Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence

Effects of electric field-frequency, electric field-amplitude, and mechanical stress on the hysteresis area were investigated on soft PZT ceramic. At stress-free condition, the investigation found the area scales with frequency and field-amplitude in power-law form, 〈A〉 α f-0.25E0; however, with dif...

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Main Authors: Rattikorn Yimnirun, Supon Ananta, Yongyut Laosiritaworn, Athipong Ngamjarurojana, Supattra Wongsaenmai
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/61157
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spelling th-cmuir.6653943832-611572018-09-10T04:09:54Z Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence Rattikorn Yimnirun Supon Ananta Yongyut Laosiritaworn Athipong Ngamjarurojana Supattra Wongsaenmai Materials Science Physics and Astronomy Effects of electric field-frequency, electric field-amplitude, and mechanical stress on the hysteresis area were investigated on soft PZT ceramic. At stress-free condition, the investigation found the area scales with frequency and field-amplitude in power-law form, 〈A〉 α f-0.25E0; however, with different set of exponents in comparing to those in the investigation on thin films structure. On the other hand, with compressive stresses turning on, the same set of the exponents with the stress-free condition is found to confirm universality. In addition, the scaling form of the area to triple parameters; i.e., frequency, field-amplitude, and stress in a power law form, 〈A〉 - 〈Aρ=0= 〈 A Aρ= 0〉 α f0.25- 0.25 E0ρ0.44, was obtained. 2018-09-10T04:05:43Z 2018-09-10T04:05:43Z 2007-12-01 Journal 15635112 00150193 2-s2.0-70349455332 10.1080/00150190701533330 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=70349455332&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/61157
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Materials Science
Physics and Astronomy
spellingShingle Materials Science
Physics and Astronomy
Rattikorn Yimnirun
Supon Ananta
Yongyut Laosiritaworn
Athipong Ngamjarurojana
Supattra Wongsaenmai
Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence
description Effects of electric field-frequency, electric field-amplitude, and mechanical stress on the hysteresis area were investigated on soft PZT ceramic. At stress-free condition, the investigation found the area scales with frequency and field-amplitude in power-law form, 〈A〉 α f-0.25E0; however, with different set of exponents in comparing to those in the investigation on thin films structure. On the other hand, with compressive stresses turning on, the same set of the exponents with the stress-free condition is found to confirm universality. In addition, the scaling form of the area to triple parameters; i.e., frequency, field-amplitude, and stress in a power law form, 〈A〉 - 〈Aρ=0= 〈 A Aρ= 0〉 α f0.25- 0.25 E0ρ0.44, was obtained.
format Journal
author Rattikorn Yimnirun
Supon Ananta
Yongyut Laosiritaworn
Athipong Ngamjarurojana
Supattra Wongsaenmai
author_facet Rattikorn Yimnirun
Supon Ananta
Yongyut Laosiritaworn
Athipong Ngamjarurojana
Supattra Wongsaenmai
author_sort Rattikorn Yimnirun
title Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence
title_short Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence
title_full Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence
title_fullStr Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence
title_full_unstemmed Scaling behavior of dynamic ferroelectric hysteresis in soft PZT ceramic: Stress dependence
title_sort scaling behavior of dynamic ferroelectric hysteresis in soft pzt ceramic: stress dependence
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=70349455332&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/61157
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