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Adhesion of cornstarch-g-poly (2-hydroxyethyl acrylate) to cotton fibers in sizing

机译:玉米淀粉-G-聚(2-羟乙基丙烯酸酯)对施胶中的棉纤维的粘附性

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A range of starch-g-poly (2-hydroxyethyl acrylate) (S-g-PHEA) with different grafting ratio was prepared by graft copolymerization of 2-hydroxyethyl acrylate (HEA) onto granular cornstarch using ammonium cerium nitrate as initiator. The adhesive ability of the sizes to cotton fibers, film properties, and desizing ability of HEA branch grafted onto starch were investigated. The effects of grafting conditions (such as reaction time, temperature, HEA and initiator concentration, etc.) on grafting ratio and efficiency were investigated. Fourier transformed infrared spectroscopy (FTIR) and Thermogravimetric analysis (TGA) was employed to characterize the complexes of S-g-PHEA. The effect of grafting ratio on the sizing properties of grafted starch was studied by testing the ability of the grafted starch to adhere to cotton fiber and film properties. It was confirmed that the HEA branch can effectively improve the adhesion ability of starch to cotton fibers, improves the flexibility of the starch film while reduces the brittleness, and enhances the abrasion resistance of the yarns (the highest enhancement ratio up to 225.71%). An increase in the grafting ratio facilitates the adhesion to the cotton fibers while making the desizing difficult. The desizing efficiency was high when the grafting ratio was less than 10%, which lead to easy access to desizing and then fewer residues have remained, and at the same time, good sizing performance is maintained, which indicates that the S-g-PHEA possesses the application potential of cotton warp sizing.
机译:通过将丙烯酸2-羟乙酯(HEA)接枝共聚到使用硝酸铵作为引发剂,通过将2-羟乙酯(HEA)接枝共聚到颗粒状玉米淀粉中来制备具有不同接枝比的淀粉-G-聚(2-羟基乙酯)(S-G-PHEA)。研究了覆盖到淀粉上的棉纤维,薄膜性能和去除能力的棉纤维,薄膜性能和降解能力的粘合能力。研究了接枝条件(例如反应时间,温度,HEA和引发剂浓度等)对移植比和效率的影响。使用傅里叶变换的红外光谱(FTIR)和热重分析(TGA)来表征S-G-PHEA的复合物。通过测试接枝淀粉粘附到棉纤维和薄膜性能的能力,研究了接枝比对接枝淀粉的施胶性能的影响。证实HEA分支可以有效地改善淀粉对棉纤维的粘附能力,提高了淀粉膜的柔韧性,同时降低了脆性,并​​增强了纱线的耐磨性(最高增强比率高达225.71%)。接枝比的增加有助于在使难以使用的同时对棉纤维的粘附性。当嫁接率小于10%时,下降效率很高,这导致易于获得偏移,然后较少的残留物保持较少,同时保持良好的尺寸性能,这表明SG-PHEA具有棉花纱尺寸的应用潜力。

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