Galvanomagnetic properties of La0.65Ca0.35MnO3 films with a thickness of 0.2 mum on Pb2.9Ba0.05Sr0.05(Zr0.4Ti0.6)O-3 ferroelectric ceramics substrates have been investigated. We have dicovered the monotonic irreversible increase of the film resistance by 3-5 time of value during several hours after multiple inversion of substrate polarization. The long-time relaxation (LTR) of film resistance is explained by dielecrtrization of film intercrystallite boundaries as a result of oxygen redistribution under action of inhomogeneous mechanical stress. In addition, the LTR of resistance of La0.8Sr0.2MnO3 and La0.6Sr0.2Mn1.2O3 ceramic samples has been investigated under action of different kind of mechanical stress: stretch, compression and hydrostatic press. Time dependence of resistance is described by R-0+DeltaRexp(-t/tau). The magnitude of LTR is 5-10 time greater then fast variation of resistance under action of stress. The sign of DeltaR is dependent on the kind of stress. The time constant (tau) has the value of 3-9 hours. (C) 2004 WILEYNCH Verlag GmbH & Co. KGaA, Weinheim.
机构:
Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R and D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Wei Z.
Yang X.
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R and D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Yang X.
Lv L.
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R and D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Lv L.
Zhang M.
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R and D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Zhang M.
Zhang Y.
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R and D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Zhang Y.
Journal of Modern Transportation,
2014,
22
(2):
: 112
-
117
机构:
McMaster Univ, Dept Mat Sci & Engn, 1280 Main St West, Hamilton, ON L8S 4L8, CanadaMcMaster Univ, Dept Mat Sci & Engn, 1280 Main St West, Hamilton, ON L8S 4L8, Canada
机构:
Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R&D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Zhantao Wei
Xinsheng Yang
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R&D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Xinsheng Yang
Li Lv
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R&D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Li Lv
Min Zhang
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R&D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Min Zhang
Yong Zhang
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Key Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China
Superconductivity and New Energy R&D Center, Southwest Jiaotong UniversityKey Laboratory of Magnetic Levitation Technologies and Maglev Trains, Ministry of Education of China