electronic versions of current and past Wood and Fiber Science issues.
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