語系:
繁體中文
English
日文
簡体中文
說明(常見問題)
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
Advanced mechanics of composite mate...
~
Morozov, Evgeny V.
Advanced mechanics of composite materials[electronic resource] /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
620.11892
書名/作者:
Advanced mechanics of composite materials/ Valery V. Vasiliev, Evgeny V. Morozov.
作者:
Vasiliev, Valery V.
其他作者:
Morozov, Evgeny V.
出版者:
Amsterdam ; : Elsevier,, 2007.
面頁冊數:
xii, 491 p. : : ill. ;; 25 cm.
標題:
Composite materials - Mechanical properties.
標題:
Fibrous composites - Mechanical properties.
ISBN:
9780080453729
ISBN:
0080453724
書目註:
Includes bibliographical references and indexes.
內容註:
Chapter 1. Introduction -- 1.1 Structural Materials -- 1.2 Composite Materials -- 1.3 References -- Chapter 2. Fundamentals of Mechanics of Solids -- 2.1 Stresses -- 2.2 Equilibrium Equations -- 2.3 Stress Transformation -- 2.4 Principal Stresses -- 2.5 Displacements and Strains -- 2.6 Transformation of Small Strains -- 2.7 Compatibility Equations -- 2.8 Admissible Static and Kinematic Fields -- 2.9 Constitutive Equations for an Elastic Solid -- 2.10 Formulations of the Problem -- 2.11 Variational Principles -- -- Chapter 3. Mechanics of a Unidirectional Ply -- 3.1 Ply Architecture -- 3.2 Fiber-Matrix Interaction -- 3.3 Micromechanics of a Ply -- 3.4 Mechanical Properties of a Ply under Tension, Shear, and Compression -- 3.5 Hybrid Composites -- 3.6 Composites with High Fiber Fraction -- 3.7 Phenomenological Homogeneous Model of a Ply -- -- Chapter 4. Mechanics of a Composite Layer -- 4.1 Isotropic Layer -- 4.2 Unidirectional Orthotropic Layer -- 4.3 Unidirectional Anisotropic Layer -- 4.4 Orthogonally Reinforced Orthotropic Layer -- 4.5 Angle-Ply Orthotropic Layer -- 4.6 Fabric Layers -- 4.7 Lattice Layer -- 4.8 Spatially Reinforced Layers and Bulk Materials -- Chapter 5. Mechanics of Laminates -- 5.1 Stiffness Coefficients of a Generalized Anisotropic Layer -- 5.2 Stiffness Coefficients of a Homogeneous Layer -- 5.3 Stiffness Coefficients of a Laminate -- 5.4 Symmetric Laminates -- 5.5 Engineering Stiffness Coefficients of Orthotropic Laminates -- 5.6 Quasi-Homogeneous Laminates -- 5.7 Quasi-Isotropic Laminates -- 5.8 Antisymmetric Laminates -- 5.9 Sandwich Structures -- 5.10 Coordinate of the Reference Plane -- 5.11 Stresses in Laminates -- 5.12 Example -- Chapter 6. Failure Criteria and Strength of Laminates -- 6.1 Failure Criteria for an Elementary Composite Layer or Ply -- 6.2 Practical Recommendations -- 6.3 Examples -- 6.4 Allowable Stresses for Laminates Consisting of Unidirectional Plies -- Chapter 7. Environmental, Special Loading, and Manufacturing Effects -- 7.1 Temperature Effects -- 7.2 Hydrothermal Effects and Aging -- 7.3 Time and Time-Dependent Loading Effects -- 7.4 Manufacturing Effects -- Chapter 8. Optimal Composite Structures -- 8.1 Optimal Fibrous Structures -- 8.2 Composite Laminates of Uniform Strength -- 8.3 Application to Optimal Composite Structures.
