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Synergistic effects of organo‐sepiolite and zinc borate on the fire retardancy of polypropylene
Authors:M He  W C Cao  L J Wang  C A Wilkie
Institution:1. College of Materials Science and Engineering, Guilin University of Technology, , Guilin, 541004 China;2. Key Laboratory of New Processing Technology for Nonferrous Metals and Materials, Ministry of Education, Guilin University of Technology, , Guilin, 541004 China;3. Ministry‐province jointly‐constructed cultivation base for state key laboratory of Processing for non‐ferrous metal and featured materials, Guilin University of Technology, , Guilin, China;4. Department of Chemistry and Fire Retardant Research Facility, Marquette University, , Milwaukee, WI, USA
Abstract:Polypropylene (PP)/sepiolite/zinc borate (BZn) composites were prepared by melt extrusion after pre‐modification of sepiolite with cetyltrimethylammonium bromide. The synergistic effects of organo‐sepiolite (OSEP) and BZn on the fire retardancy of PP were studied. X‐ray diffraction and transmission electron microscopy were used to characterize the morphology of the composite. Thermogravimetric analysis, cone calorimetric analysis, limiting oxygen index, and the UL‐94 protocol (Demaisheng technology Co. Ltd.,Shenzhen,China) were used to assess the thermal stability and fire retardancy of the composites. The fire retardancy of PP was greatly improved by introducing OSEP and BZn. The reduction in peak heat release rate for PP/BZn composites at 10% BZn loading is 62% compared with pristine PP, but increased to 78% for PP/10%BZn/10%OSEP composite. Other fire retardant parameters were also improved. The fire performance index of PP/10%BZn/10%OSEP composite was 0.045 sm2/kW compared with 0.014 sm2/kW of pristine PP. The average mass loss rate was 12.1 g/sec/m2 for the composite with both additives compared with 30.1 g/sec/m2 for pristine PP; the smoke production rate decreased by 37% from 0.117 m2/s of pristine PP to 0.074 m2/s of PP/OSEP/BZn. The char residue of composite increased from 0.6% in pristine PP to 12.19% in the composite. The limiting oxygen index increased from 17.1 in pristine PP to 20.8 in the composite: all the samples could obtain a UL‐94 horizontal burn rating. Copyright © 2013 John Wiley & Sons, Ltd.
Keywords:synergistic fire retardancy  sepiolite  zinc borate  polypropylene
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