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Durable Antipilling Modification of Cotton Fabric with Chloropyrimidine Compounds

机译:氯嘧啶类化合物对棉织物的持久抗起球改性作用

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摘要

Cotton fabric, a natural cellulose material, is widely used in the textile industry for its excellent properties. However, its application in some fields are seriously restricted because of its poor antipilling behavior. In this study, cotton fabrics were modified with 2,4,6-trichloropyrimidine (TLP), 2,4-dichloro-5-methoxypyrimidine (DMP), and 2-amino-4,6-dichloropyridine (ADP). The surface morphology and chemical structure of the modified cotton fabric were characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), and X-ray diffraction (XRD). Furthermore, the antipilling behavior, dyeing properties, thermal properties, and mechanical properties of modified cotton fabric were evaluated. The results showed that chloropyrimidine compounds were successfully grafted onto the surface of the cotton fabric, leading to excellent and durable antipilling activity of grade 3–4 even after 10 washes. Moreover, compared with control cotton fabric, the heat release rate (HRR) and total heat release (THR) of TLP-modified cotton fabric decreased to 173.2 W/g (42.3% reduction) and 11.3 KJ/g (13.7% reduction), respectively. In addition, the increased K/S value of modified cotton fabrics dyed with reactive dyes indicated that the modification can enhance the dyability of cotton fabric. This technique provides a simple and versatile method for improving the antipilling behavior of cellulosic materials and supports further preparation of functional textiles.
机译:棉织物是一种天然纤维素材料,因其优异的性能而广泛用于纺织工业。但是,由于其抗起球性能差,因此在某些领域的应用受到严格限制。在这项研究中,棉织物用2,4,6-三氯嘧啶(TLP),2,4-二氯-5-甲氧基嘧啶(DMP)和2-氨基-4,6-二氯吡啶(ADP)进行了改性。通过扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR)和X射线衍射(XRD)对改性棉织物的表面形貌和化学结构进行表征。此外,评估了改性棉织物的抗起球性能,染色性能,热性能和机械性能。结果表明,将氯嘧啶化合物成功接枝到棉织物的表面上,即使清洗10次后,仍具有3-4级的优异且持久的抗起球活性。此外,与对照棉织物相比,TLP改性棉织物的热释放速率(HRR)和总热释放(THR)分别降至173.2 W / g(降低42.3%)和11.3 KJ / g(降低13.7%),分别。另外,用活性染料染色的改性棉织物的K / S值增加表明改性可以增强棉织物的染色性。该技术提供了一种简单而通用的方法来改善纤维素材料的抗起球性能,并支持功能纺织品的进一步制备。

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