Page 86 - 《应用声学》2021年第2期
P. 86
254 2021 年 3 月
plication status and development trends of ultrasonic ma- Liu Suzhen, Zhang Yanwei, Zhang Chuang, et al. Design
chining technology[J]. Journal of Mechanical Engineering, of impedance matching network for electromagnetic ul-
2017, 53(19): 22–32. trasonic excitation system[J]. Transactions of China Elec-
[2] 黄文美, 郜春艳, 王博文, 等. 超磁致伸缩材料高频磁能损耗 trotechnical Society, 2016, 31(16): 1–6.
特性测试与分析 [J]. 农业机械学报, 2019, 50(1): 420–426. [8] 王玉江, 王志斌, 陈媛媛, 等. AOTF-NIR 宽带功率超声换
Huang Wenmei, Gao Chunyan, Wang Bowen, et al. 能器阻抗匹配网络的设计与优化 [J]. 电子学报, 2017, 45(4):
Test and analysis of high frequency magnetic energy 1057–1063.
losses characteristics for giant magnetostrictive materi- Wang Yujiang, Wang Zhibin, Chen Yuanyuan, et al.
als[J]. Transactions of the Chinese Society for Agricultural The design and optimization of impedance matching net-
Machinery, 2019, 50(1): 420–426. work based on broadband and power ultrasonic transducer
[3] 黄文美, 薛胤龙, 王莉, 等. 考虑动态损耗的超磁致伸缩换能 of AOTF-NIR[J]. Acta Electronica Sinica, 2017, 45(4):
器的多场耦合模型 [J]. 电工技术学报, 2016, 31(6): 173–178. 1057–1063.
Huang Wenmei, Xue Yinlong, Wang Li, et al. Multi-field [9] 谭坚文, 廖瑞金, 邓思建, 等. 高强度聚焦超声换能器的宽带
coupling model considering dynamic losses for giant mag- 阻抗匹配 [J]. 电工技术学报, 2014, 29(10): 141–146.
netostrictive transducers[J]. Transactions of China Elec- Tan Jianwen, Liao Ruijin, Deng Sijian, et al. Broadband
trotechnical Society, 2016, 31(6): 173–178. impedance matching for high intensity focused ultrasound
[4] 王露, 杨靖, 王登攀, 等. 大功率超声换能器匹配技术研究 [J]. transducer[J]. Transactions of China Electrotechnical So-
压电与声光, 2015, 37(1): 254–257. ciety, 2014, 29(10): 141–146.
Wang Lu, Yang Jing, Wang Dengpan, et al. Research [10] Moon J Y, Lee J, Chang J H. Electrical impedance match-
on matching technology of high power ultrasonic trans- ing networks based on filter structures for high frequency
ducer[J]. Piezoelectrics and Acoustooptics, 2015, 37(1): ultrasound transducers[J]. Sensors and Actuators A: Phys-
254–257. ical, 2016, 251: 225–233.
[5] Jiang X G, Zhu X B, Wong C Y, et al. Theory of series [11] Roy S C. Characteristics of single-and multiple-frequency
inductance matching to transducer at premechanical reso- impedance matching networks[J]. IEEE Transactions on
nance zone in ultrasonic vibration cutting[J]. IEEE Trans- Circuits and Systems II-Express Briefs, 2015, 62(2):
actions on Industrial Electronics, 2019, 66(3): 3019–3029. 222–225.
[6] Ashraf M, Aslam M. Impedance matching for under- [12] 蔡万宠, 张建富, 郁鼎文, 等. 超磁致伸缩超声振动系统的机
water piezoelectric transducers using piezoelectric trans- 电转换效率研究 [J]. 机械工程学报, 2017, 53(19): 52–58.
former[C]// International Bhurban Conference on Ap- Cai Wanchong, Zhang Jianfu, Yu Dingwen, et al. Re-
plied Sciences and Technology, IEEE, 2013. search on the electromechanical conversion efficiency for
[7] 刘素贞, 张严伟, 张闯, 等. 电磁超声激励系统阻抗匹配网络 giant magnetostrictive ultrasonic machining system[J].
的设计 [J]. 电工技术学报, 2016, 31(16): 1–6. Journal of Mechanical Engineering, 2017, 53(19): 52–58.