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Polymer Solids and Polymer Melts–Mechanical and Thermomechanical Properties of Polymers

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Cover of 'Polymer Solids and Polymer Melts–Mechanical and Thermomechanical Properties of Polymers'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 List of Frequently Used Symbols
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    Chapter 2 Abbreviations
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    Chapter 3 Materials Symbols
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    Chapter 4 General Remarks
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    Chapter 5 Description of Properties
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    Chapter 6 Coefficient of expansion - introduction
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    Chapter 7 Coefficient of expansion - application
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    Chapter 8 Coefficient of expansion - data
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    Chapter 9 Viscoelastic Properties - introduction
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    Chapter 10 Viscoelastic Properties - application
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    Chapter 11 Viscoelastic Properties - data
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    Chapter 12 Vicat softening temperature und heat distortion temperature - introduction
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    Chapter 13 Vicat softening temperature und heat distortion temperature - data
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    Chapter 14 Vicat softening temperature und heat distortion temperature - application
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    Chapter 15 Quasi-static tensile test - introduction
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    Chapter 16 Quasi-static tensile test – tensile properties of thermoplastics - data
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    Chapter 17 Quasi-static tensile test – tensile properties with yield point - application
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    Chapter 18 Quasi-static tensile test - tensile properties without yield point - data
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    Chapter 19 Quasi-static tensile test – application
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    Chapter 20 Quasi-static tensile test – Poisson ratio of thermoplastic materials – data
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    Chapter 21 Quasi-static tensile test – Poisson ratio - application
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    Chapter 22 Tear Resistance - introduction
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    Chapter 23 Tear Resistance - data
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    Chapter 24 Tear Resistance- application
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    Chapter 25 Compression Loading - introduction
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    Chapter 26 Compression Loading - data
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    Chapter 27 Compression loading - application
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    Chapter 28 Bend loading - introduction
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    Chapter 29 Bend loading - data
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    Chapter 30 Bend loading - application
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    Chapter 31 Charpy impact strength - introduction
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    Chapter 32 Charpy impact strength - data
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    Chapter 33 Charpy impact strength - application
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    Chapter 34 Izod impact strength - introduction
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    Chapter 35 Izod impact strength of unfilled and reinforced materials according to ASTM D 256 - data
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    Chapter 36 Izod impact strength of filled and reinforced materials according to ASTM D 256 – data
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    Chapter 37 Izod impact strength of filled and reinforced materials according to ISO 180 – data
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    Chapter 38 Izod impact strength - application
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    Chapter 39 Dynstat impact strength - introduction
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    Chapter 40 Dynstat impact strength - data
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    Chapter 41 Impact failure energy - introduction
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    Chapter 42 Impact failure energy - data
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    Chapter 43 Impact failure energy - application
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    Chapter 44 Tensile impact toughness - introduction
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    Chapter 45 Tensile impact toughness - data
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    Chapter 46 Tensile-Impact Toughness of Elastomers - Application
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    Chapter 47 Fatigue Loading of Plastics - Introduction
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    Chapter 48 Tensile Fatigue Loading of Thermoplastics – Data
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    Chapter 49 Tensile Fatigue Loading of Thermoplastics - Application
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    Chapter 50 Flexural Fatigue Loading - Introduction
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    Chapter 51 Flexural Fatigue Loading - Data
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    Chapter 52 Flexural Fatigue Strength - Application
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    Chapter 53 Torsional Fatigue Strength – Application
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    Chapter 54 Long-term Loading – Introduction
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    Chapter 55 Long-term Loading – Tensile Creep Modulus - data
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    Chapter 56 Long-term Loading – Tensile Creep Modulus - application
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    Chapter 57 Long-term Loading – Flexural Creep Test - Introduction
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    Chapter 58 Flexural creep modulus - data
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    Chapter 59 Flexural creep modulus – application
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    Chapter 60 Long-term loading – Compression Creep Test - Introduction
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    Chapter 61 Compression creep modulus – data
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    Chapter 62 Compression creep modulus – application
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    Chapter 63 Stress Cracking Resistance – introduction
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    Chapter 64 Stress Cracking Resistance (Constant Tensile Load) – data
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    Chapter 65 Stress Cracking Resistance (Constant Tensile Load) – Application
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    Chapter 66 Stress Cracking Resistance (Bent Strip Method) - Data
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    Chapter 67 Stress Cracking Resistance (Ball Impression Test) - Application
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    Chapter 68 Stress Cracking Resistance (Fracture Mechanic Method) - Data
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    Chapter 69 Stress Cracking Resistance (Fracture Mechanic Method) - Application
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    Chapter 70 Conventional Hardness Values - Introduction
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    Chapter 71 Conventional Hardness Values - Application
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    Chapter 72 Conventional Hardness Values - Data
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    Chapter 73 Instrumented Hardness Values – introduction
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    Chapter 74 Instrumented Hardness Values – data
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    Chapter 75 Quasi-Static Loading of Thermoplastics - Introduction
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    Chapter 76 Quasi-Static Loading of Thermoplastics - Data
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    Chapter 77 Impact Loading of Thermoplastics - Introduction
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    Chapter 78 Impact Loading of Thermoplastics - Data
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    Chapter 79 Quasi-Static Loading of Thermosets and High Performance Composites - Introduction
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    Chapter 80 Quasi-Static Loading of Thermosets and High Performance Composites - Data I
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    Chapter 81 Quasi-static loading – Energy determined Parameters - data
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    Chapter 82 Quasi-Static Loading of Thermosets and High Performance Composites - Data III
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    Chapter 83 Impact Loading of Thermosets and High Performance Composites - Data
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    Chapter 84 Quasi-static loading of elastomers – introduction
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    Chapter 85 Quasi-static loading of elastomers – data
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    Chapter 86 Quasi-static loading of elastomers – application
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    Chapter 87 Impact Loading of elastomers – introduction
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    Chapter 88 Impact Loading of elastomers – data
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    Chapter 89 Impact Loading of elastomers – application
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    Chapter 90 Cyclic Loading of Elastomers – introduction
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    Chapter 91 Cyclic Loading of Elastomers – data
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    Chapter 92 Cyclic Loading of Elastomers - application
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Title
Polymer Solids and Polymer Melts–Mechanical and Thermomechanical Properties of Polymers
Published by
Springer Berlin Heidelberg, January 2014
DOI 10.1007/978-3-642-55166-6
ISBNs
978-3-64-255165-9, 978-3-64-255166-6
Editors

Arndt, K.-F, Lechner, M. D.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 68 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 68 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 14 21%
Student > Bachelor 8 12%
Student > Ph. D. Student 8 12%
Researcher 6 9%
Student > Doctoral Student 4 6%
Other 5 7%
Unknown 23 34%
Readers by discipline Count As %
Engineering 26 38%
Materials Science 6 9%
Chemistry 3 4%
Agricultural and Biological Sciences 2 3%
Chemical Engineering 2 3%
Other 7 10%
Unknown 22 32%