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Rubberlike elasticity : a molecular primer / / James E. Mark, Burak Erman [[electronic resource]]
Rubberlike elasticity : a molecular primer / / James E. Mark, Burak Erman [[electronic resource]]
Autore Mark James E. <1934->
Edizione [Second edition.]
Pubbl/distr/stampa Cambridge : , : Cambridge University Press, , 2007
Descrizione fisica 1 online resource (ix, 260 pages) : digital, PDF file(s)
Disciplina 547.7
Soggetto topico Polymers
Elastomers
Elasticity
ISBN 1-107-15911-3
1-280-75030-8
9786610750306
0-511-26937-4
0-511-26993-5
0-511-26858-0
0-511-54132-5
0-511-32070-1
0-511-26925-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ; Preface to the first edition -- ; Preface to the first edition -- ; Introduction -- Some rubberlike materials -- The single molecule: theory and experiment -- Preparation and structure of networks -- Elementary statistical theory for idealized networks -- Statistical theory for real networks -- Elastic equations of state and force-deformation relations -- Swelling of networks and volume phase transitions -- Force as a function of temperature -- Model elastomers -- Networks prepared under unusual conditions -- Strain-induced crystallization and ultimate properties -- Multimodal networks -- Birefringence and segmental orientation -- Neuton scattering from networks -- Liquid-crystalline elastomers -- Bioelastomers -- Filled elastomers -- Current problems and new directions -- ; Appendices.
Record Nr. UNINA-9910457559503321
Mark James E. <1934->  
Cambridge : , : Cambridge University Press, , 2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Rubberlike elasticity : a molecular primer / / James E. Mark, Burak Erman [[electronic resource]]
Rubberlike elasticity : a molecular primer / / James E. Mark, Burak Erman [[electronic resource]]
Autore Mark James E. <1934->
Edizione [Second edition.]
Pubbl/distr/stampa Cambridge : , : Cambridge University Press, , 2007
Descrizione fisica 1 online resource (ix, 260 pages) : digital, PDF file(s)
Disciplina 547.7
Soggetto topico Polymers
Elastomers
Elasticity
ISBN 1-107-15911-3
1-280-75030-8
9786610750306
0-511-26937-4
0-511-26993-5
0-511-26858-0
0-511-54132-5
0-511-32070-1
0-511-26925-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ; Preface to the first edition -- ; Preface to the first edition -- ; Introduction -- Some rubberlike materials -- The single molecule: theory and experiment -- Preparation and structure of networks -- Elementary statistical theory for idealized networks -- Statistical theory for real networks -- Elastic equations of state and force-deformation relations -- Swelling of networks and volume phase transitions -- Force as a function of temperature -- Model elastomers -- Networks prepared under unusual conditions -- Strain-induced crystallization and ultimate properties -- Multimodal networks -- Birefringence and segmental orientation -- Neuton scattering from networks -- Liquid-crystalline elastomers -- Bioelastomers -- Filled elastomers -- Current problems and new directions -- ; Appendices.
Record Nr. UNINA-9910784411503321
Mark James E. <1934->  
Cambridge : , : Cambridge University Press, , 2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Rubberlike elasticity : a molecular primer / / James E. Mark, Burak Erman [[electronic resource]]
Rubberlike elasticity : a molecular primer / / James E. Mark, Burak Erman [[electronic resource]]
Autore Mark James E. <1934->
Edizione [Second edition.]
Pubbl/distr/stampa Cambridge : , : Cambridge University Press, , 2007
Descrizione fisica 1 online resource (ix, 260 pages) : digital, PDF file(s)
Disciplina 547.7
Soggetto topico Polymers
Elastomers
Elasticity
ISBN 1-107-15911-3
1-280-75030-8
9786610750306
0-511-26937-4
0-511-26993-5
0-511-26858-0
0-511-54132-5
0-511-32070-1
0-511-26925-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ; Preface to the first edition -- ; Preface to the first edition -- ; Introduction -- Some rubberlike materials -- The single molecule: theory and experiment -- Preparation and structure of networks -- Elementary statistical theory for idealized networks -- Statistical theory for real networks -- Elastic equations of state and force-deformation relations -- Swelling of networks and volume phase transitions -- Force as a function of temperature -- Model elastomers -- Networks prepared under unusual conditions -- Strain-induced crystallization and ultimate properties -- Multimodal networks -- Birefringence and segmental orientation -- Neuton scattering from networks -- Liquid-crystalline elastomers -- Bioelastomers -- Filled elastomers -- Current problems and new directions -- ; Appendices.
Record Nr. UNINA-9910811552503321
Mark James E. <1934->  
Cambridge : , : Cambridge University Press, , 2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
The science and technology of rubber [[electronic resource]] / edited by Burak Erman, James E. Mark, C. Michael Roland
The science and technology of rubber [[electronic resource]] / edited by Burak Erman, James E. Mark, C. Michael Roland
Edizione [4th ed.]
