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Modification of fiber-forming polymers by additives

机译:添加剂对成纤聚合物的改性

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This review article deals with the modification of synthetic fibers by polymeric additives. It gives an account of the development of the modification of synthetic fibers by polymeric additives, starting from the industrially interesting project concerned with the development of polyamide/polyethylene terephthalate blend fibers and aimed at the improvement of elastic and recovery properties of polyamide fibers. It became apparent that chemical and physical interactions at the interface are very important in the structure of the fiber-forming blend formation and has influence on their processability and properties of fibers. For this reason, the review also deals with the basic methods for evaluation of the interactions of polymer components in the blend. The significant influence of the blend structure on the processability during spinning and drawing of fibers and also on the properties of blend fibers has become a background for the elaboration and application of rheological relations bveing valid for the polymer dispersion as a whole (macrorheology) and for the bvehavior of the dispersion phase in the mixing and deformation prrocess (microrheology) in shear and elongation conditions. The next part of the contribution is devoted to some types of blend fibers based on commercial polymers which have the greatest possibilities of exploitation. The color concentrates for dyeing, mainly synthetic fibers prepared by spinning from the melt are produced in large volumes, especially for polypropylene and, to a lesser extent, for polyester and polyamide fibers. With regard to their significance, they are an object for the further part of the contribution submitted. Here, attention is paid to the significance, they are an object for the further part of ghe contribution submitted. Here, attention is paid to the influencxe of pigment properties, polymer carrier and dispersant on the processability of pigment in the preparation of concentrates and on the miscibility of concentrates with a colored polymer. The article also deals with the modification influence on the supermolecular and morphological structure of fibers 3with respect to all types of modification. In evaluating the processability of pigments and concentrates, several non-traditional methods have been developed, particularly from the viewpoint of rheology and the filterability of dispersion. The review is not aimed at the overall quanitification of the periodical literature and patents considerably exceeding the present range of this contribution. The article includes some works of less-known journals in the world, which are dealing with the development of modified synthetic fibers by polymeric additives as well as with the development of color concentrates for polypropylene and polyester fivbers.
机译:这篇评论文章涉及聚合物添加剂对合成纤维的改性。从工业上与聚酰胺/聚对苯二甲酸乙二酯共混物纤维的开发有关的工业项目开始,目的在于改进聚酰胺纤维的弹性和回复性能,这说明了聚合物添加剂对合成纤维的改性的发展。显而易见的是,在界面处的化学和物理相互作用在形成纤维的共混物的形成结构中非常重要,并影响了它们的可加工性和纤维性能。因此,本综述还涉及​​评价共混物中聚合物组分相互作用的基本方法。共混物结构对纤维纺丝和拉伸过程中的可加工性以及共混物纤维性能的重大影响,已成为阐述和应用流变关系的背景,对整个聚合物分散体(宏观流变学)和在剪切和伸长条件下,混合和变形过程(微流变学)中分散相的行为。贡献的下一部分致力于基于商业聚合物的某些类型混合纤维,这些纤维具有最大的开发潜力。大量生产用于染色的色浆,主要是通过熔体纺丝制成的合成纤维,特别是用于聚丙烯,在较小程度上用于聚酯和聚酰胺纤维。关于其重要性,它们是所提交文稿另一部分的对象。在这里,要注意其重要性,它们是所提交贡献的另一部分的对象。在此,应注意颜料性能,聚合物载体和分散剂对浓缩物制备中颜料的可加工性以及浓缩物与有色聚合物的混溶性的影响。该文章还针对所有类型的改性处理了改性对纤维3的超分子和形态结构的影响。在评估颜料和浓缩物的可加工性时,已经开发了几种非传统方法,特别是从流变学和分散体的可过滤性的角度。审查的目的不是要全面量化期刊文献和专利,而大大超出了目前的范围。该文章包括世界上一些鲜为人知的期刊,涉及通过聚合物添加剂开发改性合成纤维以及开发用于聚丙烯和聚酯纤维的色母料的研究。

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