摘要、提要註:
Composite materials have been representing most significant breakthroughs in various industrial applications, particularly in aerospace structures, during the past thirty five years. The primary goal of Advanced Mechanics of Composite Materials is the combined presentation of advanced mechanics, manufacturing technology, and analysis of composite materials. This approach lets the engineer take into account the essential mechanical properties of the material itself and special features of practical implementation, including manufacturing technology, experimental results, and design characteristics. Giving complete coverage of the topic: from basics and fundamentals to the advanced analysis including practical design and engineering applications. At the same time including a detailed and comprehensive coverage of the contemporary theoretical models at the micro- and macro- levels of material structure, practical methods and approaches, experimental results, and optimisation of composite material properties and component performance. The authors present the results of more than 30 year practical experience in the field of design and analysis of composite materials and structures. * Eight chapters progressively covering all structural levels of composite materials from their components through elementary plies and layers to laminates * Detailed presentation of advanced mechanics of composite materials * Emphasis on nonlinear material models (elasticity, plasticity, creep) and structural nonlinearity.
電子資源:
An electronic book accessible through the World Wide Web; click for information
電子資源:
An electronic book accessible through the World Wide Web; click for information
Advanced mechanics of composite materials[electronic resource] /
Vasiliev, Valery V.
Advanced mechanics of composite materials
[electronic resource] /Valery V. Vasiliev, Evgeny V. Morozov. - 2nd ed. - Amsterdam ;Elsevier,2007. - xii, 491 p. :ill. ;25 cm.
Includes bibliographical references and indexes.
Chapter 1. Introduction -- 1.1 Structural Materials -- 1.2 Composite Materials -- 1.3 References -- Chapter 2. Fundamentals of Mechanics of Solids -- 2.1 Stresses -- 2.2 Equilibrium Equations -- 2.3 Stress Transformation -- 2.4 Principal Stresses -- 2.5 Displacements and Strains -- 2.6 Transformation of Small Strains -- 2.7 Compatibility Equations -- 2.8 Admissible Static and Kinematic Fields -- 2.9 Constitutive Equations for an Elastic Solid -- 2.10 Formulations of the Problem -- 2.11 Variational Principles -- -- Chapter 3. Mechanics of a Unidirectional Ply -- 3.1 Ply Architecture -- 3.2 Fiber-Matrix Interaction -- 3.3 Micromechanics of a Ply -- 3.4 Mechanical Properties of a Ply under Tension, Shear, and Compression -- 3.5 Hybrid Composites -- 3.6 Composites with High Fiber Fraction -- 3.7 Phenomenological Homogeneous Model of a Ply -- -- Chapter 4. Mechanics of a Composite Layer -- 4.1 Isotropic Layer -- 4.2 Unidirectional Orthotropic Layer -- 4.3 Unidirectional Anisotropic Layer -- 4.4 Orthogonally Reinforced Orthotropic Layer -- 4.5 Angle-Ply Orthotropic Layer -- 4.6 Fabric Layers -- 4.7 Lattice Layer -- 4.8 Spatially Reinforced Layers and Bulk Materials -- Chapter 5. Mechanics of Laminates -- 5.1 Stiffness Coefficients of a Generalized Anisotropic Layer -- 5.2 Stiffness Coefficients of a Homogeneous Layer -- 5.3 Stiffness Coefficients of a Laminate -- 5.4 Symmetric Laminates -- 5.5 Engineering Stiffness Coefficients of Orthotropic Laminates -- 5.6 Quasi-Homogeneous Laminates -- 5.7 Quasi-Isotropic Laminates -- 5.8 Antisymmetric Laminates -- 5.9 Sandwich Structures -- 5.10 Coordinate of the Reference Plane -- 5.11 Stresses in Laminates -- 5.12 Example -- Chapter 6. Failure Criteria and Strength of Laminates -- 6.1 Failure Criteria for an Elementary Composite Layer or Ply -- 6.2 Practical Recommendations -- 6.3 Examples -- 6.4 Allowable Stresses for Laminates Consisting of Unidirectional Plies -- Chapter 7. Environmental, Special Loading, and Manufacturing Effects -- 7.1 Temperature Effects -- 7.2 Hydrothermal Effects and Aging -- 7.3 Time and Time-Dependent Loading Effects -- 7.4 Manufacturing Effects -- Chapter 8. Optimal Composite Structures -- 8.1 Optimal Fibrous Structures -- 8.2 Composite Laminates of Uniform Strength -- 8.3 Application to Optimal Composite Structures.
