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A non-contact and online ink thickness sensor for printing machines using the photoacoustic effect

机译:利用光声效应的非接触式在线墨水厚度传感器,适用于印刷机

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摘要

We have developed an ink thickness sensor by employing a photoacoustic technique in order to enable the online measurement of ink thickness for printing machines such as a sheet-fed press. This sensor enables the online measurement of black ink thickness, which was impossible using the conventional methods. In order to detect the photoacoustic signals from the ink on a rotating ink roller using a non-contact technique, the halogen light chopping frequency was made to coincide with the pipe acoustical resonance frequency of the photoacoustic cell. With this method, even though the photoacoustic cell is an open cell, the sensitivity of the photoacoustic cell could be improved as compared to the conventional non-resonant closed cell. Further, it was clarified both experimentally and theoretically that the photoacoustic signal strength of black ink corresponds to an ink film thickness when the optimum halogen light chopping frequency is selected. In addition, a study is made on the characteristics of the photoacoustic signal strength variation for the clearance between the resonance tube and the ink roller.
机译:我们已经通过采用光声技术开发了一种墨水厚度传感器,以便能够在线测量单张纸印刷机等印刷机的墨水厚度。该传感器可以在线测量黑色墨水的厚度,这是常规方法无法实现的。为了使用非接触技术从旋转的墨辊上检测来自墨的光声信号,使卤素光斩波频率与光声单元的管道声共振频率一致。通过这种方法,即使光声电池是开孔的,与常规的非谐振闭孔电池相比,光声电池的灵敏度也可以提高。此外,从实验和理论上都明确了,当选择最佳的卤素光斩波频率时,黑色墨水的光声信号强度对应于墨水膜的厚度。另外,针对共振管和墨辊之间的间隙的光声信号强度变化的特性进行了研究。

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