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Quantitative evaluation of scratch visibility resistance of polymers

机译:聚合物耐划痕可见性的定量评估

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Susceptibility of polymer surfaces to acute visibility upon scratching has presented a serious challenge to the polymer industry for quite some time. The ability to design polymers with good scratch visibility resistance requires extensive knowledge about scratch deformation mechanisms and their propensity for light scattering. After examining the physical nature of human vision and surface optical characteristics, a new methodology is developed to quantitatively determine the onset of scratch visibility of polymers via an inexpensive desktop scanner. Taking into account the sample background color, texture, gloss and feature size, the proposed methodology can consistently and reliably determine polymer scratch visibility resistance regardless of the sample surface characteristics. Good correlation is found between this method and actual human perception. Quantitative analysis of the scratched surface is carried out with scanning laser profiling confocal microscopy and strong correlations among scratch visibility, observation angle and various scratch damage features such as roughness and scratch grooves are established. The proposed approach will greatly assist the development of scratch-resistant polymeric materials where surface aesthetics is of primary concern.
机译:在相当长的一段时间内,聚合物表面易受划痕影响而使其具有明显的可见性,这对聚合物行业提出了严峻的挑战。设计具有良好抗划痕可见性的聚合物的能力要求对划痕变形机理及其光散射倾向有广泛的了解。在检查了人类视觉的物理性质和表面光学特性之后,开发了一种新的方法,可通过廉价的台式扫描仪定量确定划痕可见性的开始时间。考虑到样品的背景颜色,质地,光泽度和特征尺寸,无论样品的表面特性如何,所提出的方法都可以始终如一地可靠地确定聚合物抗划痕性。在此方法与实际人类感知之间发现良好的相关性。使用扫描激光轮廓共聚焦显微镜对划痕表面进行定量分析,并建立了划痕可见度,观察角度与各种划痕损伤特征(例如粗糙度和划痕凹槽)之间的强相关性。所提出的方法将极大地帮助开发主要关注表面美观的耐刮擦聚合物材料。

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