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    Academic Journal

    Source: Proceedings of the National Academy of Sciences of Belarus. Physical-technical series; № 3 (2016); 98-104 ; Известия Национальной академии наук Беларуси. Серия физико-технических наук; № 3 (2016); 98-104 ; 2524-244X ; 1561-8358 ; undefined

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    Relation: https://vestift.belnauka.by/jour/article/view/264/262; Chiriac, H. Amorphous Glass-Covered Magnetic Wires: Preparation, Properties / H. Chiriac, T.-A. Ovari // Applications Progr. Mater. Sci. – 1996. – Vol. 40. – P. 333–407.; Zhukov A. Magnetic properties and applications of ferromagnetic Мicrowires with amorphous and nanocrystalline structure / A. Zhukov, V. Zhukova. – Nova Science Publishers, New York. – 2009.; On the state-of-the-art in magnetic Мicrowires and expected trends for scientific and technological studies / M. Vazquez [et al.] // Phys. Status Solidi A. – 2011. – Vol. 208. – P. 493–501.; Panina, L. Magneto-impedance effect in amorphous wires / L. Panina, K. Mohri // Appl. Phys. Lett. – 1994. – Vol. 65. – P. 1189–1191.; Knobel, M. Giant magnetoimpedance: concepts and recent progress / M. Knobel, K. R. Pirota // J. Magn. Magn. Mater. – 2002. – Vol. 242/245. – P. 33–40.; Tannous, C. Giant magneto-impedance and its applications / C. Tannous, J. Gieraltowski // Journal of Materials Science: Materials in Electronics. – 2004. – Vol. 15. – No 3. – P. 125–133.; Panina, L. V. Stress effect on magneto-impedance in amorphous wires at GHz frequencies and application to stresstuneable Мicrowave composite materials / L. V. Panina, S. I. Sandacci, D. P. Makhnovskiy // J. Appl. Phys. – 2005. – Vol. 97. – P. 013701–6.; Amorphous wire and CMOS IC-based sensitive Мicromagnetic sensors utilizing magnetoimpedance and stress-impedance (SI) effects / K. Mohri [et al.] // IEEE Trans. Magn. – 2002. – Vol. 38. –No. 5. – P. 3063–3068.; Super МI Sensor: Recent Advances of Amorphous Wire and CMOS-IC Magneto-Impedance Sensor / K. Mohri [et al.] // J. Nanoscience and Nanotechnology. – 2012. – Vol.12. – P. 7491– 7495.; Fernando, G. F. Fibre optic sensor systems for monitoring composite structures / G. F. Fernando // Reinf. Plast. – 2005. – Vol. 49. – P. 41–49.; Peters, K. Polymer optical fiber sensors – a review / K. Peters // Smart Mater. Struct. – 2011. –Vol. 20. – P. 013002–18.; Torrents, J. M. Impedance spectra of fiber-reinforced cement-based composites. A modeling approach / J. M. Torrents, T. O. Mason, E. J. Garboczi // Cem. Concr. Research. – 2000. – Vol. 30. – P. 585–592.; Intrinsic conductivity of short conductive fibers in composites by impedance spectroscopy / A. D. Hixson [et al.] // J. Electroceramics. – 2001. – Vol. 7. – P. 189–195.; Electrical impedance spectra to monitor damage during tensile loading of cement composites / A. Peled [et al.] // ACI Maters. Journal. – 2001. – Vol. 98. – P. 313–322.; Analysis of the impedance spectra of short conductive fiber reinforced composites / J. M. Torrents [et al.] // J. Mater. Sci. – 2001. – Vol. 36. – P. 4003–12.; Hou, T. C Electrical impedance tomographic methods for sensing strain fields and crack damage in cementitious structures / T. C. Hou, J. P. Lynch // J. Intel. Mater. Syst. Struct. – 2009. – Vol. 20. – P. 1363–1379.; Magnetostrictive properties of epoxy resins modified with Terfenol-D particles for detection of internal stress in CFRP. Part 1: materials and process / M. Kubicka [et al.] // J. Mater. Sci. – 2012. –Vol. 47. – P. 5752–5759.; Magnetostrictive properties of epoxy resins modified with Terfenol-D particles for detection of internal stress in CFRP. Part 2: evaluation of stress detection / M. Kubicka [et al.] // J. Mater. Sci. – 2013. – Vol. 48. – P. 6578–6584.; Field-dependent surface impedance tensor in amorphous wires with two types of magnetic anisotropy: helical and circumferential / D. P. Makhnovskiy [et al.] // Phys Rev B. – 2001. – Vol. 63. –P. 144424–144441.; Magnetostriction of Co–Fe-Based Amorphous Soft Magnetic Мicrowires / A. Zhukov [et al.] // Journal of Electronic Materials. –2015. – Vol. 44. – P. 1–9.; Valve-like behaviour of the magnetoimpedance in the GHz range / S. Sandacci [et al.] // J. Magn. Magn. Mat. – 2004. – Vol. 272. – P. 1855–1857.; Stress effect on magneto-impedance (МI) in amorphous wires at GHz frequencies and application to stress-tuneable Мicrowave composite materials / L. V. Panina, [et al.] // J. Appl. Phys. – 2005. – Vol. 97. – P. 013701–013703.; https://vestift.belnauka.by/jour/article/view/264; undefined

