The Behavior of Sandwich Structures of Isotropic and Composite Materials

The Behavior of Sandwich Structures of Isotropic and Composite Materials pdf epub mobi txt 电子书 下载 2026

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出版者:CRC Pr I Llc
作者:Vinson, Jack R.
出品人:
页数:280
译者:
出版时间:1999-3-31
价格:3742.83元
装帧:HRD
isbn号码:9781566766999
丛书系列:
图书标签:
  • Sandwich structures
  • Composite materials
  • Isotropic materials
  • Structural engineering
  • Mechanical behavior
  • Finite element analysis
  • Buckling
  • Shear deformation
  • Material properties
  • Aerospace applications
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具体描述

Features

Provides the means to analyze, design, and optimize various sandwich structures

Presents the properties of honeycomb- and solid-core materials

Explores the fields of soil and crop science, agricultural engineering, wastewater and sludge treatment, and soil microbiology

Covers anisotropic elasticity, laminate theory, flat sandwich panels, and more

Contains more than 800 formulas, tables, and figures that reinforce concepts

Summary

The Behavior of Sandwich Structures of Isotropic and Composite Materials presents the mathematics, descriptions, and analytical techniques in the growing field of sandwich structures. From a background in sandwich structures to thermoelastic problems of sandwich structures and sandwich shell theory, the book provides the knowledge needed to analyze, design, and optimize various sandwich structures.

As one would expect from a book on sandwich structures, this volume discusses special failure modes such as face wrinkling and core shear instability. Coverage includes not only honeycomb cores, but also foam, web, and truss cores. An important topic in composite structure design, optimization is explored in two chapters on sandwich plates and sandwich shells. The author presents the optimization techniques in closed form and the methods are applicable to material selection and geometric design. The book also contains a set of problems and references at the end of each chapter. This text is ideal for engineers-in-training, as well as practical engineers who desire a comprehensive understanding of sandwich structures technology.

这本书系统地探讨了不同材料在多样结构环境下表现的行为,特别聚焦于两种材料类型:各向异性和复合材料。作者深入分析了材料在各种几何形状、界面相互作用及外力作用下的响应机制,为读者提供了一套完整的理论框架。这部分内容详细介绍了各类材料在结构中的分布规律,以及如何通过实验与模拟手段来预测其行为。 书中首先系统阐述了各向异性材料的特性,探讨了其不同方向上的力学性能差异,并分析了这种多样性对整体结构稳定性的影响。同时,对于复合材料的研究同样不遗余力,作者深入剖析了纤维与基体之间的相互作用、界面结合力以及混合材料在宏观与微观层面的性能表现。这些内容帮助读者理解复杂结构中材料如何协同运作,从而优化设计方案。 书籍还广泛引用实验数据和计算模型,展示了不同条件下材料行为的差异化表现。通过详细的图示和理论推导,这部分章节为工程师提供了有力工具,用于分析实际应用中的结构性能问题。此外,作者还特别关注了新型材料在极端环境下的适应能力,探讨了温度变化、腐蚀性以及载荷条件对材料结构的长期影响。 对于教学和研究场景,这部分内容不仅具有高度实用性,也为跨学科研究提供了宝贵的参考资料。作者综合整理了大量文献与现场案例,使读者能够全面掌握当前材料科学领域的重要发展动向。整个书籍以清晰的逻辑结构和丰富的数据支持,力求成为理解复杂材料行为的理想引路标。 在内容设计上,作者注重平衡理论与实践,既深入剖析材料本身的内在特性,又强调其在实际工程应用中的可操作性。这使得这部分章节不仅适用于基础研究,也对工业界和工程技术人员有较高的参考价值。 书中还详细讨论了不同实验方法,如原位显微镜观察、力学测试和数值模拟等,解释其在材料分析中的具体应用方式。通过这些内容,读者能够更好地掌握如何从理论到实践转化知识,从而提升实际操作水平。 总体来说,这本书以高度专业化的视角,为读者深入理解各种材料在复杂结构环境下的表现提供了系统、全面且深具参考价值的内容。这部分资料对于希望探索材料科学前沿的研究者和工程实践人员,都是一份宝贵的读物。

