复合材料科学与工程 ›› 2020, Vol. 0 ›› Issue (8): 83-88.

• 应用研究 • 上一篇    下一篇

大型风力发电叶片碳/玻界面性能研究

罗莎莎, 荣光, 李小波*, 袁炜   

  1. 吉林重通成飞新材料股份公司,重庆402279
  • 收稿日期:2019-12-05 出版日期:2020-08-28 发布日期:2020-08-28
  • 通讯作者: 李小波(1986-),男,学士,中级工程师,主要从事复合材料检测和检测方法开发方面的研究,lixiaobo@cfwind.cn。
  • 作者简介:罗莎莎(1983-),女,硕士研究生,高级工程师,主要从事复合材料开发和应用方面的研究。
  • 基金资助:
    重点产业共性关键技术创新专项-大容量海上风电叶片产业化技术(cstc2015zdcy-ztzx70014)

STUDY ON INTERFACE PROPERTIES BETWEEN CARBON FIBER LAMINATE AND GLASS FIBER LAMINATE OF LARGE WIND TURBINE BLADES

LUO Sha-sha, RONG Guang, LI Xiao-bo*, YUAN Wei   

  1. Jilin Chongtong Chengfei New Material Co., Ltd., Chongqing 402279, China
  • Received:2019-12-05 Online:2020-08-28 Published:2020-08-28

摘要: 大型风电叶片碳纤与玻纤复合材料界面结合性能受测试方法、脱模布材质、脱模布克重的影响较大。相对于界面结合性能评价常用的层间剪切测试方法,T剥离测试方法能更好地反映出材料的界面结合性能及变化趋势。基于T剥离测试方法得到:采用尼龙脱模布的碳/玻界面结合性能优于采用聚酯脱模布的性能,采用大克重尼龙脱模布的性能相对最高。最后,通过碳/玻界面结合性能影响机理、界面失效模式、显微结构分析得到与T剥离测试结果一致的结论,为评价碳/玻界面结合性能选择合适的测试方法及脱模布类型提供依据。

关键词: 风电叶片, 碳/玻界面, 剥离强度, 脱模布, 复合材料

Abstract: This paper studies the interface performance of carbon fiber and glass fiber composite materials for large-scale wind turbine blades, which is greatly affected by the test method, the material of the peel ply, and the gram of the peel ply. Comparing with the interlaminar shear test which is commonly used in evaluating interfacial bonding performance, the T-peel test method can better reflect the interfacial bonding performance and change trend of the interfacial bonding performance. Based on the T peel test method, it was obtained that the carbon/glass interface bonding performance treated with nylon peel ply was better than that of polyester peel ply, and the large-gram nylon peel ply was the highest. Finally, according to the mechanism of carbon/glass interface bonding performance influence mechanism, interface failure mode, and microstructure analysis, the conclusions are consistent with the T test results, which provide a basis for evaluating the carbon/glass interface bonding performance and help us to select a suitable test method and peel ply.

Key words: wind turbine blade, carbon/glass interface, peel strength, peel ply, composites

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