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Development of hybrid composites reinforced with biocarbon/carbon fiber system. The comparative study for PC, ABS and PC/ABS based materials

机译:生物碳/碳纤维系统加固杂化复合材料的研制。 PC,ABS和PC / ABS材料的比较研究

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摘要

A PC/ABS blend was used to prepare hybrid composites reinforced with the use of a biocarbon/carbon fiber (BC/ CF) system. The purpose of using blends of this type was to reduce the degradation of PC during the blending processes, which turned out to be effective already at 40% ABS in the blend structure. TGA analysis and rheological measurements confirmed that the addition of ABS in the matrix structure allowed reduction of PC hy-drolytic degradation. The decrease in DTG peak value for the PC/20BC composite is even 50 °C, whereas for the ABS/20BC sample the peak values were the same as reference pure ABS. Izod tests showed that the impact resistance for ABS/BC composites was more than twice as high as PC/BC materials, 37 J/m to 13 J/m respectively. For PC/ABS composites, the addition of ABS in the structure also served to improve impact resistance. The main purpose of the hybridized reinforcement application was the reduction of thermal expansion in the material and homogenization of the fibrous CF structures. For reference PC/20CF samples the difference in CLTE values is over 1000%, while for PC/20(BC-CF) hybrid composites it is reduced below 300%. Detailed analysis of the expansion characteristics, carried out by TMA methodology, showed significant improvement in the isotropy of hybrid materials, which was also confirmed by structural observations. The improvement of process stability as well as excellent thermomechanical parameters indicates that biocarbon can be an excellent additive for standard fibrous reinforcement, limiting the phenomenon of structure anisotropy.
机译:使用PC / ABS混合物来制备通过使用生物碳/碳纤维(BC / CF)系统加固的混合复合材料。使用这种类型的混合物的目的是在混合过程中降低PC的降解,该方法已经在混合结构中的40%ABS下有效。 TGA分析和流变测量证实,在基质结构中添加了ABS允许降低PC Hy-Drolytic降解。 PC / 20BC复合材料的DTG峰值的降低均匀50℃,而对于ABS / 20BC样品,峰值与参考纯ABS相同。 Izod测试表明,ABS / BC复合材料的抗冲击性分别的27J / M至13J / m的两倍多。对于PC / ABS复合材料,在结构中添加ABS也用于改善抗冲击性。杂交增强件应用的主要目的是降低材料中的热膨胀和纤维CF结构的均质化。对于参考PC / 20CF样本,CLTE值的差异超过1000%,而对于PC / 20(BC-CF)混合复合材料降低了300%。通过TMA方法进行的膨胀特性的详细分析,杂化材料的各向同性显示出显着改善,其也通过结构观察来证实。过程稳定性的提高以及优异的热机械参数表明生物碳是用于标准纤维增强的优异添加剂,限制了结构各向异性的现象。

著录项

  • 来源
    《Composites》 |2020年第1期|108319.1-108319.13|共13页
  • 作者单位

    Bioproduct Discovery and Development Centre Department of Plant Agriculture Crop Science Building University of Guelph Guelph Ontario N1G2W1 Canada Poznan University of Technology Faculty of Mechanical Engineering Institute of Materials Technology Polymer Processing Division Piotrowo 3 Street 61-138 Poznan Poland;

    Bioproduct Discovery and Development Centre Department of Plant Agriculture Crop Science Building University of Guelph Guelph Ontario N1G2W1 Canada School of Engineering Thombrough Building University of Guelph Guelph Ontario NIG 2W1 Canada;

    Bioproduct Discovery and Development Centre Department of Plant Agriculture Crop Science Building University of Guelph Guelph Ontario N1G2W1 Canada School of Engineering Thombrough Building University of Guelph Guelph Ontario NIG 2W1 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polycarbonate; Hybrid composites; Polymer blends; Thermomechanical properties; Thermal expansion;

    机译:聚碳酸酯;混合复合材料;聚合物共混物;热机械特性;热膨胀;

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