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Self Healing Materials

Author: Martin D. Hager
Publisher: Springer
ISBN: 331932778X
Size: 23.11 MB
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The series Advances in Polymer Science presents critical reviews of the present and future trends in polymer and biopolymer science. It covers all areas of research in polymer and biopolymer science including chemistry, physical chemistry, physics, material science. The thematic volumes are addressed to scientists, whether at universities or in industry, who wish to keep abreast of the important advances in the covered topics. Advances in Polymer Science enjoys a longstanding tradition and good reputation in its community. Each volume is dedicated to a current topic, and each review critically surveys one aspect of that topic, to place it within the context of the volume. The volumes typically summarize the significant developments of the last 5 to 10 years and discuss them critically, presenting selected examples, explaining and illustrating the important principles, and bringing together many important references of primary literature. On that basis, future research directions in the area can be discussed. Advances in Polymer Science volumes thus are important references for every polymer scientist, as well as for other scientists interested in polymer science - as an introduction to a neighboring field, or as a compilation of detailed information for the specialist. Review articles for the individual volumes are invited by the volume editors. Single contributions can be specially commissioned. Readership: Polymer scientists, or scientists in related fields interested in polymer and biopolymer science, at universities or in industry, graduate students

Self Healing Polymers And Polymer Composites

Author: Ming Qiu Zhang
Publisher: John Wiley & Sons
ISBN: 9781118082584
Size: 29.11 MB
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A state-of-art guide on the interdisciplinary aspects of design,chemistry, and physical properties of bio-inspired self-healingpolymers Inspired by the natural self-healing properties that exist inliving organisms—for example, the regenerative ability ofhumans to heal from cuts and broken bones—interest inself-healing materials is gaining more and more attention.Addressing the broad advances being made in this emerging science,Self-Healing Polymers and Polymer Composites incorporatesfundamentals, theory, design, fabrication, characterization, andapplication of self-healing polymers and polymer composites todescribe how to prepare self-healing polymeric materials, how toincrease the speed of crack repair below room temperature, and howto broaden the spectrum of healing agent species. Some of the information readers will discover in this bookinclude: Focus on engineering aspects and theoretical backgrounds ofsmart materials The systematic route for developing techniques and materials toadvance the research and applications of self-healing polymers Integration of existing techniques and introduction of novelsynthetic approaches and target-oriented materials design andfabrication Techniques for characterizing the healing process of polymersand applications of self-healing polymers and polymercomposites Practical aspects of self-healing technology in variousindustrial fields, such as electronics, automotive, construction,chemical production, and engineering With this book, readers will have a comprehensive understandingof this emerging field, while new researchers will understand theframework necessary for innovating new self-healing solutions.

Self Healing Composites

Author: Guoqiang Li
Publisher: John Wiley & Sons
ISBN: 1118452453
Size: 14.37 MB
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In this book, the self-healing of composite structures withshape memory polymer as either matrix or embedded suture issystematically discussed. Self-healing has been well known inbiological systems for many years: a typical example is theself-healing of human skin. Whilst a minor wound can be self-closedby blood clotting, a deep and wide cut needs external help bysuturing. Inspired by this observation, this book proposes atwo-step close-then-heal (CTH) scheme for healing wide-openedcracks in composite structures–by constrained shape recoveryfirst, followed by molecular healing. It is demonstrated that theCTH scheme can heal wide-opened structural cracks repeatedly,efficiently, timely, and molecularly. It is believed thatself-healing represents the next-generation technology and willbecome an engineering reality in the near future. The book consists of both fundamental background and practicalskills for implementing the CTH scheme, with additional focus onunderstanding strain memory versus stress memory and healingefficiency evaluation under various fracture modes. Potentialapplications to civil engineering structures, including sealant forbridge decks and concrete pavements, and rutting resistant asphaltpavements, are also explored. This book will help readers tounderstand this emerging field, and to establish a framework fornew innovation in this direction. Key features: explores potential applications of shape memory polymers incivil engineering structures, which is believed to be unique withinthe literature balanced testing and mathematical modeling, useful for bothacademic researchers and practitioners the self-healing scheme is based on physical change of polymersand is written in an easy to understand style for engineeringprofessionals without a strong background in chemistry

