Comparison of bismuth trioxide and antimony trioxide as synergists with decabromodiphenyl ether in flame retardancy of high-impact polystyrene

Author:

Felix Taís1,Pinto Orlando P1,Peres Augusto2,Costa João M2,Sayer Claudia1,Morgan Alexander B3,Araújo Pedro HH1

Affiliation:

1. Departamento de Engenharia Química e Engenharia de Alimentos–EQA/CTC, Universidade Federal de Santa Catarina, Florianópolis, Santa Catarina, Brazil

2. Centro de Pesquisas Leopoldo Américo Miguez de Mello/PETROBRÁS, Rio de Janeiro, Rio de Janeiro, Brazil

3. University of Dayton Research Institute, Advanced Polymers Group, Multiscale Composites and Polymers Division Dayton, OH, USA

Abstract

Flame-retardant additives used in plastics are based on halogen, phosphorus, inorganic compounds, and minerals. In this study, the use of bismuth trioxide as synergistic agent with brominated flame retardant is investigated and compared to formulations with antimony trioxide. Decabromodiphenyl ether and metal trioxide were incorporated in a polymer matrix via single-screw extrusion. The samples were classified with the UL 94 vertical burning protocol and studied with thermogravimetric analysis. The general combustion and heat release behaviors were studied via cone calorimeter. Results showed that 4% (wt) Bi2O3 displayed a synergistic effect with 12% (wt) of the halogen compound to achieve V-0.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference10 articles.

1. Molecular basis of flame inhibition

2. Cullis CF, Hirschler MM. The combustion of organic polymers. Oxford: Clarendon Press, 1982, pp. 212.

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