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1)  waterborne polyurethane resin
水性氨酯油
2)  water-borne polyurethane
水性聚氨酯
1.
Structure and properties of comb-branched water-borne polyurethane/montmorillonite nanocomposites;
梳状支链水性聚氨酯/蒙脱土复合材料结构与性能
2.
Synthesis and properties of nonionic water-borne polyurethane surfactants;
一种非离子型水性聚氨酯表面活性剂的合成及性能
3.
Research on di-hydroxy tetra coordinated water-borne polyurethane emulsion and its properties.;
双羟基四配位硅改性水性聚氨酯乳液的制备及其性能
3)  waterborne polyurethane
水性聚氨酯
1.
Research progress of nanometric material modified waterborne polyurethane;
纳米材料改性水性聚氨酯的研究进展
2.
Research progress of the modification of waterborne polyurethane adhesive;
水性聚氨酯胶粘剂改性研究进展
3.
Research progress of waterborne polyurethane/SiO_2 nanocomposites;
水性聚氨酯-SiO_2纳米复合材料研究进展
4)  aqueous polyurethane
水性聚氨酯
1.
Influence factors on preparation of aqueous polyurethane emulsion with high solid content;
制备高固含量水性聚氨酯乳液的影响因素
2.
Study on the aqueous polyurethane containing both carboxylic and sulfonic groups;
含有磺酸和羧酸基团的水性聚氨酯的研究
3.
Synthesis of aqueous polyurethane modified by methyl methacrylate and butyl acrylate copolymer;
MMA/BA共聚物改性的水性聚氨酯的合成与表征
5)  water-based polyurethane
水性聚氨酯
1.
Research on factors affecting coat performance of water-based polyurethane emulsion;
影响水性聚氨酯乳液涂膜性能的因素的研究
2.
Due to its eco-friendly, economic and low-toxic advantages, water-based polyurethane is gradually replacing conventional solvent-based polyurethane.
水性聚氨酯因环保、经济和低毒害,正逐渐取代传统的溶剂型聚氨酯。
6)  water borne polyurethane
水性聚氨酯
1.
The effects of MMA,HEMA and EDA on the hardness of water borne polyurethane;
MMA,HEMA和EDA对水性聚氨酯硬度的影响
2.
The synthesis technology of anion water borne polyurethane modified by epoxy resin was studied.
研究了环氧树脂改性阴离子型水性聚氨酯分散体的合成工艺。
3.
The influence of various factors, such as n NCO / n OH , the content of extender(BD) and dimethylol propionic acid (DMPA) on the synthesis of water borne polyurethane and its film performance was studied.
研究了 n NCO/n OH、扩链剂 ( BD)及二羟甲基丙酸 ( DMPA)的含量对水性聚氨酯合成及涂膜性能的影响 ,确定了较佳的配方。
补充资料:氨酯油
分子式:
CAS号:

性质:先将干性油与多元醇进行酯交换再与二异氰酸酯反应制成的一类高分子化合物的总称。氨酯油分子中的不饱和双键可在钴、铅、锰等干剂作用于空气中干燥固化。主要用于制备涂料,形成的涂膜硬度高,耐磨性好,抗水抗碱性好。

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