Magnetic Coils Alignment System Generates Uniformed Bio-Magnetic Field

  • Harizal Hamid 1Department of Science and Biotechnology, Universiti Selangor, 45600 Selangor, Malaysia
  • M. N. M. Pauzi Department of Science and Biotechnology, Universiti Selangor, 45600 Selangor, Malaysia
  • N. S. Yaacob Department of Science and Biotechnology, Universiti Selangor, 45600 Selangor, Malaysia
  • Muhidin Arifin Department of Engineering, Universiti Selangor, 45600 Selangor, Malaysia
Keywords: bio-electric, bio-magnetic, circular flux, magnetic flux, uniform magnetic field

Abstract

A uniform and homogeneous magnetic field is widely explored in the area of bio-electric and bio-magnetic materials. The values of magnetic flux density vary from 2.513´106 to 2.513´105 tesla in which the current flows throughout a designed winding coil. The experimental design consists of involved coil geometrical setup in which the coil is used for magnetic winding stimulation at certain numbers of winding series (1000N) within the steel plate with the thickness of 3mm. The structured iron frame is in a rectangular structure form, and the magnetic coil is winded on an iron plate which is installed at the middle of the structured frame. The density of the circular flux that flows within the designed body ranges from 7.5384´106 to 1.7592´105 tesla, but most of the surrounding magnetic field is defined 2.513´106 tesla. 

References

Ahrendsen, K. J., Reyes, S., & Gay, T. J. (2020). Helmholtz spacing of thin rectangular magnetic field coils. Review of Scientific Instruments, 91(11), 116103.
Ishii, M., & Suzuki, M. (2020). Impedance of Helmholtz Coil to Generate Standard AC Magnetic Field in High Frequency. 2020 Conference on Precision Electromagnetic Measurements (CPEM), 1–2.
Jin, Y., Pan, D., Sun, Z., Zou, Z., & Li, L. (2020). Feasibility analysis of a modular uniform magnetic field coil. Review of Scientific Instruments, 91(7), 74708.
Kossowski, T., & Szczupak, P. (2020). Analysis of the influence of strong magnetic field on unmanned aircrafts, using Helmholtz coil. Przegl{\k{a}}d Elektrotechniczny, 96.
Morin, D. J., Zou, S., Armanfard, Z., Foote, T., Muschell, J., Saam, K., & Saam, B. (2020). Magnetic-field stability in unshielded Helmholtz coils: Update. Bulletin of the American Physical Society, 65.
Mustafa, B. T., Yab, S. P., & Ismail, A. H. (2020). Impacts of materials on the intensity of uniform static magnetic fields using a multi Helmholtz coils design. AIP Conference Proceedings, 2213(1), 20063.
Saqib, M., & others. (2020). Design and Development of Helmholtz coils for magnetic field. 2020 International Youth Conference on Radio Electronics, Electrical and Power Engineering (REEPE), 1–5.
Wang, C.-S., Lin, S.-C., Lin, T.-Y., Wang, J.-Y., Muhfidin, R., & Yu, S. (2020). Effects of Helmholtz coil magnetic fields on microstructure and mechanical properties for sand-cast A201 Al-Cu alloy. Materials Research Express, 7(12), 126504.
Published
2021-03-17
How to Cite
Hamid, H., Pauzi, M. N. M., Yaacob, N. S., & Arifin, M. (2021). Magnetic Coils Alignment System Generates Uniformed Bio-Magnetic Field. Selangor Science & Technology Review (SeSTeR), 5(2), 51-57. Retrieved from https://sester.journals.unisel.edu.my/ojs/index.php/sester/article/view/217