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Preparation of expandable graphite using a hydrothermal method and flame-retardant properties of its halogen-free flame-retardant HDPE composites

机译:水热法制备可膨胀石墨及其无卤阻燃HDPE复合材料的阻燃性能

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This article reports a new way to prepare expandable graphite using a hydrothermal method. Natural flake graphite was added to a concentrated sulfuric acid and nitric acid mixture in a flask with mechanical stirring at room temperature. This was then placed in a Teflon-lined autoclave. The autoclave was sealed and quickly heated to the desired temperature, where it was maintained for 1 h before it was cooled to room temperature. The results showed that the expanded volume of EG obtained using the hydrothermal method was higher than those of EGs obtained through conventional liquid phase synthesis and ultrasound irradiation for the same acid concentrations in the mixture. X-ray diffraction patterns were used to analyze the structure and confirm that expandable graphite had indeed been prepared. A scanning electron microscope was utilized to observe the morphologies of the expandable graphite and expanded graphite. A cone calorimeter was used to investigate the flame-retardant properties of the halogen-free composites. The data show that the peak HRR values of the composites containing 30 wt% EG are dramatically lower than those of the pure HDPE resin and composites containing 30 wt% NG. The residual mass increases to 8.0 wt%, 30.1% and 37.6%, respectively, for pure HDPE, 30 wt% NG composites and 30 wt% EG composites. These results show that the HDPE/EG composite possesses excellent flame-retardant and thermal properties.
机译:本文报道了一种使用水热法制备可膨胀石墨的新方法。在室温下机械搅拌下,将天然片状石墨添加到烧瓶中的浓硫酸和硝酸混合物中。然后将其置于衬有特氟龙的高压釜中。将高压釜密封并迅速加热至所需温度,在将其冷却至室温之前,将其保持1小时。结果表明,对于相同的酸浓度,使用水热法获得的EG的膨胀体积高于通过常规液相合成和超声辐射获得的EG的膨胀体积。使用X射线衍射图分析结构并确认确实已制备了可膨胀石墨。利用扫描电子显微镜观察可膨胀石墨和膨胀石墨的形态。锥形量热仪用于研究无卤复合材料的阻燃性能。数据显示,包含30 wt%EG的复合材料的HRR峰值显着低于纯HDPE树脂和包含30 wt%NG的复合材料的HRR峰值。对于纯HDPE,30 wt%NG复合材料和30 wt%EG复合材料,残余质量分别增加到8.0 wt%,30.1%和37.6%。这些结果表明,HDPE / EG复合材料具有优异的阻燃和热性能。

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