基于磁记忆效应的桥钢箱梁损伤量化评判理论与危险预警方法研究
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1.Structural Health Monitoring Based on BP Network and Magnetic Memory
- 关键词:
- Magnetic storage;Damage detection;Pipelines;Ferromagnetic materials;Magnetism;Neural networks;Structural health monitoring;BP neural networks;Magnetic memory;Magnetic memory method;Magnetic memory testing;Magnetization property;Non-contact detection;Research and analysis;Structural damages
- Gao, Zhigang
- 《International Conference on Applications and Techniques in Cyber Intelligence, ATCI 2019》
- 2020年
- June 22, 2019 - June 24, 2019
- Huainan, China
- 会议
Although many magnetic memory testing devices developed in China can diagnose the surface or near surface damage of metal components, there is still a certain gap from the non-contact detection technology of Russian Dynamic Diagnostics. This study combined the damage situation of petroleum transportation pipelines to construct a detection model based on BP neural network. At the same time, according to the different magnetization properties of ferromagnetic materials in different deformation states, the corresponding magnetic model was established respectively, and the magnetic memory method was used to detect structural damage in combination with the pipeline structure. In addition, this paper designed a control experiment to conduct research and analysis. The experimental results show that the proposed algorithm has certain detection effects and can provide theoretical reference for subsequent related research. © 2020, Springer Nature Switzerland AG.
...2.Research on improving seismic resilience of urban overpass based on resilience theory
- 关键词:
- Damage detection;Failure (mechanical);Disaster prevention;Earthquakes;Bridges;Seismic waves;Bridge engineering;Bridge structures;Evaluation indicators;Existing bridge;Failure criteria;Seismic Performance;Seismic resilience;Structural systems
- Wang, Wei;Quan, Chaochao;Li, Yu;Zhen, Guokai;Song, Honglai
- 《International fib Symposium on Concrete structures for resilient society, 2020》
- 2020年
- November 22, 2020 - November 24, 2020
- Virtual, Online
- 会议
Bridges are known as the throat of the road systems. But they may be seriously damaged under the action of earthquakes with severe consequences, the importance of studying the seismic performance of bridges is becoming increasingly significant. In view of the limitations of existing bridges for seismic performance and disaster prevention, the countermeasures for improving the resilience of bridge structures are proposed, from the three aspects of new resilience materials for bridge structures, devices for energy dissipation and absorption, and resilience structural systems. On this basis, a total of five evaluation indicators including three indicators of importance coefficient, damage index and failure criterion of structural members, and two indicators of damage index and function repair time of bridge structure are selected to quantitatively evaluate the seismic resilience of the bridge structure. It can be seen that the new resilience bridge structural systems will lead to the new direction of seismic performance of bridge engineering by virtue of its advantages of "self-reset, low damage, controllable and rapid recovery after earthquake". © fédération internationale du béton (fib).
...3.Computer Numerical Simulation of Force-Magnetic Coupling for Steel Wire Rope with Defect
- 关键词:
- Numerical models;Computer software;Magnetic storage;Wire rope;Magnetic couplings;Numerical methods;Magnetism;ANSYS simulation;Defect location;Force-magnetic coupling;Magnetomechanical couplings;Metal magnetic memory;Numerical simulation method;Static magnetic fields;Steel wire rope
- Gao, Zhigang;Wang, Bangjian
- 《9th International Conference on Frontier Computing, FC 2019》
- 2020年
- July 9, 2019 - July 12, 2019
- Kyushu, Japan
- 会议
The purpose of this paper is to explore the relationship between the stress and metal magnetic memory signal of stretched wire rope with defect. And ANSYS simulation software is used to calculate the stretched single strand of 1 * 7 wire rope with defect in the static loading field and the static magnetic field. Then the two physical fields on magneto-mechanical coupling was analyzed directly. Through the analysis, it is found that the equivalent force on the surface of the wire rope increases gradually with the increase of the load, and the stress at the defect location increases obviously. Finally, this study further proves the inherent relationship and law between the defect damage of wire rope and the metal magnetic memory signal. And the computer numerical simulation method provides references for the finite element analysis of magnetic memory of stretched wire rope. © 2020, Springer Nature Singapore Pte Ltd.
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