Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) 阿里云 lit azw3 txt pdf caj 下载 在线

Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学)电子书下载地址
- 文件名
- [epub 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) epub格式电子书
- [azw3 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) azw3格式电子书
- [pdf 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) pdf格式电子书
- [txt 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) txt格式电子书
- [mobi 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) mobi格式电子书
- [word 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) word格式电子书
- [kindle 下载] Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学) kindle格式电子书
内容简介:
《压电与铁电体的断裂力学(英文版)》是关于压电/铁电吲体断裂力学的专著,从理论分析、数值计算和实验观察三个方面比较全面和系统地阐述了压电/铁电固体的断裂问题,强调静态、动态和界面断裂问题的力学提法以及力电耦合效应所导致的电致断裂的物理本质。《压电与铁电体的断裂力学》的上要特色是:详细描述了压电/铁电材料的基本方程以及与断裂问题相关的一般解.以图的形式提供了大量的数值计算结果和实验结果,用简洁的语言解释了复杂的力电耦合断裂问题。《压电与铁电体的断裂力学》的这些特色使固体力学、材料科学、应用物理和机械工程领域的渎者能够很容易抓住问题的物理本质和把握压电/铁电固体断裂力学的研究现状。
书籍目录:
chapter 1 introduction
1.1 background of the research on fracture mechanics of
piezoelectric/ferroelectric materials
1.2 development course and trend
1.3 framework of the book and content arrangements
references
chapter 2 physical and material properties of dielectrics
2.1 basic concepts of piezoelectric/ferroelectric materials
2.2 crystal structure of dielectrics
2.3 properties of electric polarization and piezoelectricity
2.3.1 microscopic mechanism of polarization
2.3.2 physical description of electric polarization
2.3.3 dielectric c***tant tensor of crystal and its symmetry
2.4 domain switch of ferroelectrics
2.4.1 electric domain and domain structure
2.4.2 switching of electric domain and principles for domain
switch
references
chapter 3 fracture of piezoelectric/ferroelectric materials
experiments and results
3.1 experimental approaches and techniques under an
electromechanical coupling field
3.1.1 high-voltage power supply
3.1.2 high voltage insulation
3.1.3 moire interferometry
3.1.4 digital speckle correlation method
3.1.5 method of polarized microscope
3.1.6 experimental facilities
3.2 anisotropy of fracture toughness
3.3 electric field effect on fracture toughness
3.4 fracture behavior of ferroelectric nano-composites
3.5 measurement of strain field near electrode in double-layer
structure of piezoelectric ceramics
3.6 observation of crack types near electrode tip
3.7 experimental results and ***ysis related to ferroelectric
single crystal out-of-plane polarized
3.7.1 restorable domain switch at crack tip driven by low electric
field
3.7.2 cyclic domain switch driven by cyclic electric field
3.7.3 electric crack propagation and evolution of crack tip
electric domain
3.8 experimental results and ***ysis concerning in-plane polarized
ferroelectric single crytal
3.8.1 resp***e of specimen under a positive electric field
3.8.2 crack tip domain switch under low negative electric
field
3.8.3 domain switching zone near crack tip under negative
field.
