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Balanced Viscoelastic Properties of Pressure Sensitive Adhesives Made with Thermoplastic Polyurethanes Blends

机译:热塑性聚氨酯共混物制成的压敏胶的平衡粘弹性

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Pressure sensitive adhesives made with blends of thermoplastic polyurethanes (TPUs PSAs) with satisfactory tack, cohesion, and adhesion have been developed. A simple procedure consisting of the physical blending of methyl ethyl ketone (MEK) solutions of two thermoplastic polyurethanes (TPUs) with very different properties—TPU1 and TPU2—was used, and two different blending procedures have been employed. The TPUs were characterized by infra-red spectroscopy in attenuated total reflectance mode (ATR-IR spectroscopy), differential scanning calorimetry, thermal gravimetric analysis, and plate-plate rheology (temperature and frequency sweeps). The TPUs PSAs were characterized by tack measurement, creep test, and the 180° peel test at 25 °C. The procedure for preparing the blends of the TPUs determined differently their viscoelastic properties, and the properties of the TPUs PSAs as well, the blending of separate MEK solutions of the two TPUs imparted higher tack and 180° peel strength than the blending of the two TPUs in MEK. TPU1 + TPU2 blends showed somewhat similar contributions of the free and hydrogen-bonded urethane groups and they had an almost similar degree of phase separation, irrespective of the composition of the blend. Two main thermal decompositions at 308–317 °C due to the urethane hard domains and another at 363–373 °C due to the soft domains could be distinguished in the TPU1 + TPU2 blends, the weight loss of the hard domains increased and the one of the soft domains decreased by increasing the amount of TPU2 in the blends. The storage moduli of the TPU1 + TPU2 blends were similar for temperatures lower than 20 °C and the moduli at the cross over of the moduli were lower than in the parent TPUs. The improved properties of the TPU1 + TPU2 blends derived from the creation of a higher number of hydrogen bonds upon removal of the MEK solvent, which lead to a lower degree of phase separation between the soft and the hard domains than in the parent TPUs. As a consequence, the properties of the TPU1 + TPU2 PSAs were improved because good tack, high 180° peel strength, and sufficient cohesion were obtained, particularly in 70 wt% TPU1 + 30 wt% TPU2 PSA.
机译:已经开发了由热塑性聚氨酯(TPU PSA)的混合物制成的具有令人满意的粘性,内聚性和粘合性的压敏粘合剂。使用了一种简单的程序,该程序由物理混合两种性质非常不同的热塑性聚氨酯(TPU)的甲基乙基酮(MEK)溶液-TPU1和TPU2组成,并且已经采用了两种不同的混合程序。通过在衰减全反射模式下的红外光谱(ATR-IR光谱),差示扫描量热法,热重分析和板-板流变学(温度和频率扫描)来表征TPU。通过粘性测量,蠕变测试和25°C下的180°剥离测试来表征TPU的PSA。制备TPU掺合物的程序以不同方式确定了它们的粘弹性,TPU PSA的性质,两种TPU的单独MEK溶液的掺混比两种TPU的掺混具有更高的粘性和180°剥离强度在MEK中。 TPU1 + TPU2共混物显示出游离和氢键氨基甲酸酯基团的贡献相似,无论共混物的组成如何,它们的相分离度几乎相同。在TPU1 + TPU2共混物中,可以区分出在308-317°C处发生的两个主要的热分解,分别是聚氨酯硬质区和在363-373°C发生的软区化,硬质区的重量损失增加,一个通过增加共混物中TPU2的含量,软结构域的数量减少。温度低于20°C时,TPU1 + TPU2共混物的储能模量相似,并且在模量交叉处的模量均低于母体TPU。 TPU1 + TPU2共混物的改进性能源自除去MEK溶剂后产生更多数量的氢键,这导致软结构域和硬结构域之间的相分离度低于母体TPU。结果,改善了TPU1 + TPU2 PSA的性能,因为获得了良好的粘性,高180°剥离强度和足够的内聚力,尤其是在70 wt%的TPU1 + 30 wt%的TPU2 PSA中。

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