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Preparation of low initial expansion temperature expandable graphite and its flame retardancy for LLDPE

机译:低初始膨胀温度可膨胀石墨的制备及其对LLDPE的阻燃性

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To get expandable graphite (EG) flame retardant for Liner Low-Density Polyethylene (LLDPE) with low initial expansion temperature and high dilatability, the effects of various factors on dilatability were investigated including the dosages of oxidant KMnO4, intercalating reagent H2SO4, assistant intercalating reagent acetic acid (HAc) and reaction temperature. Feasible conditions were obtained according to the results of L9 (34) experiments and single factor experiments. EG with an initial expansion temperature of 160°C and expansion volume of 460 mL g?1 could be prepared according to the mass ratio of material graphite C: KMnO4: 100% H2SO4: HAc = 1.0: 0.4: 5.0: 1.0 (H2SO4 should be diluted to the mass concentration of 75% before the intercalation reaction); the reaction time was 1.0 hour at 25°C. It was found that reaction temperature and H2SO4 dosage were the most important influence factors for dilatability. The limiting oxygen index could be improved to 28.1% by adding 30% of the prepared EG to LLDPE, and the synergistic anti-flame capability of 20% EG with 10% Ammonium polyphosphate (APP) (I) can reach to 33.9%. According to thermal gravimetric and differential thermal analysis results, 70% LLDPE /10% APP (I) /20% EG synergistic anti-flame system shows higher residual carbon and thermal stability.
机译:为了获得低初始膨胀温度和高膨胀性的衬里低密度聚乙烯(LLDPE)用可膨胀石墨(EG)阻燃剂,研究了各种因素对膨胀性的影响,包括氧化剂KMnO4的用量,嵌入剂H2SO4,辅助嵌入剂乙酸(HAc)和反应温度。根据L9(34)实验和单因素实验的结果获得了可行的条件。可以根据材料石墨C:KMnO4:100%H2SO4:HAc = 1.0:0.4:5.0:1.0的质量比来制备初始膨胀温度为160°C,膨胀体积为460 mL g?1的EG。在插层反应之前稀释至质量浓度为75%);在25℃下反应时间为1.0小时。结果表明,反应温度和H2SO4用量是影响膨胀性的最重要因素。通过向LLDPE中添加30%的制得的EG,极限氧指数可以提高到28.1%,而20%EG与10%的聚磷酸铵(APP)(I)的协同抗燃能力可以达到33.9%。根据热重和差热分析结果,70%的LLDPE / 10%的APP(I)/ 20%的EG协同阻燃系统显示出更高的残留碳和热稳定性。

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