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Calibration of non-contact ultrasound as an online sensor for wood characterization: Effects of temperature, moisture, and scanning direction

机译:校准非接触超声作为用于木材表征的在线传感器:温度,湿度和扫描方向的影响

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摘要

Numerous handheld moisture meters are available for measuring moisture levels of wood and building materials for a vast range of quality control and moisture diagnosis applications. However, many methods currently available require physical contact of a probe with the test material to operate. The contact requirement of such devices has limited applications for these purposes. There is a tremendous demand for dynamic online quality assessment of in-process materials for moisture content (MC) measurements. In this paper, a non-destructive non-contact ultrasound technology was used to evaluate the effects of increasing temperature in two MC levels and of increasing MC in lumber. The results show that the ultrasonic absolute transmittance and velocity parameters are directly correlated very well (R~2 ≥ 0.87) with temperature for the two moisture levels in wood. At constant temperature, however, the velocity is inversely correlated with MC. It was also found that the distribution of MC along the length is marginally insignificant to both ultrasonic measurements. The transmittance measurement along the orthogonal thickness direction is insignificant above the fiber saturation MC; similarly, the velocity measurement is marginally insignificant. The study concludes a positive correlation and a good fit for this technology to advance into the development of an automated device for determining wood moisture levels, which will in turn be used to control the dynamics of wood drying/sterilization processes. Further calibration research is recommended to ascertain the constraints and limitations of the technology to specific wood species and dimension.
机译:许多手持式湿度计可用于测量木材和建筑材料的湿度,适用于各种质量控制和湿度诊断应用。但是,当前可用的许多方法要求探针与测试材料进行物理接触才能进行操作。这些设备的接触要求在这些方面的应用受到限制。对用于水分含量(MC)测量的过程中材料的动态在线质量评估存在巨大需求。在本文中,使用了一种非破坏性的非接触式超声技术来评估温度在两个MC水平​​上的增加和木材中MC的增加的影响。结果表明,木材中两种水分含量的超声绝对透射率和速度参数与温度直接相关(R〜2≥0.87)。但是,在恒定温度下,速度与MC成反比。还发现,MC沿长度的分布对于两种超声测量都微不足道。沿正交厚度方向的透射率测量值在纤维饱和度MC之上微不足道;类似地,速度测量值微不足道。该研究得出的结论是,该技术具有正相关性,并且非常适合该技术,可以用于确定木材水分含量的自动化设备的开发,而该设备将用于控制木材干燥/灭菌过程的动态。建议进行进一步的校准研究,以确定该技术对特定木材种类和尺寸的限制和局限性。

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