Pubbl/distr/stampa Oxford, England, : Academic Press, c2013
Descrizione fisica 1 online resource (816 p.)
Disciplina 678/.2
Altri autori (Persone) ErmanBurak
MarkJames E
RolandC. Michael
Soggetto topico Rubber
Soggetto genere / forma Electronic books.
ISBN 0-12-394832-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Half Title; Title Page; Copyright; Contents; Rubber Elasticity: Basic Concepts and Behavior; 1.1 Introduction; 1.2 Elasticity of a Single Molecule; 1.3 Elasticity of a Three-Dimensional Network of Polymer Molecules; 1.4 Comparison with Experiment; 1.5 Continuum Theory of Rubber Elasticity; 1.5.1 Stress-Strain Relations; (i) Strain-Hardening at Large Strains; (ii) Inflation of a Thin-Walled Tube; (iii) Inflation of a Thin-Walled Spherical Balloon; (iv) Inflation of a Thick-Walled Spherical Shell; (v) Surface Instability of Compressed or Bent Blocks
(vi) Resistance of a Compressed Block to Indentation(vii) Torsional Instability of Stretched Rubber Rods (Gent and Hua 2004); 1.6 Second-Order Stresses; 1.7 Elastic Behavior Under Small Deformations; 1.8 Some Unsolved Problems in Rubber Elasticity; Acknowledgments; References; Further Reading; Polymerization: Elastomer Synthesis; 2.1 Introduction; 2.2 Classification of Polymerization Reactions and Kinetic Considerations; 2.2.1 Polyaddition/Polycondensation; 2.2.2 Chain Polymerization; 2.3 Polyaddition/Polycondensation; 2.4 Chain Polymerization by Free Radical Mechanism; 2.4.1 General Kinetics
2.4.2 Molecular Weight Distribution2.4.3 Special Case of Diene Polymerization; 2.4.4 Controlled Radical Polymerization; 2.5 Emulsion Polymerization; 2.5.1 Mechanism and Kinetics; 2.5.2 Styrene-Butadiene Rubber; (i) Kinetics and Molecular Weights; (ii) Chain Microstructure; 2.5.3 Emulsion Polymerization of Chloroprene; (i) Kinetics; (ii) Chain Structure; 2.6 Copolymerization; 2.6.1 Kinetics; 2.6.2 Emulsion Copolymerization of Dienes; (i) Styrene-Butadiene (SBR); (ii) Butadiene-Acrylonitrile (Nitrile Rubber); (iii) Chloroprene; 2.7 Chain Polymerization by Cationic Mechanism
2.7.1 Mechanism and Kinetics2.7.2 Butyl Rubber; 2.7.3 Living Cationic Polymerizations; 2.7.4 Other Cationic Polymerizations: Heterocyclic Monomers; 2.8 Chain Polymerization by Anionic Mechanism; 2.8.1 Mechanism and Kinetics; 2.8.2 Chain Microstructure of Polydienes; 2.8.3 Copolymers of Butadiene; 2.8.4 Terminally Functional Polydienes; 2.9 Stereospecific Chain Polymerization and Copolymerization by Coordination Catalysts; 2.9.1 Mechanism and Kinetics; 2.9.2 Ethylene-Propylene Rubbers; 2.9.3 Polydienes; 2.9.4 Polyalkenamers; 2.10 Graft and Block Copolymerization *
2.10.1 Graft Copolymerization by Conventional Free Radical Reactions(i) Chemical Initiation; (ii) Other Methods; 2.10.2 Block Copolymers by Controlled Radical Mechanisms; 2.10.3 Block Copolymers by Anionic Mechanism; 2.10.4 Block Copolymers by Cationic Mechanism; 2.10.5 Block Copolymers by Ziegler-Natta (Insertion) Mechanism; References; Structure Characterization in the Science and Technology of Elastomers; 3.1 Introduction; 3.2 Chemical Composition; 3.3 Sequence Distribution of Repeat Units; 3.4 Chain Architecture; 3.4.1 Molecular Weight and Its Distribution; 3.4.2 Branching; 3.4.3 Gel
3.5 Glass Transition and Secondary Relaxation Processes
Record Nr. UNINA-9910459106203321
Oxford, England, : Academic Press, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
The science and technology of rubber / / edited by Burak Erman, Department of Chemical and Biological Engineering, Koc University, Rumeli Feneri Yolu 34450 Istanbul, Turkey, James E. Mark, Department of Chemistry, University of Cincinnati, Cincinnati, OH 45221-0172, USA, C. Michael Roland, Naval Research Laboratory, Chemistry Division, Code 6120, Washington, DC, USA
The science and technology of rubber / / edited by Burak Erman, Department of Chemical and Biological Engineering, Koc University, Rumeli Feneri Yolu 34450 Istanbul, Turkey, James E. Mark, Department of Chemistry, University of Cincinnati, Cincinnati, OH 45221-0172, USA, C. Michael Roland, Naval Research Laboratory, Chemistry Division, Code 6120, Washington, DC, USA
Edizione [4th ed.]
