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首页> 外文期刊>European journal of wood and wood products >Predicting the bending properties of air dried and modified Populus tremula L. wood using combined air-coupled ultrasound and electrical impedance spectroscopy
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Predicting the bending properties of air dried and modified Populus tremula L. wood using combined air-coupled ultrasound and electrical impedance spectroscopy

机译:使用空气耦合超声和电阻抗谱相结合的空气干燥和改性杨木的弯曲性能

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摘要

Air-coupled ultrasound and electrical impedance spectroscopy are non-destructive measurement methods, which can be used, for example for quality assessment of sawn timber. Both methods may be used in through-transmission and one-sided reflection mode to measure internal properties and detect defects in wood materials. The ultrasound method is based on mechanical waves and is mainly affected by the mechanical properties of wood. Density affects both methods, and the electrical impedance method is especially affected by moisture content and the chemical properties of wood. In this study, the relations between the methods and the bending properties of air dried and modified aspen (Populus tremula L.) specimens were examined. The modification method was a combination of compression and thermal modification. According to the study, electrical impedance spectroscopy combined with air-coupled ultrasound measured across the grain is a potential non-destructive technique for the strength estimation of aspen wood.
机译:空气耦合超声和电阻抗谱是无损测量方法,可用于锯材的质量评估等。这两种方法都可以在透射和单面反射模式下使用,以测量内部性能并检测木质材料的缺陷。超声波法以机械波为基础,主要受木材力学性能的影响。密度对这两种方法都有影响,电阻抗法尤其受木材含水率和化学性质的影响。本研究考察了风干和改性白杨(Populus tremula L.)试样的方法与弯曲性能的关系。改性方法是压缩和热改性的结合。根据这项研究,电阻抗谱与在整个纹理上测量的空气耦合超声波相结合,是白杨木强度估算的一种潜在的无损技术。

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