复合材料科学与工程 ›› 2014, Vol. 0 ›› Issue (12): 68-73.

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水浸泡对碳纤维拉挤杆的水吸收与剪切强度影响

郝信凯1, 2, 黄胜德3, 张红卫3, 咸贵军1, 2   

  1. 1.哈尔滨工业大学结构工程灾变与控制教育部重点实验室,哈尔滨 150090;
    2.哈尔滨工业大学土木工程学院,哈尔滨 150090;
    3.中国石化上海石化股份有限公司腈纶部,上海 200540
  • 收稿日期:2014-11-02 出版日期:2014-12-28 发布日期:2021-09-13
  • 作者简介:郝信凯(1990-),男,硕士研究生,主要从事纤维增强树脂基复合材料的研究。

EFFECTS OF WATER IMMERSION ON THE WATER UPTAKE AND SHEAR STRENGTH OF PULTRUDED CARBON FIBER REINFORCED EPOXY RODS

HAO Xin-kai1,2, HUANG Sheng-de3, ZHANG Hong-wei3, XIAN Gui-jun1,2   

  1. 1. Key Lab of Structural Dynamic Behavior and Control, Ministry of Education, Harbin Institute of Technology, Harbin 150090, China;
    2. School of Civil Engineering, Harbin Institute of Technology, Harbin 150090, China;
    3. Sinopec Shanghai Petrochemical Co., Ltd., Acrylic Fiber Division, Shanghai 200540, China
  • Received:2014-11-02 Online:2014-12-28 Published:2021-09-13

摘要: 本文研究了东丽T700与国产碳纤维增强环氧树脂基拉挤杆在20℃和60℃蒸馏水浸泡下的水吸收与剪切性能变化。结果表明,随着温度升高,水扩散速率提高,且沿纤维方向的水扩散系数高于垂直方向。浸泡7d后,碳纤维拉挤杆的剪切强度均发生明显下降,但随着浸泡时间延长,20℃水浸泡试样的剪切强度反而有所上升,而60℃水浸泡试样的剪切强度继续缓慢下降。比较而言,国产碳纤维增强拉挤杆的剪切强度相对较高,界面粘结强度大,但耐水性能相对较差,浸泡后期的强度下降更为明显。

关键词: 碳纤维环氧树脂基复合材料, 湿热老化, 水扩散速率, 剪切强度

Abstract: In the present article, pultruded carbon fiber reinforced epoxy rods were immersed in distilled water at 20℃ and 60℃, and the water uptake and the variation of the shear strength were investigated. As found, increasing in the immersion temperatures leads to the higher coefficient of water diffusion. The coefficient of the water diffusion along the fibers is higher than that transverse to the fibers. After seven days of immersion, the shear strength of the rods shows remarkable reduction. Further extension of the immersion time brings in a slight increase in the shear strength at 20℃, but a slow decrease at 60℃. Compared to the rods prepared with Toray-T300 carbon fibers, the rods with carbon fibers from one Chinese company possesses higher shear strength, but exhibits to be more susceptible to the water immersion.

Key words: carbon fiber reinforced polymer composites, hygrothermal ageing, coefficient of diffusion, shear strength

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