复合材料科学与工程 ›› 2019, Vol. 0 ›› Issue (11): 58-63.

• 应用研究 • 上一篇    下一篇

平纹织物混杂纤维复合材料低速冲击性能试验研究

苏波1, 张抟1, 于国军1, 葛晶2   

  1. 1.江苏大学土木工程与力学学院,镇江 212013;
    2.江苏宏远科技工程有限公司,常州 213175
  • 收稿日期:2019-01-02 出版日期:2019-11-28 发布日期:2019-11-28
  • 作者简介:苏波(1977-),男,博士,主要从事结构工程、绿色建筑方面的研究,subo@ujs.edu.cn。
  • 基金资助:
    “十二五”国家科技支撑计划项目(2015BAL02B02);江苏大学青年扶持基金(5621480001);基于高性能纤维复合材料的智能化桥梁防撞系统(CE20180015)

EXPERIMENTAL STUDY ON LOW SPEED IMPACT PROPERTIES OF PLAIN FABRIC HYBRID FIBER-REINFORCED PLASTICS

SU bo1, ZHANG tuan1, YU Guo-jun1, GE jing2   

  1. 1.Faculty of Civil Engineering and Mechanics, Jiangsu University, Zhenjiang 212013, China;
    2.Jiangsu Hongyuan Science and Technology Engineering Limited Company, Changzhou 213175, China
  • Received:2019-01-02 Online:2019-11-28 Published:2019-11-28

摘要: 使用玻璃纤维、碳纤维和芳纶纤维3种平纹纤维织物和乙烯基酯树脂,通过真空导入工艺制备了4种不同混杂组合的平纹织物纤维增强层合板,并对其进行了摆锤冲击试验;通过有限元模拟软件Abaqus对试验过程进行仿真建模,并与试验结果相比较。结果表明:低速冲击荷载下,纯玻璃纤维试样所受冲击力最大,吸能效果最差;碳纤维/芳纶纤维加入混杂后,冲击力、吸能效果均得到提升。其中:G2/A4/G2试样缓冲效果最好,冲击力减少54.4%;C2/G4/C2试样吸能效果最好,吸能提高了34.1%。Abaqus模拟结果与试验结果较为接近,可较好地反映复合材料的损伤过程。

关键词: HFRP, 摆锤冲击试验, 有限元仿真, 冲击力, 吸能

Abstract: In this paper, four kinds of plain weave fibre reinforced laminates with different hybrid modes are prepared by vacuum induction process with glass fibre, carbon fibre, aramid fibre and vinyl ester resin. A pendulum impact experiment is carried out and compared with the simulation results by finite element simulation software Abaqus. The results show that pure glass fiber specimens suffer the greatest impact force and have the worst energy absorption effect under low-speed impact load. When carbon fiber/aramid fiber is mixed, the impact force and energy absorption effect are improved. Among them, G2/A4/G2 sample has the best cushioning effect, and the impact force is reduced by 54.4%. C2/G4/C2 sample has the best energy absorption effect, and the energy absorption is increased by 34.1%. Abaqus simulation results are close to the experimental results, which can better reflect the damage process of composite materials.

Key words: Hybrid Fiber-Reinforced Plastics, pendulum impact experiment, finite element simulation, impact force, energy absorption

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