499
Views
31
CrossRef citations to date
0
Altmetric
Original Articles

Flame Retardation of Acrylic Fibers: An Overview

, , , &
Pages 309-337 | Published online: 07 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Mustafa Yılmaz, N. Ceren Süer, Tarık Eren & Ahmet Akar. (2021) Alendronic acid bearing acrylic monomer to produce heat resistant polyacrylonitrile copolymer and nanofibers. Polymer-Plastics Technology and Materials 60:17, pages 1833-1844.
Read now

Articles from other publishers (30)

Esfandiar Pakdel, Masihullah Jabarulla Khan, Nguyen Le Thao Nguyen, Maxime Maghe & Russell J. Varley. (2023) Development of non-combustible weaveable yarn through oxidative control of a textile acrylic fibre. Polymer Degradation and Stability 218, pages 110571.
Crossref
Mahbubur Rahman, Mohashin Kabir, Shaojuan Chen & Shaohua Wu. (2023) Developments, applications, and challenges of metal-organic frameworks@textile composites: a state-of-art review. European Polymer Journal, pages 112480.
Crossref
Shujiao Dai, Yanchun Liu & Gang Bai. (2022) Surface properties and flame retardancy of polyacrylonitrile fabric modified with nitrilase and vinyl phosphate. Textile Research Journal 93:1-2, pages 326-333.
Crossref
Hakimkhon Qurbonov, Makhammasidik Rustamov, Dilfuza Gafurova, Mahbuba Toshpulatova & Nodirkhon Temirov. (2023) Polyacrylonitrile-based ion-exchange material synthesis and combustion properties investigation. E3S Web of Conferences 458, pages 02013.
Crossref
Hyelim Kim, Ji-Su Kim & Wonyoung Jeong. (2021) Study on the Flame Retardancy and Hazard Evaluation of Poly(acrylonitrile-co-vinylidene chloride) Fibers by the Addition of Antimony-Based Flame Retardants. Polymers 14:1, pages 42.
Crossref
Mauricio Vásquez‐Rendón, Manuel Romero‐Sáez, Jhorman Mena, Victor Fuenzalida, Isadora Berlanga & Mónica L. Álvarez‐Láinez. (2020) Synergistic contribution on flame retardancy by charring production in high‐performance PEI / PBT / PTFE ternary blends: The role of PTFE . Polymers for Advanced Technologies 32:4, pages 1615-1625.
Crossref
Ji Su Kim, Ji Eun Song, Daeyoung Lim, Heejoon Ahn & Wonyoung Jeong. (2020) Flame-Retardant Mechanism and Mechanical Properties of Wet-Spun Poly(acrylonitrile-co-vinylidene chloride) Fibers with Antimony Trioxide and Zinc Hydroxystannate. Polymers 12:11, pages 2442.
Crossref
Mustafa Yılmaz, Ahmet Akar, Nesrin Köken & Nilgün Kızılcan. (2020) Polymers of vinylphosphonic acid, acrylonitrile, and methyl acrylate and their nanofibers. Journal of Applied Polymer Science 137:35, pages 49023.
Crossref
Ezgi Ismar & A. Sezai Sarac. (2020) Nonflammable pre-carbonized polyacrylonitrile nanofiber webs. SN Applied Sciences 2:4.
Crossref
Hongyun Peng, Dong Wang, Min Li, Liping Zhang, Mingming Liu & Shaohai Fu. (2019) N-P-Zn-containing 2D supermolecular networks grown on MoS2 nanosheets for mechanical and flame-retardant reinforcements of polyacrylonitrile fiber. Chemical Engineering Journal 372, pages 873-885.
Crossref
Seung Hyun Lee, Gi Ra Yi, Dae Young Lim, Won Young Jeong & Ji Ho Youk. (2019) Study on the Flame Retardant and Mechanical Properties of Wet-spun Poly(acrylonitrile-co-vinylchloride) Fibers with Antimony Trioxide and Zinc Hydroxystannate. Fibers and Polymers 20:4, pages 779-786.
Crossref
Yuanlin Ren, Lina Jiang, Tian Tian, Xiaohui Liu & Zhenbang Han. (2018) Durable flame retardant polyacrylonitrile fabric via UV-induced grafting polymerization and surface chemical modification . RSC Advances 8:72, pages 41389-41396.
Crossref
Yuanlin Ren, Tongguo Huo & Yiwen Qin. (2018) Preparation of phosphorus-containing and nitrogen-containing durable flame retardant polyacrylonitrile fabric via surface chemical modification. Fire and Materials 42:8, pages 925-932.
Crossref
Yuanlin Ren, Yiwen Qin, Xiaohui Liu, Tongguo Huo, Lina Jiang & Tian Tian. (2018) Flame-retardant polyacrylonitrile fabric prepared by ultraviolet-induced grafting with glycidyl methacrylate followed by ammoniation and phosphorylation. Journal of Applied Polymer Science 135:41, pages 46752.
