By D. Zhang (Eds.)
Advances in Filament Yarn Spinning of Textiles and Polymers reports the different sorts of spinning suggestions for man made polymer-based fibers, and concerns comparable to their impact on fiber homes, together with soften, dry, rainy, and gel spinning.
Synthetic polymer-based fibers are utilized in a good number of client and commercial fabric purposes starting from garments to domestic furniture to surgeries. This booklet explores how a wide range of spinning ideas will be utilized within the fabric undefined. half one considers the basic constitution and houses of fibers that make sure their habit in the course of spinning. The publication then discusses advancements in applied sciences for production man made polymer motion pictures to supply diversified fibers with really expert houses. half makes a speciality of spinning options, together with the advantages and obstacles of soften spinning and using gel spinning to supply high-strength and high-elastic fibers. those chapters concentration in particular on advancements in bi-component, bi-constituent, and electro-spinning, particularly the fabrication of nanocomposite fibers. the ultimate chapters evaluation built-in composite spinning of yarns and the rules of rainy and dry spinning.
This assortment is a vital reference for quite a lot of business cloth technologists, together with spinners, textile and garment brands, and scholars of cloth expertise. it's also of serious curiosity for polymer scientists.
- Reviews the several spinning recommendations and concerns equivalent to their influence on fiber houses, together with soften, dry, rainy, and gel spinning
- Considers the basic constitution and houses of fibers that make certain their habit in the course of spinning
- Reviews built-in composite spinning of yarns and the foundations of rainy and dry spinning
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Extra resources for Advances in Filament Yarn Spinning of Textiles and Polymers
It is therefore possible to engineer an end product that fits the predetermined application by manipulating the molecular composition of the polymer. Understanding the molecular structure of polymers can also provide an insight into the visco-elastic properties of polymer melt. This is essentially an understanding of how polymer energy is dissipated in the form of heat during deformation, and how the elastic nature of the polymer will store this energy and use it to restore the polymer to its pre-deformed condition.
68(4): pp. 778–783. 30 Advances in ﬁlament yarn spinning of textiles and polymers 54. D. I. (2003) Effect of molecular shape on rheological properties in molecular dynamics simulation of star, H, comb, and linear polymer melts. Macromolecules. 36(13): pp. 5020–5031. 55. V. R. (1996), Thermoplastic melt rheology and processing. Plastics Engineering, New York: Marcel Dekker. ix, 459 p. 56. , Sugiura, K and Ito, S. (1997), Molecular motion in polymer monolayers at the air/water interface. A time-resolved study of fluorescence depolarization.
1). For very low shear rates, the macromolecular entanglements have time to slip and be destroyed before they impact the orientation of the macromolecules. For higher shear rates, however, the segments between entanglements are oriented before the entanglements disappear. 0 negligible and apparent viscosity reaches a relatively low value, independent of the shear rate. Taking into account the very strong shear rates associated with the spinning of a polymer through dies, understanding of the rheological behaviour of the material to control the processing parameters is of critical importance.