作者简介

目录信息

SANDWICH STRUCTURES: ORIGINS, ADVANTAGES, AND USES
Description of Various Sandwich Constructions
Advantages of Sandwich Construction over Construction Monocoque Thin Walled Construction
Origins of Sandwich Construction
Uses of Sandwich Construction
Present Approach to Analysis
Problems
References
ANISTROPIC ELASTICITY AND COMPOSITE LAMINATE THEORY
Introduction
Derivation of the Anisotropic Elastic Stiffness and Compliance Matrices
The Physical Meaning of the Components of the Orthotropic Elasticity Tensor
Methods to Obtain Composite Elastic Properties from Fiber and Matrix Properties
Thermal and Hygrothermal Considerations
Time-Temperature Effects on Composite Materials
High Strain Rate Effects on Material Properties
Laminae of Composite Materials
Laminate Analysis
[A], [B], and [D] Stiffness Matrices for a Mid-Plane Symmetric Sandwich Structure
Piezoelectric Effects
Problems
References
DERIVATION OF THE GOVERNING EQUATIONS FOR SANDWICH PLATES (PANELS)
Introduction
Plate Equilibrium Equations
The Bending of Composite Material Laminated and/or Sandwich Plates: Classical Theory
Classical Plate Theory Boundary Conditions
Analysis of Composite Materials Laminated and/or Sandwich Panels Including Transverse Shear Deformation Effects
Boundary Conditions for a Plate Using the Refined Plate Theory
Laminated or Sandwich Plate on an Elastic Foundation
Laminated or Sandwich Plates Subjected to Dynamic Loads
Problems
References
BEAMS, COLUMNS, AND RODS OF COMPOSITE MATERIALS Development of Classical Beam Theory
Some Simplified Sandwich-Beam Solutions
Eigenvalue Problems of Sandwich Beams: Natural Vibrations and Elastic Stability
Other Considerations
Problems
References
ENERGY METHODS FOR SANDWICH STRUCTURES
Introduction
Theorem of Minimum Potential Energy
Analysis of a Beam in Bending Using the Theorem of Minimum Potential Energy
Reissner's Variational Theorem and Its Applications
Static Deformation of Moderately Thick Beams
Flexural Vibrations of Moderately Thick Beams
Flexural Natural Frequencies of a Simply Supported Beam Including Transverse Shear Deformation and Rotatory Inertia Effects
Minimum Potential Energy for Rectangular Plates
A Rectangular Composite Material Plate Subjected to Lateral and Hygrothermal Loads
In-Plane Shear Strength Determination of Composite Materials in Laminated and Sandwich Panels
Problems
References
SOLUTIONS FOR RECTANGULAR SANDWICH PLATES
Introduction
Navier Solutions for Rectangular Sandwich Plates
Levy Solutions for Plates of Composite Materials
Perturbation Solutions for the Bending of a Composite Material Sandwich Plate, with Mid-Plane Symmetry and No Bending-Twisting Coupling
Isotropic Sandwich Panels Subjected to a Uniform Lateral Load
Minimum Weight Optimization for a Sandwich Panel Subjected to a Distributed Lateral Load
Analysis of an Isotropic Sandwich Plate on an Elastic Foundation Subjected to a Uniform Lateral Load
Static Analysis of Sandwich Plates of Composite Materials Including Transverse Shear Deformation Effects
Exact Solution
Other Considerations
Problems
References
DYNAMIC EFFECTS ON SANDWICH PANELS
Introduction
Natural Flexural Vibrations of Sandwich Plates: Classical Theory
Natural Flexural Vibrations of Sandwich Plates Including Transverse Shear Deformation Effects
Forced-Vibration Response of a Sandwich Plate Subjected to a Dynamic Lateral Load
Dynamic Response of Sandwich Plates to Localized Loads
Large Amplitude Nonlinear Oscillations of Sandwich Plates Simply Supported on All Edges
Linear and Nonlinear Oscillations of Specially Orthotropic Sandwich Panels with Various Boundary Conditions
Vibration Damping
Problems
References
THERMAL AND MOISTURE EFFECTS ON SANDWICH STRUCTURES
General Considerations
Derivation of the Governing Equations for a Thermoplastic Isotropic Plate
Boundary Conditions
General Treatment of Plate Nonhomogeneous Boundary Conditions
Thermoelastic Effects on Beams
Self-Equilibrium of Thermal Stress