Crossref
Bhupender S. Gupta & Mehdi Afshari. 2018. Handbook of Properties of Textile and Technical Fibres. Handbook of Properties of Textile and Technical Fibres 545 593 .
Li-Huan Wang, Yuan-Lin Ren, Xiu-Li Wang, Jie-Yun Zhao, Yue Zhang, Qian Zeng & Ye-Tong Gu. (2016) Fire retardant viscose fiber fabric produced by graft polymerization of phosphorus and nitrogen-containing monomer. Cellulose 23:4, pages 2689-2700.
Crossref
Xiang Yan, Wanli Zhou, Xiangsen Zhao, Jianjun Xu & Pengqing Liu. (2015) Preparation, flame retardancy and thermal degradation behaviors of polyacrylonitrile fibers modified with diethylenetriamine and zinc ions. Journal of Thermal Analysis and Calorimetry 124:2, pages 719-728.
Crossref
Wanli Zhou, Xiang Yan, Mengjin Jiang, Pengqing Liu & Jianjun Xu. (2016) Study of flame-resistant acrylic fibers reinforced by poly(vinyl alcohol). Journal of Applied Polymer Science 133:10, pages n/a-n/a.
Crossref
Wanli Zhou, Shaosi Ji, Pengqing Liu, Mengjin Jiang & Jianjun Xu. (2016) A novel method to prepare a flame-retardant polyvinyl alcohol fiber with modified acrylonitrile coatings. RSC Advances 6:37, pages 31059-31068.
Crossref
Yong Qiang Kang, Yan Gong Yang, Li Jing Li, Zhao Jia & Ai Rong Ma. (2015) Structure and Properties of Hydrolyzed Cyclization-Crosslinking Flame-Retardant Polyacrylonitrile Fiber. Advanced Materials Research 1120-1121, pages 576-580.
Crossref
Wanli Zhou, Xiang Yan, Pengqing Liu, Mengjin Jiang & Jianjun Xu. (2015) Flame retardant modification of acrylic fiber with hydrazine hydrate and sodium ions. Journal of Applied Polymer Science 132:22, pages n/a-n/a.
Crossref
Jun-ting Zou, Yu-song Wang, Wen-min Pang, Lei Shi & Fei Lu. (2013) Formation and Characteristics of Acrylonitrile/Urea Inclusion Compound. Chinese Journal of Chemical Physics 26:2, pages 198-202.
Crossref
Jun-Ting Zou, Yu-Song Wang, Wen-Min Pang, Lei Shi & Fei Lu. (2013) Radiation-Induced Inclusion Polymerization of Acrylonitrile in Urea Canals: Toward Synthesis of Completely Isotactic Polyacrylonitrile with Controlled Molecular Weight. Macromolecules 46:5, pages 1765-1771.
Crossref
Brian Edwards, Ahmed El-Shafei, Peter Hauser & Priya Malshe. (2012) Towards flame retardant cotton fabrics by atmospheric pressure plasma-induced graft polymerization: Synthesis and application of novel phosphoramidate monomers. Surface and Coatings Technology 209, pages 73-79.
Crossref
Yuanlin Ren, Bowen Cheng, Aibing Jiang, Youcai Lu & Ling Xu. (2009) Thermal degradation kinetics of poly( O,O ‐diethyl‐ O ‐allylthiophosphate‐ co ‐acrylonitrile) in nitrogen . Journal of Applied Polymer Science 115:6, pages 3705-3709.
Crossref
Yuanlin Ren, Bowen Cheng, Lin Xu, Aibing Jiang & Youcai Lu. (2009) Fire‐retardant copolymer of acrylonitrile with O,O ‐diethyl‐ O ‐allyl thiophosphate . Journal of Applied Polymer Science 115:3, pages 1489-1494.
Crossref
Stefano Zanini, Claudia Riccardi, Marco Orlandi, Claudia Colombo & Fabrizio Croccolo. (2008) Plasma-induced graft-polymerisation of ethylene glycol methacrylate phosphate on polyethylene films. Polymer Degradation and Stability 93:6, pages 1158-1163.
Crossref
M.J. Tsafack & J. Levalois-Grützmacher. (2006) Flame retardancy of cotton textiles by plasma-induced graft-polymerization (PIGP). Surface and Coatings Technology 201:6, pages 2599-2610.
Crossref
Daisuke Sawai, Yuya Fujii & Tetsuo Kanamoto. (2006) Development of oriented morphology and tensile properties upon superdawing of solution-spun fibers of ultra-high molecular weight poly(acrylonitrile). Polymer 47:12, pages 4445-4453.
Crossref
M.J. Tsafack & J. Levalois-Grützmacher. (2006) Plasma-induced graft-polymerization of flame retardant monomers onto PAN fabrics. Surface and Coatings Technology 200:11, pages 3503-3510.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.