Pubbl/distr/stampa Oxford, England, : Academic Press, c2013
Descrizione fisica 1 online resource (xiv, 786 pages) : illustrations (some color)
Disciplina 678/.2
Collana Gale eBooks
Soggetto topico Rubber
ISBN 0-12-394832-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Half Title; Title Page; Copyright; Contents; Rubber Elasticity: Basic Concepts and Behavior; 1.1 Introduction; 1.2 Elasticity of a Single Molecule; 1.3 Elasticity of a Three-Dimensional Network of Polymer Molecules; 1.4 Comparison with Experiment; 1.5 Continuum Theory of Rubber Elasticity; 1.5.1 Stress-Strain Relations; (i) Strain-Hardening at Large Strains; (ii) Inflation of a Thin-Walled Tube; (iii) Inflation of a Thin-Walled Spherical Balloon; (iv) Inflation of a Thick-Walled Spherical Shell; (v) Surface Instability of Compressed or Bent Blocks
(vi) Resistance of a Compressed Block to Indentation(vii) Torsional Instability of Stretched Rubber Rods (Gent and Hua 2004); 1.6 Second-Order Stresses; 1.7 Elastic Behavior Under Small Deformations; 1.8 Some Unsolved Problems in Rubber Elasticity; Acknowledgments; References; Further Reading; Polymerization: Elastomer Synthesis; 2.1 Introduction; 2.2 Classification of Polymerization Reactions and Kinetic Considerations; 2.2.1 Polyaddition/Polycondensation; 2.2.2 Chain Polymerization; 2.3 Polyaddition/Polycondensation; 2.4 Chain Polymerization by Free Radical Mechanism; 2.4.1 General Kinetics
2.4.2 Molecular Weight Distribution2.4.3 Special Case of Diene Polymerization; 2.4.4 Controlled Radical Polymerization; 2.5 Emulsion Polymerization; 2.5.1 Mechanism and Kinetics; 2.5.2 Styrene-Butadiene Rubber; (i) Kinetics and Molecular Weights; (ii) Chain Microstructure; 2.5.3 Emulsion Polymerization of Chloroprene; (i) Kinetics; (ii) Chain Structure; 2.6 Copolymerization; 2.6.1 Kinetics; 2.6.2 Emulsion Copolymerization of Dienes; (i) Styrene-Butadiene (SBR); (ii) Butadiene-Acrylonitrile (Nitrile Rubber); (iii) Chloroprene; 2.7 Chain Polymerization by Cationic Mechanism
2.7.1 Mechanism and Kinetics2.7.2 Butyl Rubber; 2.7.3 Living Cationic Polymerizations; 2.7.4 Other Cationic Polymerizations: Heterocyclic Monomers; 2.8 Chain Polymerization by Anionic Mechanism; 2.8.1 Mechanism and Kinetics; 2.8.2 Chain Microstructure of Polydienes; 2.8.3 Copolymers of Butadiene; 2.8.4 Terminally Functional Polydienes; 2.9 Stereospecific Chain Polymerization and Copolymerization by Coordination Catalysts; 2.9.1 Mechanism and Kinetics; 2.9.2 Ethylene-Propylene Rubbers; 2.9.3 Polydienes; 2.9.4 Polyalkenamers; 2.10 Graft and Block Copolymerization *
2.10.1 Graft Copolymerization by Conventional Free Radical Reactions(i) Chemical Initiation; (ii) Other Methods; 2.10.2 Block Copolymers by Controlled Radical Mechanisms; 2.10.3 Block Copolymers by Anionic Mechanism; 2.10.4 Block Copolymers by Cationic Mechanism; 2.10.5 Block Copolymers by Ziegler-Natta (Insertion) Mechanism; References; Structure Characterization in the Science and Technology of Elastomers; 3.1 Introduction; 3.2 Chemical Composition; 3.3 Sequence Distribution of Repeat Units; 3.4 Chain Architecture; 3.4.1 Molecular Weight and Its Distribution; 3.4.2 Branching; 3.4.3 Gel
3.5 Glass Transition and Secondary Relaxation Processes
Record Nr. UNINA-9910792479803321
Oxford, England, : Academic Press, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
The science and technology of rubber / / edited by Burak Erman, Department of Chemical and Biological Engineering, Koc University, Rumeli Feneri Yolu 34450 Istanbul, Turkey, James E. Mark, Department of Chemistry, University of Cincinnati, Cincinnati, OH 45221-0172, USA, C. Michael Roland, Naval Research Laboratory, Chemistry Division, Code 6120, Washington, DC, USA
The science and technology of rubber / / edited by Burak Erman, Department of Chemical and Biological Engineering, Koc University, Rumeli Feneri Yolu 34450 Istanbul, Turkey, James E. Mark, Department of Chemistry, University of Cincinnati, Cincinnati, OH 45221-0172, USA, C. Michael Roland, Naval Research Laboratory, Chemistry Division, Code 6120, Washington, DC, USA
Edizione [4th ed.]
