An estimate is made of the upper limit of the toughening that might be expected by the crack tip stress induced reorientation of domains in ferroelectric ceramics. The calculation is based on obtaining the shielding stress intensity factor produced by the shear transformation of a zone surrounding the crack tip and extending over the crack surfaces. The estimate suggests that the toughening that might be expected is less than 10% even in the most ideal conditions. This case is contrasted with the much greater toughening which is expected from the crack tip stress induced phase transformations which are largely driven by the chemical, or bulk, free energy change of the transformation. (C) 2001 Elsevier Science Ltd. All rights reserved.
机构:
School of Materials Science and Engineering,Xiangtan UniversitySchool of Materials Science and Engineering,Xiangtan University
Cheng Luo
Cong Li
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机构:
School of Advanced Materials and Nanotechnology,Xidian University
Frontier Research Center of Thin Films and Coatings for Device Applications,Academy of Advanced Interdisciplinary Research,Xidian UniversitySchool of Materials Science and Engineering,Xiangtan University
Cong Li
Ke Cao
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机构:
School of Advanced Materials and Nanotechnology,Xidian University
Frontier Research Center of Thin Films and Coatings for Device Applications,Academy of Advanced Interdisciplinary Research,Xidian UniversitySchool of Materials Science and Engineering,Xiangtan University
Ke Cao
Junbao Li
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School of Materials Science and Engineering,Xiangtan UniversitySchool of Materials Science and Engineering,Xiangtan University
Junbao Li
Junhui Luo
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机构:
School of Materials Science and Engineering,Xiangtan UniversitySchool of Materials Science and Engineering,Xiangtan University
Junhui Luo
Qinghua Zhang
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School of Materials Science and Engineering,Xiangtan UniversitySchool of Materials Science and Engineering,Xiangtan University
Qinghua Zhang
QianQian Zhou
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机构:
College of Engineering,BIC-ESAT,Peking UniversitySchool of Materials Science and Engineering,Xiangtan University
QianQian Zhou
Fan Zhang
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机构:
School of Materials Science and Engineering,Xiangtan UniversitySchool of Materials Science and Engineering,Xiangtan University
Fan Zhang
Lin Gu
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机构:
Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of SciencesSchool of Materials Science and Engineering,Xiangtan University
Lin Gu
Li Yang
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机构:
School of Advanced Materials and Nanotechnology,Xidian University
Frontier Research Center of Thin Films and Coatings for Device Applications,Academy of Advanced Interdisciplinary Research,Xidian UniversitySchool of Materials Science and Engineering,Xiangtan University
Li Yang
Yichun Zhou
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机构:
School of Advanced Materials and Nanotechnology,Xidian University
Frontier Research Center of Thin Films and Coatings for Device Applications,Academy of Advanced Interdisciplinary Research,Xidian UniversitySchool of Materials Science and Engineering,Xiangtan University
机构:
Univ New S Wales, Sch Mat Sci & Engn, Sydney, NSW 2052, Australia
Univ Maryland, Dept Mat Sci & Engn, College Pk, MD 20742 USATokyo Inst Technol, Dept Innovat & Engn Mat, Midori Ku, Yokohama, Kanagawa 2268502, Japan
Anbusathaiah, V.
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Yamada, T.
Sakata, O.
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机构:
Natl Inst Mat Sci NIMS, Synchrotron Xray Stn, SPring 8, Sayo, Hyogo 6795148, Japan
Japan Synchrotron Radiat Res Inst JASRI, SPring 8, Sayo, Hyogo 6795198, JapanTokyo Inst Technol, Dept Innovat & Engn Mat, Midori Ku, Yokohama, Kanagawa 2268502, Japan
Sakata, O.
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机构:
Funakubo, H.
Nagarajan, V.
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机构:
Univ New S Wales, Sch Mat Sci & Engn, Sydney, NSW 2052, AustraliaTokyo Inst Technol, Dept Innovat & Engn Mat, Midori Ku, Yokohama, Kanagawa 2268502, Japan