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- Article name
- Effect of the method of the manufacturing intelligent composite materials for frequency-selective devices on the formation of correlations "elemental composition - phase-grain structure - macro-responses"
- Authors
- ANDRUSHINA I. N., , futur6@mail.ru, Research Institute of Physics of Southern Federal University, Rostov-on-Don, Russia
SHILKINA L. A., , lid-shilkina@yandex.ru, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
DUDKINA S. I., , s.i.dudkina@yandex.ru, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
REZNICHENKO L. A., , lareznichenko@sfedu.ru, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
ANDRYUSHIN K. P., , kpandryushin@gmail.com, Research Institute of Physics, Southern Federal University; Integrated Research Institute named after H. I. Ibragimov RAS, Rostov-on-Don, Russia; Grozny, Russia
NAGAENKO A. V., , nagaenko@sfedu.ru, Institute of High Technologies and Piezotechnics, Southern Federal University, Rostov-on-Don, Russia
KHASBULATOV S. V., , sidek80@bk.ru, Integrated Research Institute named after H. I. Ibragimov RAS; Chechen State University named after A. A. Kadyrov, Grozny, Russia
- Keywords
- ferropiezoelectric materials / technologies / resonant frequency stability
- Year
- 2023 Issue 4 Pages 34 - 40
- Code EDN
- CCSSKH
- Code DOI
- 10.52190/2073-2562_2023_4_34
- Abstract
- Two ferropiezoelectric materials for the frequency-selective devices were fabricated by two-stage solid-phase synthesis followed by sintering according to conventional ceramic technology and hot pressing, and a comprehensive study of their electrophysical properties was carried out. The comparability of the electrophysical parameters of these materials, including the stability of the resonant frequency during their manufacture by different methods, is shown. This allows us to recommend the traditional method of the manufacturing such materials, without the use of the expensive hot pressing.
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