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Active protective coatings[electroni...
~
Hughes, Anthony E.
Active protective coatings[electronic resource] :new-generation coatings for metals /
Record Type:
Language materials, printed : Monograph/item
[NT 15000414]:
667.9
Title/Author:
Active protective coatings : new-generation coatings for metals // edited by Anthony E. Hughes ... [et al.].
other author:
Hughes, Anthony E.
Published:
Dordrecht : : Springer Netherlands :, 2016.
Description:
viii, 428 p. : : ill. (some col.), digital ;; 24 cm.
Contained By:
Springer eBooks
Subject:
Protective coatings.
Subject:
Corrosion and anti-corrosives.
Subject:
Materials Science.
Subject:
Tribology, Corrosion and Coatings.
Subject:
Industrial Chemistry/Chemical Engineering.
Subject:
Applied and Technical Physics.
Subject:
Characterization and Evaluation of Materials.
Subject:
Environmental Chemistry.
ISBN:
9789401775403
ISBN:
9789401775380
[NT 15000228]:
Part I: Fundamentals. Fundamentals of Corrosion Processes -- Part II: Advances in Active Protective Coatings -- Part III: Applications -- Part IV: New Characterisation Techniques - Measuring Self Healing or Repair.
[NT 15000229]:
This book covers a broad range of materials science that has been brought to bear on providing solutions to the challenges of developing self-healing and protective coatings for a range of metals. The book has a strong emphasis on characterisation techniques, particularly new techniques that are beginning to be used in the coatings area. It features many contributions written by experts from various industrial sectors which examine the needs of the sectors and the state of the art. The development of self-healing and protective coatings has been an expanding field in recent years and applies a lot of new knowledge gained from other fields as well as other areas of materials science to the development of coatings. It has borrowed from fields such as the food and pharmaceutical industries who have used, polymer techniques, sol-gel science and colloidosome technology for a range encapsulation techniques. It has also borrowed from fields like hydrogen storage such as from the development of hierarchical and other materials based on organic templating as "nanocontainers" for the delivery of inhibitors. In materials science, recent developments in high throughput and other characterisation techniques, such as those available from synchrotrons, are being increasing used for novel characterisation - one only needs to look at the application of these techniques in self healing polymers to gauge wealth of new information that has been gained from these techniques. This work is largely driven by the need to replace environmental pollutants and hazardous chemicals that represent risk to humans such as chromate inhibitors which are still used in some applications.
Online resource:
http://dx.doi.org/10.1007/978-94-017-7540-3
Active protective coatings[electronic resource] :new-generation coatings for metals /
Active protective coatings
new-generation coatings for metals /[electronic resource] :edited by Anthony E. Hughes ... [et al.]. - Dordrecht :Springer Netherlands :2016. - viii, 428 p. :ill. (some col.), digital ;24 cm. - Springer series in materials science,v.2330933-033X ;. - Springer series in materials science ;133..
Part I: Fundamentals. Fundamentals of Corrosion Processes -- Part II: Advances in Active Protective Coatings -- Part III: Applications -- Part IV: New Characterisation Techniques - Measuring Self Healing or Repair.
This book covers a broad range of materials science that has been brought to bear on providing solutions to the challenges of developing self-healing and protective coatings for a range of metals. The book has a strong emphasis on characterisation techniques, particularly new techniques that are beginning to be used in the coatings area. It features many contributions written by experts from various industrial sectors which examine the needs of the sectors and the state of the art. The development of self-healing and protective coatings has been an expanding field in recent years and applies a lot of new knowledge gained from other fields as well as other areas of materials science to the development of coatings. It has borrowed from fields such as the food and pharmaceutical industries who have used, polymer techniques, sol-gel science and colloidosome technology for a range encapsulation techniques. It has also borrowed from fields like hydrogen storage such as from the development of hierarchical and other materials based on organic templating as "nanocontainers" for the delivery of inhibitors. In materials science, recent developments in high throughput and other characterisation techniques, such as those available from synchrotrons, are being increasing used for novel characterisation - one only needs to look at the application of these techniques in self healing polymers to gauge wealth of new information that has been gained from these techniques. This work is largely driven by the need to replace environmental pollutants and hazardous chemicals that represent risk to humans such as chromate inhibitors which are still used in some applications.
ISBN: 9789401775403
Standard No.: 10.1007/978-94-017-7540-3doiSubjects--Topical Terms:
571766
Protective coatings.
LC Class. No.: TA418.76
Dewey Class. No.: 667.9
Active protective coatings[electronic resource] :new-generation coatings for metals /
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This book covers a broad range of materials science that has been brought to bear on providing solutions to the challenges of developing self-healing and protective coatings for a range of metals. The book has a strong emphasis on characterisation techniques, particularly new techniques that are beginning to be used in the coatings area. It features many contributions written by experts from various industrial sectors which examine the needs of the sectors and the state of the art. The development of self-healing and protective coatings has been an expanding field in recent years and applies a lot of new knowledge gained from other fields as well as other areas of materials science to the development of coatings. It has borrowed from fields such as the food and pharmaceutical industries who have used, polymer techniques, sol-gel science and colloidosome technology for a range encapsulation techniques. It has also borrowed from fields like hydrogen storage such as from the development of hierarchical and other materials based on organic templating as "nanocontainers" for the delivery of inhibitors. In materials science, recent developments in high throughput and other characterisation techniques, such as those available from synchrotrons, are being increasing used for novel characterisation - one only needs to look at the application of these techniques in self healing polymers to gauge wealth of new information that has been gained from these techniques. This work is largely driven by the need to replace environmental pollutants and hazardous chemicals that represent risk to humans such as chromate inhibitors which are still used in some applications.
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Chemistry and Materials Science (Springer-11644)
based on 0 review(s)
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http://dx.doi.org/10.1007/978-94-017-7540-3
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