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fupeng9806

木虫 (正式写手)



ceramic(金币+1):谢谢参与
会关注此刊。
53楼2011-12-25 22:27:27
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polarwolf

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ceramic(金币+1):谢谢参与
积极回复本帖子,参与交流
70楼2011-12-26 16:00:11
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icic2012

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ceramic(金币+1):谢谢参与
是个很有潜力的journal,正符合我的专业方向
74楼2011-12-26 17:40:03
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ceramic

木虫 (小有名气)


ceramic: 回帖置顶 2011-12-29 05:34:44
上传一些该杂志发表的文章

Volume: 1, Issue: 1(2011) p. v
Abstract | Full Text (PDF, 32KB)
Title:         EDITORIAL NOTE

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  • 附件 1 : J.Adv.Dielec. 2011 V.pdf
  • 2011-12-29 05:29:20, 32.24 K
77楼2011-12-29 05:29:25
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ceramic

木虫 (小有名气)


ceramic: 回帖置顶 2011-12-29 05:34:49
Volume: 1, Issue: 1(2011) pp. 1-16     DOI: 10.1142/S2010135X11000021
Abstract | Full Text (PDF, 2,276KB) | References
Title:         MAGNETOELECTRIC RESPONSES IN MULTIFERROIC COMPOSITE THIN FILMS

Author(s):        
JIA-MIAN HU
Department of Materials Science and Engineering and State Key Lab of New Ceramics and Fine Processing, Tsinghua University, Beijing 100084, P. R. China
JING MA
Department of Materials Science and Engineering and State Key Lab of New Ceramics and Fine Processing, Tsinghua University, Beijing 100084, P. R. China
JING WANG
Department of Materials Science and Engineering and State Key Lab of New Ceramics and Fine Processing, Tsinghua University, Beijing 100084, P. R. China
ZHENG LI
Department of Materials Science and Engineering and State Key Lab of New Ceramics and Fine Processing, Tsinghua University, Beijing 100084, P. R. China
YUAN-HUA LIN
Department of Materials Science and Engineering and State Key Lab of New Ceramics and Fine Processing, Tsinghua University, Beijing 100084, P. R. China
C. W. NAN
Corresponding author.
Department of Materials Science and Engineering and State Key Lab of New Ceramics and Fine Processing, Tsinghua University, Beijing 100084, P. R. China
History:        

Received 20 September 2010

Abstract:        
Multiferroic composite thin films of ferroelectrics and magnets have attracted ever-increasing interest in most recent years. In this review, magnetoelectric (ME) responses as well as their underlying ME coupling mechanisms in such multiferroic composite thin films are discussed, oriented by their potential applications in novel ME devices. Among them, the direct ME response, i.e., magnetic-field control of polarization, can be exploited for micro-sensor applications (sensing magnetic field, electric current, light, etc.), mainly determined by a strain-mediated coupling interaction. The converse ME response, i.e., electric-field modulation of magnetism, offers great opportunities for new potential devices for spintronics and in data storage applications. A series of prototype ME devices based on both direct and converse ME responses have been presented. The review concludes with a remark on the future possibilities and scientific challenges in this field.

Keywords:        
Multiferroic; magnetoelectric effect; composite thin film; magnetoelectric devices; memory devices[ Last edited by ceramic on 2011-12-29 at 05:32 ]

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  • 附件 1 : J.Adv.Dielec. 2011 1.pdf
  • 2011-12-29 05:32:11, 2.22 M
78楼2011-12-29 05:31:00
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ceramic

木虫 (小有名气)


ceramic: 回帖置顶 2011-12-29 05:34:52
Volume: 1, Issue: 1(2011) pp. 17-31     DOI: 10.1142/S2010135X11000033
Abstract | Full Text (PDF, 1,495KB) | References
Title:         LOSS DETERMINATION METHODOLOGY FOR A PIEZOELECTRIC CERAMIC: NEW PHENOMENOLOGICAL THEORY AND EXPERIMENTAL PROPOSALS

Author(s):        
KENJI UCHINO
Corresponding author.
Electrical Engineering Department, International Center for Actuators and Transducers, The Pennsylvania State University, University Park, PA 16802, USA
Materials Science and Engineering, International Center for Actuators and Transducers, The Pennsylvania State University, University Park, PA 16802, USA
Office of Naval Research Global – Asia, Minato-ku, Tokyo 106-0032, Japan
YUAN ZHUANG
Electrical Engineering Department, International Center for Actuators and Transducers, The Pennsylvania State University, University Park, PA 16802, USA
SEYIT O. URAL
Materials Science and Engineering, International Center for Actuators and Transducers, The Pennsylvania State University, University Park, PA 16802, USA

History:        
Received 2 December 2010

Abstract:        
The key factor to the miniaturization of piezoelectric devices is power density, which is limited by the heat generation or loss mechanisms. There are three loss components in general in piezoelectric vibrators/resonators, i.e., dielectric, elastic and piezoelectric losses. The mechanical quality factor, determined by these three factors, is the Figure Of Merit (FOM) in the sense of loss or heat generation. In this paper, we introduce a new loss phenomenology and innovative measuring methods based on the theory. First, quality factors at resonance and antiresonance for the k31, k33, kt and k15 vibration modes are derived theoretically, and the methodology for determining loss factors in various orientations (i.e., loss anisotropy) is provided. For simplicity, we focus on materials with ∞ mm (equivalent to 6 mm) crystal symmetry for deriving the loss factors of a polycrystalline ceramic, and 14 different loss factors among 20 in total can be obtained from the measurements. Second, we propose the experimental methods for measuring both mechanical quality factors QA and QB at the resonance and antiresonance modes: a continuous admittance/impedance spectrum measuring method (traditional with temperature rise) and a burst mode (to circumvent the temperature effect).

Keywords:        
Piezoelectric; loss factor; quality factor; high power; piezoelectric loss; dielectric loss; elastic loss; admittance/impedance spectrum; burst mode

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  • 附件 1 : J.Adv.Dielec. 2011 17.pdf
  • 2011-12-29 05:33:52, 1.46 M
79楼2011-12-29 05:34:14
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lilac_c

至尊木虫 (知名作家)



ceramic(金币+1):谢谢参与
虽然不是我做的学科,也帮助顶一下,咱点钱
85楼2011-12-29 07:49:42
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njlk

木虫 (小有名气)



ceramic(金币+1):谢谢参与
不错啊,谢谢楼主了,呵呵!
87楼2011-12-29 07:58:37
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fenghq9921

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ceramic(金币+1):谢谢参与
再顶一个
88楼2011-12-29 08:05:26
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fenghq9921

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再顶一个
89楼2011-12-29 08:05:35
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简单回复
2011-12-25 21:38   回复  
ceramic(金币+1):谢谢参与
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祝福
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