...
首页> 外文期刊>Fibers and Polymers >GF/CF Hybrid Laminates Made Through Intra-tow Hybridization for Automobile Applications
【24h】

GF/CF Hybrid Laminates Made Through Intra-tow Hybridization for Automobile Applications

机译:通过拖曳杂交制得的GF / CF混合层压板,用于汽车应用

获取原文
获取原文并翻译 | 示例
           

摘要

Among the drawbacks that the composites entirely reinforced with carbon fibers have, low strain-to-failure and catastrophic failure behaviour are the most undesirable ones. Nonetheless, in many industries for example in automobile industries, the necessity of light-weight structures with a balanced cost is unquestionable. Hybridization of glass fibers with carbon fibers could be an effective way to improve the strain-to-failure of composites entirely reinforced carbon fibers and therefore, a balance between the stiffness and toughness could be improved without excessive cost. In this paper, for automobile applications it is proposed to selectively incorporate the glass and carbon fibers through intra-layer hybridization technique. It is also proposed to mix the fibers as intimately as possible. This paper investigates the influences of hybrid ratio and laminate geometry on tensile mechanical properties both computationally and experimentally- and they have been found to have significant influences on tensile properties and hence should be treated as most crucial parameters. The brittle and catastrophic failure of plain carbon composite was avoided through intra-tow hybridization with higher dispersion. Damage mechanism has been explained and SEM observations were carried out for morphology analysis. Vacuum assisted resin infusion process is also recommended to attain high quality of impregnation.
机译:最不希望的是在完全用碳纤维增强的复合材料中所具有的缺点,即低的破坏应变和灾难性的破坏行为。然而,在许多工业中,例如在汽车工业中,毫无疑问地需要具有平衡成本的轻质结构。玻璃纤维与碳纤维的杂交可能是一种改善完全增强碳纤维复合材料的断裂应变的有效方法,因此,可以在不增加成本的情况下提高刚度和韧性之间的平衡。在本文中,对于汽车应用,提出了通过层内杂交技术选择性地掺入玻璃纤维和碳纤维。还建议尽可能紧密地混合纤维。本文通过计算和实验方法研究了混合比和层压材料几何形状对拉伸机械性能的影响,发现它们对拉伸性能有重大影响,因此应将其视为最关键的参数。通过高分散度的丝束内杂交避免了普通碳复合材料的脆性和灾难性破坏。解释了损伤机理并进行了SEM观察以进行形态分析。还建议使用真空辅助树脂灌注工艺以实现高质量的浸渍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号