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Waterborne polyurethane-acrylic hybrid nanoparticles by miniemulsion polymerization: Applications in pressure-sensitive adhesives

机译:微乳液聚合的水性聚氨酯-丙烯酸杂化纳米粒子:在压敏胶中的应用

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摘要

Waterborne polyurethane-acrylic hybrid nanoparticles for application as pressure-sensitive adhesives (PSAs) were prepared by one-step miniemulsion polymerization. The addition of polyurethane to a standard waterborne acrylic formulation results in a large increase in the cohesive strength and hence a much higher shear holding time (greater than seven weeks at room temperature), which is a very desirable characteristic for PSAs. However, with the increase in cohesion, there is a decrease in the relative viscous component, and hence there is a decrease in the tack energy. The presence of a small concentration of methyl methacrylate (MMA) in the acrylic copolymer led to phase separation within the particles and created a hemispherical morphology. The tack energy was particularly low in the hybrid containing MMA because of the effects of lower energy dissipation and greater cross-linking. These results highlight the great sensitivity of the viscoelastic and adhesive properties to the details of the polymer network architecture and hence to the precise composition and synthesis conditions.
机译:通过一步微乳液聚合制备了用作压敏胶粘剂(PSA)的水性聚氨酯-丙烯酸杂化纳米颗粒。将聚氨酯添加到标准的水性丙烯酸配方中会导致内聚强度大大提高,因此剪切保持时间更长(在室温下大于7周),这是PSA的非常理想的特性。然而,随着内聚力的增加,相对粘性组分降低,因此粘性能量降低。丙烯酸共聚物中低浓度的甲基丙烯酸甲酯(MMA)的存在导致了颗粒内的相分离并产生了半球形的形态。由于较低的能量耗散和较大的交联作用,在含有MMA的混合材料中,粘性能量特别低。这些结果突出了粘弹性和粘合性质对聚合物网络结构的细节以及因此对精确的组成和合成条件的高度敏感性。

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