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    Academic Journal

    Contributors: RFFI, L.V. Panina, V.S. Larin, Director of MFTI Ltd., РФФИ, Л. В. Панина, В. С. Ларин, директору компании MFTI Ltd

    Source: Izvestiya Vysshikh Uchebnykh Zavedenii. Materialy Elektronnoi Tekhniki = Materials of Electronics Engineering; Том 18, № 3 (2015); 201-204 ; Известия высших учебных заведений. Материалы электронной техники; Том 18, № 3 (2015); 201-204 ; 2413-6387 ; 1609-3577 ; 10.17073/1609-3577-2015-3

    File Description: application/pdf

    Relation: https://met.misis.ru/jour/article/view/194/181; Makhnovskiy; D. P. Field−dependent surface impedance tensor in amorphous wires with helical and circumferential anisotropy / D. P. Makhnovskiy; L. V. Panina; D. J. Mapps // Phys. Rev. − 2001. − V. 63. − P. 144424.; Ipatov; M . Low−field hysteresis in the magnetoimpedance of amorphous microwires / M. Ipatov; V. Zhukova; A. Zhukov; J. Gonzalez; A. Zvezdin // Phys. Rev. − 2010. − V. 81. − Р. 134421.; Pirota; K. Magnetic properties and giant magnetoimpedance in a CoFeSiB glass−covered microwire / K. Pirota; L. Kraus; H. Chiriac; M. Knobel // J. Magn. Mag. Mat. − 2000. − V. 221; Iss. 3. − P. 243—247.; Mohri; K . Super MI sensor: recent advances of amorphous wire and CMOS−IC magneto−impedance sensor / K. Mohri; Y. Honkura; L. V. Panina; T. J. Uchiyama // Nanoscience and Nanotechnology. − 2012. − V. 12. − P. 7491—7495.; Uchiyama; T. Recent advances of pico −tesla resolution magneto−impedance sensor based on amorphous wire CMOS IC MI sensor / T. Uchiyama; K. Mohri; Y. Honkura; L. V. Panina // IEEE Trans. Magn. − 2012. − V. 48. − P. 3833—3839.; Zhukova; V. Optimization of giant magnetoimpedance in Co−rich amorphous microwires / V. Zhukova; A. Chizhik; A. Zhukov; A. Torcunov; V. Larin; J. Gonzalez // IEEE Trans. Magn. − 2002. − V. 38. − P. 3090—3092.; Chiriac; H. Magnetoelastic anisotropy of amorphous microwires / H. Chiriac; T. A. Ovari; A. Zhukov // J. Magn. Mag. Mater. − 2003 − V. 11. − Р. 254—255.; Talaat; A. Tailoring of magnetic properties and GMI effect of Co−rich amorphous microwires by heat treatment / A. Talaat; V. Zhukova; M. Ipatov; J. M. Blanco; L.Gonzalez−Legarreta; B. Hernando; J. J. del Val; J. Gonzalez; A. Zhukov // J. Appl. Phys. − 2014. − V. 41. − P. 115.; Zhukov; A . Tailoring of magnetic anisotropy of Fe –rich microwires by stress induced anisotropy / A. Zhukov; V. Zhukova; V. Larin; J. M. Blanco; J. Gonzalez // Phys. Rev. − 2006. − V. 24 − P. 384.; Zhukov; A. Tuning of magnetic properties and GMI effect of Co−based amorphous microwires by annealing / A. Zhukov; A. Talaat; J. M. Blanco; M. Ipatov; V. Zhukova // J. electronic mater. − 2014. − V. 43; N 12. − P. 4532—4539.; Zhukov; A . Magnetostriction in glass−coated magnetic microwires / A. Zhukov; V. Zhukova; J. M. Blanko; A. F. Cobeno; M. Vazques; J. Gonzalez // J. Magn. Mag. Mat. − 2003. − V. 10 − P. 151—157.; Юданов; Н. А . Недиагональный магнитоимпеданс в аморфных проводах и его применение в миниатюрных сенсорах слабых магнитных полей / Н. А. Юданов; А. А. Рудёнок; А. В. Колесников; Л. В. Панина; А. Т. Морченко; В. Г. Костишин // Изв. РАН; сер. физич. − 2014. − Т. 78. № 11.; Панина; Л. В. Использование явления недиагонального магнитоимпеданса для построения датчиков слабых магнитных полей и токов / Панина Л. В.; Юданов Н. А.; Морченко А. Т.; Костишин В. Г.; Крутогин Д. Г.; Рудёнок А. А. // Физико−химические аспекты изучения кластеров; наноструктур и наноматериалов. Межвуз. сб. науч. тр. − Тверь; 2013. − Вып. 5. С. 210—218.; Yudanov; N. A. High sensitivity magnetic sensors based on Off−diagonal magnetoimpedance in amorphous FeCoSiB wires / N. A. Yudanov; L. V. Panina; A. T. Morchenko; V. G. Kostishyn; P. A. Ryapolov // J. Nano− and Electronic Physics − 2013 − V. 5; N 4. − P. 04001 (4 pp).; Yudanov; N. A . Effect of bias fields on off−Diagonal magnetoimpedance (MI) sensor performance / N. A. Yudanov; A. A. Rudyonok; L. V. Panina; A. V. Kolesnikov; A. T. Morchenko; V. G. Kostishyn // J. Nano− and Electronic Physics − 2014 − V. 6; N 3. − P. 03046 (4 pp).; https://met.misis.ru/jour/article/view/194

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    Academic Journal

    Source: Izvestiya Vysshikh Uchebnykh Zavedenii. Radioelektronika; Vol. 56 No. 6 (2013); 28-33 ; Известия высших учебных заведений. Радиоэлектроника; Том 56 № 6 (2013); 28-33 ; Вісті вищих учбових закладів. Радіоелектроніка; Том 56 № 6 (2013); 28-33 ; 2307-6011 ; 0021-3470

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    Academic Journal

    File Description: application/pdf

    Relation: Гибкие многослойные конструкции экранов электромагнитного излучения = Flexible multilayer electromagnetic radiation shields / А. А. А. Ахмед [и др.] // Доклады БГУИР. – 2015. – № 5 (91). – С. 95–99.; https://libeldoc.bsuir.by/handle/123456789/4902

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