Rectangular Composite Material Plate Subjected to Lateral and Hygrothermal Loads
References
ELASTIC INSTABILITY (BUCKLING) OF SANDWICH PANELS General Considerations
The Buckling of an Orthotropic Sandwich Plate Subjected to In-Plane Loads Classical Theory
Elastic Stability of a Composite Sandwich Panel Including Transverse Shear Deformation and Hygrothermal Effects
The Buckling of an Isotropic Plate on an Elastic Foundation Subjected to Biaxial In-Plane Compressive Loads
The Buckling of Honeycomb Core Sandwich Panels Subjected to In-Plane Compressive Loads
The Buckling of Solid- or Foam-Core Sandwich Panels Subjected to In-Plane Compressive Loads
Buckling of a Truss-Core Sandwich Panel Subjected to Uniaxial Compression
Elastic Stability of a Web-Core Sandwich Panel Subjected to a Uniaxial Compressive In-Plane Load
Buckling of Honeycomb-Core Sandwich Panels Subjected to In-Plane Shear Loads
Buckling of Solid-Core or Foam-Sandwich Panel Subjected to In-Plane Shear Loads
Buckling of a Truss-Core Sandwich Panel Subjected to In-Plane Shear Loads
Buckling of a Web-Core Sandwich Panel Subjected to an In-Plane Shear Load
Other Considerations
Problems
References
STRUCTURAL OPTIMIZATION TO OBTAIN MINIMUM-WEIGHT SANDWICH PANELS
Introduction
Minimum Weight Optimization of Honeycomb-Core Sandwich Panels Subjected to a Unidirectional Compressive Load
Minimum Weight Optimization of Foam-Core Sandwich Panels Subjected to a Unidirectional Compressive Load
Minimum Weight Optimization of Truss-Core Sandwich Panels Subjected to a Unidirectional Compressive Load
Minimum Weight Optimization of Web-Core Sandwich Panels Subjected to a Unidirectional Compressive Load
Minimum Weight Optimization of Honeycomb-Core Sandwich Panels Subjected to In-Plane Shear Loads
Minimum Weight Optimization of Solid- and Foam-Core Sandwich Panels Subjected to In-Plane Shear Loads
Minimum Weight Optimization of Truss-Core Sandwich Panels Subjected to In-Plane Shear Loads
Minimum Weight Optimization of Web-Core Sandwich Panels Subjected to In-Plane Shear Loads
Optimal Stacking Sequences for Composite Material Laminate Faces for Various Sandwich Panels Subjected to Various Loads
Problems
References
SANDWICH SHELLS
Introduction
Analysis of Sandwich Cylindrical Shells under Axially Symmetric Loads
A General Solution for Orthotropic-Sandwich Cylindrical Shells under Axially Symmetric Loads
Shells with Mid-Plane Asymmetry
Other Considerations
Problems
References
BUCKLING OF SANDWICH CYLINDRICAL SHELLS
Buckling of a Solid- or Foam-Core Sandwich Cylindrical Shell with Isotropic Faces Subjected to an Axially Symmetric Compressive End Load
Buckling of a Solid- or Foam-Core Sandwich Cylindrical Shell with Orthotropic Composite Faces Subjected to an Axially Symmetric Compressive Load
Buckling of a Honeycomb-Core Sandwich Cylindrical Shell with Composite Faces Subjected to an Axially Symmetric Compressive End Load
Overall Buckling of Sandwich Cylindrical Shells Subjected to an Overall Bending Moment
Buckling of a Sandwich Cylindrical Shell Due to External Pressure
Buckling of a Sandwich Cylindrical Shell Due to Torsion
Dynamic Buckling
Problems
References
MINIMUM WEIGHT OPTIMIZATION OF SANDWICH CYLINDRICAL SHELLS
General Discussion
Minimum Weight Optimization of a Solid Foam-Core Sandwich Cylindrical Shell with Isotropic Faces Subjected to an Axially Compressive Load
Minimum Weight Optimization of a Solid- or Foam-Core Sandwich Cylindrical Shell with Orthotropic Composite Material Faces Subjected to an Axially Compressive Load
Minimum Weight Optimization of a Honeycomb-Core Sandwich Cylindrical Shell with Composite Material Faces Subjected to an Axially Symmetric Compressive Load
Problems
References
APPENDIX 1: Core Materials
APPENDIX 2: Face Materials
APPENDIX 3: American Society for Testing Materials (ASTM) Standards for Sandwich Structures and Materials
INDEX
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