Resonance from Contactless Ultrasound in Alloy Melts

被引:4
|
作者
Tonry, C. E. H. [1 ]
Djambazov, G. [1 ]
Dybalska, A. [2 ]
Bojarevics, V [1 ]
Griffiths, W. D. [2 ]
Pericleous, K. A. [1 ]
机构
[1] Univ Greenwich, Computat Sci & Engn Grp, Pk Row, London SE10 9LS, England
[2] Univ Birmingham, Sch Met & Mat, Birmingham B15 2TT, W Midlands, England
来源
LIGHT METALS 2019 | 2019年
基金
英国工程与自然科学研究理事会;
关键词
Ultrasonic cavitation; Electromagnetism; Contactless ultrasound; Alloy melts; Resonance; ACOUSTIC CAVITATION;
D O I
10.1007/978-3-030-05864-7_196
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Contactless ultrasound uses Lorentz forces from a secondary coil to induce ultrasonic vibrations in alloy melts. To achieve pressures high enough for cavitation, resonance is required. However, the prediction of the resonant modes for a melt in a crucible is complex, due to the transmission and reflection of sound within the crucible walls. Two acoustic models, one solving a simplified momentum equation in the time domain, the other solving the Helmholtz equation in the frequency domain are compared. The frequency domain model allows a fast sweep of frequencies for resonance tuning, and the transient model enables a more detailed analysis. Validation is against analytic test cases derived with boundary conditions specific for the liquid metal medium and against experimental data obtained in an aluminum melting crucible. Results confirm that sound transmission into the crucible walls has a significant effect on resonant frequencies and needs to be accounted for.
引用
收藏
页码:1551 / 1559
页数:9
相关论文
共 50 条
  • [1] Acoustic resonance for contactless ultrasonic cavitation in alloy melts
    Tonry, C. E. H.
    Djambazov, G.
    Dybalska, A.
    Griffiths, W. D.
    Beckwith, C.
    Bojarevics, V.
    Pericleous, K. A.
    ULTRASONICS SONOCHEMISTRY, 2020, 63
  • [2] Contactless Ultrasonic Cavitation in Alloy Melts
    Pericleous, Koulis
    Bojarevics, Valdis
    Djambazov, Georgi
    Dybalska, Agnieszka
    Griffiths, William D.
    Tonry, Catherine
    MATERIALS, 2019, 12 (21)
  • [3] Optimal operation of contactless transformers with resonance in secondary circuits
    Liu, Xun
    Ng, W. M.
    Lee, C. K.
    Hui, S. Y.
    APEC 2008: TWENTY-THIRD ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION, VOLS 1-4, 2008, : 645 - +
  • [4] Ultrasound-Assisted Solidification of a Cu–Cr Alloy
    Siruo Zhang
    Huijun Kang
    Min Cheng
    Zongning Chen
    Zhicheng Wang
    Enyu Guo
    Jiehua Li
    Tongmin Wang
    Acta Metallurgica Sinica (English Letters), 2022, 35 : 2082 - 2088
  • [5] Ultrasound-Assisted Solidification of a Cu-Cr Alloy
    Zhang, Siruo
    Kang, Huijun
    Cheng, Min
    Chen, Zongning
    Wang, Zhicheng
    Guo, Enyu
    Li, Jiehua
    Wang, Tongmin
    ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2022, 35 (12) : 2082 - 2088
  • [6] Magnetic resonance imaging of boiling induced by high intensity focused ultrasound
    Khokhlova, Tatiana D.
    Canney, Michael S.
    Lee, Donghoon
    Marro, Kenneth I.
    Crum, Lawrence A.
    Khokhlova, Vera A.
    Bailey, Michael R.
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2009, 125 (04) : 2420 - 2431
  • [7] Low-loss ultrasound transmission through glass assisted by resonance
    Angelskar, Hallvard
    Dirdal, Christopher Andrew
    Tronstad, Tron Vedul
    Kavli, Tom
    Vogl, Andreas
    ULTRASONICS, 2019, 96 : 160 - 164
  • [8] Implant resonance and the mechanostat theory: Applications of therapeutic ultrasound for porous metallic scaffolds
    Deering, Joseph
    Presas, Alexandre
    Yu, Bosco
    Valentin, David
    Heiss, Christian
    Bosbach, Wolfram A.
    Grandfield, Kathryn
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2021, 125
  • [9] Theoretical Resonance Analysis of Langevin Transducers with Equivalent Circuit Models for Therapeutic Ultrasound
    Jinhyuk Kim
    Jungwoo Lee
    Journal of Electrical Engineering & Technology, 2019, 14 : 2437 - 2445
  • [10] Theoretical Resonance Analysis of Langevin Transducers with Equivalent Circuit Models for Therapeutic Ultrasound
    Kim, Jinhyuk
    Lee, Jungwoo
    JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY, 2019, 14 (06) : 2437 - 2445