Page 148 - 《应用声学》2020年第5期
P. 148
790 2020 年 9 月
properties of a magnetorheological fluid with oleic acid- sonic polishing[J]. The International Journal of Advanced
coated magnetic particles[J]. Journal of Functional Mate- Manufacturing Technology, 2019, 103(1–4): 819–840.
rials, 2016, 47(6): 7153–7156, 7162. [9] Beaucamp A, Katsuura T, Kawara Z. A novel ultrasonic
[4] 陈伟中. 声空化物理 [M]. 北京: 科学出版社, 2014. cavitation assisted fluid jet polishing system[J]. CIRP
[5] 莫润阳, 林书玉, 王成会. 超声空化的研究方法及进展 [J]. 应 Annals-Manufacturing Technology, 2017, 66(1): 301–304.
用声学, 2009, 28(5): 389–400. [10] Kanthale P M, Gogate P R, Pandit A B, et al. Mapping
Mo Runyang, Lin Shuyu, Wang Chenghui. Methods of of an ultrasonic horn: link primary and secondary effects
study on sound cavitation[ J]. Journal of Applied Acous- of ultrasound[J]. Ultrasonics Sonochemistry, 2003, 10(6):
tics, 2009, 28(5): 389–400. 331–335.
[6] 彭健新, 周光平, 梁召峰. 声场模拟方法在大功率低频超声工 [11] Wang Y C, Yao M C. Realization of cavitation fields based
程中的应用 [J]. 化学工程, 2007, 35(12): 75–78. on the acoustic resonance modes in an immersion-type
Peng Jianxin, Zhou Guangping, Liang Zhaofeng. Applica- sonochemical reactor[J]. Ultrasonics Sonochemistry, 2013,
tion of simulation method of the ultrasonic field in high- 20(1): 565–570.
power low-frequency ultrasonic engineering[J]. Chemical [12] Lebon G S B, Tzanakis I, Pericleous K, et al. Experimen-
Engineering, 2007, 35(12): 75–78. tal and numerical investigation of acoustic pressures in dif-
[7] 王亮, 吕效平, 韩萍芳, 等. 圆球型声化学反应器内声场的 ferent liquids[J]. Ultrasonics Sonochemistry, 2017, 42(1):
数值模拟与实验研究 [J]. 高校化学工程学报, 2010, 24(3): 411–421.
476–481. [13] Tudela I, Sáez V, Esclapez M D, et al. Simulation of
Wang Liang, Lyu Xiaoping, Han Pingfang, et al. Numer- the spatial distribution of the acoustic pressure in sono-
ical simulation and experimental investigation of ultra- chemical reactors with numerical methods: a review[J].
sound field in the spherical sonochemical reactor[J]. Jour- Ultrasonics Sonochemistry, 2014, 21(3): 909–919.
nal of Chemical Engineering of Chinese Universities, 2010, [14] Wood A B. A textbook of sound[M]. New York:
24(3): 476–481. The Macmillian Company, 1995: 360–360.
[8] Zhang T, Yu T, Yang T, et al. Experimental and sim- [15] 姚明宗. 共振式声化学反应器之分析与实验 [D]. 台南: 成功
ulation studies of abrasive particles impacting monocrys- 大学, 2009.
talline silicon in suspension thin film flow field of ultra-