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The application of ion-exchanged clay as corrosion inhibiting pigments in organic coatings.

机译:离子交换粘土在有机涂料中作为缓蚀颜料的应用。

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摘要

High strength aluminum alloys are used in aerospace industry and are normally coated to prevent corrosion. The corrosion protection of the coatings is mainly provided by pigmented-primer layer. Strontium chromate pigments are widely used, but they are toxic and carcinogenic.; The objective of the current study is to develop and characterize the ion exchange compounds bentonite and hydrotalcite as corrosion inhibiting pigments. These compounds were synthesized with different cations and anions, and were used either alone or in mixtures as particulate additive in organic coatings. In coating applications as well as bulk solution, the inhibitor release mechanism is based on ion exchange. To evaluate corrosion inhibition, pigments extract solutions were used in potentiodynamic polarization as well as electrochemical impedance spectroscopy (EIS) experiments on bare aluminum alloy 2024-T3. Cathodic polarization showed that zinc- and cerium-containing filtrate solutions modestly inhibited cathodic current density. These solutions also decreased the extent of pitting damage formed on the surface, as compared to uninhibited 0.5 M NaCl solution. Pigments were also added as primer additives, and painted on AA2024-T3. The coated panels were then subjected to salt spray exposure testing. The possibility of sensing inhibitor exhaustion by means of X-ray diffraction interrogation of the pigment in a coating is demonstrated and discussed on cerium bentonite-pigmented coatings. Although cerium bentonite-pigmented coatings did not show behavior indicative of self-healing, the combination of bentonite and hydrotalcite that released Ce3+, Zn 2+, and PO43- showed potent scribe protection even after 3000 h exposure in salt spray. Promising self-healing was also demonstrated by pigments that consisted of decavanadate-hydrotalcite and zinc pyrovanadate, as indicated by a shiny scribed area after 1000h exposure in salt spray. When these pigments are used, blistering is minimized.
机译:高强度铝合金用于航空航天工业,通常进行涂层处理以防止腐蚀。涂料的腐蚀防护主要由着色底漆层提供。铬酸锶颜料被广泛使用,但它们有毒且具有致癌性。当前研究的目的是开发和表征作为腐蚀抑制颜料的离子交换化合物膨润土和水滑石。这些化合物是用不同的阳离子和阴离子合成的,可以单独使用或混合使用作为有机涂料中的颗粒添加剂。在涂料应用以及本体溶液中,抑制剂的释放机理基于离子交换。为了评估腐蚀抑制,将颜料提取液用于电位动力学极化以及在裸铝合金2024-T3上的电化学阻抗谱(EIS)实验。阴极极化显示含锌和铈的滤液溶液适度抑制了阴极电流密度。与未抑制的0.5 M NaCl溶液相比,这些溶液还减少了在表面形成的点蚀损伤的程度。还添加了颜料作为底漆添加剂,并涂在AA2024-T3上。然后将涂覆的板进行盐雾暴露测试。通过对铈膨润土颜料涂层的研究,证实并讨论了通过X射线衍射询问涂层中颜料的方式来检测抑制剂耗尽的可能性。尽管铈膨润土颜料涂层未显示出指示自愈的行为,但即使在盐雾中暴露3000 h后,释放出Ce3 +,Zn 2+和PO43-的膨润土和水滑石的组合也显示出有效的划痕保护作用。由十钒酸盐-水滑石和焦钒酸锌组成的颜料也显示出有望的自我修复,如在盐雾中暴露1000h后有光泽的划痕区域所表明。当使用这些颜料时,起泡最小。

著录项

  • 作者

    Chrisanti, Santi.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 265 p.
  • 总页数 265
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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