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A new method for preparing low viscosity and high solid content waterborne polyurethane-Phase inversion research

机译:一种制备低粘度和高固含量水性聚氨酯相反转研究的新方法

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摘要

In this study, a new emulsification mixing method was proposed to prepare low-viscosity and high-solid content waterborne polyurethane (WPU-H). The phase inversion of the system was determined by online measurement of the torque of the stirrer and the conductivity of the system, and the particle size distribution, viscosity, solid content and stability of WPU-H were also investigated. The results showed that the prepared WPU-H emulsions had a narrow particle size distribution. As the amount of 2,2-Dimethylolpropionic acid (DMPA) in pre-polymers increased, phase inversion was delayed but the system could be reversed easily, thus resulting in an increase in the viscosity of the system and a decrease in the particle size of latex particles. As the acetone amount and the-NCO/-OH molar ratio increased, phase inversion occurred earlier and the system was reversed more easily, thus resulting in a decrease in the viscosity of the system and a double-peak particle size distribution. WPU-H1-c with a single-peak particle size distribution had a solid content of about 51% and a viscosity of 254.0 mPa s, while WPU-H1-b with a double-peak particle size distribution had a solid content of about 54.5% and a viscosity of 205 mPa s.
机译:在该研究中,提出了一种新的乳化混合方法,制备低粘度和高固体含量水性聚氨酯(WPU-H)。通过在线测量搅拌器的扭矩和系统的电导率的在线测量确定系统的相位反转,以及还研究了WPU-H的粒度分布,粘度,固体含量和稳定性。结果表明,制备的WPU-H乳液具有窄的粒度分布。由于预聚合物中2,2-二甲基丙酸(DMPA)的量增加,延迟相倒置,但是系统可以容易地反转,从而导致系统的粘度增加和粒度的减少乳胶颗粒。随着丙酮量和NCO / -OH摩尔比的增加,前面发生的相倒置,并且该系统更容易反转,从而导致系统的粘度和双峰粒度分布减少。具有单峰粒度分布的WPU-H1-C的固体含量为约51%和254.0MPa S的粘度,而具有双峰粒度分布的WPU-H1-B的固体含量约为54.5 %和205MPa s的粘度。

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