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The Puncture and Water Resistance of Polyurethane- Impregnated Fabrics after UV Weathering

机译:紫外线风化后的聚氨酯浸渍织物的穿刺性和耐水性

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摘要

Polyurethane is a polymer adaptable to different scientific and industrial requirements; nevertheless it is also extremely susceptible to UV radiation, which compromises the physical and mechanical functionality. In this framework, our study investigated the effect of waterborne polyurethane dispersion (WPUD) applied to a polyester (PET)-based fabric, through the impregnation method, on the puncturing and water resistance of the pristine material, before and after UV weathering. Results confirmed an increment of both features in the prepared fabrics, attributed to the PUR textile treatment; but a partially loss of the gained properties in the samples due to the UV weathering. In order to improve the efficiency of the impregnating dispersions, in protecting the durability of the treated materials, the addition of different UV light stabilizers, or/and of crosslinking agent into WPUD was also tested. From the experimental data, it can be concluded that formulations based on WPUD, containing both the crosslinker and UV organic absorber, have displayed an increment of their perforation and water resistance for the treated samples with respect to the starting textile, and contemporary have preserved the features against the UV light. Finally, microscopic and spectroscopic analyses have been performed as further characterization techniques of the samples surface.
机译:聚氨酯是一种适应不同科学和工业要求的聚合物;但是,它也极易受到紫外线辐射的影响,从而损害了物理和机械功能。在此框架下,我们的研究通过浸渍方法研究了水性聚氨酯分散体(WPUD)应用于聚酯(PET)基织物对UV老化前后原始材料的穿刺性和耐水性的影响。结果证实了在制备的织物中两种特性的增加,这归因于PUR纺织品的处理。但是由于紫外线风化,样品获得的性能会部分损失。为了提高浸渍分散体的效率,在保护处理的材料的耐久性方面,还测试了在WPUD中添加不同的紫外光稳定剂或/和交联剂。从实验数据可以得出结论,基于WPUD的配方,既包含交联剂又包含UV有机吸收剂,相对于起始纺织品,其处理过的样品的穿孔和耐水性得到了提高,而当代则保留了这种特性。防紫外线的功能。最后,作为样品表面的进一步表征技术,已经进行了显微和光谱分析。

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