Tytuł artykułu
Autorzy
Treść / Zawartość
Pełne teksty:
Identyfikatory
Warianty tytułu
Właściwości termiczne tkaniny poliestrowej z powłokami akrylowymi
Języki publikacji
Abstrakty
The aim of the study was to assess the thermal properties of polyester (PET) woven fabrics with unmodified (PET/AC) and flame-retardant modified (PET/AC/FR) polyacrylic coatings, before and after 1, 5, 10 & 15 washes. Differential scanning calorimetry DSC and thermogravimetric TG/DTG analyses were carried out in order to investigate the thermal processes. To evaluate the effects of the modifications and washing treatment, the scanning electron microscopy SEM/EDS technique was used. The flame-retardant modification caused that the melting enthalpy and the initial thermal degradation temperature decreased and the thermal degradation heat increased. The washing of PET/AC and PET/AC/FR fabrics caused an increase in the melting enthalpy by approximately 12% and 63% and a decrease in thermal degradation heat by about 2% and 15%, respectively. It was found that the flame-retardants were rinsed out from the coating after the fifth wash.
Celem pracy była ocena właściwości termicznych tkaniny poliestrowej (PET) z powłoką poliakrylową, niemodyfikowaną (PET/AC) i modyfikowaną środkami trudnopalnymi (PET/AC/FR), przed i po 1, 5, 10 i 15-krotnym praniu. Do badań zastosowano techniki analizy termicznej: różnicową kalorymetrię skaningową DSC i termograwimetryczną TG/DTG oraz analizę mikroskopową SEM/EDS. Modyfikacja środkami trudnopalnymi spowodowała, że entalpia topnienia i temperatura początkowa rozkładu termicznego są niższe odpowiednio o około 11,3 J/g i 44,2 °C, a ciepło rozkładu termicznego wzrosło o około 44,6 J/g. Pranie tkanin PET/AC i PET/AC/FR spowodowało odpowiednio wzrost entalpii topnienia o około 12% i 63% oraz zmniejszenie ciepła degradacji termicznej o około 2% i 15%. Stwierdzono, że środki trudnopalne zostały wypłukane z modyfikowanej powłoki po piątym praniu.
Czasopismo
Rocznik
Strony
73--82
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
- Scientific Department of Unconventional Technologies and Textiles, Textile Research Institute, Łódź, Poland
autor
- Scientific Department of Unconventional Technologies and Textiles, Textile Research Institute, Łódź, Poland
autor
- Scientific Department of Unconventional Technologies and Textiles, Textile Research Institute, Łódź, Poland
autor
- Scientific Department of Unconventional Technologies and Textiles, Textile Research Institute, Łódź, Poland
Bibliografia
- 1. Mikucioniene D, Milasiute L, Baltusnikaite J, Milasius R. Influence of Plain Knits Structure on Flammability and Air Permeability. Fibres & Textiles in Eastern Europe 2012; 20, 5(94): 66-69.
- 2. Parmar MS. An unconventional way to incorporate comfortin knitted fabrics. Indian Journal of Fiber and Textile and Research 1999; 24: 41–44.
- 3. Sharma IC, Mukhopadhyay D, Agarwal BR. Feasibility of Single jersey Fabric from open-end Spun Blended Yarn. Textile Research Journal 1986; 56(4): 249.
- 4. Choi Mee-Sung, Ashdown SP. Effect of Changes in knit structure and density on the mechanical and hand properties of weft knitted fabrics for outwear. Textile Research Journal 2000; 70, 12: 1033-45.
- 5. Li Y. The Science of clothing comfort. Textile Progress 2001; 31(1/2): 1-135.
- 6. Slah M, Amine HT, Faouzi S. A new approach for predicting the knit global quality by using the desirability function and neural networks. Journal of Textile Institute 2006; 97, 1: 17–23. DOI: 10.1533/joti.2005.0157.
- 7. Demiroz Gun A, Unal C, Unal BT. Dimensional and physical properties of plain knitted fabrics made from 50/50 bamboo/cotton blended yarns. Fibers and Polymers 2008; 9, 5: 588-592.
- 8. Oglakcioglu N, Celik P, Ute TB, Marmarali A, Kadoglu A. Thermal comfort properties of angora rabbit/cotton fiber blended knitted fabrics. Textile Research Journal 2009; 79: 888-894.
- 9. Bivainyte A, Mikucioniene D. Investigation on the Air and Water Vapour Permeability of Double-Layered Weft Knitted Fabrics. Fibres & Textiles in Eastern Europe 2011; 19, 3(86): 69-73.
- 10.Emirhanova N, Kavusturan Y. Effects of Knit Structure on the Dimensional and Physical Properties of Winter Outwear Knitted Fabrics. Fibres & Textiles in Eastern Europe 2008; 16, 2 (67): 69–74.
- 11.Kane CD, Patil UJ, Sudhakar P. Studies on the Influence of Knit Structure and Stitch Length on Ring and Compact Yarn Single Jersey Fabric Properties. Textile Research Journal 2007; 77(8): 572-588.
- 12.Prakash C, Ramakrishnan G. Effect of blend proportion on thermal behaviour of bamboo knitted fabrics. The Journal of the Textile Institute 2013; 14, 9: 907- 913.
- 13.TS EN ISO 139, 2008. Textiles - Standard atmospheres for conditioning and testing.
- 14.EN ISO 2062, 2010. Textiles - Yarns from packages - Determination of singleend breaking force and elongation at break using constant rate of extension (CRE)tester.
- 15.TS EN 14971, 2006. Textiles - Knitted fabrics - Determination of number of stitches per unit length and unit area.
- 16.TS EN 14970, 2006. Textiles - Knitted fabrics - Determination of stitch length and yarn linear density in weft knitted fabrics.
- 17.TS EN ISO 12127, 1999. Textiles- Fabrics- Determination of mass per unit area using small samples.
- 18.EN ISO 5084, 1998. Textiles-Determination of thickness of textiles and textile porducts.
- 19.EN ISO 9237, 1999. Textiles-Determination of permeability of fabrics to air.
- 20.BS 7209, 1990. Textiles - Measurement of water vapour permeabiliy of textiles. TS
- 21.EN ISO 13938-2, 1999. Textiles-Bursting Properties of Fabrics, Part 2, Pneumatic method for determination of bursting strength and bursting distention.
- 22.Mikucioniene D, Ciukas R, Mickeviciene A. Materials Science (Medziagotyra) 2010; 16, 3: 221-225.
- 23.Skenderi Z, Cubric IS, SrdjakM. Water vapour resistance of knitted fabrics under different environmental conditions. Fibres&Textiles in Eastern Europe 2009; 17, 2(73): 72-75.
- 24.Wang F, Zhou X, Wang S. Development Processes and Property Measurements of Moisture Absorption and Quick Dry Fabrics. Fibres&textiles in Eastern Europe 2009; 17, 2(73): 46-49.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2fc3c177-ff21-4787-a9c2-481ce79c4c86