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Evaluating Contrast Gloss of Textured Polymeric Surfaces

机译:评估带纹理的聚合物表面的对比度光泽

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摘要

The concept of contrast gloss and its relation to visually perceived gloss was examined for textured polymeric specimens. The specimens were injection-molded plaques manufactured in three different polymers (acrylonitrile-butadiene-styrene copolymer, polypropylene, and a blend of polycarbonate and acrylonitrile-butadiene-styrene copolymer). A contrast gloss factor was determined from the reflectance data obtained with a conventional multiangle spectrophotometer. To evaluate the visual impression of gloss of the specimens a psychometric study was performed. The contrast gloss factor corresponded well with the visual assessment of the gloss and it was able to discern the visual differences between several specimens not significantly discriminated by their gloss values. These latter gloss values were obtained with a conventional glossmeter measuring specular gloss. In correspondence with the visual assessments and practical experience, the relation between the contrast gloss factor and the specular glossmeter measurements was found to depend on the type of polymer used. When evaluating gloss of specimens varying in color, the contrast gloss factor corresponded well with the visual assessments. This was in contrast to the specular glossmeter measurements which ranked the specimens essentially in the opposite order. [PUBLICATION ABSTRACT]
机译:对有纹理的聚合物样品检查了对比光泽度的概念及其与视觉光泽度的关系。样品是由三种不同的聚合物(丙烯腈-丁二烯-苯乙烯共聚物,聚丙烯以及聚碳酸酯和丙烯腈-丁二烯-苯乙烯共聚物的共混物)制成的注塑板。从用常规多角度分光光度计获得的反射率数据确定对比光泽度因子。为了评估样品光泽度的视觉印象,进行了心理测量研究。对比光泽度因子与光泽度的视觉评估非常吻合,并且能够辨别几个样品的视觉差异,而这些差异并未通过其光泽度值明显区分。这些后者的光泽度值是通过测量镜面光泽度的常规光泽度仪获得的。根据视觉评估和实践经验,发现对比光泽度因子和镜面光泽度仪测量值之间的关系取决于所用聚合物的类型。当评估颜色不同的标本的光泽度时,对比光泽度系数与视觉评估非常吻合。这与镜面光泽度仪的测量结果相反,后者基本上按相反的顺序对样品进行排名。 [出版物摘要]

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    《Polymer Engineering and Science》 |2010年第11期|p.2114-2121|共8页
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    Sofie Ignell,1,2 Ulf Kleist,1 Mikael Rigdahl21 Department of Perceived Quality, Volvo Car Corporation, Göteborg SE-405 31, Sweden2 Department of Materials and Manufacturing Technology, Chalmers University of Technology, Göteborg SE-412 96, SwedenCorrespondence to: Sofie Ignell, e-mail: signell@volvocars.comContract grant sponsors: Swedish Agency for Innovation Systems (Vinnova), Volvo Car Corporation, Chalmers University of Technology.DOI 10.1002/pen.21742Published online in Wiley Online Library (wileyonlinelibrary.com).© 2010 Society of Plastics Engineers,;

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