Recent Advances In Smart Self Healing Polymers And Composites

Author: Guoqiang Li
Publisher: Elsevier
ISBN: 1782422927
Size: 35.98 MB
Format: PDF
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Recent Advances in Smart Self-Healing Polymers and Composites examines the advances made in smart materials over the last few decades and their significant applications in aerospace, automotive, civil, mechanical, medical, and communication engineering fields. Based on a thorough review of the literature, the book identifies “smart self-healing polymers and composites as one of the most popular, challenging, and promising areas of research. Readers will find valuable information compiled by a large pool of researchers who not only studied the latest datasets, but also reached out to leading contributors for insights and forward-thinking analogies. Examines the advances made in smart materials over the last few decades Presents significant applications in aerospace, automotive, civil, mechanical, medical, and communication engineering fields Compiled by a large pool of researchers who not only studied the latest datasets, but also reached out to leading contributors for insights and forward-thinking analogies

Self Healing Materials

Author: Swapan Kumar Ghosh
Publisher: John Wiley & Sons
ISBN: 3527625380
Size: 76.60 MB
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The book covers self-healing concepts for all important material classes and their applications: polymers, ceramics, non-metallic and metallic coatings, alloys, nanocomposites, concretes and cements, as well as ionomers. Beginning with the inspiration from biological self-healing, its mimickry and conceptual transfer into approaches for the self-repair of artificially created materials, this book explains the strategies and mechanisms for the readers' basic understanding, then covers the different material classes and suitable self-healing concepts, giving examples for their application in practical situations. As the first book in this swiftly growing research field, it is of great interest to readers from many scientific and engineering disciplines, such as physics and chemistry, civil, architectural, mechanical, electronics and aerospace engineering.

Self Healing Materials

Author: Brahim Aissa
Publisher: Smithers Rapra
ISBN: 1909030120
Size: 61.72 MB
Format: PDF
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This book summarizes the general concepts of the self-healing processes, starting with their occurrences in nature (plants, human skin, etc.) and leading to the most recent academic and industrial advances. It includes a detailed description and explanation of a wide range of materials and applications, such as polymeric, anticorrosion, smart paints, satellite coatings, etc. A particular emphasis will be given to the space environment (in terms of vacuum, thermal gradients, mechanical vibrations, space radiation, etc.). The book discusses the most recent and innovative results towards controlling the self-healing materials for the space debris mitigation. It concludes with a comprehensive outlook into the future developments and applications. An extensive survey of published papers and conference reports is also included.

Adaptive Structures

Author: David Wagg
Publisher: John Wiley & Sons
ISBN: 9780470512043
Size: 22.58 MB
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Adaptive structures have the ability to adapt, evolve or change their properties or behaviour in response to the environment around them. The analysis and design of adaptive structures requires a highly multi-disciplinary approach which includes elements of structures, materials, dynamics, control, design and inspiration taken from biological systems. Development of adaptive structures has been taking place in a wide range of industrial applications, but is particularly advanced in the aerospace and space technology sector with morphing wings, deployable space structures; piezoelectric devices and vibration control of tall buildings. Bringing together some of the foremost world experts in adaptive structures, this unique text: includes discussions of the application of adaptive structures in the aerospace, military, civil engineering structures, automotive and MEMS. presents the impact of biological inspiration in designing adaptive structures, particularly the use of hierarchy in nature, which typically induces multi-functional behavior. sets the agenda for future research in adaptive structures in one distinctive single volume. Adaptive Structures: Engineering Applications is essential reading for engineers and scientists working in the fields of intelligent materials, structural vibration, control and related smart technologies. It will also be of interest to senior undergraduate and postgraduate research students as well as design engineers working in the aerospace, mechanical, electrical and civil engineering sectors.

