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Closed-loop control of lumber drying based on acoustic emission peak amplitude.

机译:基于声发射峰值幅度的木材干燥的闭环控制。

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摘要

After preliminary drying runs to establish the experimental procedure and acoustic emission (AE) parameters, several runs were made to determine a method of using feedback to control the drying process. The basis for using AE in drying control is that it directly measures stress development that leads to checking. In past studies, the approach has been to rely on changes in AE event rates to accelerate or decelerate the drying process. One of the major difficulties in using AE has been the very limited area from which AE could be sensed. The approach in this study, which has been previously reported, is the use of a metal sticker inserted into the load of lumber that acts as an accumulator of AE during the drying process without affecting airflow. Because of the multiple board contact, the AE is much greater in numbers than direct contact with a single transducer and more reflective of the response of the load. This paper reports on a new method of using automatic feedback control from a ratio of peak amplitudes to more accurately reflect the development of checking. Three runs were made with a difficult to dry hardwood (tanoak (Lithocarpus densiflorus)), of which the first two were made with conventional sample board controlled schedules to establish the AE control strategy. The final run was made solely under AE control, with the end result of a reduction in drying time to the fibre saturation point of approximately 40% with degrade no greater than the conventional runs..
机译:在初步干燥运行以建立实验程序和声发射(AE)参数之后,进行了几次运行以确定使用反馈控制干燥过程的方法。在干燥控制中使用AE的基础是,它直接测量导致检查的应力发展。在过去的研究中,方法一直是依靠AE事件发生率的变化来加速或减速干燥过程。使用自动曝光的主要困难之一是非常有限的区域可以从中感知到自动曝光。该研究的方法(先前已报道过)是在木材的负载中使用金属标签,该标签在干燥过程中充当AE的积聚物,而不会影响气流。由于与多个板接触,因此AE的数量要比与单个传感器直接接触的数量大得多,并且更能反映负载的响应。本文报告了一种使用自动反馈控制的新方法,该方法可根据峰幅度的比率来更准确地反映检查的发展。用难干燥的硬木(tanoak(Lithocarpus densiflorus))进行了三轮测试,其中前两轮采用常规的样品板控制时间表进行,以建立AE控制策略。最终运行仅在AE控制下进行,最终结果是干燥时间缩短至纤维饱和点约40%,且降解幅度不超过常规运行。

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