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Light Scattering in Paper Measured with a Time-of -Flight Lidar

机译:用飞行时间激光雷达测量纸张中的光散射

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摘要

This paper studies the correlation between the time-of-flight (TOF) of laser pulses and paper density, basis weight, thickness and the beating of pulp. Paper samples made from unbeaten and beaten pulp were compressed from 500kg/m~3 to 1100kg/m~3 and laser pulses were shot through them during pressing. Changes were observed in the thickness of the samples and in the TOF of the laser pulses. The results show that TOF decreases during compression. This indicates that distances between the various scattering surfaces decrease. This phenomenon becomes more pronounced as the basis weight increases. The beating of the pulp before papermaking increases the number of scattering surfaces, thus broadening the laser pulse and causing delay. These two effects cannot be separated with the equipment used. Papers made from different pulp types each have unique delay constants.
机译:本文研究了激光脉冲的飞行时间(TOF)与纸张密度,基重,厚度和纸浆打浆之间的相关性。将未打浆和打浆的纸浆样品从500kg / m〜3压缩到1100kg / m〜3,并在压制过程中通过激光脉冲照射它们。在样品的厚度和激光脉冲的TOF中观察到变化。结果表明,TOF在压缩过程中降低。这表明各种散射表面之间的距离减小。随着基重的增加,该现象变得更加明显。造纸前对纸浆的打浆增加了散射表面的数量,从而加宽了激光脉冲并引起了延迟。这两种效果无法用所用的设备分开。由不同纸浆类型制成的纸张均具有独特的延迟常数。

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