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首页> 外文期刊>International wood products journal >Moisture content determination of thermally modified timber by electrical and ultrasound methods.
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Moisture content determination of thermally modified timber by electrical and ultrasound methods.

机译:用电和超声方法测定热改性木材的水分含量。

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摘要

Thermal modification is an increasingly popular process that increases biological durability and dimensional stability of timber. The equilibrium moisture content of thermally modified timber (TMT) is lower than that of untreated timber, as is the fibre saturation point. For these reasons, traditional methods of moisture content determination have to be reviewed and calibrated specifically for TMT and novel methods may prove more suitable for online measurement systems. In this study, the moisture content (MC) of TMT was measured using conventional dielectric and resistance meters as well as by the air-coupled ultrasound method and electrical impedance spectroscopy (EIS). The timber was kept outdoors for a period of 10 weeks while the MC was determined every other week so that a wide range of MCs could be measured. It was seen from the results that the conventional meters were not readily calibrated for TMT and the measurement range of these methods is small due to lower fibre saturation point. The study showed the potential of EIS and air-coupled ultrasound for MC analysis of TMT. Best correlation with MC at higher MCs was achieved with the maximum amplitude of through transmission signals by the ultrasound method. Higher precision and a wider range of MCs could be measured by combining both EIS and ultrasound parameters.
机译:热改性是一种日益流行的过程,可提高木材的生物耐久性和尺寸稳定性。热改性木材(TMT)的平衡水分含量低于未处理木材的平衡水分含量,纤维饱和点也是如此。由于这些原因,传统的水分含量测定方法必须专门针对TMT进行审查和校准,而新方法可能证明更适合在线测量系统。在这项研究中,TMT的水分含量(MC)使用常规的介电和电阻计以及通过空气耦合超声法和电阻抗光谱法(EIS)进行测量。木材在室外放置10周,而每隔一周确定一次MC,因此可以测量各种MC。从结果可以看出,传统的仪表不容易针对TMT进行校准,并且由于较低的光纤饱和点,这些方法的测量范围很小。研究表明,EIS和空气耦合超声在TMT的MC分析中具有潜力。通过超声方法,通过透射信号的最大幅度,可以在较高MC处与MC达到最佳相关性。通过结合使用EIS和超声参数,可以测量更高的精度和更大范围的MC。

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