RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS

Background. The most important stimulus for the study of piezoceramic materials is the increasing requirements for extending the operating temperature range, improving the measurement characteristics, and the stability to destabilizing factors of the devices created on their basis. However, along...

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Main Authors: A.A. Trofimov, V.V. Kikot, E.A. Fokina, D.M. Markov, I.E. Smirnov
Format: Article
Language:English
Published: Penza State University Publishing House 2023-06-01
Series:Надежность и качество сложных систем
Subjects:
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author A.A. Trofimov
V.V. Kikot
E.A. Fokina
D.M. Markov
I.E. Smirnov
author_facet A.A. Trofimov
V.V. Kikot
E.A. Fokina
D.M. Markov
I.E. Smirnov
author_sort A.A. Trofimov
collection DOAJ
description Background. The most important stimulus for the study of piezoceramic materials is the increasing requirements for extending the operating temperature range, improving the measurement characteristics, and the stability to destabilizing factors of the devices created on their basis. However, along with a search for new promising materials and refinement of manufacturing technology to solve the above problems, the development of high-temperature textured materials for manufacturing multilayer piezoelectric transducer elements is becoming increasingly necessary. Materials and methods. Research methods were chosen based on the possibility of obtaining the most complete information about the change in the structure and properties of the material after sintering and polarization of products. When carrying out research, X-ray structural, radiographic, metallographic and electron-microscopic analyses were used. The measurements of mechanical and electrical strength, fracture resistance, dielectric permittivity, piezoelectric and segmented elastic characteristics of the products were carried out in the course of the work. Results. The technology of multilayer piezo packages production has been developed, the results of the technology of solid solution system piezoceramics production have been obtained, the structure, dielectric and piezoelectric properties of ceramics in the temperature range 20÷600 ℃ have been studied. Experimental samples of multilayer piezoelements were made.
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spelling doaj.art-ba2438b371cd4d2fa8363b842b919c552023-06-15T05:24:33ZengPenza State University Publishing HouseНадежность и качество сложных систем2307-42052023-06-01210.21685/2307-4205-2023-2-10RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTSA.A. Trofimov0V.V. Kikot1E.A. Fokina2D.M. Markov3I.E. Smirnov4Penza State UniversityPenza State UniversityPenza State UniversityPenza State UniversityPenza State UniversityBackground. The most important stimulus for the study of piezoceramic materials is the increasing requirements for extending the operating temperature range, improving the measurement characteristics, and the stability to destabilizing factors of the devices created on their basis. However, along with a search for new promising materials and refinement of manufacturing technology to solve the above problems, the development of high-temperature textured materials for manufacturing multilayer piezoelectric transducer elements is becoming increasingly necessary. Materials and methods. Research methods were chosen based on the possibility of obtaining the most complete information about the change in the structure and properties of the material after sintering and polarization of products. When carrying out research, X-ray structural, radiographic, metallographic and electron-microscopic analyses were used. The measurements of mechanical and electrical strength, fracture resistance, dielectric permittivity, piezoelectric and segmented elastic characteristics of the products were carried out in the course of the work. Results. The technology of multilayer piezo packages production has been developed, the results of the technology of solid solution system piezoceramics production have been obtained, the structure, dielectric and piezoelectric properties of ceramics in the temperature range 20÷600 ℃ have been studied. Experimental samples of multilayer piezoelements were made.piezosensitivitypiezoceramic elementpiezoceramic elementsmanufacturing technologymultilayer structurepiezoactuatormodelslip casting
spellingShingle A.A. Trofimov
V.V. Kikot
E.A. Fokina
D.M. Markov
I.E. Smirnov
RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS
Надежность и качество сложных систем
piezosensitivity
piezoceramic element
piezoceramic elements
manufacturing technology
multilayer structure
piezoactuator
model
slip casting
title RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS
title_full RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS
title_fullStr RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS
title_full_unstemmed RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS
title_short RESEARCH OF TECHNOLOGY FOR CREATING HIGH-TEMPERATURE TEXTURED MATERIALS FOR MANUFACTURING MULTILAYER PIEZO TRANSDUCER ELEMENTS
title_sort research of technology for creating high temperature textured materials for manufacturing multilayer piezo transducer elements
topic piezosensitivity
piezoceramic element
piezoceramic elements
manufacturing technology
multilayer structure
piezoactuator
model
slip casting
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