首页> 外文会议>Conference on Thermosense XXIII Apr 16-19, 2001, Orlando, USA >Defect-selective imaging of aerospace structures with elastic-wave-activated thermography
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Defect-selective imaging of aerospace structures with elastic-wave-activated thermography

机译:弹性波激活热成像技术对航空航天结构进行缺陷选择成像

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Aerospace structures are subjected to variable loads over long periods with rapid changes of conditions (e.g. humidity, temperature). Therefore the materials and components made out of them may suffer from aging and deterioration, especially since the weight of such structures is an important quantity. On the other hand, any failure of a component may cause costs that exceed by many orders of magnitude the cost of the component itself. On this background it is important to identify defects reliably and early enough during production or maintenance inspections in order to avoid catastrophic failure. This is the general and important task of nondestructive evaluation. We present a method where thermal effects are selectively activated in defects so that defects reveal themselves selectively even in the presence of complicated intact features. The mechanism involved is local friction or hysteresis which turns a variably loaded defect into a heat source which is identified by thermography. Loading is achieved by an elastic wave or oscillation with a suitable time dependence. The method is presented together with results obtained on aerospace structures.
机译:航空航天结构在长期变化的条件下会随着条件(例如湿度,温度)的快速变化而变化。因此,由它们制成的材料和部件可能遭受老化和劣化,特别是因为这种结构的重量是重要的量。另一方面,组件的任何故障都可能导致成本,其成本超过组件本身的成本很多数量级。在这种背景下,重要的是在生产或维护检查期间可靠,足够早地识别缺陷,以避免灾难性故障。这是无损评估的普遍而重要的任务。我们提出了一种在缺陷中选择性激活热效应的方法,以便即使在存在复杂的完整特征的情况下,缺陷也可以选择性地显示自身。所涉及的机理是局部摩擦或滞后,其将可变负载的缺陷转变成热源,该热源通过热像仪识别。通过弹性波或具有适当时间依赖性的振荡来实现加载。介绍了该方法以及在航空航天结构上获得的结果。

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