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预聚物法制备聚氨酯分散体的设计、制备与性能。

Design, Preparation and Properties of Polyurethane Dispersions via Prepolymer Method.

机构信息

Shanghai Huafeng New Material R&D Technology Co., Ltd., Pudong New Area, Shanghai 200120, China.

出版信息

Molecules. 2023 Jan 7;28(2):625. doi: 10.3390/molecules28020625.

Abstract

A waterborne polyurethane dispersion for foamed synthetic leather base was designed and prepared using prepolymer method. There are many variables in the emulsification and chain-extension process of waterborne polyurethane (WPUR) dispersions prepared by prepolymer method. This work thoroughly evaluated the impacts of the steps of adding emulsified water, the temperature of the prepolymer and emulsified water, and concentration of ammonia water on WPUR dispersions by investigating the particle sizes/distributions and the mechanical stability. Changes in the temperature of the prepolymer and emulsified water, the concentration of ammonia water, and the step of adding emulsified water showed great impacts on the appearance and particle size of dispersions. Decreasing the temperature of the prepolymer and emulsified water and increasing the dilution ration of HO to ethylenediamine (EDA) led to safe emulsification and dispersions with good appearance and narrow particle size distributions can be prepared. Surprising results were obtained by adding emulsified water in two steps, WPUR dispersions with a small particle size, narrow particle distribution and excellent tensile properties can be obtained. The optimized WPUR1 was applied to prepare water-based synthetic leather base after mechanical foaming, and the base presented the desired high performance, such as high folding resistance and peel strength.

摘要

设计并采用预聚体法制备了一种用于发泡合成革基布的水性聚氨酯分散体。采用预聚体法制备水性聚氨酯(WPUR)分散体的乳化和扩链过程存在诸多变数。本工作通过考察粒子大小/分布和机械稳定性,深入评估了添加乳化水的步骤、预聚物和乳化水的温度以及氨水浓度对 WPUR 分散体的影响。预聚物和乳化水的温度、氨水浓度以及添加乳化水的步骤的变化对分散体的外观和粒径有很大影响。降低预聚物和乳化水的温度并增加羟值与乙二胺(EDA)的稀释比,可实现安全乳化,并制备出外观良好且粒径分布较窄的分散体。分两步添加乳化水时得到了令人惊讶的结果,可得到粒径小、粒径分布窄且拉伸性能优异的 WPUR 分散体。优化后的 WPUR1 经机械发泡后用于制备水性合成革基布,该基布表现出了理想的高性能,如高抗折性和剥离强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b66/9863305/06e9cbbd2e7b/molecules-28-00625-sch001.jpg

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