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Ultrasonic Inspection Technique for NDE of Fiber Composite Material

机译:纤维复合材料无损检测的超声波检测技术

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The constant growth of air traffic leads to increasing demands for the aircraft industry to manufacture airplanes more economically and to ensure a higher level of efficiency, ecology and safety. During the last years important improvements for fuselage structures have been achieved by application of new construction principles, employment of sophisticated and/or alternative materials, and by improved manufacturing processes. In particular the intensified application of fibre-reinforced plastics components is in the focus of current discussions and research.The main goal of an ongoing national project is to improve the existing ultrasonic test technology in such a way that it is optimally suited for the examination of CFRP multilayer structures. The B-Scan and C-Scan results are then used for the visualization of individual layers and the complete layer set-up.First results of the project revealed that with carefully selected transducers and frequencies it is possible to detect defects and irregularities in the layer structure like delaminations, fibre cracking, ondulations, missing layers etc. and even to visualize the fibre orientations in the individual layers.
机译:空中交通的不断增长导致对航空业的需求日益增长,以更加经济地制造飞机并确保更高水平的效率,生态和安全。在过去的几年中,通过应用新的构造原理,采用复杂的和/或替代的材料以及改进的制造工艺,实现了机身结构的重要改进。特别地,纤维增强塑料部件的加强应用是当前讨论和研究的焦点。 正在进行的国家项目的主要目标是以一种最适合于CFRP多层结构检查的方式来改进现有的超声波测试技术。然后,将B扫描和C扫描结果用于单个层的可视化和完整的层设置。 该项目的最初结果表明,通过精心选择的换能器和频率,可以检测层结构中的缺陷和不规则性,例如分层,纤维开裂,包裹体,缺失层等,甚至可以观察到各个层中的纤维方向。

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