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Automatic Color Recognition System for Stockigt Sizing Test (II) - Application of the automatic recognition principle of red coloration for developing the novel automatic system -  

Kim, Jae-Ok (Dept. of Forest Products/IALS, GNU)
Kim, Chul-Hwan (Dept. of Forest Products/IALS, GNU)
Park, Chong-Yawl (Dept. of Forest Products/IALS, GNU)
Kwon, Oh-Chul (Korea Institute of Packanging Development & Research)
Publication Information
Journal of Korea Technical Association of The Pulp and Paper Industry / v.37, no.1, 2005 , pp. 73-81 More about this Journal
Abstract
Stockigt sizing test, which is readily affected by individual tester's bias as well as testing conditions in recognizing red coloration, had to be modified to improve its reliability and reproducibility. The novel testing system with the automatic recognizing program of red coloration was developed with the auxiliary equipments including an automatic liquid dispenser and a specimen shifter. The analysis program used a hue value of a droplet image in recognizing a point of time on red coloration instead of RGB values that are not similar to human perception of color. Hue was more sensitive in recognizing the red coloration of a droplet than the other two factors, Saturation and Value. During the test, the program records the time consumed up to a specific hue value of a droplet on a specimen. Differently from the conventional test, the automatic test could obtain a reliable and reproducible sizing degree with a minor error. Furthermore, the Stockigt sizing degree measured by the automatic system showed great correlations with contact angle and Hercules sizing degree. It means that such great correlations will contribute to the development of an integrated measuring system capable of predicting contact angle, surface tension, surface energy and Hercules sizing degree of paper and paperboards through the Stbckigt sizing test. It was meaningful to note that the automatic system for Stbckigt sizing test might be able to used to predict contact angle, Hercules and Cobb sizing degree, based upon the high correlation coefficients.
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Times Cited By KSCI : 1  (Citation Analysis)
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