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Detection of impact damage in CFRP composites by thermosonics

机译:用热超声检测CFRP复合材料的冲击损伤

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This study investigated methods of reducing the electrical power required to detect defects by thermosonics, or vibro-thermography, and thus to reduce surface damage that can occur at the exciter attachment point during testing. The surface temperature rise over excited defects has been modelled to determine the heating requirements to visualise damage. A long pulse, low power excitation method has been found to produce satisfactory impact damage images whilst eliminating damage at the exciter attachment point. Thermosonics has been found to detect impact damage in composites more reliably than optically stimulated thermal NDE methods.
机译:这项研究研究了减少通过热超声或振动热成像法检测缺陷所需的电功率的方法,从而减少了在测试过程中在激励器连接点可能发生的表面损伤。已对激发缺陷上的表面温度升高进行了建模,以确定加热需求以可视化损坏。已经发现,长脉冲,低功率激励方法可以产生令人满意的冲击损伤图像,同时消除激励器连接点的损伤。已发现,热超声技术比光学刺激的热NDE方法更可靠地检测复合材料中的冲击损伤。

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