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New Advances in High Performance Waterborne Radiation-Curable Emulsions and Dispersions

机译:高性能水性辐射固化乳液和分散体的新进展

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New advances in waterborne UV technology are considered from the perspective of the molar mass of the polyacrylate molecule and the different stabilization mechanisms of the resulting waterborne colloids, ranging from emulsions to dispersions. The main characteristics of emulsions are presented, with an emphasis on the parameters that govern the emulsification process and the colloidal stability of the final product. High-solid (65%), VOC-free emulsions with low viscosity are delivering outstanding performances as hardcoats for spray application on plastics. These emulsions can be blended to model radiation-curable polymer dispersions, either as such or after a proprietary hardening. It is thus possible to design complex dispersions with differentiated polymer particles, resulting in coatings with specific tensile properties that can be analyzed by various elastic models. The best reinforcing effect is obtained when a composition gradient is formed between hard submicron-sized inclusions and the surrounding continuous matrix, as evidenced by advanced atomic force microscopy (PFQNM). The coatings prepared using a multiple-phase pattern of hard and soft unsaturated polymeric components offer distinct chemical- and mechanical-resistance benefits in pigmented systems. All the products meet the environmental expectations of today's coating industry.
机译:从聚丙烯酸酯分子的摩尔质量和所得的水性胶体的不同稳定机制(从乳液到分散体)的角度考虑了水性UV技术的新进展。介绍了乳液的主要特性,重点介绍了控制乳化过程和最终产品胶体稳定性的参数。高固体含量(65%),无VOC的低粘度乳液具有出色的性能,可作为在塑料上喷涂的硬涂层。可以将这些乳液掺混以模拟可辐射固化的聚合物分散体,既可以这样,也可以在专有的硬化之后。因此,可以设计具有差异化聚合物颗粒的复杂分散体,从而产生具有特定拉伸性能的涂层,可以通过各种弹性模型进行分析。先进的原子力显微镜(PFQNM)证明,当在硬的亚微米级夹杂物和周围的连续基体之间形成成分梯度时,可获得最佳的增强效果。使用硬和软不饱和聚合物组分的多相图案制备的涂料在着色体系中具有独特的耐化学和机械耐受性。所有产品均满足当今涂料行业的环保要求。

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