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    风电叶片复合材料的无损检测技术研究现状

    Research status of nondestructive testing techniques for composite materials used in wind turbine blades

    • 摘要: 摘要 近年来,复合材料在全球范围内迅猛发展,风能领域已成为复合材料最主要的应用领域之一。受制作工艺与材料特性的影响,风电叶片在生产和使用过程中会出现各种各样的缺陷,进而导致叶片受损,影响整机的正常运行。因此对风电叶片进行可靠有效的无损检测,是确保工作稳定性,降低维护成本,提高安全性的关键。结合复合材料在风能领域的应用现状,列举了叶片在生产加工、运行使用阶段的常见缺陷种类与特征,调研了近年来无损检测技术在风电叶片复合材料中的研究进展,总结了不同无损检测方法的优缺点及应用场景,并对风电叶片复合材料无损检测未来的发展趋势做了展望。

       

      Abstract: Abstract In recent years, the rapid global development of composite materials has elevated wind power to one of the foremost application domains for composite materials. Influenced by manufacturing processes and material characteristics, wind turbine blades may develop various defects during manufacturing and usage, which can lead to blade damage and affect the normal operation of the entire turbine. Therefore, conducting reliable and effective nondestructive testing (NDT) on wind turbine blades is key to ensuring operational stability, reducing maintenance costs and enhancing safety. This paper integrated the current application status of composite materials in the wind energy field, detailed various types and characteristics of common defects during blade production, processing, and operational phases. Additionally, recent advancements in NDT technologies for composite materials were surveyed, the strengths, weaknesses, and application scenarios of different NDT methods were outlined. Furthermore, a professional outlook was provided on the future development trends of nondestructive testing for composite materials used in wind turbine blades.

       

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