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Next-Generation Rheology Modifier Technology: Novel Molecular Architecture for Breakthrough Sag/Flow Balance, Universal Viscosity Retention on Tinting, and Optimum Applied Hide

机译:下一代流变改性剂技术:突破性的流挂/流量平衡,着色时的通用粘度保持力和最佳应用皮革的新型分子体系结构

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In the architectural paint market, attention has focused on driving down volatile organic compounds (VOCs) while enhancing application performance for the do-it-yourself (DIY) market. This segment seeks products offering easy application, long-lasting performance, and excellent hiding, with a minimum number of coats. Ultimately, the desired goal is an applicator experience and performance result that can be differentiated in the market when evaluated by consumer market rating organizations. From a marketing perspective, how a paint feels when it is stirred, poured, and applied to the wall contributes to a unique end-user experience that helps to define the benefits of one brand over another. Rheology plays a key role in this area, directly affecting the in-can feel, as well as film thickness and finished smoothness of the final coating. An ideal rheology package is one that optimizes both sag resistance and flow across a range of shear. This is an ongoing formulator challenge due to the inherent characteristics of commonly used cellulosic thickeners and conventional hydrophobically modified ethylene oxide urethane (HEUR) rheology modifiers. Cellulosics offer excellent sag resistance, but they lack the properties needed to optimize flow. Conventional HEURs, by contrast, offer excellent flow, but often lack sufficient sag resistance. In typical paint formulations, optimizing one property means sacrificing the other to some degree. To address this performance conflict, a new category of HEUR thickeners has been developed that optimizes both sag resistance and flow, a combination heretofore unseen in commercial rheology modifiers.
机译:在建筑涂料市场上,注意力集中在降低挥发性有机化合物(VOC)的同时,提高了自己动手(DIY)市场的应用性能。该细分市场寻求的产品具有易于使用,持久的性能和出色的遮盖力,且涂层数量最少。最终,期望的目标是用户体验和性能结果,当由消费者市场评估组织评估时,可以在市场上与众不同。从市场营销的角度来看,搅拌,倾倒和涂在墙上时的涂料感觉如何有助于独特的最终用户体验,有助于定义一个品牌相对于另一个品牌的优势。流变学在这方面起着关键作用,直接影响罐内手感,以及最终涂层的漆膜厚度和最终的光滑度。理想的流变套件是一种既可以优化抗流挂性,又可以在一系列剪切范围内优化流动性的套件。由于常用的纤维素增稠剂和常规的疏水改性环氧乙烷氨基甲酸酯(HEUR)流变改性剂的固有特性,这是配方设计师面临的挑战。纤维素具有出色的抗流挂性,但缺乏优化流动性所需的特性。相比之下,传统的HEUR具有出色的流动性,但通常缺乏足够的抗流挂性。在典型的涂料配方中,优化一种性能意味着在某种程度上牺牲另一种性能。为了解决这种性能冲突,已经开发了一种新型的HEUR增稠剂,其优化了抗流挂性和流动性,这是迄今为止在商业流变改性剂中尚未见到的组合。

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