首页> 美国卫生研究院文献>Materials >The Influence of the Hybridization Process on the Mechanical and Thermal Properties of Polyoxymethylene (POM) Composites with the Use of a Novel Sustainable Reinforcing System Based on Biocarbon and Basalt Fiber (BC/BF)
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The Influence of the Hybridization Process on the Mechanical and Thermal Properties of Polyoxymethylene (POM) Composites with the Use of a Novel Sustainable Reinforcing System Based on Biocarbon and Basalt Fiber (BC/BF)

机译:杂交方法对基于生物羰和玄武岩纤维的新型可持续增强系统的聚甲醛(POM)复合材料的机械和热性能的影响(BC / BF)

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摘要

The presented work focuses on the assessment of the material performance of polyoxymethylene (POM)-based composites reinforced with the use of a biocarbon/basalt fiber system (BC/BF). The use of BC particles was aimed at eliminating mineral fillers (chalk, talc) by using fully biobased material, while basalt fibers can be considered an alternative to glass fibers (GF). All materials were prepared with the same 20% filler content, the differences concerned the (BC/BF) % ratio. Hybrid samples with (25/75), (50/50), and (75/25) ratios were prepared. Additionally, reference samples were also prepared (POM BC20% and POM BF20%.). Samples prepared by the injection molding technique were subjected to a detailed analysis of mechanical properties (static tensile and Charpy impact tests), thermomechanical characteristics (dynamic mechanical thermal analysis—DMTA, heat deflection temperature - HDT), and thermal and rheological properties (DSC, rotational rheometer tests). In order to assess fiber distribution within the material structure, the samples were scanned by a microtomography method (μCT). The addition of even a significant amount of BC particles did not cause excessive material brittleness, while the elongation and impact strength of all hybrid samples were very similar to the reference POM BF20% sample. The tensile modulus and strength values appear to be strictly dependent on the increasing BF fiber content. Thermomechanical analysis (DMTA, HDT) showed very similar heat resistance for all hybrid samples; the results did not differ from the values for the POM BF20 sample.
机译:所提出的工作侧重于评估通过使用生物碳/玄武岩纤维系统(BC / BF)加固的基于聚甲醛(POM)基复合材料的材料性能。使用BC颗粒的使用旨在通过使用完全生物化材料来消除矿物填料(粉笔,滑石),而玄武岩纤维可以被认为是玻璃纤维(GF)的替代方案。所有材料用相同的20%填料含量制备,涉及(BC / BF)%的差异。制备具有(25/75),(50/50)和(75/25)比率的杂种样品。另外,还制备了参考样品(POM BC20%和POM BF20%。)。通过注塑技术制备的样品进行机械性能(静态拉伸和夏比冲击试验),热机械特性(动态机械热分析-DMTA,热偏转温度 - HDT)和热和流变性能(DSC,旋转流变仪测试)。为了评估材料结构内的纤维分布,通过微微图法(μCT)扫描样品。甚至增加了大量的BC颗粒没有引起过多的材料脆性,而所有杂种样品的伸长和冲击强度与参考POM BF20%样品非常相似。拉伸模量和强度值似乎严格依赖于增加的BF纤维含量。热机械分析(DMTA,HDT)显示出所有杂交样品的耐热性非常相似;结果与POM BF20样品的值没有区别。

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