Micro- And Macromechanical Properties of Materials: Advances in Materials Science and Engineering
Autor Yichun Zhou, Li Yang, Yongli Huangen Limba Engleză Hardback – 25 sep 2013
Din seria Advances in Materials Science and Engineering
- 30%
Preț: 449.84 lei - 33%
Preț: 548.22 lei - 32%
Preț: 1455.90 lei - 31%
Preț: 440.53 lei - 33%
Preț: 1058.09 lei - 15%
Preț: 573.07 lei - 29%
Preț: 466.52 lei -
Preț: 452.72 lei - 18%
Preț: 1298.86 lei - 31%
Preț: 363.44 lei -
Preț: 482.07 lei -
Preț: 437.65 lei - 18%
Preț: 808.73 lei - 15%
Preț: 417.85 lei - 34%
Preț: 791.34 lei -
Preț: 371.36 lei - 18%
Preț: 1573.30 lei -
Preț: 440.26 lei - 18%
Preț: 1070.16 lei - 18%
Preț: 868.61 lei - 18%
Preț: 857.11 lei - 18%
Preț: 869.25 lei - 18%
Preț: 971.15 lei - 18%
Preț: 913.82 lei - nou
Preț: 1650.41 lei
Preț: 1877.35 lei
Preț vechi: 2289.45 lei
-18% Nou
Puncte Express: 2816
Preț estimativ în valută:
332.21€ • 387.42$ • 291.69£
332.21€ • 387.42$ • 291.69£
Carte tipărită la comandă
Livrare economică 16-30 ianuarie 26
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9781466592438
ISBN-10: 1466592435
Pagini: 620
Ilustrații: 387 b/w images, 27 tables and 1171
Dimensiuni: 183 x 257 x 41 mm
Greutate: 1.25 kg
Ediția:New.
Editura: CRC Press
Seria Advances in Materials Science and Engineering
ISBN-10: 1466592435
Pagini: 620
Ilustrații: 387 b/w images, 27 tables and 1171
Dimensiuni: 183 x 257 x 41 mm
Greutate: 1.25 kg
Ediția:New.
Editura: CRC Press
Seria Advances in Materials Science and Engineering
Public țintă
Senior undergraduate and graduate students of materials science, materials physics, mechanics, and materials chemistry.Cuprins
Introduction
Fundamentals of Elasto-Plastic Mechanics
Prerequisites
Stress
Strain
StressߝStrain Relationship
Basis of Macro- and Microfracture Mechanics
Analysis of Macrofracture Mechanics
Analysis of Microfracture Mechanics
Basic Mechanical Properties of Materials
Basic Mechanical Properties of Materials
Measurement of the Basic Mechanical Properties of Materials
Material Hardness and the Size Effect
Introduction to Material Hardness
Brinell Hardness
Rockwell Hardness
Vickers Hardness
Dynamic Indentation Hardness Testing
Scratch Testing for Materials’ Hardness
Microhardness
Nanohardness
Size Effect in Materials and Hardness
Testing of Material Fracture Toughness
Testing of Plane Strain Fracture Toughness KIC
Testing of Surface Crack’s Fracture Toughness KIE
Testing of Plane Stress Fracture Toughness KC
Testing of J Integral’s Critical Value JIC
Testing of COD’s Critical Value δC
Residual Stresses in Materials
Introduction to Residual Stresses
Measurement of Residual Stresses
Influence of Residual Stresses on the Mechanical Properties of Materials
Creep and Fatigue of Metals
Introduction to Creep of Metallic Materials
Creep Mechanisms and Creep Mechanism Diagrams of Metallic Materials
Introduction to Fatigue of Metallic Materials
Fatigue Failure and Fatigue Mechanisms of Metallic Materials
Methodology of Study of Fatigue Failure in Metallic Materials
Cyclic StressߝStrain Curves of Metallic Materials
Interaction of Creep and Fatigue
Mechanical Properties of Materials in Environmental Media
Stress Corrosion Cracking
Hydrogen Embrittlement
Corrosion Fatigue Cracking
Corrosive Wear
Other Environmentally Assisted Cracking or Embrittlement Issues
Macro- and Microcomputational Materials Mechanics
Structural Hierarchy of Materials and Computational Materials Science
Computational Material Mechanics at the Macroscale
Computational Micromechanics of Materials
Computational Nanomechanics of Materials
Multiscale Computational Analysis
Mechanical Properties of Smart Materials
Introduction to Smart Materials
Shape Memory Alloys
Magnetostrictive Materials and Ferromagnetic Shape Memory Alloys
Ferroelectric and Piezoelectric Materials
Mechanical Properties of Thin Films
An Overview
Elastic Modulus and StressߝStrain Relationship of Thin Films
Residual Stress of Thin Films
Interface Fracture Toughness of Thin Films
Fracture and Polarization of Ferroelectric Films
Flexure of Ductile Thin Films
Mechanical Properties of Polymer Materials
Polymer Viscoelasticity
Mechanical Models of Viscoelastic Behavior of Polymers
Hyperelasticity of Polymers
Yielding and Fracture of Polymers
Ceramics and the Mechanical Properties of Ceramic Coating Materials
Overview of Ceramic Materials
Mechanical Properties of Ceramic Materials
Fracture Toughness and Testing Methods of Ceramic Materials
Strength of Ceramic Materials
Thermal Shock Resistance of Ceramic Materials
Creep of Ceramic Materials
Mechanical Properties of Composite Materials
Introduction to Composite Materials
Mechanical Properties of Fiber-Reinforced Composite Materials
Mechanical Properties of Particle-Reinforced Composite Materials
Applications and Prospects of the Development of Composite Materials
Index
Chapters include exercises and references.
