Research progress and flexible design of piezoelectric materials with wide temperature range

With the development of high temperature fields, such as automotive, petroleum, nuclear power and aerospace, piezoelectric materials with wide temperature range, as the core component of nondestructive testing and sustainable self-powered equipment used in these extreme environments, have become the...

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Main Authors: YANG Xiaofang, SHI Lei, WANG Wenyu, JIN Xin, NIU Jiarong, ZHU Zhengtao, LIN Tong
Format: Article
Language:zho
Published: Journal of Materials Engineering 2023-03-01
Series:Cailiao gongcheng
Subjects:
Online Access:http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2021.000611
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author YANG Xiaofang
SHI Lei
WANG Wenyu
JIN Xin
NIU Jiarong
ZHU Zhengtao
LIN Tong
author_facet YANG Xiaofang
SHI Lei
WANG Wenyu
JIN Xin
NIU Jiarong
ZHU Zhengtao
LIN Tong
author_sort YANG Xiaofang
collection DOAJ
description With the development of high temperature fields, such as automotive, petroleum, nuclear power and aerospace, piezoelectric materials with wide temperature range, as the core component of nondestructive testing and sustainable self-powered equipment used in these extreme environments, have become the hotspot of research in recent years. However, even the piezoelectric materials with wide temperature range owning excellent piezoelectricity and high temperature stability, the devices made of them could not have both flexibility and high-temperature resistance due to the embrittlement and hardness, resulting in the limitation in the application of high temperature precision operation and wearable health testing. Therefore, the flexible design of piezoelectric materials with wide temperature range, which can realize the preparation of high-temperature resistant, soft piezoelectric device and ultimately broaden the high temperature potential of device, become an important development direction for piezoelectric field. The research progress of piezoelectric materials with wide temperature range was introduced first in this paper, which includes materials (PZT, BT, KNN) used in the environment below 300 ℃ and Ⅲ-N material used in 500-1000 ℃. Then the flexible design technology was collected based on these materials, including direct-growth, growth-transfer and nano-composite. In the meantime, the influence of types of substrates or composite matrix on the high-temperature stability of final device was also analyzed.
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spelling doaj.art-a71fc139abb14a45b6a3ffa683c6856a2023-03-28T06:25:01ZzhoJournal of Materials EngineeringCailiao gongcheng1001-43812023-03-01513395110.11868/j.issn.1001-4381.2021.00061120230304Research progress and flexible design of piezoelectric materials with wide temperature rangeYANG Xiaofang0SHI Lei1WANG Wenyu2JIN Xin3NIU Jiarong4ZHU Zhengtao5LIN Tong6School of Textile Science and Engineering, Tian Gong University, Tianjin 300387, ChinaSchool of Textile Science and Engineering, Tian Gong University, Tianjin 300387, ChinaSchool of Textile Science and Engineering, Tian Gong University, Tianjin 300387, ChinaState Key Laboratory of Separation Membranes and Membrane Processes, School of Materials Science and Engineering, Tian Gong University, Tianjin 300387, ChinaSchool of Textile Science and Engineering, Tian Gong University, Tianjin 300387, ChinaSchool of Textile Science and Engineering, Tian Gong University, Tianjin 300387, ChinaSchool of Textile Science and Engineering, Tian Gong University, Tianjin 300387, ChinaWith the development of high temperature fields, such as automotive, petroleum, nuclear power and aerospace, piezoelectric materials with wide temperature range, as the core component of nondestructive testing and sustainable self-powered equipment used in these extreme environments, have become the hotspot of research in recent years. However, even the piezoelectric materials with wide temperature range owning excellent piezoelectricity and high temperature stability, the devices made of them could not have both flexibility and high-temperature resistance due to the embrittlement and hardness, resulting in the limitation in the application of high temperature precision operation and wearable health testing. Therefore, the flexible design of piezoelectric materials with wide temperature range, which can realize the preparation of high-temperature resistant, soft piezoelectric device and ultimately broaden the high temperature potential of device, become an important development direction for piezoelectric field. The research progress of piezoelectric materials with wide temperature range was introduced first in this paper, which includes materials (PZT, BT, KNN) used in the environment below 300 ℃ and Ⅲ-N material used in 500-1000 ℃. Then the flexible design technology was collected based on these materials, including direct-growth, growth-transfer and nano-composite. In the meantime, the influence of types of substrates or composite matrix on the high-temperature stability of final device was also analyzed.http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2021.000611piezoelectric materials with wide temperature rangeflexible and high-temperature resis-tantfilmpiezoelectric devices
spellingShingle YANG Xiaofang
SHI Lei
WANG Wenyu
JIN Xin
NIU Jiarong
ZHU Zhengtao
LIN Tong
Research progress and flexible design of piezoelectric materials with wide temperature range
Cailiao gongcheng
piezoelectric materials with wide temperature range
flexible and high-temperature resis-tant
film
piezoelectric devices
title Research progress and flexible design of piezoelectric materials with wide temperature range
title_full Research progress and flexible design of piezoelectric materials with wide temperature range
title_fullStr Research progress and flexible design of piezoelectric materials with wide temperature range
title_full_unstemmed Research progress and flexible design of piezoelectric materials with wide temperature range
title_short Research progress and flexible design of piezoelectric materials with wide temperature range
title_sort research progress and flexible design of piezoelectric materials with wide temperature range
topic piezoelectric materials with wide temperature range
flexible and high-temperature resis-tant
film
piezoelectric devices
url http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2021.000611
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