Researches on the ultrasonic scattering attenuation of carbon fibre reinforced plastics with 2D real morphology void model
- 作者: Ding S.S.1, Jin S.J.1, Luo Z.B.1, Chen J.1, Lin L.1
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隶属关系:
- NDT and E Laboratory
- 期: 卷 63, 编号 4 (2017)
- 页面: 490-495
- 栏目: Physical Fundamentals of Engineering Acoustics
- URL: https://journals.rcsi.science/1063-7710/article/view/186216
- DOI: https://doi.org/10.1134/S1063771017040029
- ID: 186216
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详细
In order to investigate the ultrasonic propagation in carbon fibre reinforced plastics with complex void morphology, the effective mathematical model needs to be established. The current models are oversimplified on void morphology, leading to the significant inconsistency of theoretical calculation with experimental results. In view of the problem, a real morphology void model (RMVM) was established with the idea of image-based modeling. The void morphology was extracted by digital image processing technology, and the material properties were assigned subsequently. As a result of the complex and random void morphology in RMVMs, a non-unique corresponding relationship was verified between porosity P and ultrasonic attenuation coefficient α. In the scatterplot of simulation, about 66 percent of points were plotted within the ±10% error band of fitting line, while almost all the data located at the ±20% error zone. The simulation results showed good consistency with experiments, and it proved the validity of RMVM. The investigation provides a novel model to explore the ultrasonic scattering mechanism for the composite materials containing random voids.
作者简介
S. Ding
NDT and E Laboratory
Email: linli@dlut.edu.cn
中国, Dalian, 116085
S. Jin
NDT and E Laboratory
Email: linli@dlut.edu.cn
中国, Dalian, 116085
Z. Luo
NDT and E Laboratory
Email: linli@dlut.edu.cn
中国, Dalian, 116085
J. Chen
NDT and E Laboratory
Email: linli@dlut.edu.cn
中国, Dalian, 116085
L. Lin
NDT and E Laboratory
编辑信件的主要联系方式.
Email: linli@dlut.edu.cn
中国, Dalian, 116085
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