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NDE Inspection of Terahertz Waves in Wind Turbine Composites

机译:风力涡轮机复合材料的太赫兹波无损检测

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An investigation of terahertz waves was made for the nondestructive evaluation of composite materials and structures in the wind turbine. The modalities of the terahertz radiation used were time domain spectroscopy (TDS) and continuous wave (CW). The composite materials and structures investigated include both non-conducting polymeric composites and conducting carbon fiber composites. Terahertz signals in the TDS mode resembles that of ultrasound; however, unlike ultrasound, a terahertz pulse was able to detect a smaller crack hidden behind a larger crack. This was demonstrated in thick GFRP (glass fiber reinforced plastics) laminates of the wind turbine using saw slots. In carbon composites the penetration of terahertz waves is quite limited and the detection of flaws is strongly affected by the angle between the electric field direction of the terahertz waves and the intervening fiber directions. The structures used in this study included both solid laminates and the parts in the wind turbine. The defects and anomalies investigated by terahertz radiation were foreign material inclusions, simulated disband, delamination and mechanical impact damage. The effectiveness and limitations of terahertz radiation are defined and noted for the NDE of composites.
机译:对太赫兹波进行了研究,以对风力涡轮机中的复合材料和结构进行无损评估。太赫兹辐射的使用方式是时域光谱(TDS)和连续波(CW)。研究的复合材料和结构包括非导电聚合物复合材料和导电碳纤维复合材料。 TDS模式下的太赫兹信号类似于超声波。但是,与超声波不同,太赫兹脉冲能够检测出隐藏在较大裂纹后面的较小裂纹。这在使用锯槽的风力涡轮机的厚GFRP(玻璃纤维增​​强塑料)层压板中得到了证明。在碳复合材料中,太赫兹波的穿透非常有限,并且缺陷的检测受到太赫兹波的电场方向和居间纤维方向之间的夹角的强烈影响。本研究中使用的结构包括固体层压板和风力涡轮机中的零件。太赫兹辐射调查的缺陷和异常是异物夹杂,模拟解散,分层和机械冲击损伤。定义了太赫兹辐射的有效性和局限性,并指出了复合材料的无损检测。

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