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Industrial applications of Maya-type pigments.

机译:玛雅型颜料的工业应用。

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摘要

Palygorskite clay and Indigo was used to make synthetic Maya Blue. Indigo derivatives were used to synthesize colors of purple, pink and brown. Several tests were performed to analyze the potential use of the Maya type pigments in coatings applications compared to those pigments that are already commercially available. Oil Absorption values for Maya type pigments were in the range of 62--68g/100g, while that for Copper Phthalocyanine blue was 61.13g/100g and Ultramarine Blue was 42.74g/100g. Specific gravity was 2.29 and the critical pigment volume concentration was in the range of 37.23--39.42. K/S ratio for these pigments ranges from 0.34--1.08. The resistance of the Maya type pigments to acid rain was tested using simulated lab test called Kesternich test. Results show that the presence of calcium carbonate impurities affects the stability of Maya pigments to acid rain resulting in the formation of calcium sulfate. Resistance to ultraviolet light and moisture condensation were determined using a UV weathering chamber that simulates real weather conditions. Color difference values were recorded before and after exposure to the simulated weathering. Results of the exposure test on acrylic solvent based paints after 500 hours shows Maya type pigments have superior performance as compared to Ultramarine blue and slightly inferior performance as compared against Copper Phthalocyanine Blue. Water based Maya type paints show superior performance as compared to Ultramarine Blue and superior or comparable performance as compared to Copper Phthalocyanine. Results of Maya type pigments in injection molded plastics shows superior or comparable performance as compared against commercially available pigments.
机译:使用坡缕石粘土和靛蓝制成合成玛雅蓝。靛蓝衍生物用于合成紫色,粉红色和棕色。与已经市售的那些颜料相比,进行了一些测试以分析Maya型颜料在涂料应用中的潜在用途。玛雅型颜料的吸油值在62--68g / 100g范围内,而酞菁铜的吸油值为61.13g / 100g,群青为42.74g / 100g。比重为2.29,临界颜料体积浓度为37.23--39.42。这些颜料的K / S比为0.34--1.08。使用称为Kesternich测试的模拟实验室测试对Maya型颜料的耐酸雨性进行了测试。结果表明,碳酸钙杂质的存在会影响Maya颜料对酸雨的稳定性,从而导致形成硫酸钙。使用可模拟真实天气状况的UV风化室确定对紫外线和湿气凝结的抵抗力。在暴露于模拟风化之前和之后记录色差值。 500小时后对丙烯酸溶剂基涂料的暴露测试结果表明,与群青相比,玛雅型颜料具有更好的性能,而与酞菁铜相比,其性能稍差。与群青相比,水性玛雅型涂料表现出优异的性能,与酞菁铜相比,其表现出优异或相当的性能。与市售颜料相比,注塑成型塑料中Maya型颜料的结果显示出优越或可比的性能。

著录项

  • 作者

    Saliya, Rajesh Gopalan.;

  • 作者单位

    The University of Texas at El Paso.;

  • 授予单位 The University of Texas at El Paso.;
  • 学科 Engineering Chemical.
  • 学位 M.S.
  • 年度 2004
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学;
  • 关键词

  • 入库时间 2022-08-17 11:44:30

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