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New Waterborne Polyurethane-Urea Synthesized with Ether-Carbonate Copolymer and Amino-Alcohol Chain Extenders with Tailored Pressure-Sensitive Adhesion Properties

机译:由醚-碳酸酯共聚物和氨基醇扩链剂合成的新型水性聚氨酯-尿素具有定制的压敏粘合性能

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摘要

New waterborne polyurethane-urea dispersions with adequate adhesion and cohesion properties have been synthesized by reacting isophorone diisocyanate, copolymer of ether and carbonate diol polyol and three amino-alcohols with different number of OH groups chain extenders using the prepolymer method. The waterborne polyurethane-urea dispersions were characterized by pH, particle-size distribution, and viscosity, and the polyurethane-urea films were characterized by attenuated total reflectance infrared (ATR-IR) spectroscopy, differential scanning calorimetry (DSC), thermal gravimetric analysis (TGA), and plate-plate rheology (temperature and frequency sweeps). Polyurethane-urea pressure-sensitive adhesives (PUU PSAs) were prepared by placing the waterborne polyurethane dispersions on polyethylene terephthalate (PET) films and they were characterized at 25 °C by creep test, tack and 180° peel test. The waterborne polyurethane-urea dispersions showed mean particle sizes between 51 and 78 nm and viscosities in the range of 58–133 mPa·s. The polyurethane-urea films showed glass transition temperatures (T ) lower than −64 °C, and they showed a cross of the storage and loss moduli between −8 and 68 °C depending on the number of OH groups in the amino-alcohol chain extender. Different types of PUU PSAs (removable, high shear) were obtained by changing the number of OH groups in the amino-alcohol chain extender. The tack at 25 °C of the PUU PSAs varied between 488 and 1807 kPa and the 180° peel strength values ranged between 0.4 and 6.4 N/cm, and their holding times were between 2 min and 5 days. The new PUU PSAs made with amino-alcohol chain extender seemed very promising for designing environmentally friendly waterborne PSAs with high tack and improved cohesion and adhesion property.
机译:使用预聚物方法,通过使异佛尔酮二异氰酸酯,醚和碳酸二元醇多元醇的共聚物与三种具有不同OH基数扩链剂的氨基醇反应,合成了具有足够的粘合性和内聚性的新型水性聚氨酯-脲分散体。水性聚氨酯-脲分散体的特征在于pH,粒度分布和粘度,聚氨酯-脲膜的特征在于衰减全反射红外(ATR-IR)光谱,差示扫描量热法(DSC),热重分析( TGA)和板-板流变学(温度和频率扫描)。通过将水性聚氨酯分散体放在聚对苯二甲酸乙二醇酯(PET)薄膜上制备聚氨酯-脲压敏胶粘剂(PUU PSA),并在25°C下通过蠕变试验,粘性和180°剥离试验对其进行表征。水性聚氨酯-脲分散体的平均粒径在51至78 nm之间,粘度在58–133 mPa·s的范围内。聚氨酯-脲膜的玻璃化转变温度(T)低于-64°C,并且根据氨基醇链中的OH基数,它们的储存模量和损耗模量在-8和68°C之间有交点。补充剂。通过更改氨基醇扩链剂中OH基的数量,可以获得不同类型的PUU PSA(可移动,高剪切)。 PUU PSA在25°C时的粘性在488和1807 kPa之间变化,180°剥离强度值在0.4和6.4 N / cm之间变化,其保持时间在2分钟和5天之间。用氨基醇扩链剂制成的新型PUU PSA对于设计具有高粘性和改善的内聚力和粘合性的环保型水性PSA而言似乎很有希望。

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