INVESTIGATION OF PHYSICOCHEMICAL PROPERTIES OF STYRENE-ACRYLIC AND URETHANE POLYMERS USED IN FINISHING OF TEXTILE MATERIALS

Inna Slepchuk, O. Semeshko, T. Asaulyuk, Yuliya G. Saribyekova
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引用次数: 1

Abstract

The results of the study of the physicochemical properties of styrene-acrylic and urethane polymer films, as well as polymer compositions based on the studied polymers with the addition of crosslinking agents are presented. Aqueous dispersions of styrene-acrylic polymers Lacritex 309, Lacritex 430, Lacritex 640 and polyurethane polymer Aquapol 14 were used for the formation of films. Triglycidyl esthers of polyoxypropylene triol and trimethylolpropane — Laproxid 703 and Laproxid TMP — were used as crosslinking agents. The stability of polymer films to hydrolytic destruction was evaluated after treatment at 20, 40 and 100 °C, and to the soap-soda treatment — at 40 °C. It was found that the most resistant to hydrolysis and soap-soda treatment are films from styrene-acrylic polymer Lacritex 309 and compositions Lacritex 640 / Laproxid 703, Aquapol 14 / Laproxid TMP, Aquapol 14 / Laproxid 703. The tensile load, elongation at break, stiffness and surface tackiness were also determined for the studied polymer films. It was found that polymer films based on Lacritex 309 and compositions Lacritex 640 / Laproxid 703, Aquapol 14 / Laproxid 703 are characterized by the greatest strength and elongation, non-rigid and non-tacky surface. Adding Laproxid TMP to polyurethane Aquapol 14 provides creation of a solid and inelastic film. To assess the effect of polymer coatings on the textile material rigidity, a cotton fabric with twill weave was used, which is used for special work clothes. Polymers and their compositions were applied to the fabric from a solution with a concentration of 150 g/l, followed by drying and heat setting. For dressed cotton fabric, rigidity and breaking load were determined. The rigidity of the treated cotton fabric was determined by the method of console. It has been established that the use of polyurethane Aquapol 14 and compositions based on it, as well as styrene-acrylic dispersions Lacritex 309 and Lacritex 430 will result in hard handle of textile materials. The composition based on Lacritex 640 with the addition of Laproxid 703 as a crosslinker provides an elastic and strong textile material.
纺织材料整理用苯乙烯-丙烯酸和聚氨酯聚合物的理化性能研究
介绍了苯乙烯-丙烯酸和聚氨酯聚合物薄膜的物理化学性质,以及在这些聚合物的基础上添加交联剂制备聚合物的结果。用苯乙烯-丙烯酸聚合物Lacritex 309、Lacritex 430、Lacritex 640和聚氨酯聚合物Aquapol 14的水分散体形成薄膜。以聚氧丙烯三醇和三甲基丙烷的三甘油酯Laproxid 703和Laproxid TMP为交联剂。在20℃、40℃和100℃条件下,以及在40℃条件下,对聚合物薄膜的水解破坏稳定性进行了评价。结果表明,苯乙烯-丙烯酸聚合物Lacritex 309和Lacritex 640 / Laproxid 703、Aquapol 14 / Laproxid TMP、Aquapol 14 / Laproxid 703组成的薄膜最耐水解和皂碱处理。测定了聚合物薄膜的拉伸载荷、断裂伸长率、刚度和表面粘性。结果表明,以Lacritex 309和Lacritex 640 / Laproxid 703、Aquapol 14 / Laproxid 703组成的聚合物薄膜具有强度和伸长率最高、表面无刚性和无粘性的特点。将Laproxid TMP添加到聚氨酯Aquapol 14中,可以形成固体和无弹性的薄膜。为评价聚合物涂层对纺织材料刚性的影响,以斜纹棉织物为研究对象,研究了聚合物涂层对特种工作服刚性的影响。将聚合物及其组合物从浓度为150 g/l的溶液中涂抹到织物上,然后进行干燥和热定型。对棉织物进行了刚度和断裂载荷的测定。采用控制法测定处理后棉织物的刚性。研究表明,使用聚氨酯Aquapol 14及其复合材料,以及苯乙烯-丙烯酸分散体Lacritex 309和Lacritex 430会导致纺织材料的硬处理。以lacitex 640为基础,添加Laproxid 703作为交联剂的组合物提供了一种弹性强的纺织材料。
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