Zobrazeno 1 - 10
of 12
pro vyhledávání: '"D. M. Yusupov"'
Autor:
A. A. Amirov, I. A. Baraban, A. A. Grachev, A. P. Kamantsev, V. V. Rodionov, D. M. Yusupov, V. V. Rodionova, A. V. Sadovnikov
Publikováno v:
AIP Advances, Vol 10, Iss 2, Pp 025124-025124-4 (2020)
The bi- and tri- layered magnetoelectric composites were fabricated from magnetic Fe49Rh51 and piezoelectric PbZr0.53Ti0.47O3 materials. It was shown the electric field-induced stresses reduce the magnetization around magnetic phase transition temper
Externí odkaz:
https://doaj.org/article/1cdcc96f453d4a9d94b140205ad24072
Publikováno v:
Physics of the Solid State. 62:1346-1349
The magnetoelectric properties of ceramic samples of BiFe1 – xZnxO3 and Bi1 – xZnxFe1 – xZnxO3 multiferroics have been studied in magnetic fields from 0 to 80 kOe at room temperature. All the samples have the linear dependences of magnetoelectr
Autor:
Mario S. Reis, Ana L. Pires, B. Pimentel, J. H. Belo, Vanda Maria Sales de Andrade, M.A. Valente, Alberto M. Pereira, D. M. Yusupov, João P. Araújo, Abdulkarim Amirov, N. Barroca
Publikováno v:
Scientific Reports, Vol 9, Iss 1, Pp 1-10 (2019)
Scientific Reports
Scientific Reports
The coupling between electric, magnetic and elastic features in multiferroic materials is an emerging field in materials science, with important applications on alternative solid-state cooling technologies, energy harvesting and sensors/actuators. In
Autor:
D. M. Yusupov, N. Z. Abdulkadirova, Y. A. Chaudhary, S. T. Bendre, M. M. Guseynov, Abdulkarim Amirov
Publikováno v:
Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques. 12:732-736
The structure of ceramic BiFe1‒xZnxO3 multiferroic samples is investigated using the X-ray diffraction method and Mossbauer spectroscopy. X-ray diffraction analysis of the samples indicates the existence of the Bi12(Bi0.5Fe0.5)O19.5 impurity phase.
Autor:
N.A. Liedienov, Abdulkarim Amirov, I. I. Makoed, N. I. Gorbachuk, A. F. Ravinski, D. M. Yusupov, K. I. Janushkevich, A. V. Pashchenko
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 82:570-573
The structural and dielectric properties of Bi0.80Gd0.20–xLa x FeO3 (x = 0–0.20) samples are studied by means of X-ray diffraction and dielectric spectroscopy. Room-temperature dielectric functions are examined experimentally at 1–1010 Hz. The
Publikováno v:
Russian Aeronautics. 61:56-63
The accelerations that emerge in the disk wing during rotation have been found. The loading of wing elements have been determined when the blades are extended and retracted.
Publikováno v:
Materials Letters. 304:130626
The concept of control the state of a thermoresponsive polymer through magnetocaloric effect was proved using in situ experiments in a magnetic field. Composites consisting of a PNIPAM polymer coated with the magnetocaloric Gd were fabricated and stu
Publikováno v:
Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques. 12:336-338
Measurements of the direct magnetoelectric effect with respect to voltage are performed for threelayer structures of multiferroic composites. In the region of 83.6 kHz, corresponding to the resonance frequency, an anomalous increase in the magnetoele
Autor:
Valentina Zhukova, A.M. Mukhuchev, Arcady Zhukov, Abdulkarim Amirov, D. M. Yusupov, A. M. Aliev, Valeria Rodionova
Publikováno v:
Journal of Magnetism and Magnetic Materials. 510:166884
We have studied the magnetocaloric and magnetoelectric properties of a new type of the magnetoelectric composite that consisted of Heusler-type magnetic microwires embedded in a polyvinylidene fluoride piezoelectric polymer matrix fabricated using a
Autor:
Abdulkarim Amirov, A. A. Grachev, V. V. Rodionov, D. M. Yusupov, Alexandr V. Sadovnikov, Alexandr P. Kamantsev, Valeria Rodionova, I. Baraban
Publikováno v:
AIP Advances, Vol 10, Iss 2, Pp 025124-025124-4 (2020)
The bi- and tri- layered magnetoelectric composites were fabricated from magnetic Fe49Rh51 and piezoelectric PbZr0.53Ti0.47O3 materials. It was shown the electric field-induced stresses reduce the magnetization around magnetic phase transition temper