Creep properties of biofiller- and fire retardant-filled polypropylene composites

Koki Matsumoto, K. Takemura, H. Takagi, Tatsuya Tanaka, M. Sasada
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Abstract

Biofillers, lignocellulosic and cellulosic fillers have the potential to significantly improve the mechanical properties of polypropylene (PP) and reduce its carbon footprint by reducing the amount of petroleum-derived polymer used. In addition, the realization of fire retardancy of biofiller-filled PP composites is an important key topic to enhance their applications; ammonium polyphosphate (APP) is an effective fire retardant (FR). In this study, to ensure the reliability of biofillerand FR-filled PP composites, the creep properties were investigated in terms of the filler and FR content and filler type. In particular, the influence of APP addition into polymer composites on the creep properties has not been studied thoroughly. Two biofillers, wood flour (WF) and cellulose filler (CeF), with similar particle sizes and aspect ratios were used in this study. The creep test was conducted at a temperature of 80 °C in an accelerated test. Furthermore, the creep strain curves were modelled by the Burgers model of the viscoelastic constitutive equation to analyse the creep deformation behaviour. The incorporation of biofillers into the PP matrix significantly decreased the creep strain and improved the creep-rupture life with increasing filler content. Moreover, the creep-rupture life was longer for WF-filled PP composites than for CeF-filled PP composites. On the other hand, we found that incorporation of FR increased the creep rate at steady state and decreased the creep-rupture life of biofiller-filled PP composites, although the instantaneous creep strain decreased.
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生物填料和阻燃剂填充聚丙烯复合材料的蠕变性能
生物填料、木质纤维素和纤维素填料有潜力显著改善聚丙烯(PP)的机械性能,并通过减少石油衍生聚合物的使用量来减少其碳足迹。此外,实现生物填料填充PP复合材料的阻燃性是提高其应用的一个重要关键课题;聚磷酸铵(APP)是一种有效的阻燃剂。为了保证生物填料和FR填充PP复合材料的可靠性,本研究从填料、FR含量和填料类型三个方面研究了其蠕变性能。特别是在聚合物复合材料中添加APP对其蠕变性能的影响还没有得到深入的研究。采用两种粒径和长径比相近的生物填料:木粉(WF)和纤维素填料(CeF)。蠕变试验采用加速试验,温度为80℃。采用粘弹性本构方程的Burgers模型对蠕变应变曲线进行建模,分析了蠕变变形行为。随着填料含量的增加,生物填料在PP基体中的掺入显著降低了蠕变应变,提高了蠕变断裂寿命。此外,wf填充PP复合材料的蠕变断裂寿命比cef填充PP复合材料长。另一方面,我们发现FR的加入增加了生物填料填充PP复合材料的稳态蠕变速率,降低了蠕变断裂寿命,但瞬时蠕变应变降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
24
审稿时长
33 weeks
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