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New Ways For Waterborne 2P Epoxy Formulations

机译:水性2P环氧制剂的新方法

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Historically, conventional solvent-based epoxy technologies dominated the primer and mid-coat application areas within the protective coatings market. These systems offer exceptional overall performance with regard to film and barrier, rheology, and storage properties due in part to their optimized additive packages. Continued volatile organic compound regulations as well as the industry's desire to move towards more environmentally-friendly options have placed an emphasis on developing alternative technologies for use in this formulation space. Waterborne epoxy systems have been in use for several years, typically in less challenging service environments. However, with recent advancements in waterborne epoxy technologies, the protective coatings market is now making greater use of waterborne epoxy systems in primer and mid-coat applications. Like their predecessors, waterborne epoxy systems must also employ optimized additive packages to achieve the highest level of performance. System rheology is an important aspect for these systems as it directly impacts anti-sagging, anti-settling, and application properties. Existing waterborne rheology modifier technologies display limited functionality in these next generation systems and there are obvious limitations on their effectiveness. There is a need to develop new rheology additives that will address the shortcomings of existing technologies.
机译:从历史上看,常规的基于溶剂的环氧技术主导了保护涂层市场内的底漆和中型涂层应用区域。这些系统在薄膜和屏障,流变学和储存属性方面提供了卓越的整体性能,部分原因是其优化的添加剂包。持续的挥发性有机复合规定以及行业渴望走向更环保的选择的愿望已经强调开发在该配方空间中使用的替代技术。水性环氧系统已经使用了几年,通常在不太具有挑战性的服务环境中。然而,随着近期水性环氧技术的进展,保护涂料市场现在正在更大地利用底漆和中型应用中的水性环氧系统。与他们的前辈一样,水性环氧系统也必须采用优化的添加剂包,以实现最高的性能水平。系统流变学是这些系统的一个重要方面,因为它直接影响防缝,反沉降和应用特性。现有的水性流变改进剂技术在这些下一代系统中显示有限的功能,并且对其有效性有明显的局限性。有必要开发新的流变添加剂,将解决现有技术的缺点。

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