首页> 外文会议>The Waterborne Symposium "Advances in Sustainable Coatings Technology" >DESIGNING A NEW PERFORMANCE ADDITIVE TO MEET THE CHALLENGES IN THE VOC COMPLIANT REFINISH CLEARCOAT MARKET
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DESIGNING A NEW PERFORMANCE ADDITIVE TO MEET THE CHALLENGES IN THE VOC COMPLIANT REFINISH CLEARCOAT MARKET

机译:设计新的性能添加剂以应对符合VOC的修补漆清漆市场的挑战

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Environmental legislation across the globe has resulted in the paint industry attempting to move towards greener and more 'eco-friendly' products with similar performance as traditional solventborne coating formulations. The automotive refinish clearcoat sector is also bracing itself for the transition from conventional lower solid formulations to coating systems that are much lower in Volatile Organic Compounds (VOC). One of the challenges facing paint formulators is to tailor newer technologies (both high solids and waterborne) to achieve comparable properties typically observed in conventional solventborne low solids coating systems. Quite often the use of functionalized oligomers in higher solids formulations leads to coatings that take longer to dry and exhibit poor scratch and mar resistance. The present study investigates the potential benefits of a cellulose based additive, Eastman Solus~(TM) 2100 performance additive, on the overall performance of VOC compliant refinish clearcoat formulations. Data generated from external trials as well as internal studies indicated that incorporation of Solus 2100 into refinish clearcoat formulations resulted in shorter 'dry-to-touch' time, improved flow and leveling, and higher levels of gloss. An attempt was also made to understand from a more quantitative and fundamental perspective the rheological contributions that Solus 2100 brings to a coating formulation. The viscoelastic behavior of refinish clearcoat formulations was investigated by a novel technique developed internally at Eastman. There was a very good correlation between the data generated from the fundamental studies and the some of the end use performance requirements of refinish clearcoat systems.
机译:全球范围内的环保法规已导致涂料行业试图向更绿色,更“生态友好”的产品迈进,其性能与传统的溶剂型涂料配方相似。汽车修补漆清漆领域也正在做好准备,从传统的低固含量配方过渡到挥发性有机化合物(VOC)含量低得多的涂料体系。涂料配方设计师面临的挑战之一是定制较新的技术(高固体含量和水性),以实现传统溶剂型低固体含量涂料体系中通常观察到的可比性能。在较高固体含量的配方中经常使用官能化低聚物会导致涂料干燥时间更长,并且耐划伤性和耐擦伤性较差。本研究调查了基于纤维素的添加剂伊士曼SolusTM 2100性能添加剂对VOC兼容修补漆清漆配方整体性能的潜在好处。从外部试验和内部研究获得的数据表明,将Solus 2100掺入修补漆清漆配方中可缩短“干到接触”时间,改善流动性和流平性,并提高光泽度。还尝试从更定量和更基本的角度理解Solus 2100对涂料配方的流变贡献。通过伊士曼内部开发的一种新技术研究了修补漆清漆配方的粘弹性行为。基础研究生成的数据与修补漆清漆系统的某些最终用途性能要求之间存在很好的相关性。

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