Mechanics of Soft Materials

Mechanics of Soft Materials

Author: Konstantin Volokh

Publisher: Springer

Published: 2019-06-11

Total Pages: 167

ISBN-13: 9811383715

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This book provides a concise introduction to soft matter modelling, together with an up-to-date review of the continuum mechanical description of soft and biological materials, from the basics to the latest scientific materials. It also includes multi-physics descriptions, such as chemo-, thermo-, and electro-mechanical coupling. The new edition includes a new chapter on fractures as well as numerous corrections, clarifications and new solutions. Based on a graduate course taught for the past few years at Technion, it presents original explanations for a number of standard materials, and features detailed examples to complement all topics discussed.


Soft Matter Physics

Soft Matter Physics

Author: Masao Doi

Publisher: Oxford University Press, USA

Published: 2013-07-04

Total Pages: 271

ISBN-13: 0199652953

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Soft matter (polymers, colloids, surfactants, liquid crystals) are an important class of materials for modern and future technologies. They are complex materials that behave neither like a fluid nor a solid. This book describes the characteristics of such materials and how we can understand such characteristics in the language of physics.


Advances in Soft Matter Mechanics

Advances in Soft Matter Mechanics

Author: Shaofan Li

Publisher: Springer Science & Business Media

Published: 2012-04-24

Total Pages: 306

ISBN-13: 3642193722

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This book covers developments in soft matter mechanics and physics from the perspective of applied and computational mechanics. It Includes a selection of recent works on the subject and details the application of soft matter mechanics on engineering problems.


Phase Separation in Soft Matter Physics

Phase Separation in Soft Matter Physics

Author: Pulat K. Khabibullaev

Publisher: Springer Science & Business Media

Published: 2003-04-11

Total Pages: 200

ISBN-13: 9783540438908

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This is the first monograph devoted to investigation of the most complex physical processes of soft systems, including a wide class of solutions. It blends modern theoretical understanding and experimental results, proposing new methods and models for the description of several soft systems.


Soft Material-Enabled Electronics for Medicine, Healthcare, and Human-Machine Interfaces

Soft Material-Enabled Electronics for Medicine, Healthcare, and Human-Machine Interfaces

Author: Jae-Woong Jeong

Publisher: MDPI

Published: 2020-03-13

Total Pages: 244

ISBN-13: 3039282824

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Soft material-enabled electronics offer distinct advantage, over conventional rigid and bulky devices, for numerous wearable and implantable applications. Soft materials allow for seamless integration with skin and tissues due to enhanced mechanical flexibility and stretchability. Wearable devices, such as sensors, offer continuous, real-time monitoring of biosignals and movements, which can be applied in rehabilitation and diagnostics, among other applications. Soft implantable electronics offer similar functionalities, but with improved compatibility with human tissues. Biodegradable soft implantable electronics are also being developed for transient monitoring, such as in the weeks following surgery. To further advance soft electronics, materials, integration strategies, and fabrication techniques are being developed. This paper reviews recent progress in these areas, toward the development of soft material-enabled electronics for medicine, healthcare, and human-machine interfaces.


Advancements in Gel Science—A Special Issue in Memory of Toyoichi Tanaka

Advancements in Gel Science—A Special Issue in Memory of Toyoichi Tanaka

Author: Masayuki Tokita

Publisher: MDPI

Published: 2019-08-19

Total Pages: 178

ISBN-13: 3039213431

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A gel is a state of matter that consists of a three-dimensional cross-linked polymer network and a large amount of solvent. Because of their structural characteristics, gels play important roles in science and technology. The science of gels has attracted much attention since the discovery of the volume phase transition by Professor Toyoichi Tanala at MIT in 1978. MDPI planned to publish a Special Issue in Gels to celebrate the 40th anniversary of this discovery, which received submissions of 13 original papers and one review from various areas of science. We believe that readers will find this Special Issue informative as to the recent advancements of gel research and the broad background of gel science.


Modeling of Soft Matter

Modeling of Soft Matter

Author: Maria-Carme T. Calderer

Publisher: Springer Science & Business Media

Published: 2008-08-26

Total Pages: 250

ISBN-13: 0387321535

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This IMA Volume in Mathematics and its Applications MODELING OF SOFT MATTER contains papers presented at a very successful workshop with the same ti tle. The event, which was held on September 27-October 1, 2004, was an integral part of the 2004-2005 IMA Thematic Year on "Mathematics of Ma terials and Macromolecules: Multiple Scales, Disorder, and Singularities. " We would like to thank Maria-Carme T. Calderer (School of Mathematics, University of Minnesota) and Eugene M. Terentjev (Cavendish Laboratory, University of Cambridge) for their superb role as workshop organizers and editors of the proceedings. We take this opportunity to thank the National Science Foundation for its support of the IMA. Series Editors Douglas N. Arnold, Director of the IMA Arnd Scheel, Deputy Director of the IMA PREFACE The physics of soft matter in particular, focusing on such materials as complex fluids, liquid crystals, elastomers, soft ferroelectrics, foams, gels and particulate systems is an area of intense interest and contemporary study. Soft matter plays a role in a wide variety of important processes and application, as well as in living systems. For example, gel swelling is an essential part of many biological processes such as motility mecha nisms in bacteria and the transport and absorption of drugs. Ferroelectrics, liquid crystals, and elastomers are being used to design ever faster switch ing devices. Experiments of the last decade have provided a great deal of detailed information on structures and properties of soft matter.


Soft Matter for Biomedical Applications

Soft Matter for Biomedical Applications

Author: Dr Helena S Azevedo

Publisher: Royal Society of Chemistry

Published: 2021-06-11

Total Pages: 788

ISBN-13: 1788017579

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Dynamic soft materials that have the ability to expand and contract, change stiffness, self-heal or dissolve in response to environmental changes, are of great interest in applications ranging from biosensing and drug delivery to soft robotics and tissue engineering. This book covers the state-of-the-art and current trends in the very active and exciting field of bioinspired soft matter, its fundamentals and comprehension from the structural-property point of view, as well as materials and cutting-edge technologies that enable their design, fabrication, advanced characterization and underpin their biomedical applications. The book contents are supported by illustrated examples, schemes, and figures, offering a comprehensive and thorough overview of key aspects of soft matter. The book will provide a trusted resource for undergraduate and graduate students and will extensively benefit researchers and professionals working across the fields of chemistry, biochemistry, polymer chemistry, materials science and engineering, nanosciences, nanotechnologies, nanomedicine, biomedical engineering and medical sciences.