Fundamentals of Elasto-Plastic Mechanics
Prerequisites
Stress
Strain
StressߝStrain Relationship
Basis of Macro- and Microfracture Mechanics
Analysis of Macrofracture Mechanics
Analysis of Microfracture Mechanics
Basic Mechanical Properties of Materials
Basic Mechanical Properties of Materials
Measurement of the Basic Mechanical Properties of Materials
Material Hardness and the Size Effect
Introduction to Material Hardness
Brinell Hardness
Rockwell Hardness
Vickers Hardness
Dynamic Indentation Hardness Testing
Scratch Testing for Materials’ Hardness
Microhardness
Nanohardness
Size Effect in Materials and Hardness
Testing of Material Fracture Toughness
Testing of Plane Strain Fracture Toughness KIC
Testing of Surface Crack’s Fracture Toughness KIE
Testing of Plane Stress Fracture Toughness KC
Testing of J Integral’s Critical Value JIC
Testing of COD’s Critical Value δC
Residual Stresses in Materials
Introduction to Residual Stresses
Measurement of Residual Stresses
Influence of Residual Stresses on the Mechanical Properties of Materials
Creep and Fatigue of Metals
Introduction to Creep of Metallic Materials
Creep Mechanisms and Creep Mechanism Diagrams of Metallic Materials
Introduction to Fatigue of Metallic Materials
Fatigue Failure and Fatigue Mechanisms of Metallic Materials
Methodology of Study of Fatigue Failure in Metallic Materials
Cyclic StressߝStrain Curves of Metallic Materials
Interaction of Creep and Fatigue
Mechanical Properties of Materials in Environmental Media
Stress Corrosion Cracking
Hydrogen Embrittlement
Corrosion Fatigue Cracking
Corrosive Wear
Other Environmentally Assisted Cracking or Embrittlement Issues
Macro- and Microcomputational Materials Mechanics
Structural Hierarchy of Materials and Computational Materials Science
Computational Material Mechanics at the Macroscale
Computational Micromechanics of Materials
Computational Nanomechanics of Materials
Multiscale Computational Analysis
Mechanical Properties of Smart Materials
Introduction to Smart Materials
Shape Memory Alloys
Magnetostrictive Materials and Ferromagnetic Shape Memory Alloys
Ferroelectric and Piezoelectric Materials
Mechanical Properties of Thin Films
An Overview
Elastic Modulus and StressߝStrain Relationship of Thin Films
Residual Stress of Thin Films
Interface Fracture Toughness of Thin Films
Fracture and Polarization of Ferroelectric Films
Flexure of Ductile Thin Films
Mechanical Properties of Polymer Materials
Polymer Viscoelasticity
Mechanical Models of Viscoelastic Behavior of Polymers
Hyperelasticity of Polymers
Yielding and Fracture of Polymers
Ceramics and the Mechanical Properties of Ceramic Coating Materials
Overview of Ceramic Materials
Mechanical Properties of Ceramic Materials
Fracture Toughness and Testing Methods of Ceramic Materials
Strength of Ceramic Materials
Thermal Shock Resistance of Ceramic Materials
Creep of Ceramic Materials
Mechanical Properties of Composite Materials
Introduction to Composite Materials
Mechanical Properties of Fiber-Reinforced Composite Materials
Mechanical Properties of Particle-Reinforced Composite Materials
Applications and Prospects of the Development of Composite Materials
Index
Chapters include exercises and references.
Recenzii
"This book offers the most comprehensive and complete overview of mechanical properties and fracture mechanics in the field of materials science. Besides, it provides a complete and rigorous overview in the research areas of mechanics and materials sciences from the viewpoint of length scales. … Moreover, this book focuses on connections between scientific theories, experiment methods and engineering applications so as to serve as a good manual for engineers and technicians on mechanics of materials."
ߝߝDaining Fang, LTCS, College of Engineering, Peking University, Beijing, China
ߝߝDaining Fang, LTCS, College of Engineering, Peking University, Beijing, China