Title :
Effect of nano structure anhydrous agnesium carbonateon fire-retardant performance of PLA/BF composites
Author :
Li, Xingong ; Wu, Yiqiang ; Zheng, Xia
Author_Institution :
Coll. of Mater. Sci. & Eng., Central South Univ. of Forestry & Technol., Changsha, China
Abstract :
PLA/BF composites,which are extremely flammable, must be carried out fire-retardant processing. However, traditional organic flame retardants release certain amount of pollutant to the environment, and inorganic flame retardants require more addition,which influenced the mechanical properties of composites. Therefore, nano inorganic flame retardants, which have some characteristics of small size, uniform shape and high specific surface area, can bring good flame-retardant effect with relatively few addition. Meanwhile, it can enhance the interaction of composites interface, and disperse more evenly in polylactic acid (PLA)matrix. Furthermore, it has light influence on the physical mechanical properties. In this study, nano structure anhydrous magnesium carbonate is used as flame retardant, Cone Calorimeter and Dynamic Thermal Mechanical Analyzer are adopted for studying the fire-retardant properties and the dynamic thermodynamic parameters of the PLA/BF composites, respectively. Results show that nano structure anhydrous magnesium carbonate flame retardant have good fire-retardant performance for the PLA/BF composites, considering practicality and economy, its ideal addition is 5%.
Keywords :
calcium compounds; calorimetry; ecocomposites; elastic moduli; fibre reinforced composites; flame retardants; nanocomposites; nanofabrication; polymers; thermodynamic properties; cone calorimeter; dynamic thermal mechanical analyzer; dynamic thermodynamic parameters; loss modulus; nanoinorganic flame retardants; nanostructure anhydrous magnesium carbonate; physical mechanical properties; polylactic acid matrix; storage modulus; Programmable logic arrays;
Conference_Titel :
Nanoelectronics Conference (INEC), 2010 3rd International
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-3543-2
Electronic_ISBN :
978-1-4244-3544-9
DOI :
10.1109/INEC.2010.5425134