Composite materials have been representing most significant breakthroughs in various industrial applications, particularly in aerospace structures, during the past thirty five years. The primary goal of Advanced Mechanics of Composite Materials is the combined presentation of advanced mechanics, manufacturing technology, and analysis of composite materials. This approach lets the engineer take into account the essential mechanical properties of the material itself and special features of practical implementation, including manufacturing technology, experimental results, and design characteristics. Giving complete coverage of the topic: from basics and fundamentals to the advanced analysis including practical design and engineering applications. At the same time including a detailed and comprehensive coverage of the contemporary theoretical models at the micro- and macro- levels of material structure, practical methods and approaches, experimental results, and optimisation of composite material properties and component performance. The authors present the results of more than 30 year practical experience in the field of design and analysis of composite materials and structures. * Eight chapters progressively covering all structural levels of composite materials from their components through elementary plies and layers to laminates * Detailed presentation of advanced mechanics of composite materials * Emphasis on nonlinear material models (elasticity, plasticity, creep) and structural nonlinearity.
Electronic reproduction.
Amsterdam :
Elsevier Science & Technology,
2007.
Mode of access: World Wide Web.
ISBN: 9780080453729
Source: 135327:135462Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
403663
Composite materials
--Mechanical properties.Index Terms--Genre/Form:
336502
Electronic books.
LC Class. No.: TA418.9.C6 / V374 2007eb
Dewey Class. No.: 620.11892
Advanced mechanics of composite materials[electronic resource] /
LDR
:05467cam 2200349Ia 4500
001
337571
003
OCoLC
005
20100729101520.0
006
m d
007
cr cn|||||||||
008
110620s2007 ne a ob 001 0 eng d
020
$a
9780080453729
020
$a
0080453724
029
1
$a
NZ1
$b
11778333
035
$a
(OCoLC)162131504
035
$a
ocn162131504
037
$a
135327:135462
$b
Elsevier Science & Technology
$n
http://www.sciencedirect.com
040
$a
OPELS
$c
OPELS
049
$a
TEFA
050
1 4
$a
TA418.9.C6
$b
V374 2007eb
082
0 4
$a
620.11892
$2
22
100
1
$a
Vasiliev, Valery V.
$3
356612
245
1 0
$a
Advanced mechanics of composite materials
$h
[electronic resource] /
$c
Valery V. Vasiliev, Evgeny V. Morozov.
250
$a
2nd ed.
260
$a
Amsterdam ;
$a
Boston ;
$a
London :
$b
Elsevier,
$c
2007.
300
$a
xii, 491 p. :
$b
ill. ;
$c
25 cm.
504
$a
Includes bibliographical references and indexes.
505
0
$a
Chapter 1. Introduction -- 1.1 Structural Materials -- 1.2 Composite Materials -- 1.3 References -- Chapter 2. Fundamentals of Mechanics of Solids -- 2.1 Stresses -- 2.2 Equilibrium Equations -- 2.3 Stress Transformation -- 2.4 Principal Stresses -- 2.5 Displacements and Strains -- 2.6 Transformation of Small Strains -- 2.7 Compatibility Equations -- 2.8 Admissible Static and Kinematic Fields -- 2.9 Constitutive Equations for an Elastic Solid -- 2.10 Formulations of the Problem -- 2.11 Variational Principles -- -- Chapter 3. Mechanics of a Unidirectional Ply -- 3.1 Ply Architecture -- 3.2 Fiber-Matrix Interaction -- 3.3 Micromechanics of a Ply -- 3.4 Mechanical Properties of a Ply under Tension, Shear, and Compression -- 3.5 Hybrid Composites -- 3.6 Composites with High Fiber Fraction -- 3.7 Phenomenological Homogeneous Model of a Ply -- -- Chapter 4. Mechanics of a Composite Layer -- 4.1 Isotropic Layer -- 4.2 Unidirectional Orthotropic Layer -- 4.3 Unidirectional Anisotropic Layer -- 4.4 Orthogonally Reinforced Orthotropic Layer -- 4.5 Angle-Ply Orthotropic Layer -- 4.6 Fabric Layers -- 4.7 Lattice Layer -- 4.8 Spatially Reinforced Layers