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A technique to quantify morphological damage of the flute profile in the midplane of corrugated fibreboard

机译:一种量化波纹纤维板中平板瓣形态损伤的技术

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摘要

This research presents a technique to quantify morphological damage to flutes in corrugated fibreboard (CFB). The method involves laser cutting thin samples and analysing digital images of the flute profiles. The surface profiles of creased CFB before and after laser cutting were measured using fringe projection and showed that the sample preparation does not significantly affect the flute profile. After imaging the laser cut samples, skeleton analysis was used to derive a digitised profile of the flute shape. To characterise the level of damage to the flute profile, a similarity factor (SF) was introduced to quantify the relative difference between test sample and reference flute profiles. Validation of this analysis technique was done by generating known images of flute profile with variations that include distortions that could occur to CFB. These images were then fed into the skeleton analysis, and the results were compared with the original profile. This comparison showed good agreement between the initial and skeleton-analysed flutes. A demonstration of the skeleton analysis on purposefully damaged actual CFB flute profiles shows that the SF reduces as the level of crushing increases, showing that the technique could be used to enumerate morphological damage to CFB during manufacture, conversion, and use.
机译:本研究呈现了一种量化瓦楞纤维板(CFB)中的形态损伤的形态损伤。该方法涉及激光切割薄样本并分析长笛轮廓的数字图像。使用条纹突起测量激光切割前后粪便CFB的表面轮廓,并显示样品制剂不会显着影响长笛曲线。在对激光切割样品进行成像后,使用骨架分析来得出长笛形状的数字化轮廓。为了表征长笛分布的损伤水平,引入了相似性因子(SF)以量化测试样品和参考槽廓谱之间的相对差异。通过生成具有变化的长笛曲线的已知图像来完成该分析技术的验证,该变化包括可以发生在CFB上的失真。然后将这些图像送入骨架分析中,并将结果与​​原始配置文件进行比较。这种比较显示了初始和骨架分析的长笛之间的良好一致性。关于有目的地损坏的实际CFB长笛谱的骨架分析的演示表明,SF随着粉碎水平的增加而降低,表明该技术可用于在制造,转化和使用过程中枚举对CFB的形态损伤。

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