会议论文详细信息
17th World Textile Conference AUTEX 2017 - Shaping the Future of Textiles
Intumescent formulations based on lignin and phosphinates for the bio-based textiles
Mandlekar, N.^1,2,3,4 ; Cayla, A.^1,2 ; Rault, F.^1,2 ; Giraud, S.^1,2 ; Salaün, F.^1,2 ; Malucelli, G.^3 ; Guan, J.^4
Université Lille Nord de France, Lille
F-59000, France^1
ENSAIT-GEMTEX, Roubaix
F-59100, France^2
Politecnico di Torino, Dept. of Applied Science and Technology, Alessandria, Italy^3
College of Textile and Clothing Engineering, Soochow University, Suzhou, China^4
关键词: Combustion behaviours;    Combustion pro-cess;    Flame retardant properties;    Flame-retardant additives;    Intumescent systems;    Melt spinning process;    Phosphorus flame retardants;    Thermo-gravimetric;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/254/5/052004/pdf
DOI  :  10.1088/1757-899X/254/5/052004
来源: IOP
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【 摘 要 】

This study investigates new intumescent formulations based on lignin and phosphinates to improve the flame retardant properties of Polyamide 11, while preserving the bio-based characteristics of this latter. Lignin has the advantage of being a bio-based compound and can be effectively used as carbon source for the design of intumescent systems in combination with other flame retardant additives. Metal phosphinates belong to a novel class of phosphorus flame retardants. Despite their increasing use, there is lack of scientific understanding as far as their fire retardancy mechanism is considered, especially in char forming polymeric materials. In this context, Polyamide 11 was melt blended with lignin and metal phosphinates. The possibility of melt spinning the prepared blends were assessed through melt flow index (MFI) tests; thermogravimetric (TG) analyses and cone calorimetry tests were exploited for investigating the thermal stability and the combustion behaviour of the obtained products, respectively. MFI results indicate that some formulations are suitable for melt spinning processes to generate flame retardant multifilament. Furthermore, the combination of lignin and phosphinates provides charring properties to polyamide 11. Finally, cone calorimetry data confirmed that the designed intumescent formulations could remarkably reduce PHRR through formation of protective char layer, hence slowing down the combustion process.

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