and Bulk Materials -- Chapter 5. Mechanics of Laminates -- 5.1 Stiffness Coefficients of a Generalized Anisotropic Layer -- 5.2 Stiffness Coefficients of a Homogeneous Layer -- 5.3 Stiffness Coefficients of a Laminate -- 5.4 Symmetric Laminates -- 5.5 Engineering Stiffness Coefficients of Orthotropic Laminates -- 5.6 Quasi-Homogeneous Laminates -- 5.7 Quasi-Isotropic Laminates -- 5.8 Antisymmetric Laminates -- 5.9 Sandwich Structures -- 5.10 Coordinate of the Reference Plane -- 5.11 Stresses in Laminates -- 5.12 Example -- Chapter 6. Failure Criteria and Strength of Laminates -- 6.1 Failure Criteria for an Elementary Composite Layer or Ply -- 6.2 Practical Recommendations -- 6.3 Examples -- 6.4 Allowable Stresses for Laminates Consisting of Unidirectional Plies -- Chapter 7. Environmental, Special Loading, and Manufacturing Effects -- 7.1 Temperature Effects -- 7.2 Hydrothermal Effects and Aging -- 7.3 Time and Time-Dependent Loading Effects -- 7.4 Manufacturing Effects -- Chapter 8. Optimal Composite Structures -- 8.1 Optimal Fibrous Structures -- 8.2 Composite Laminates of Uniform Strength -- 8.3 Application to Optimal Composite Structures.
520
$a
Composite materials have been representing most significant breakthroughs in various industrial applications, particularly in aerospace structures, during the past thirty five years. The primary goal of Advanced Mechanics of Composite Materials is the combined presentation of advanced mechanics, manufacturing technology, and analysis of composite materials. This approach lets the engineer take into account the essential mechanical properties of the material itself and special features of practical implementation, including manufacturing technology, experimental results, and design characteristics. Giving complete coverage of the topic: from basics and fundamentals to the advanced analysis including practical design and engineering applications. At the same time including a detailed and comprehensive coverage of the contemporary theoretical models at the micro- and macro- levels of material structure, practical methods and approaches, experimental results, and optimisation of composite material properties and component performance. The authors present the results of more than 30 year practical experience in the field of design and analysis of composite materials and structures. * Eight chapters progressively covering all structural levels of composite materials from their components through elementary plies and layers to laminates * Detailed presentation of advanced mechanics of composite materials * Emphasis on nonlinear material models (elasticity, plasticity, creep) and structural nonlinearity.
533
$a
Electronic reproduction.
$b
Amsterdam :
$c
Elsevier Science & Technology,
$d
2007.
$n
Mode of access: World Wide Web.
$n
System requirements: Web browser.
$n
Title from title screen (viewed on July 25, 2007).
$n
Access may be restricted to users at subscribing institutions.
650
0
$a
Composite materials
$x
Mechanical properties.
$3
403663
650
0
$a
Fibrous composites
$x
Mechanical properties.
$3
403664
655
7
$a
Electronic books.
$2
local
$3
336502
700
1
$a
Morozov, Evgeny V.
$3
403662
710
2
$a
ScienceDirect (Online service)
$3
365609
776
1
$c
Original
$z
9780080453729
$z
0080453724
$w
(OCoLC)122285201
856
4 0
$3
ScienceDirect
$u
http://www.sciencedirect.com/science/book/9780080453729
$z
An electronic book accessible through the World Wide Web; click for information
856
4 0
$3
Referex
$u
http://www.engineeringvillage.com/controller/servlet/OpenURL?genre=book&isbn=9780080453729
$z
An electronic book accessible through the World Wide Web; click for information
994
$a
C0
$b
TEF
筆 0 讀者評論
多媒體
多媒體檔案
http://www.sciencedirect.com/science/book/9780080453729
http://www.engineeringvillage.com/controller/servlet/OpenURL?genre=book&isbn=9780080453729
評論
新增評論
分享你的心得
Export
取書館別
處理中
...
變更密碼
登入