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Damage identification in aircraft composite structures: A case study using various non-destructive testing techniques

机译:飞机复合结构中的损伤识别:使用各种无损检测技术的案例研究

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The application of polymeric composites as materials for structural design of vehicles and other constructions has led to maintain them in safe and effective manner. A special attention should be paid to the aircraft structures, which must be lightweight and reveal superior mechanical properties in order to fulfill growing demands in this industry. Thus, the non-destructive testing techniques applied for such materials should be evaluated in several categories: effectiveness in detection, localization and identification of damage in possible early phase of their development, complexity of application and a cost of inspection. In the following study the authors experimentally tested three composite structures made of glass fiber-reinforced plastic, hybrid composite with a core made of the same material and face sheets made of aluminum alloy and a carbon fiber-reinforced plastic structure extracted from the vertical stabilizer of a military aircraft with barely visible impact damage and delaminations. The tests were performed using various techniques including PZT sensing; ultrasonic, thermography and vibration-based inspection in order to analyze the applicability of these methods in the environmental conditions of inspection of aircraft elements. The performed analysis allows concluding about effectiveness of the applied methods and their specific applications in non-destructive testing of composite elements. (C) 2015 Elsevier Ltd. All rights reserved.
机译:聚合物复合材料作为车辆和其他结构的结构设计材料的应用已导致以安全有效的方式对其进行维护。要特别注意飞机结构,飞机结构必须轻巧并具有出色的机械性能,才能满足该行业不断增长的需求。因此,应用于此类材料的非破坏性测试技术应在几类中进行评估:在其开发的可能早期阶段,对损坏的检测,定位和识别的有效性,应用的复杂性和检查成本。在接下来的研究中,作者实验测试了三种由玻璃纤维增​​强塑料制成的复合结构,具有相同材料制成的芯和铝合金制成的面板的混合复合材料以及从碳纤维的垂直稳定器中提取的碳纤维增强塑料结构。一架几乎看不见的撞击损坏和分层的军用飞机。测试使用多种技术进行,包括PZT感应;超声波,热成像和基于振动的检查,以便分析这些方法在飞机部件检查的环境条件下的适用性。进行的分析可以得出在复合材料无损检测中所应用方法及其特定应用的有效性的结论。 (C)2015 Elsevier Ltd.保留所有权利。

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