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Flame Retardant Finishing of Poly(ethylene terephthalate) Fabric with a Carbon Source Containing DOPO Derivative 被引量:1

Flame Retardant Finishing of Poly(ethylene terephthalate) Fabric with a Carbon Source Containing DOPO Derivative
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摘要 9, 10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide( DOPO)-based flame retardant( DOPO-DOPC) which contains carbon source was used to improve the flame retardancy of poly( ethylene terephthalate)( PET) fabrics. The prepared DOPODOPC dispersion was applied onto PET fabrics via two kinds of processes,thermosol process and exhaustion process,and in the later using it alone or together with disperse dyes. The flame retardancy of PET fabrics was determined by limiting oxygen index( LOI) and vertical burning test. The results showed that DOPODOPC could obviously improve the flame retardancy of PET fabrics.The PET fabric treated by 60 g/L DOPO-DOPC dispersion via exhaustion process achieved an LOI value of 32. 3%,for example.The flame retardancy and dyeing performances showed that DOPODOPC dispersion could be used together with a part of disperse dyes in one bath. The thermal stability of DOPO-DOPC and the treated PET fabrics were investigated by thermogravimetric analysis( TGA). And the flame retardant mechanism of DOPO-DOPC treated PET fabrics was further investigated by pyrolysis-gas chromatography/mass spectrometry( Py-GC/MS), Fourier transform infrared spectroscopy( FTIR) and scanning electron microscopy( SEM). 9, 10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide( DOPO)-based flame retardant( DOPO-DOPC) which contains carbon source was used to improve the flame retardancy of poly( ethylene terephthalate)( PET) fabrics. The prepared DOPODOPC dispersion was applied onto PET fabrics via two kinds of processes,thermosol process and exhaustion process,and in the later using it alone or together with disperse dyes. The flame retardancy of PET fabrics was determined by limiting oxygen index( LOI) and vertical burning test. The results showed that DOPODOPC could obviously improve the flame retardancy of PET fabrics.The PET fabric treated by 60 g/L DOPO-DOPC dispersion via exhaustion process achieved an LOI value of 32. 3%,for example.The flame retardancy and dyeing performances showed that DOPODOPC dispersion could be used together with a part of disperse dyes in one bath. The thermal stability of DOPO-DOPC and the treated PET fabrics were investigated by thermogravimetric analysis( TGA). And the flame retardant mechanism of DOPO-DOPC treated PET fabrics was further investigated by pyrolysis-gas chromatography/mass spectrometry( Py-GC/MS), Fourier transform infrared spectroscopy( FTIR) and scanning electron microscopy( SEM).
出处 《Journal of Donghua University(English Edition)》 EI CAS 2017年第3期377-384,共8页 东华大学学报(英文版)
基金 National High Technology Research and Development Program 863 Project,China(No.2013AA06A307)
关键词 flame terephthalate fabrics disperse retardant burning dyeing exhaustion pyrolysis combustion 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide(DOPO) carbon source flame retardancy poly(ethylene terephthalate)(PET) fabrics
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  • 1Luijk R, Govers H A J, Eijkel G B, et al. Thermal Degradation Characteristics of High Impact Polystyrene/Decabromodiphenyle- ther/Antimony Oxide Studied by Derivative Thermogravimetry and Temperature Resolved Pyrolysis-Mass Spectrometry: Formation of Polybrominated Dibenzofurans, Antimony(oxy) bromides and Bro- minated Styrene Oligomers[ J]. Journal of Analytical and Applied Pyrolysis, 1991, (20) : 303 -319.
  • 2Dumler R, Thoma H. Thermal Formation of Polybrominated Dibenzodioxins (PBDD) and Dibenzofurans (PBDF) from Bro- mine Containing Flame Retardants [ J ]. Chemosphere, 1989, 19 (1 -6) : 305 -308.
  • 3Bergman A. Proceedings of International Conference on Halogen- Free Materials for Electronic and Electrical Products [ C ]. Sweden: Gotherburg, 1999 : 8.
  • 4Liu Y L, Hsiue G H, Lan C W, et al. Phosphorus-Containing Ep- oxy for Flame Retardance: IV. Kinetics and Mechanism of Ther- mal Degradation [ J ]. Polymer Degradation and Stability, 1997, 56(3) : 291 -299.
  • 5Liu Y L. Phosphorous-Containing Epoxy Resins from a Novel Syn- thesis Route[ J]. Journal of Applied Polymer Science, 2002, 83 (8): 1 697-1 701.
  • 6Banks M, Ebdon J R, Johnson M. Influence of Covalently Bound Phosphorus-Containing Groups on the Flammability of Poly ( vinyl alcohol), Poly(ethylene-co-vinyl alcohol) and Low-Density Poly- ethylene[J]. Polymer, 1993, 34(21 ) : 4 547 -4 556.
  • 7Lin C H, Chang S L, Wei T P, et al. Facile, One-Pot Synthesis of Phosphinate-Substituted Bisphenol A and its Alkaline-Stable Diglycidyl Ether Derivative[J]. Polymer Degradation and Stabili- ty, 2010, 95(7): 1 167-1 176.
  • 8Liu H, Xu K, Ai H, et al. Preparation and Characterization of Phosphorus-Containing Mannich-Type Bases as Curing Agents for Epoxy Resin[ J]. Polymers for Advanced Technologies, 2009, 20 (9) : 753 -758.
  • 9Jeng R J, Shau S M, Lin J J, et al. Flame Retardant Epoxy Poly- mers Based on All Phosphorus-Containing Components [ J ]. Euro- pean Polymer Journal, 2002, 38(4): 683-689.
  • 10Gao L P, Wang D Y, Wang Y Z, et al. A Flame-Retardant Ep- oxy Resin Based on a Reactive Phosphorus-Containing Monomer of DODPP and Its Thermal and Flame-Retardant Properties [ J ]. Polymer Degradation and Stability, 2008, 93 (7): 1 308- 1 315.

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