3.8.4 evolution of electric domain near crack tip under altemating
electric field
references
chapter 4 basic equati*** of piezoelectric materials
4.1 basic equati***
4.1.1 piezoelectric equati***
4.1.2 gradient equati*** and balance equati***
4.2 c***traint relati*** between various electroelastic
c***tants
4.3 electroelastic c***tants of piezoelectric materials
4.3.1 coordinate transformation between vector and tensor of the
second order
4.3.2 coordinate transformation of electroelastic c***tants
4.3.3 electroelastic c***tant matrixes of piezoelectric crystals
vested in 20 kinds of point groups
4.4 goveming differential equati*** and boundary conditi*** of
electromechanical coupling problems
4.4.1 governing differential equati*** of electromechanical
coupling problems
4.4.2 boundary conditi*** of electromechanical coupling
references
chapter 5 general soluti*** to electromechanical coupling
problems of piezoelectric materials
5.1 extended stroh formalism for piezoelectricity
5.1.1 extended stroh formalism
5.1.2 mathematical properties and important relati*** of stroh
formalism
5.2 lekhniskii formalism for piezoelectricity
5.3 general soluti*** to two-dimensional problems of transversely
isotropic piezoelectric materials
5.3.1 the general soluti*** to the anti-plane problems of
transversely isotropic piezoelectric materials
5.3.2 the general soluti*** to the in-plane problems of
transverselyi sotropic piezoelectric materials--stroh method
5.3.3 the general soluti*** to the in-plane problems of
transverselyi sotropic piezoelectric materials--lekhniskii
method
5.4 general soluti*** to three-dimensional problems of
transverselyi sotropic piezoelectric materials
references
chapter 6 fracture mechanics of homogeneous piezoelectric
materials
6.1 anti-plane fracture problem
6.2 in-plane fracture problem
6.3 three dimensional fracture problem
6.3.1 description of problem
6.3.2 derivation ofelectroelastic fields
*** electromechanical coupling problem for a dielectric elliptic
***
***.1 anti-plane problem of transversely isotropic piezoelctric
material containing dielectric ellipic ***s
***.2 generalized plane problems of piezoelectric materials
containing a dielectric elliptic ***
6.5 influence on crack tip field imposed by electric boundary
conditi*** along the crack surface
references
chapter 7 interface fracture mechanics of piezoelectric
materials
7.1 interracial cracks in piezoelectric materials under uniform
electromechanical loads
7.1.1 tip field of interracial crack
7.1.2 full field soluti*** for an impermeable interfacial
crack
7.2 effect of material properties on interfacial crack tip
field
7.3 green's functi*** for piezoelectric materials with
aninterfacial crack
7.3.1 brief review of green's functi*** for
piezoelectricmaterials
7.3.2 green's functi*** for anti-plane interracial cracks
references
chapter 8 dynamic fracture mechanics of piezoelectric
materials
8.1 scattering of elastic waves in a cracked piezoelectrics
8.1.1 basic concepts concerning propagation of elastic wavein a
piezoelectrics
8.1.2 dominant research work on elastic wave scattering causedby
cracks in piezoelectrics
8.1.3 scattering of love wave caused by interficial cracks
inlayered elastic half-space of piezoelectrics
8.2 moving cracks in piezoelectric medium
8.2.1 anti-plane problems of moving interficial cracks
8.2.2 the plane problem of moving cracks
8.3 transient resp***e of a cracked piezoelectrics to
electromechanicalimpact load
8.3.1 anti-plane problems of cracked piezoelectrics under
impactelectromechanical loads
8.3.2 transient resp***e of crack mode-lli in
strip-shapedpiezoelectric medium
8.3.3 in-plane problems of cracked piezoelectrics under the
actionof impact electromechanical loads
8.4 dynamic crack propagation in piezoelectric materials
8.4.1 dynamic propagation of conducting crack mode-iii
8.4.2 dynamic propagation of dielectric crack mode-m
references
chapter 9 nonlinear fracture mechanics of ferroelectric
materials
9.1 nonlinear fracture mechanical model
9.1.1 electrostriction model
9.1.2 dugdale model (strip saturation mode)
9.2 domain switching toughening model
9.2.1 decoupled isotropy model
9.2.2 anisotropy model for electromechanical coupling
9.3 nonlinear crack opening displacement model
9.3.1 definition of crack opening displacement
