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Improving the mechanical properties of glass-fibre-reinforced polyester composites by modification of fibre surface

机译:通过改性纤维表面来改善玻璃纤维增​​强聚酯复合材料的机械性能

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摘要

Polyalkenyl-poly-maleic-anhydride-ester/amide type new experimental additives have been developed and used to achieve the better properties of glass-fibre-reinforced polyester composites. Two different commercial reinforcements have been investigated: a chopped glass fibre and a glass woven [0/90°] fabric materials. Based on their chemical structures, both were E-type. The surfaces of reinforcements have been treated with the dissolved form of polyalkenyl-poly-maleic-anhydride-ester, polyalkenyl-poly-maleic-anhydride-amide and polyalkenyl-poly-maleic-anhydride-ester-amide type experimental coupling additives then they have been used in fibre-reinforced thermoset. The coupling additives have had differences not only in their chemical structure and physical properties, but also in the fibre-matrix interaction that can also be affected by them. That is the reason why additives have resulted in numerous differences in the mechanical properties of the reinforced specimens. The most favourable effects have been found in the case when the glass-fibre surface was modified by polyalkenyl-poly-maleic-anhy-dride-ester-amide type additives. Moreover, results have referred to more favourable effects in case of chopped glass-fibre mat than in glass woven fabric composites. Tensile properties could be improved by 38.9% with that additive and flexure properties with 21.9% in those laminates. Tensile and flexure properties of glass woven [0/90°] fabric reinforced composites could be improved by 18.0%, and 40.1% comparing to the untreated glass fibres containing polyester composites with the same reinforcement. The polyalkenyl-poly-maleic-anhydride-ester type surface modifying additive has deteriorated the tensile and flexural properties of the laminates, but the dynamic properties have been more favourable than those of specimens with untreated glass fibres. Fibre-matrix interaction responsible for increased or decreased mechanical properties has been studied on SEM micrographs of the fractured face of composites. It has been found that the unfavourable results had been caused by the fibre slipping out the polyester matrix. Nevertheless, it has been supported by visual observation that the polyalkenyl-poly-maleic-anhydride-ester-amide additive managed to improve the adhesion between the fibres and the matrix.
机译:聚烯基-聚马来酸酐-酯/酰胺类新型实验性添加剂已得到开发,并用于获得玻璃纤维增​​强聚酯复合材料的更好性能。已经研究了两种不同的商业增强材料:短切玻璃纤维和玻璃编织[0/90°]织物材料。基于它们的化学结构,两者均为E型。用聚烯基-聚-马来酸酐-酰胺,聚烯基-聚-马来酸酐-酰胺和聚烯基-聚-马来酸酐-酯-酰胺类型的实验偶联助剂的溶解形式处理增强物表面用于纤维增强的热固性塑料。偶联添加剂不仅在化学结构和物理性质上存在差异,而且在纤维-基体相互作用方面也可能受到它们的影响。这就是为什么添加剂会导致增强样品的机械性能出现许多差异的原因。在用聚烯基-聚-马来酸-酐-酯-酰胺类添加剂对玻璃纤维表面进行改性的情况下,发现了最有利的效果。此外,在短切玻璃纤维毡的情况下,结果比在玻璃机织织物复合材料中具有更好的效果。在这些层压制品中,该添加剂的拉伸性能可提高38.9%,而挠曲性能可提高21.9%。与未经处理的含有相同增强聚酯复合材料的玻璃纤维相比,玻璃编织[0/90°]织物增强复合材料的拉伸和弯曲性能可提高18.0%和40.1%。聚烯基-聚马来酸酐酯型表面改性添加剂使层压材料的拉伸和挠曲性能变差,但其动态性能比未处理玻璃纤维的样品更好。在复合材料断裂面的SEM显微照片上已研究了导致机械性能提高或降低的纤维-基体相互作用。已经发现不利的结果是由于纤维滑出聚酯基体引起的。然而,通过视觉观察已经证明,聚烯基-聚马来酸酐-酯-酰胺添加剂设法改善了纤维与基质之间的粘合性。

著录项

  • 来源
    《Materials & design》 |2010年第1期|185-193|共9页
  • 作者单位

    University of Pannonia, Faculty of Engineering, Institute of Chemical Engineering and Process Engineering, Department of Hydrocarbon and Coal Processing, H-8200, Veszprem. Egyetem u. 10. Hungary;

    University of Pannonia, Faculty of Engineering, Institute of Chemical Engineering and Process Engineering, Department of Hydrocarbon and Coal Processing, H-8200, Veszprem. Egyetem u. 10. Hungary;

    University of Pannonia, Faculty of Engineering, Institute of Chemical Engineering and Process Engineering, Department of Hydrocarbon and Coal Processing, H-8200, Veszprem. Egyetem u. 10. Hungary;

    BalatonPlast Ltd., H-8227 Felsoeoers. Patoefi u. 26, Hungary;

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

    thermosetting resin; glass fibres; laminates; tensile strength; fibre-polyester interaction; adhesion;

    机译:热固性树脂;玻璃纤维层压板抗拉强度;纤维-聚酯相互作用附着力;

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