Applied Mechanics of Polymers. Properties, Processing, and Behavior 1st edition by George Youssef – Ebook PDF Instant Download/DeliveryISBN: 0128210796, 9780128210796
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ISBN-10 : 0128210796
ISBN-13 : 9780128210796
Author: George Youssef
Applied Mechanics of Polymers: Properties, Processing, and Behavior provides readers with an overview of the properties, mechanical behaviors and modeling techniques for accurately predicting the behaviors of polymeric materials. The book starts with an introduction to polymers, covering their history, chemistry, physics, and various types and applications. In addition, it covers the general properties of polymers and the common processing and manufacturing processes involved with them. Subsequent chapters delve into specific mechanical behaviors of polymers such as linear elasticity, hyperelasticity, creep, viscoelasticity, failure, and fracture. The book concludes with chapters discussing electroactive polymers, hydrogels, and the mechanical characterization of polymers.
Applied Mechanics of Polymers. Properties, Processing, and Behavior 1st Table of contents:
Chapter 1: Introduction and background
Abstract
1.1: Introduction
1.2: Historical perspective
1.3: Type of polymers
1.4: Areas of study in polymer science
1.5: Industrial applications of polymers
1.6: Closing remarks
Practice problems
References
Chapter 2: General properties of polymers
Abstract
2.1: Introduction
2.2: Quasi-static mechanical response
2.3: Long-term properties
2.4: Dynamic properties
2.5: Other properties
Practice problems
References
Chapter 3: Processing and manufacturing of polymers
Abstract
3.1: Introduction
3.2: Extrusion
3.3: Sheets, films, and filaments
3.4: Thermoforming
3.5: Injection molding
3.6: Additive manufacturing
Practice problems
References
Chapter 4: Linear elastic behavior of polymers
Abstract
4.1: Introduction
4.2: Stress and equilibrium
4.3: Strain and compatibility
4.4: Linear elastic material behavior
4.5: Structural component design
4.6: Applied FEA simulation examples
Practice problems
References
Chapter 5: Hyperelastic behavior of polymers
Abstract
5.1: Introduction
5.2: Theoretical preliminaries
5.3: Stress–strain relationships
5.4: Hyperelastic models
5.5: Applications of hyperelastic models in component design
Practice problems
References
Chapter 6: Creep behavior of polymers
Abstract
6.1: Introduction
6.2: Simple creep models
6.3: Additional creep models
6.4: Applications of creep in component design
6.5: Applied FEA simulation example
Practice problems
References
Chapter 7: Viscoelastic behavior of polymers
Abstract
7.1: Introduction
7.2: Theoretical preliminaries
7.3: Linear viscoelasticity
7.4: Applications of linear viscoelasticity in component design
7.5: Applied FEA simulation example
Practice problems
References
Chapter 8: Electroactive polymers
Abstract
8.1: Introduction
8.2: Theoretical preliminaries
8.3: Electrostrictive polymers
8.4: Dielectric elastomers
8.5: Applications of electroactive polymers
8.6: Applied FEA simulation example
Practice problems
References
Chapter 9: Hydrogels
Abstract
9.1: Introduction
9.2: Mechanics of hydrogels
9.3: Applications of hydrogels
9.4: Applied FEA simulation example
Practice problems
References
Chapter 10: Failure and fracture of polymers
Abstract
10.1: Introduction
10.2: Shear yielding
10.3: Crazing
10.4: Fracture mechanics
10.5: Fatigue
Practice problems
References
Chapter 11: Characterization of polymers
Abstract
11.1: Introduction
11.2: Thermal characterizations
11.3: Microscopy characterizations
11.4: Spectroscopy characterizations
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Applied Mechanics,Polymers,Properties,Processing,Behavior,George Youssef