Pubbl/distr/stampa Oxford, England, : Academic Press, c2013
Descrizione fisica 1 online resource (xiv, 786 pages) : illustrations (some color)
Disciplina 678/.2
Collana Gale eBooks
Soggetto topico Rubber
ISBN 0-12-394832-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Half Title; Title Page; Copyright; Contents; Rubber Elasticity: Basic Concepts and Behavior; 1.1 Introduction; 1.2 Elasticity of a Single Molecule; 1.3 Elasticity of a Three-Dimensional Network of Polymer Molecules; 1.4 Comparison with Experiment; 1.5 Continuum Theory of Rubber Elasticity; 1.5.1 Stress-Strain Relations; (i) Strain-Hardening at Large Strains; (ii) Inflation of a Thin-Walled Tube; (iii) Inflation of a Thin-Walled Spherical Balloon; (iv) Inflation of a Thick-Walled Spherical Shell; (v) Surface Instability of Compressed or Bent Blocks
(vi) Resistance of a Compressed Block to Indentation(vii) Torsional Instability of Stretched Rubber Rods (Gent and Hua 2004); 1.6 Second-Order Stresses; 1.7 Elastic Behavior Under Small Deformations; 1.8 Some Unsolved Problems in Rubber Elasticity; Acknowledgments; References; Further Reading; Polymerization: Elastomer Synthesis; 2.1 Introduction; 2.2 Classification of Polymerization Reactions and Kinetic Considerations; 2.2.1 Polyaddition/Polycondensation; 2.2.2 Chain Polymerization; 2.3 Polyaddition/Polycondensation; 2.4 Chain Polymerization by Free Radical Mechanism; 2.4.1 General Kinetics
2.4.2 Molecular Weight Distribution2.4.3 Special Case of Diene Polymerization; 2.4.4 Controlled Radical Polymerization; 2.5 Emulsion Polymerization; 2.5.1 Mechanism and Kinetics; 2.5.2 Styrene-Butadiene Rubber; (i) Kinetics and Molecular Weights; (ii) Chain Microstructure; 2.5.3 Emulsion Polymerization of Chloroprene; (i) Kinetics; (ii) Chain Structure; 2.6 Copolymerization; 2.6.1 Kinetics; 2.6.2 Emulsion Copolymerization of Dienes; (i) Styrene-Butadiene (SBR); (ii) Butadiene-Acrylonitrile (Nitrile Rubber); (iii) Chloroprene; 2.7 Chain Polymerization by Cationic Mechanism
2.7.1 Mechanism and Kinetics2.7.2 Butyl Rubber; 2.7.3 Living Cationic Polymerizations; 2.7.4 Other Cationic Polymerizations: Heterocyclic Monomers; 2.8 Chain Polymerization by Anionic Mechanism; 2.8.1 Mechanism and Kinetics; 2.8.2 Chain Microstructure of Polydienes; 2.8.3 Copolymers of Butadiene; 2.8.4 Terminally Functional Polydienes; 2.9 Stereospecific Chain Polymerization and Copolymerization by Coordination Catalysts; 2.9.1 Mechanism and Kinetics; 2.9.2 Ethylene-Propylene Rubbers; 2.9.3 Polydienes; 2.9.4 Polyalkenamers; 2.10 Graft and Block Copolymerization *
2.10.1 Graft Copolymerization by Conventional Free Radical Reactions(i) Chemical Initiation; (ii) Other Methods; 2.10.2 Block Copolymers by Controlled Radical Mechanisms; 2.10.3 Block Copolymers by Anionic Mechanism; 2.10.4 Block Copolymers by Cationic Mechanism; 2.10.5 Block Copolymers by Ziegler-Natta (Insertion) Mechanism; References; Structure Characterization in the Science and Technology of Elastomers; 3.1 Introduction; 3.2 Chemical Composition; 3.3 Sequence Distribution of Repeat Units; 3.4 Chain Architecture; 3.4.1 Molecular Weight and Its Distribution; 3.4.2 Branching; 3.4.3 Gel
3.5 Glass Transition and Secondary Relaxation Processes
Record Nr. UNINA-9910823188903321
Oxford, England, : Academic Press, c2013
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui