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Development of new PVC materials. Characterization and feasibility of diamond coatings on model PVC materials

机译:开发新型PVC材料。模型PVC材料上金刚石涂层的表征和可行性

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Diamond-like, tetrahedrally bonded amorphous carbon (ta-C) coating was used to enhance the wear resistance of laboratory-made microstructured poly(vinyl chloride) (PVC) surfaces. Formulation of PVC samples was kept simple; they contained only stabilizer and plasticizer added to PVC. Two sizes of microstructures were imprinted on PVC. Both smooth and microstructured PVC surfaces were coated with amorphous diamond and the surfaces were characterized by spectroscopic ellipsometry, AFM and contact profilometry. In addition, water contact angles were measured. The plasticizer, plasticizer concentration and amorphous carbon coating affected the topography of the microstructure and the water contact angles on surfaces. The ta-C-coated microstructured surfaces were worn with a soiling and wearing drum tester to study their wearing behavior. Surface topographies were measured with a profilometer after wearing studies.
机译:类金刚石的四面结合无定形碳(ta-C)涂层用于增强实验室制造的微结构聚氯乙烯(PVC)表面的耐磨性。 PVC样品的配制保持简单;它们仅包含添加到PVC中的稳定剂和增塑剂。在PVC上印有两种尺寸的微结构。光滑和微结构化的PVC表面均涂有无定形金刚石,并通过光谱椭偏,AFM和接触轮廓分析对表面进行了表征。另外,测量水接触角。增塑剂,增塑剂浓度和无定形碳涂层会影响微观结构的形貌以及表面上的水接触角。 ta-C涂层的微结构表面用脏污和磨损的滚筒测试仪进行磨损,以研究其磨损行为。穿着研究后,用轮廓仪测量表面形貌。

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