Patti Antonella, Costa Francesco, Perrotti Marta, Barbarino Domenico, Acierno Domenico
Department of Civil Engineering and Architecture (DICAr), University of Catania, Viale Andrea Doria 6, 95125 Catania, Italy.
Kuvera Spa, Interporto di Nola-Lotto H, 80035 Naples, Italy.
Materials (Basel). 2021 Apr 13;14(8):1951. doi: 10.3390/ma14081951.
Commercial waterborne polyurethane (PU) dispersions, different in chemistry and selected on the basis of eco-friendly components, have been applied to a common polypropylene (PP)-based woven fabric. Impregnation has been chosen as a textile treatment for improving the features of basic technical textiles in light of potential applicability in luggage and bag production. The effect of drying method, performed under conditions achieved by varying the process temperature and pressure, on the features of the treated textiles, has been verified. The prepared specimens were characterized in terms of mechanical behavior (tensile, tear and abrasion resistance) and water resistance (surface wettability and hydrostatic pressure throughout the treated textiles). The experimental results suggest an incremental improvement of the tensile features for all the investigated specimens. For tear strength, no augmentation compared to that of the neat textile, could be verified as a consequence of polyurethane treatment. Remarkable improvements of abrasion resistance were displayed for all the impregnated PP textiles. Benefits in water resistance could be attributed to the presence of hydrophobic PU in the textile weaving of the PP samples. The ultimate improvement in water resistance was dependent on drying conditions.
选用了化学成分不同且基于环保成分挑选出的商用水性聚氨酯(PU)分散体,将其应用于一种常见的聚丙烯(PP)基机织织物。鉴于在箱包生产中的潜在适用性,选择浸渍作为一种织物处理方法来改善基础工业用纺织品的性能。已经验证了在通过改变工艺温度和压力实现的条件下进行干燥的方法对经处理纺织品性能的影响。制备的试样在机械性能(拉伸、撕裂和耐磨性能)和耐水性(整个经处理纺织品的表面润湿性和静水压)方面进行了表征。实验结果表明,所有研究的试样的拉伸性能都有逐步提高。对于撕裂强度,由于聚氨酯处理,与未处理的织物相比没有提高。所有浸渍的PP纺织品都表现出显著的耐磨性能改善。耐水性的提高可归因于PP样品的织物结构中存在疏水性PU。耐水性的最终改善取决于干燥条件。