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The conditioning regime in industrial drying of Scots pine sawn timber studied by X-ray computed tomography: a case-study

机译:X射线计算断层扫描研究苏格兰杉木锯材工业干燥的调理制度:一个案例研究

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摘要

Industrial drying of sawn timber is a process driven by a difference in moisture content (MC) between the core and the surface as moisture moves from the wet inner region towards the drier surface. After drying, the timber surface is always drier than its core, and stresses have developed within the wood volume. If the timber is to be further processed, these stresses and the moisture gradient need to be reduced to avoid unwanted distortion, i.e. the timber needs to be conditioned. Conditioning is usually accomplished by exposing the timber to a hot and humid climate after the drying regime. The conditioning regime is essential for timber quality, and it is energy and time consuming; therefore of interest for optimisation. This research was a case study where for the first time the MC during conditioning was studied in an X-ray computed tomography (CT) scanner. The aim was to test a previously developed algorithm and investigate the influence of MC and heartwood-sapwood proportion on the effectivity of the moisture equalisation in 30 mm thick Scots pine boards. The MC was estimated from CT data acquired during the drying and conditioning of the boards in a lab-scale kiln adapted to a medical CT scanner. Results show that the algorithm can provide relevant data of internal MC distribution of sawn timber at the pixel level. Furthermore, for the drying schedules studied, the conditioning at low MC (8%) does not need to be longer than 3 h, while higher MC (18%) requires a longer conditioning.
机译:锯材的工业干燥是由于水分从湿内部区域朝向干燥表面移动而导致的核心含量(MC)差异驱动的过程。干燥后,木材表面总是比其核心更干燥,并且应在木材体积内开发应力。如果要进一步处理木材,则需要减少这些应力和水分梯度以避免不需要的变形,即木材需要被调节。通常通过将木材暴露于干燥状态后的热和潮湿的气候来实现调节。调节制度对于木材质量至关重要,并且它是能量和耗时的;因此有利于优化。该研究是一种案例研究,在X射线计算机断层扫描(CT)扫描仪中首次研究了调节过程中的MC。目的是测试先前发达的算法,并调查MC和Heartwood-Sapwood比例对30毫米厚苏格兰松树板中水分均衡的有效性的影响。根据在适用于医疗CT扫描仪的实验室窑中的干燥和调节电路板期间获得的CT数据估计MC。结果表明,该算法可以在像素级别提供锯材内部MC分布的相关数据。此外,对于所研究的干燥时间表,低MC(8%)的调节不需要超过3小时,而较高的MC(18%)需要更长的调节。

著录项

  • 来源
    《European journal of wood and wood products》 |2020年第4期|673-682|共10页
  • 作者单位

    Lulea Univ Technol LTU Wood Sci & Engn Skelleftea Sweden;

    Norwegian Univ Sci & Technol NTNU Dept Ocean Operat & Civil Engn Alesund Norway;

    Lulea Univ Technol LTU Wood Sci & Engn Skelleftea Sweden;

    RISE Res Inst Sweden Bioecon Biobased Mat Skelleftea Sweden;

    Lulea Univ Technol LTU Wood Sci & Engn Skelleftea Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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