复合材料科学与工程 ›› 2019, Vol. 0 ›› Issue (11): 119-122.

• 应用研究 • 上一篇    

大型风电分段叶片模具组装成型关键控制技术

李义全1,2, 武健丹1, 樊虎1,2, 刘晓彬1,2   

  1. 1.北京玻钢院复合材料有限公司,北京 102101;
    2.北京玻璃钢研究设计院有限公司,北京 102101
  • 收稿日期:2018-11-26 出版日期:2019-11-28 发布日期:2019-11-28
  • 作者简介:李义全(1976-),男,硕士,高级工程师,主要从事复合材料模具方面的研究,liyiquan954@sina.com。

CRITICAL CONTROL TECHNOLOGY OF LARGE SEGMENT WIND TURBINE BLADE MOULD ASSEMBLYP ROCESS

LI Yi-quan1,2, WU Jian-dan1, FAN Hu1,2, LIU Xiao-bin1,2   

  1. 1. Beijing Composite Materials Co., Ltd., Beijing 102101, China;
    2. Beijing FRP Research Design Institute Co., Ltd., Beijing 102101, China
  • Received:2018-11-26 Online:2019-11-28 Published:2019-11-28

摘要: 大型风电分段叶片模具成型技术是解决目前大型模具运输困难、降低成本的有效方式和大型模具制造的发展趋势。本文阐述了分段模具组装成型技术中的型面精度控制技术、预膨胀气密技术、温度均匀控制技术这三个关键技术,以某型号分段成型风电叶片模具拼装完成后的测试结果为例,其模具型面精度、气密性、温度均匀性均达到了制作叶片的要求,证明了大型模具分段成型技术的可行性。

关键词: 分段成型, 型面精度, 气密性, 温度均匀性

Abstract: Sectionalized molding of large-scale wind turbine blade mold is an effective way to solve the transportation difficulty and reduce transportation cost, and is also the trend of producing large-scale wind turbine blade mold. In this paper, three key technologies, including geometry accuracy control, pre-expanded air tightness and temperature uniformity control, are described. Taking the test results after the assembling of a certain model of sectionalized wind turbine blade mold as an example, the geometry accuracy, air tightness and temperature uniformity of the mold all meet the requirements of producing the blade. And the feasibility of sectionalized molding of large-scale wind turbine blade mold is proved.

Key words: sectionalized molding, geometry accuracy, air tightness, temperature uniformity

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