Open Access
Issue |
JNWPU
Volume 39, Number 6, December 2021
|
|
---|---|---|
Page(s) | 1204 - 1211 | |
DOI | https://doi.org/10.1051/jnwpu/20213961204 | |
Published online | 21 March 2022 |
- Shen Haijun. Fatigue damage: the “killer” of aircraft safety[J]. Encyclopedia knowledge, 2007(24): 13–14 [Article] (in Chinese) [Google Scholar]
- Lee H, Li G, Rai A, et al. Real-time anomaly detection framework using a support vector regression for the safety monitoring of commercial aircraft[J]. Advanced Engineering Informatics. 2020, 44: 101071 [Article] [CrossRef] [Google Scholar]
- He Wang, Du Yonghua, Sun Yungang, et al. Static characteristics and fatigue behavior of edge-cracked thick aluminum plates double-side bonded with composite patches[J]. Journal of Nanjing University of Science and Technology. 2019, 43(4): 511–517 [Article] (in Chinese) [Google Scholar]
- Fan Xianghong, Chen Tao, He Yuting, et al. In-situ quantitative monitoring of crack propagation by flexible eddy current sensor[J]. Journal of Xi'an Jiaotong University, 2021(9): 1–9 [Article] (in Chinese) [Google Scholar]
- Li Jiliang. Research on application of highway axle load data acquisition system based on piezoelectric thin film sensor[J]. Northern Communications, 2021(5): 39–42 [Article] (in Chinese) [Google Scholar]
- Li Xiaoli, Zhang Haibing, Zhu Longxiang. Application progress of acoustic emission technology in aviation maintenance[J]. National Defense Manufacturing Technology, 2017(1): 64–66 [Article] (in Chinese) [Google Scholar]
- Li Bingqian. Development of MEMS crude vacuum sensor[J]. Sensor Technology, 2005, 24(1): 87–88 [Article] (in Chinese) [NASA ADS] [Google Scholar]
- Shan Yinan, Yuan Ziyi, Zhou Zhenhuan, et al. Health monitoring of composite irregular curved surface structure based on distributed optical fiber sensor[C]//China International Composite Science and Technology Conference, 2017 (in Chinese) [Google Scholar]
- Fan X, Chen T, He Y, et al. An excitation coil layout method for improving the sensitivity of a rosette flexible eddy current array sensor[J]. Smart Materials and Structures, 2019, 29(1): 015020 [Article] [Google Scholar]
- Zhang S Z, Yan Y J, Wu Z Y. Electric potential detection for structural surface crack using coating sensors[J]. Sensors & Actuators A Physical, 2007, 137(2): 223–229 [Article] [CrossRef] [Google Scholar]
- Ashrafi B, Johnson LMartinez-Rubi Y, et al. Single-walled carbon nanotube-modified epoxy thin films for continuous crack monitoring of metallic structures[J]. Structural Health Monitoring, 2012, 11(5): 589–601 [Article] [CrossRef] [Google Scholar]
- Takiuti B E, JúNior V L, Brennan M J, et al. Development and characterization of an ITO nanocomposite film sensor for damage detection//Structural Health Monitoring, Damage Detection & Mechatronics: Volume 7[M]. Cham: Springer International Publishing, 2016 [Google Scholar]
- Takiuti B E, JúNior V L, Brennan M J, et al. Damage detection and quantification using thin film of ITO nanocomposites//Structural Health Monitoring: Volume 5[M]. Cham: Structural Health Monitoring, Springer International Publishing, 2014 [Google Scholar]
- Hou B, He Y, Cui R, et al. Preparation and application of film sensor for metal structure crack monitoring[J]. Materials Science, 2015, 21(4): 497–501 [Article] [Google Scholar]
- Cui Ronghong. Structural surface crack monitoring method based on electrical potential technique and modern surface technology[J]. Chinese Journal of Mechanical Engineering, 2011, 24(4): 601–606 [Article] [CrossRef] [Google Scholar]
- Sun Zhenqi, Huang Minghui. Research status and prospect of surface treatment of aviation aluminum alloy[J]. Materials Guide, 2011, 25(23): 146–151 [Article] (in Chinese) [Google Scholar]
- Liu Kai, Cui Ronghong, Hou Bo, et al. Feasibility of monitoring strengthened structure crack via PVD film sensor[J]. Journal of Xi'an Jiaotong University, 2018, 52(7): 139–145 [Article] (in Chinese) [Google Scholar]
- Chen Tao. Research on crack monitoring technology of aircraft metal structure based on flexible eddy current array sensor[D]. Xi'an: Air Force Engineering University, 2018: 61–84 (in Chinese) [Google Scholar]
- Ashrafi B, Johnson L, Martinez-Rubi Y, et al. Single-walled carbon nanotube-modified epoxy thin films for continuous crack monitoring of metallic structures[J]. Structural Health Monitoring, 2012, 11(5): 589–601 [Article] [CrossRef] [Google Scholar]
- Hou B, He Y, Cui R, et al. Crack monitoring method based on Cu coating sensor and electrical potential technique for metal structure[J]. Chinese Journal of Aeronautics, 2015, 28(3): 932–938 [Article] [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.