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Advances in thermosonics for detecting impact damage in CFRP composites

机译:用于检测CFRP复合材料冲击损伤的热超声技术的进展

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摘要

Thermosonics, or ultrasound stimulated thermography, has been shown to reveal structural defects such as impact damage in CFRP that are not detectable by conventional optically stimulated thermography. However, there are concerns that the large amounts of ultrasonic excitation energy employed to make thermosonic inspections may cause damage, particularly by heating at the attachment point of the exciter. The objectives of this study were to investigate methods of reducing the electrical power required to detect defects and thus to reduce surface damage during testing. The magnitude of the heating at the surface over ultrasonically excited defects was modelled, to determine the heating requirements for different materials. Thermosonic images were collected whilst measuring test piece vibrations, using strain gauges. A long pulse, low power excitation method has been found to produce satisfactory impact damage images whilst eliminating damage to the test piece caused, in other methods, by heating of the ultrasonic excitation horn. Images of impact damage in 4 mm, 8 mm and 16 mm CFRP plates have been obtained using only 1 W of electrical power applied to an ultrasonic excitation horn.
机译:已显示出热超声或超声激发热成像技术可以揭示传统的光学激发热成像技术无法检测到的结构缺陷,例如CFRP中的冲击损伤。然而,令人担忧的是,用于进行热超声检查的大量超声激发能量可能会造成损坏,特别是通过在激发器的连接点加热。这项研究的目的是研究减少检测缺陷所需的电功率的方法,从而减少测试过程中的表面损坏。对超声激发缺陷上表面的加热幅度进行建模,以确定不同材料的加热要求。收集热超声图像,同时使用应变仪测量试件的振动。已经发现,长脉冲,低功率激励方法可产生令人满意的冲击损伤图像,同时消除在其他方法中由于加热超声激励角而对测试件造成的损伤。仅使用1 W的功率施加在超声激励喇叭上,就可以得到4 mm,8 mm和16 mm CFRP板上冲击损伤的图像。

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