By George Kellie
Advances in Technical Nonwovens offers the most recent details at the nonwovens undefined, a dynamic and fast-growing with contemporary technological concepts which are resulting in the advance of novel end-use functions.
The publication experiences key advancements in technical nonwoven production, expert fabrics, and functions, with half One protecting very important advancements in fabrics and production applied sciences, together with chapters dedicated to fibers for technical nonwovens, using eco-friendly recycled and biopolymer fabrics, and the applying of nanofibres.
The trying out of nonwoven homes and the professional region of composite nonwovens also are reviewed, with half supplying an in depth and wide-ranging review of the numerous functions of technical nonwovens that comes with chapters on automobile textiles, filtration, power purposes, geo- and agrotextiles, development, furnishing, packaging and scientific and hygiene products.
- Provides systematic assurance of developments, advancements, and new know-how within the box of technical nonwovens
- Focuses at the wishes of the nonwovens with a transparent emphasis on utilized technology
- Contains contributions from a global staff of authors edited via knowledgeable within the field
- Offers an in depth and wide-ranging evaluate of the numerous functions of technical nonwovens that comes with chapters on automobile textiles, filtration, strength functions, geo- and agrotextiles, and more
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32%, respectively [12,13]. Lignin is a major structural component of lotus ﬁber material, conferring mechanical strength to the cell wall. 11 . Lotus ﬁber shows light brown or yellowish with rough surface; the ﬁber length is 30e50 mm and shows a special helical structure (Fig. 5 Fat and wax Ash 4e7 2e3 Zhang Y, Chongwen Y. Properties and processing of the pineapple leaf ﬁber. J Dong Hua Univ 2001;18:0e4. 9 Zhang Y, Chongwen Y. Properties and processing of the pineapple leaf ﬁber. J Dong Hua Univ 2001;18:0e4.
7568 Elastic recovery rate/% 50% elongation 100 100 100 98 200% elongation 95 98 99 96 400% elongation 90 92 97 92 Properties Fineness (tex) 3 Tested condition: 65% relative humidity, 20 C. DuPont. c Firestone. d United States Rubber Co. e Universal American Co. Li G. Polymer material processing technology. Beijing: China Textile Press; 2010. p. 204. 05 Residual elongation (%) 20 3 Aging resistance A B Dyeability A B Abrasion resistance D B Ozone resistance A B Oil resistance C B Thermal stability A B The minimum denier 11 100 A, good; B, poor; C, normal; D, very good.
5 Spandex Spandex is a kind of synthetic-based elastomeric polymer containing at least 85% segmented polyurethane (PU) in its main chain. It can be extended up to six or more times its original length and recovery completely. Spandex is textured or weaved with natural or synthetic ﬁbers like cotton, polyester, and polyamide for some elastic textiles. They were initially produced by DuPont in 1959 under the now well-known trademark of Lycra. Other products include Elaspan (Invista), Acelan and Acepora (Taekwang), Creora (Hyosung), Inviya (Indorama Corporation), ROICA (Asahi Kasei), Linel (Fillattice), and ESPA (Toyobo).