Power Source of Electromagnetically Induced Acoustic Emission Based on DDS
Liu Suzhen1, Li Wenjie1, Jin Liang2, Zhang Chuang1, Yang Qingxin1, 2
1. Province-Ministry Joint Key Laboratory of Electromagnetic Field and Electrical Apparatus Reliability, Hebei University of Technology Tianjin 300130 China 2. Tianjin Polytechnic University Tianjin 300160 China
Abstract:Electromagnetically induced acoustic emission (EMAE) technology is a new type of nondestructive test (NDT) techniques, which does nondestructive detection with the effect of dynamic electromagnetic loading to generate a stress field stimulating stress waves from the defects. The traditional EMAE uses the direct loading to introduce the electromagnetic stimulation. But the direct loading method is not convenient and needs very high current to stimulate acoustic emission (AE). The technique of AE induced by eddy current introduces the electromagnetic stimulation by an electromagnetic coil. The defect itself can generate acoustic emission signals, which could be used to boost the detection ability of small cracks in the thin-walled metallic structures. In order to satisfy the requirement of EMAE testing, such as high power output, pulse counts adjusting and the frequency of the output in wide range, a new power source based on direct digital synthesis (DDS) was designed. The power source included signal generating, power amplifying and series resonance, which the control circuit was the core part. Experiments’ results show that the system can satisfy requirement of the EMAE testing with the merits of outstanding stability and flexible parameter adjustment.
刘素贞, 李文杰, 金亮, 张闯, 杨庆新. 基于DDS技术的电磁声发射涡流加载电源[J]. 电工技术学报, 2012, 27(6): 6-11.
Liu Suzhen, Li Wenjie, Jin Liang, Zhang Chuang, Yang Qingxin. Power Source of Electromagnetically Induced Acoustic Emission Based on DDS. Transactions of China Electrotechnical Society, 2012, 27(6): 6-11.
[1] Finkel P, Godinez V, Miller R. Electromagnetically induced acoustic emission-novel NDT technique for damage evaluation[C]. American Institute of Physics Conference, 2001: 1747-1754. [2] Finkel P, Godinez V. Numerical simulations of an electromagnetic of the ultrasonic signal for nondestructive detection of ferromagnetic inclusions and flaws[J]. IEEE Transactions on Magnetics, 2004, 40(4): 2179-2181. [3] 陈中剑, 杨庆新. 电磁声发射技术研究[J]. 大众科技, 2006, 92(6): 23-24. Chen Zhongjian, Yang Qingxin. Study on electroma- gnetically induced acoustic emission technique[J]. Popular Technology, 2006, 92(6): 23-24. [4] 刘素贞, 杨庆新, 金亮, 等. 电磁声发射技术在无损检测中的应用[J]. 电工技术学报, 2009, 24(1): 23-27. Liu Suzhen, Yang Qingxin, Jin Liang, et al. Application of electromagnetic acoustic emission technology in non-destructive testing [J]. Transactions of China Electrotechnical Society, 2009, 24(1): 23-27. [5] 张闯, 刘素贞, 杨庆新, 等. 基于FFT和小波包变换的电磁声发射信号处理[J]. 电工技术学报, 2010, 25(4): 24-28. Zhang Chuang, Liu Suzhen, Yang Qingxin, et al. Signal processing of electromagnetically induced acoustic emission based on FFT and Wavelet Packet [J]. Transactions of China Electrotechnical Society, 2010, 25(4): 24-28. [6] Jin Liang, Yang Qingxin, Liu Suzhen. Electromagnetic stimulation of the acoustic emission for fatigue crack detection of the sheet metal[J]. IEEE Transactions on Applied Superconductivity, 2010, 20(3): 1848-1854. [7] Jin Liang, Liu Suzhen, Yang Qingxin, et al. Application of eddy load in electromagnetic acoustic emission [C]. Proceedings of the 11th International Conference on Electrical Machines and Systems, 2008: 395-397. [8] Tierney J, Rader C M , Gold B. A digital frequency synthesizer [J]. IEEE Transactions on Audio and Electroacoustics, 1971, 19(1): 48-57. [9] Zhang Zhiqiang, Dong Feng. A harmonic signal generator based on DDS and SOPC [C]. IEEE International Conference on Control and Decision, 2010: 1542-1547. [10] Betowski D J, Beiu V. Considerations for phase accumulator design for direct digital frequency synthesizers [C]. IEEE International Conference on Neural Networks and Signal Processing, 2003: 176-179. [11] Li W Zhang J B. Research of parameter adjustable harmonic signal generator based on DDS [C]. ISECS International Colloquium on Computing, Communication, Control, and Management, 2008: 88-91.