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  • Archive: 2019
27 Dec 2019
  • 2019
  • V. 18
  • 1-4
  • (p.46 - 52)

Microwires for medical applications

CZU: 538.9+544.6+620.19+669

Authors:

Adar, Eliezer; Avdeev, Alexandr; Baranov, Serghei; Kilo, M.; Sobolev, Nicolai; Yosher, A.

Summary:

Results of a study for the medical applications of micro- and nanowires are described. The magnetic characteristics of glass-coated Fe-based cast amorphous microwires (with a positive magnetostriction constant) are proposed. The residual stress distributions in this type of microwires determine the domain structures and the switching field behavior. These wires are characterized by a rectangular hysteresis loop and can be used in measuring and identification engineering. A model that describes the process of the reversal magnetization of an amorphous microwire with the help of a large Barkhausen jump is proposed. The model is estimated with regard to the optimization of the signal-to-noise ratio. The results obtained do not contradict the existing physical concepts concerning a domain wall motion and are more general and realistic than the previous models.

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BibTeX

@article{ibn_98974,
author = {Adar, E. and Avdeev, A.A. and Baranov, S.A. and Kilo, M. and Sobolev, N.A. and Yosher, A.},
title = {<p>Microwires for medical applications</p>},
journal = {Moldavian Journal of the Physical Sciences},
year = {2019},
volume = {18 (1-4)},
pages = {46-52},
month = {Dec},
abstract = {(EN) <p>Results of a study for the medical applications of micro- and nanowires are described. The magnetic characteristics of glass-coated Fe-based cast amorphous microwires (with a positive magnetostriction constant) are proposed. The residual stress distributions in this type of microwires determine the domain structures and the switching field behavior. These wires are characterized by a rectangular hysteresis loop and can be used in measuring and identification engineering. A model that describes the process of the reversal magnetization of an amorphous microwire with the help of a large Barkhausen jump is proposed. The model is estimated with regard to the optimization of the signal-to-noise ratio. The results obtained do not contradict the existing physical concepts concerning a domain wall motion and are more general and realistic than the previous models.</p>},
url = {https://ibn.idsi.md/vizualizare_articol/98974},
}

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ADAR, Eliezer; AVDEEV, Alexandr; BARANOV, S.; KILO, M.; SOBOLEV, Nicolai; YOSHER, A.. Microwires for medical applications. In: Moldavian Journal of the Physical Sciences. 2019, nr. 1-4(18), pp. 46-52. ISSN 1810-648X.

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