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Flame Retardant Polypropylene Composites with Low Densities

机译:低密度阻燃聚丙烯复合材料

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摘要

Polypropylene (PP) is currently widely used in areas requiring lightweight materials because of its low density. Due to the intrinsic flammability, the application of PP is restricted in many conditions. Aluminum trihydroxide (ATH) is reported as a practical flame retardant for PP, but the addition of ATH often diminishes the lightweight advantage of PP. Therefore, in this work, glass bubbles (GB) and octacedylamine-modified zirconium phosphate (mZrP) are introduced into the PP/ATH composite in order to lower the material density and simultaneously maintain/enhance the flame retardancy. A series of PP composites have been prepared to explore the formulation which can endow the composite with balanced flame retardancy, good mechanical properties, and low density. The morphology, thermal stability, flame retardancy, and mechanical properties of the composites were characterized. The results indicated the addition of GB could reduce the density, but decreased the flame retardancy of PP composites at the same time. To overcome this defect, ATH and mZrP with synergetic effect of flame retardancy were added into the composite. The dosage of each additive was optimized for achieving a balance of flame retardancy, good mechanical properties, and density. With 47 wt % ATH, 10 wt % GB, and 3 wt % mZrP, the peak heat release rate (pHRR) and total smoke production (TSP) of the composite >PP-4 were reduced by 91% and 78%, respectively. At the same time, increased impact strength was achieved compared with neat PP and the composite with ATH only. Maintaining the flame retardancy and mechanical properties, the density of composite >PP-4 (1.27 g·cm−3) is lower than that with ATH only (>PP-1, 1.46 g·cm−3). Through this research, we hope to provide an efficient approach to designing flame retardant polypropylene (PP) composites with low density.
机译:聚丙烯(PP)由于其低密度,目前广泛用于需要轻质材料的领域。由于其固有的易燃性,在许多情况下都限制了PP的应用。据报道三氢氧化铝(ATH)是PP的实用阻燃剂,但是ATH的添加通常会削弱PP的轻质优势。因此,在这项工作中,为了降低材料密度并同时保持/增强了阻燃性,将玻璃气泡(GB)和八烷基胺改性的磷酸锆(mZrP)引入到PP / ATH复合材料中。已经准备了一系列的PP复合材料以探索能够赋予复合材料均衡的阻燃性,良好的机械性能和低密度的配方。对复合材料的形貌,热稳定性,阻燃性和机械性能进行了表征。结果表明,添加GB可以降低密度,但同时降低了PP复合材料的阻燃性。为了克服该缺陷,将具有阻燃协同作用的ATH和mZrP加入到复合物中。优化了每种添加剂的用量,以实现阻燃性,良好的机械性能和密度之间的平衡。使用47 wt%的ATH,10 wt%的GB和3 wt%的mZrP,复合材料> PP-4 的峰值放热率(pHRR)和总烟雾产生(TSP)降低了91%和78%。同时,与纯PP和仅含ATH的复合材料相比,获得了更高的冲击强度。维持阻燃性和机械性能,复合材料> PP-4 的密度(1.27 g·cm -3 )低于仅使用ATH的复合材料(> PP- 1 ,1.46 g·cm -3 )。通过这项研究,我们希望提供一种设计低密度阻燃聚丙烯(PP)复合材料的有效方法。

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