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A Concept of Thermographic Method for Non-Destructive Testing of Polymeric Composite Structures Using Self-Heating Effect

机译:利用自热效应对聚合物复合结构进行无损检测的热成像方法的概念

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摘要

Traditional techniques of active thermography require an external source of energy used for excitation, usually in the form of high power lamps or ultrasonic devices. In this paper, the author presents an alternative approach based on the self-heating effect observable in polymer-based structures during cyclic loading. The presented approach is based on, firstly, determination of bending resonance frequencies of a tested structure, and then, on excitation of a structure with a multi-harmonic signal constructed from the harmonics with frequencies of determined resonances. Following this, heating-up of a tested structure occurs in the location of stress concentration and mechanical energy dissipation due to the viscoelastic response of a structure. By applying multi-harmonic signal, one ensures coverage of the structure by such heated regions. The concept is verified experimentally on artificially damaged composite specimens. The results demonstrate the presented approach and indicate its potential, especially when traditional methods of excitation with an external structure for thermographic inspection cannot be applied.
机译:主动热成像的传统技术需要用于激发的外部能源,通常采用大功率灯或超声设备的形式。在本文中,作者基于循环加载过程中在聚合物基结构中可观察到的自热效应,提出了一种替代方法。提出的方法首先基于确定被测结构的弯曲共振频率,然后基于具有由谐波确定的共振频率构成的多谐波信号激励结构。此后,由于结构的粘弹性响应,在应力集中和机械能耗散的位置发生了被测结构的升温。通过施加多谐波信号,可以确保这种加热区域覆盖结构。该概念已在人为损坏的复合材料样本上进行了实验验证。结果证明了所提出的方法并表明了其潜力,特别是当无法采用传统的采用外部结构进行热成像检查的激发方法时。

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