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Experimental Fabrication and Nondestructive Testing of Carbon Fiber Beams for Delaminations Using Embedded Terfenol-D Particles

机译:使用嵌入的Terfenol-D颗粒进行分层的碳纤维梁的实验制造和无损检测

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The experimental results for damage sensing using embedded magnetostrictive particles as sensors in carbon fiber reinforced polymer laminates are presented. Laminates constructed of varying counts of pre-impregnated plies (Hexcel AS4/3501-6) are embedded with Terfenol-D particles and a delamination to observe changes in the sensing signal in and around the damage region. The testing apparatus consists of a primary circuit to generate a magnetic flux excitation and a secondary circuit to sense voltage induced into a pickup coil. In addition, three groups of test results were generated to observe the effect of fabrication on sensing. The experimental results from the three groups reveal that the particle distribution has a significant effect on the sensing signal. The sensing signal is dominated by changes in local particle distribution and the effect of the delamination and ply variation did not have a discernible effect on the sensing signal for this setup.
机译:提出了使用嵌入的磁致伸缩颗粒作为碳纤维增强聚合物层压板中的传感器进行损伤感测的实验结果。将由不同数量的预浸渍层构成的层压板(Hexcel AS4 / 3501-6)嵌入Terfenol-D颗粒和分层结构,以观察损坏区域内和周围的传感信号的变化。该测试设备包括一个用于产生磁通量激励的初级电路和一个用于感测感应到拾波线圈中的电压的次级电路。此外,生成了三组测试结果,以观察制造对传感的影响。三组实验结果表明,粒子分布对传感信号有显着影响。传感信号受局部颗粒分布变化的影响,在这种设置下,分层和帘布层变化的影响对传感信号没有明显的影响。

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