Supramolecular Polymer Networks And Gels

Author: Sebastian Seiffert
Publisher: Springer
ISBN: 3319154044
Size: 50.51 MB
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The series Advances in Polymer Science presents critical reviews of the present and future trends in polymer and biopolymer science. It covers all areas of research in polymer and biopolymer science including chemistry, physical chemistry, physics, material science. The thematic volumes are addressed to scientists, whether at universities or in industry, who wish to keep abreast of the important advances in the covered topics. Advances in Polymer Science enjoys a longstanding tradition and good reputation in its community. Each volume is dedicated to a current topic and each review critically surveys one aspect of that topic, to place it within the context of the volume. The volumes typically summarize the significant developments of the last 5 to 10 years and discuss them critically, presenting selected examples, explaining and illustrating the important principles and bringing together many important references of primary literature. On that basis, future research directions in the area can be discussed. Advances in Polymer Science volumes thus are important references for every polymer scientist, as well as for other scientists interested in polymer science - as an introduction to a neighboring field, or as a compilation of detailed information for the specialist. Review articles for the individual volumes are invited by the volume editors. Single contributions can be specially commissioned. Readership: Polymer scientists, or scientists in related fields interested in polymer and biopolymer science, at universities or in industry, graduate students.

Designing Of Elastomer Nanocomposites From Theory To Applications

Author: Klaus Werner Stöckelhuber
Publisher: Springer
ISBN: 3319476963
Size: 26.22 MB
Format: PDF, Docs
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The series Advances in Polymer Science presents critical reviews of the present and future trends in polymer and biopolymer science. It covers all areas of research in polymer and biopolymer science including chemistry, physical chemistry, physics, material science.The thematic volumes are addressed to scientists, whether at universities or in industry, who wish to keep abreast of the important advances in the covered topics.Advances in Polymer Science enjoys a longstanding tradition and good reputation in its community. Each volume is dedicated to a current topic, and each review critically surveys one aspect of that topic, to place it within the context of the volume. The volumes typically summarize the significant developments of the last 5 to 10 years and discuss them critically, presenting selected examples, explaining and illustrating the important principles, and bringing together many important references of primary literature. On that basis, future research directions in the area can be discussed. Advances in Polymer Science volumes thus are important references for every polymer scientist, as well as for other scientists interested in polymer science - as an introduction to a neighboring field, or as a compilation of detailed information for the specialist.Review articles for the individual volumes are invited by the volume editors. Single contributions can be specially commissioned.Readership: Polymer scientists, or& nbsp;scientists in related fields interested in polymer and biopolymer science, at universities or in industry, graduate students.

Kunststoffpr Fung

Author: Wolfgang Grellmann
Publisher: Carl Hanser Verlag GmbH Co KG
ISBN: 3446443908
Size: 56.72 MB
Format: PDF, Kindle
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Die enormen Zuwachsraten in der Kunststofferzeugung und -anwendung erhöhen die Forderung nach aussagekräftigen Mess- und Auswerteverfahren in der Kunststoffprüfung. Durch die Fortschritte in der elektronischen Messtechnik haben sich sowohl die klassischen Prüfverfahren weiterentwickelt als auch völlig neuartige Methoden etabliert. Die Aussagekraft dieser Kenngrößen zur Quantifizierung der Zusammenhänge zwischen der Mikrostruktur und den makroskopischen Eigenschaften wird dargestellt. Zusätzliche Informationen über die ablaufenden Schädigungsprozesse und -mechanismen können durch die Anwendung gekoppelter zerstörungsfreier Kunststoffprüfverfahren bzw. hybrider Methoden der Kunststoffdiagnostik gewonnen werden. An Hand von Beispielen zur Optimierung von Kunststoffen und Verbunden sowie zur Bewertung von Bauteileigenschaften wird ein werkstoffwissenschaftlich begründeter Einblick in die moderne Kunststoffprüfung vermittelt.