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Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer

Poly(acrylonitrile) (PAN) fibers have two essential drawbacks: they are usually processed by solution-spinning, which is inferior to melt spinning in terms of productivity and costs, and they are flammable in air. Here, we report on the synthesis and melt-spinning of an intrinsically flame-retardant...

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Autores principales: König, Simon, Kreis, Philipp, Herbert, Christian, Wego, Andreas, Steinmann, Mark, Wang, Dongren, Frank, Erik, Buchmeiser, Michael R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663686/
https://www.ncbi.nlm.nih.gov/pubmed/33126721
http://dx.doi.org/10.3390/ma13214826
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author König, Simon
Kreis, Philipp
Herbert, Christian
Wego, Andreas
Steinmann, Mark
Wang, Dongren
Frank, Erik
Buchmeiser, Michael R.
author_facet König, Simon
Kreis, Philipp
Herbert, Christian
Wego, Andreas
Steinmann, Mark
Wang, Dongren
Frank, Erik
Buchmeiser, Michael R.
author_sort König, Simon
collection PubMed
description Poly(acrylonitrile) (PAN) fibers have two essential drawbacks: they are usually processed by solution-spinning, which is inferior to melt spinning in terms of productivity and costs, and they are flammable in air. Here, we report on the synthesis and melt-spinning of an intrinsically flame-retardant PAN-copolymer with phosphorus-containing dimethylphosphonomethyl acrylate (DPA) as primary comonomer. Furthermore, the copolymerization parameters of the aqueous suspension polymerization of acrylonitrile (AN) and DPA were determined applying both the Fineman and Ross and Kelen and Tüdõs methods. For flame retardancy and melt-spinning tests, multiple PAN copolymers with different amounts of DPA and, in some cases, methyl acrylate (MA) have been synthesized. One of the synthesized PAN-copolymers has been melt-spun with propylene carbonate (PC) as plasticizer; the resulting PAN-fibers had a tenacity of 195 ± 40 MPa and a Young’s modulus of 5.2 ± 0.7 GPa. The flame-retardant properties have been determined by Limiting Oxygen Index (LOI) flame tests. The LOI value of the melt-spinnable PAN was 25.1; it therefore meets the flame retardancy criteria for many applications. In short, the reported method shows that the disadvantage of high comonomer content necessary for flame retardation can be turned into an advantage by enabling melt spinning.
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spelling pubmed-76636862020-11-14 Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer König, Simon Kreis, Philipp Herbert, Christian Wego, Andreas Steinmann, Mark Wang, Dongren Frank, Erik Buchmeiser, Michael R. Materials (Basel) Article Poly(acrylonitrile) (PAN) fibers have two essential drawbacks: they are usually processed by solution-spinning, which is inferior to melt spinning in terms of productivity and costs, and they are flammable in air. Here, we report on the synthesis and melt-spinning of an intrinsically flame-retardant PAN-copolymer with phosphorus-containing dimethylphosphonomethyl acrylate (DPA) as primary comonomer. Furthermore, the copolymerization parameters of the aqueous suspension polymerization of acrylonitrile (AN) and DPA were determined applying both the Fineman and Ross and Kelen and Tüdõs methods. For flame retardancy and melt-spinning tests, multiple PAN copolymers with different amounts of DPA and, in some cases, methyl acrylate (MA) have been synthesized. One of the synthesized PAN-copolymers has been melt-spun with propylene carbonate (PC) as plasticizer; the resulting PAN-fibers had a tenacity of 195 ± 40 MPa and a Young’s modulus of 5.2 ± 0.7 GPa. The flame-retardant properties have been determined by Limiting Oxygen Index (LOI) flame tests. The LOI value of the melt-spinnable PAN was 25.1; it therefore meets the flame retardancy criteria for many applications. In short, the reported method shows that the disadvantage of high comonomer content necessary for flame retardation can be turned into an advantage by enabling melt spinning. MDPI 2020-10-28 /pmc/articles/PMC7663686/ /pubmed/33126721 http://dx.doi.org/10.3390/ma13214826 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
König, Simon
Kreis, Philipp
Herbert, Christian
Wego, Andreas
Steinmann, Mark
Wang, Dongren
Frank, Erik
Buchmeiser, Michael R.
Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer
title Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer
title_full Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer
title_fullStr Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer
title_full_unstemmed Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer
title_short Melt-Spinning of an Intrinsically Flame-Retardant Polyacrylonitrile Copolymer
title_sort melt-spinning of an intrinsically flame-retardant polyacrylonitrile copolymer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663686/
https://www.ncbi.nlm.nih.gov/pubmed/33126721
http://dx.doi.org/10.3390/ma13214826
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