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High temperature polymer blends

Author: Mark T DeMeuse
Publisher: Amsterdam ; Boson : Woodhead Publishing, 2014.
Series: Woodhead Publishing in materials.
Edition/Format:   eBook : Document : EnglishView all editions and formats

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Genre/Form: Electronic books
Additional Physical Format: Print version:
DeMeuse, Mark T.
High Temperature Polymer Blends.
Woodhead Publishing 2014
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Mark T DeMeuse
ISBN: 9780857099013 0857099019 1306548292 9781306548298
OCLC Number: 875640485
Description: 1 online resource.
Contents: DedicationContributor contact detailsChapter 1: Introduction to high temperature polymer blends Abstract:1.1 Introduction1.2 General principles of polymer blending1.3 Thermodynamics of polymer blends1.4 Immiscible blends1.5 Conclusions Chapter 2: Characterization methods for high temperature polymer blends Abstract:2.1 Introduction2.2 High temperature polymer blends (HTPBs)2.3 Methods of polymer characterization2.4 Characterization of polymer blends2.5 Characterization of HTPBs: chemical constitutions and molecular weights2.6 Characterization of HTPBs: chemical-, thermal-, mechanical- and radiation-induced degradation2.7 Stabilization of HTPBs2.8 Challenges in blending polymers2.9 Summary2.10 Future trends2.12 Appendix: Nomenclature Chapter 3: Characterization of high temperature polymer blends for specific applications: fuel cells and aerospace applications Abstract:3.1 Introduction3.2 High temperature polymer blends (HTPBs) for membrane applications3.3 Fuel cell (FC) membrane applications3.4 Characterization of HTPBs for FC applications3.5 Solar cell (SC) applications3.6 Characterization of HTPBs for polymeric solar cells (PSCs)3.7 Aerospace applications3.8 Characterization of HTPBs for aerospace applications3.9 Summary3.11 Appendix: Nomenclature Chapter 4: Thermodynamics of high temperature polymer blends Abstract:4.1 Introduction4.2 Blending miscible high temperature polymers4.3 Poly (2,2' (m-phenylene)-5-5' bibenzimidazole) (PBI) blends4.4 Polyimide blends4.5 Liquid crystal polymer blends4.6 Molecular composites4.7 Conclusions4.8 Sources of further information and advice Chapter 5: Liquid crystal polymers (LCPs) as a reinforcement in high temperature polymer blends Abstract:5.1 Introduction5.2 Researching liquid crystal polymers (LCPs)5.3 Liquid crystals5.4 Polymer liquid crystals5.5 Blends of isotropic and anisotropic thermotropic polymers5.6 Processability of LCP/thermoplastic blends5.7 Structure-property relationships of LCP blended materials5.8 Commercial LCP blends5.9 Conclusions and future trends Chapter 6: Polysulfones as a reinforcement in high temperature polymer blends Abstract:6.1 Introduction6.2 Structure and properties of polysulfone6.3 Issues in blending polysulfone with other high temperature polymers6.4 Physical properties of polysulfone blends6.5 Polysulfone/thermoset mixtures6.6 Conclusions6.7 Sources of further information and advice Chapter 7: Polybenzimidazole (PBI) high temperature polymers and blends Abstract:7.1 Introduction7.2 Processing of polybenzimidazole (PBI)7.3 PBI blends7.4 PBI-polyetherketoneketone (PEKK) blends7.5 PBI-polyetherimide (PEI) blends7.6 PBI-polyaryletherketone (PAEK)-PEI blends7.7 PBI-polyarylate (PA) blends7.8 PBI-polysulfone (PS) blends7.9 PBI-polyimide (PI) and PBI-polyamide-imide (PAI) blends7.10 PBI-poly (bisphenol-A carbonate) (PC) and PBI-polybenzoxazole (PBO) blends7.11 PBI-poly(4-vinyl pyridine) (PVPy) and other blends7.11.1 PBI-poly(4-vinyl pyridine) (PVPy) blends7.11.2 Other blends7.12 PBI commercial products7.13 PBI in high temperature applications7.14 Future trends7.15 Sources of further information and advice Index
Series Title: Woodhead Publishing in materials.
Responsibility: edited by Mark T. DeMeuse.


This book reviews recent research in the field, including characterisation methods and analysis of the thermodynamic properties of these blends.  Read more...


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