9.3.2 crack opening displacement 8o caused by piezoelectric
effect
9.3.3 effect a8 of domain switching on crack opening
displacement
9.4 in***ction between crack tip domain switching of batio3 single
crystal and crack growth under electromechanical load
9.4.1 experiment principle and technology
9.4.2 experimental phenomena
9.4.3 ***ysis of domain switching zone
9.4.4 ferroelastic domain switching toughening
references
chapter 10 fracture criteria
10.1 stress intensity factor criterion
10.2 energy release rate criterion
10.2.1 total energy release rate criterion
10.2.2 mechanical strain energy release rate criterion
10.3 energy density factor criterion
10.4 further discussion on stress intensity factor criterion
10.5 cod criterion
references
chapter 11 electro-elastic concentrati*** induced by electrodes
inpiezoelectric materials
11.1 electroelastic field near surface electrodes
11.1.1 electroelastic field near stripe-shapedsurface
electrodes
11.1.2 electroelastic field near circular surface electrodes
11.2 electroelastic field near interface electrode
11.2.1 general solution to the interface electrode of anisotropic
piezoelectric bi-materials
11.2.2 electroelastic field near the interface electrode in
transversely isotropic piezoelectric bi-materials
11.3 electroelastic field in piezoelectric ceramic-electrode
layered structures
11.3.1 laminated structure model, experimental set-up andfinite
element calculation model
11.3.2 numerical calculation and experimentally
measuredresults
references
chapter 12 electric-induced fatigue fracture
12.1 experimental observation and results
12.1.1 electrically induced fatigue experiment by cao andevans
(1994)
12.1.2 electrically induced fatigue experiment of samplescontaining
penetrating cracks
12.2 phenomenological model
12.2.1 model i
12.2.2 model ii
12.3 domain switching model
12.3.1 electrically induced fatigue investigated by means ofcrack
tip intensity factor
12.3.2 investigation of electrically induced fatigue by means
ofcrack opening displacement (cod)
references
chapter 13 numerical method for***yzing fracture of
piezoelectricand ferroelectric materials
13.1 generalized variation principle
13.1.1 generalized variation principle of linear
elasticmechanics
13.1.2 variation principle of electromechanical coupling
problem
13.2 finite element method for piezoelectric material
fracture
13.2.1 basic format of finite element for piezoelectric
fracture
13.2.2 calculation example: the electromechanical field around the
circular *** in an infinite piezoelectric matrix:
13.2.3 calculation example: model of piezoelectric material with
two-sided notches
13.3 meshless method for piezoelectric material fracture
13.3.1 basic format of electromechanical coupling meshless
method
13.3.2 some problems about electromechanical coupling meshless
method
13.3.3 numerical example
13.4 nonlinear finite element ***ysis of ferroelectric material
fracture
13.4.1 solution of field quantity with given electric domain
distribution
13.4.2 new electric domain distribution and finite element
i***tive process determined by field quantity
13.4.3 calculation example: ferroelectric crystal containing
insulating circular *** plus vertical electric field
13.4.4 calculation example: ferroelectric crystal containing
insulating crack plus electric field (e = 0.72ec) perpendicular to
crack surface
references
appendix the material c***tants of piezoelectric ceramics
作者介绍:
暂无相关内容,正在全力查找中
出版社信息:
暂无出版社相关信息,正在全力查找中!
书籍摘录:
暂无相关书籍摘录,正在全力查找中!
在线阅读/听书/购买/PDF下载地址:
原文赏析:
暂无原文赏析,正在全力查找中!
其它内容:
书籍介绍
《压电与铁电体的断裂力学》是关于压电/铁电材料断裂力学的专著,从理论分析、数值计算和实验观察三个方面比较全面、系统地阐述了压电/铁电材料的电致断裂问题,强调静态、动态和界面断裂问题的力学提法以及力电耦合效应所导致的电致断裂的物理本质。《压电与铁电体的断裂力学》的主要特色是:从晶体学的角度简要介绍了压电/铁电材料的基本特征;详细描述了压电材料的基本方程以及与断裂问题相关的一般解;以图的形式提供了大量的数值结果;给出了主题词和作者索引;用简洁的语言解释了复杂的电致断裂问题。
网站评分
书籍多样性:5分
书籍信息完全性:9分
网站更新速度:4分
使用便利性:9分
书籍清晰度:5分
书籍格式兼容性:8分
是否包含广告:7分
加载速度:8分
安全性:4分
稳定性:9分
搜索功能:4分
下载便捷性:3分
下载点评
- 不亏(240+)
- 中评多(515+)
- 无缺页(387+)
- 字体合适(155+)
- 一星好评(506+)
- 还行吧(142+)
- 小说多(204+)
- 强烈推荐(174+)
- 博大精深(168+)
- 品质不错(85+)
下载评价
- 网友 养***秋:
我是新来的考古学家
- 网友 国***舒:
中评,付点钱这里能找到就找到了,找不到别的地方也不一定能找到
- 网友 石***致:
挺实用的,给个赞!希望越来越好,一直支持。
- 网友 孔***旋:
很好。顶一个希望越来越好,一直支持。
- 网友 菱***兰:
特好。有好多书
- 网友 蓬***之:
好棒good
- 网友 焦***山:
不错。。。。。
- 网友 索***宸:
书的质量很好。资源多
- 网友 相***儿:
你要的这里都能找到哦!!!
喜欢"Fracture Mechanics of Piezoelectric and Ferroelectric Solids(压电与铁电体的断裂力学)"的人也看了
文言文原来这么简单:高中版 阿里云 lit azw3 txt pdf caj 下载 在线
课例研究 安桂清 著 华东师范大学出版社【放心购买 无忧售后】 阿里云 lit azw3 txt pdf caj 下载 在线
作为文化的传播 阿里云 lit azw3 txt pdf caj 下载 在线
房屋拆迁、征地补偿全程操作 阿里云 lit azw3 txt pdf caj 下载 在线
荀子品读 阿里云 lit azw3 txt pdf caj 下载 在线
【官方正版 16开精装全4册 】四书五经*** 精装正版文白对照原文白话文翻译 四书五经 中华书局 全本全注全译大学 论语 孟子 中庸 周易经 尚书 诗经 礼记 春秋图 阿里云 lit azw3 txt pdf caj 下载 在线
顶级样板房(5) 阿里云 lit azw3 txt pdf caj 下载 在线
扶贫济困的保险 阿里云 lit azw3 txt pdf caj 下载 在线
2022版高考快递·高考一年真题(老高考版)物理 阿里云 lit azw3 txt pdf caj 下载 在线
高中英语(第三册) 阿里云 lit azw3 txt pdf caj 下载 在线
- 搞定人摆平事 阿里云 lit azw3 txt pdf caj 下载 在线
- 9787301226315 阿里云 lit azw3 txt pdf caj 下载 在线
- 用户思维+ 好产品让用户为自己尖叫 阿里云 lit azw3 txt pdf caj 下载 在线
- 360度兵器全解:步枪 360度世界兵器全解介绍步枪***机枪舰艇手枪战车战机枪武器大百科全书6-8-15岁关于枪的儿童军事科普书籍360°枪械图书 阿里云 lit azw3 txt pdf caj 下载 在线
- 绳索救援团队技术 阿里云 lit azw3 txt pdf caj 下载 在线
- 海外直订Relaxing Colouring Book for Girls: Super Cute Kawaii Animals Coloring Pages 女孩轻松涂色书:超级可爱可爱的动物涂色页 阿里云 lit azw3 txt pdf caj 下载 在线
- 药学专业知识(一)【国家执业药师资格考试习题集】 阿里云 lit azw3 txt pdf caj 下载 在线
- 同等学力申请硕士学位英语考试阅读理解高分突破 阿里云 lit azw3 txt pdf caj 下载 在线
- 农村环境保护你问我答/乡村生产生活热点解答系列 阿里云 lit azw3 txt pdf caj 下载 在线
- 天利38套 23版 新教材 思想政治人教选择性必修1 对接新高考单元专题测试卷 22-23学年推荐 阿里云 lit azw3 txt pdf caj 下载 在线
书籍真实打分
故事情节:3分
人物塑造:8分
主题深度:8分
文字风格:3分
语言运用:9分
文笔流畅:4分
思想传递:7分
知识深度:8分
知识广度:3分
实用性:5分
章节划分:8分
结构布局:5分
新颖与独特:5分
情感共鸣:6分
引人入胜:6分
现实相关:5分
沉浸感:8分
事实准确性:7分
文化贡献:3分