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Development of Novel Additives to Extend Open Time in Low VOC Aqueous Coatings

机译:开发新型添加剂以延长低VOC水性涂料的开放时间

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摘要

One of the challenges in formulating waterborne coatings is achieving an acceptable balance of properties both during the film application and drying process as well as in the final film. This difficulty is compounded by regulations relating to the reduction of volatile organic compounds (VOCs) and guidelines regarding emissions of architectural coatings. There is a competition between the requirements for adequate workability time of the coating with appropriate film formation and recoat behavior. The period in which irregularities in a freshly applied coating can be repaired without resulting in brush marks is referred to as the open time, while the period in which a coating can be applied over an existing paint film without leaving lap marks is deemed the wet edge time. Aqueous coatings generally employ dispersed high molecular weight polymers as binders, which often results in short open times when the coating is dried since the dispersed polymer particles tend to coalesce quickly in the edge region of an applied coating. As a result, the viscosity of the coating increases rapidly, which leads to a limited window of workability. Small molecule alkylene glycols are routinely incorporated in aqueous coatings as humectants, but are limited in utility since they are considered to be VOCs. This paper describes the process by which new, low VOC additives were developed to improve open time and wet edge in low VOC aqueous coatings. Mechanisms for the enhanced performance will be outlined through use of novel rheological and thermal analysis techniques. Paint performance properties will be exemplified in a typical architectural formulation.
机译:配制水性涂料的挑战之一是在涂膜,干燥过程以及最终涂膜中都达到可接受的性能平衡。有关减少挥发性有机化合物(VOC)的法规和有关建筑涂料排放的准则使这一困难更加复杂。在具有适当的膜形成和重涂性能的涂层的适当的可使用时间之间的要求之间存在竞争。可以修补新涂覆的涂料中的不规则性而不会产生刷痕的时期称为开放时间,而可以将涂料涂覆在现有的漆膜上而不会留下重叠痕迹的时期称为湿边缘。时间。水性涂​​料通常使用分散的高分子量聚合物作为粘合剂,这通常导致涂料干燥时打开时间短,这是因为分散的聚合物颗粒倾向于在所施加涂料的边缘区域迅速聚结。结果,涂层的粘度迅速增加,这导致可加工性窗口有限。小分子亚烷基二醇通常作为保湿剂掺入水性涂料中,但由于其被认为是VOC而在实用上受到限制。本文介绍了开发新的低VOC添加剂以改善低VOC水性涂料的开放时间和湿边缘的过程。将通过使用新型流变学和热分析技术来概述增强性能的机制。在典型的建筑配方中将举例说明油漆性能。

著录项

  • 来源
    《The waterborne symposium》|2011年|p.317-328|共12页
  • 会议地点 New Orleans LA(US);New Orleans LA(US)
  • 作者单位

    Eastman Chemical Company Research Laboratories, P.O. Box 1972, Kingsport, TN 37662-5150;

    Eastman Chemical Company Research Laboratories, P.O. Box 1972, Kingsport, TN 37662-5150;

    Eastman Chemical Company Research Laboratories, P.O. Box 1972, Kingsport, TN 37662-5150;

    Eastman Chemical Company Research Laboratories, P.O. Box 1972, Kingsport, TN 37662-5150;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 涂料工业;
  • 关键词

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