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Flame-retardant Coating by Alternate Assembly of Poly(vinylphosphonic acid) and Polyethylenimine for Ramie Fabrics

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【作者】 Li-li WangTao ZhangHong-qiang Yan彭懋Zheng-ping FangYan LiWang Hao

【Author】 Li-li Wang;Tao Zhang;Hong-qiang Yan;Mao Peng;Zheng-ping Fang;Yan Li;Wang Hao;MOE Key Laboratory of Macromolecular Synthesis and Functionalization,Institute of Polymer Composites,Zhejiang University;Laboratory of Polymer Materials and Engineering,Ningbo Institute of Technology,Zhejiang University;School of Aerospace Engineering and Applied Mechanics,Tongji University;Centre of Excellence in Engineered Fibre Composites,University of Southern Queensland;

【机构】 MOE Key Laboratory of Macromolecular Synthesis and Functionalization,Institute of Polymer Composites,Zhejiang UniversityLaboratory of Polymer Materials and Engineering,Ningbo Institute of Technology,Zhejiang UniversitySchool of Aerospace Engineering and Applied Mechanics,Tongji UniversityCentre of Excellence in Engineered Fibre Composites,University of Southern Queensland

【摘要】 A novel intumescent flame retardant coating,consisting of poly(vinylphosphonic acid)(PVPA) as the acid source and branched polyethylenimine(BPEI) as the blowing agent,was constructed on the surface of ramie fabrics by alternate assembly to remarkably improve the flame retardancy of ramie.The PVPA/BPEI coating on the surface of individual fibers of ramie fabric pyrolyzes to form protective char layer upon heating/burning and improves the flame retardancy of ramie.Thermogravimetric analysis reveals that the PVPA/BPEI-coated ramie fabrics left as much as 25.8 wt% residue at 600 °C,while the control(uncoated) fabric left less than 1.4 wt% residue.Vertical flame test shows that all PVPA/BPEI-coated fabrics have shorter after-flame time,and the residues well preserved the original weave structure and fiber morphology,whereas,the uncoated fabric left only ashes.Microscale combustion calorimetry shows that the PVPA/BPEI coatings greatly reduce the total heat release by as much as 66% and the heat release capacity by 76%,relative to those of the uncoated fabric.

【Abstract】 A novel intumescent flame retardant coating,consisting of poly(vinylphosphonic acid)(PVPA) as the acid source and branched polyethylenimine(BPEI) as the blowing agent,was constructed on the surface of ramie fabrics by alternate assembly to remarkably improve the flame retardancy of ramie.The PVPA/BPEI coating on the surface of individual fibers of ramie fabric pyrolyzes to form protective char layer upon heating/burning and improves the flame retardancy of ramie.Thermogravimetric analysis reveals that the PVPA/BPEI-coated ramie fabrics left as much as 25.8 wt% residue at 600 °C,while the control(uncoated) fabric left less than 1.4 wt% residue.Vertical flame test shows that all PVPA/BPEI-coated fabrics have shorter after-flame time,and the residues well preserved the original weave structure and fiber morphology,whereas,the uncoated fabric left only ashes.Microscale combustion calorimetry shows that the PVPA/BPEI coatings greatly reduce the total heat release by as much as 66% and the heat release capacity by 76%,relative to those of the uncoated fabric.

【基金】 financially supported by the National Basic Research Program of China(Nos.2010CB631105 and 2011CB612307)
  • 【文献出处】 Chinese Journal of Polymer Science ,高分子科学(英文版) , 编辑部邮箱 ,2014年03期
  • 【分类号】TS106
  • 【被引频次】3
  • 【下载频次】105
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