An Introduction To Shape Memory Alloys And Their Industrial Applications
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Shape Memory Alloys
Author | : Dimitris C. Lagoudas |
Publsiher | : Springer Science & Business Media |
Total Pages | : 446 |
Release | : 2008-06-05 |
Genre | : Technology & Engineering |
ISBN | : 9780387476858 |
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This book provides a working knowledge of the modeling and engineering applications of shape memory alloys (SMAs), beginning with a rigorous introduction to continuum mechanics and continuum thermodynamics as they relate to the development of SMA modeling.Modern SMAs can recover from large amounts of bending and deformation, and millions of repetitions within recoverable ranges. SMAs are used in the medical industry to create stents, in the dental industry to create dental and orthodontic archwires, and in the aerospace industry to create fluid fittings. The text presents a unified approach to the constitutive modeling of SMAs, including modeling of magnetic and high temperature SMAs.
Shape Memory Alloy Engineering
Author | : Antonio Concilio,Leonardo Lecce |
Publsiher | : Elsevier |
Total Pages | : 449 |
Release | : 2014-09-25 |
Genre | : Technology & Engineering |
ISBN | : 9780080999210 |
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Shape Memory Alloy Engineering introduces materials, mechanical, and aerospace engineers to shape memory alloys (SMAs), providing a unique perspective that combines fundamental theory with new approaches to design and modeling of actual SMAs as compact and inexpensive actuators for use in aerospace and other applications. With this book readers will gain an understanding of the intrinsic properties of SMAs and their characteristic state diagrams, allowing them to design innovative compact actuation systems for applications from aerospace and aeronautics to ships, cars, and trucks. The book realistically discusses both the potential of these fascinating materials as well as their limitations in everyday life, and how to overcome some of those limitations in order to achieve proper design of useful SMA mechanisms. Discusses material characterization processes and results for a number of newer SMAs Incorporates numerical (FE) simulation and integration procedures into commercial codes (Msc/Nastran, Abaqus, and others) Provides detailed examples on design procedures and optimization of SMA-based actuation systems for real cases, from specs to verification lab tests on physical demonstrators One of the few SMA books to include design and set-up of demonstrator characterization tests and correlation with numerical models
Alliages M moire de Forme
Author | : François Trochu,Vladimir Brailovski,André Galibois |
Publsiher | : Canadian Inst of |
Total Pages | : 511 |
Release | : 1999 |
Genre | : Technology & Engineering |
ISBN | : 0919086934 |
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This proceedings is a collection of papers from over ten countries covering the latest research on processing, modeling and industrial applications of Shape Memory Alloys.
Shape Memory Alloys
Author | : George Gibbs |
Publsiher | : Unknown |
Total Pages | : 276 |
Release | : 2016-10-01 |
Genre | : Electronic Book |
ISBN | : 1681176440 |
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Shape memory alloys have become in the past decades a well-established research subject. However, the complex relations between properties and structure have created a continuously growing interest for a deeper insight all this time. Shape memory alloys (SMAs) are metals that ""remember"" their original shapes. SMAs are useful for such things as actuators which are materials that ""change shape, stiffness, position, natural frequency, and other mechanical characteristics in response to temperature or electromagnetic fields"". The potential uses for SMAs especially as actuators have broadened the spectrum of many scientific fields. The study of the history and development of SMAs can provide an insight into a material involved in cutting-edge technology. The diverse applications for these metals have made them increasingly important and visible to the world. Nickel-titanium alloys have been found to be the most useful of all SMAs. Other shape memory alloys include copper-aluminum-nickel, copperzinc-aluminum, and iron- manganese-silicon alloys. Although medical applications for shape memory alloys (SMA) now dominate in today's market, there are many applications in the industrial sector which have reached large volume production that far surpass the material usage in the medical fields. In the early growth of shape memory alloy technology the most important applications were for fasteners and couplings, mainly in the military sector. With the maturing of the technology, and the broader availability of alloys, industrial applications appear in a wide spectrum of commerce. Eyeglass frames were an early example of a new use of superelasticity which has grown to be a world-wide product. Cellular phone antennas consume millions of feet of superelastic wire, and the development of underwire for women's brassieres, formerly limited to Asian market, is now expanding into a worldwide fashion.Shape Memory Alloys - Processing, Characterization and Applications focuses on a wide range of topics from processing to the relationship between the structure and properties, as well as new applications.The many uses and applications of shape memory alloys ensure a bright future for these metals. Research is currently carried out at many robotics departments and materials science departments.
Process Features and Applications of Shape Memory Alloys
Author | : Keith Liverman |
Publsiher | : Unknown |
Total Pages | : 0 |
Release | : 2015-01-05 |
Genre | : Shape memory alloys |
ISBN | : 1632383772 |
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Alloys, which when deformed can return to their original shape once heated are called shape memory alloys (SMA). The field of shape memory alloys over the past few years has evolved as a significant topic of study. The complexity of relationship between properties and structure has always interested researchers and is mostly associated with the fact that strong multidimensional interactions occur in these alloys. This is reflected by initial researches on thermal and mechanical induced phase transformations and also latest developments emphasizing on magnetically induced structural changes. Applications of shape memory alloys offer innovative aspects which have drawn significant industrial interest attributing to its singular behavioral characteristics. These have led to the subject of shape memory alloys acquiring a position of great interest for undergoing research and studies in various fields varying from crystallography and thermodynamics to mechanical evaluation of electrical and chemical properties. The book includes recent researches and studies in this field. It encompasses various aspects of shape memory alloys like processing, novel applications and relationship between structure and properties.
Shape Memory and Superelastic Alloys
Author | : K Yamauchi,I Ohkata,K. Tsuchiya,S Miyazaki |
Publsiher | : Elsevier |
Total Pages | : 232 |
Release | : 2011-04-30 |
Genre | : Technology & Engineering |
ISBN | : 9780857092625 |
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Shape memory and superelastic alloys possess properties not present in ordinary metals meaning that they can be used for a variety of applications. Shape memory and superelastic alloys: Applications and technologies explores these applications discussing their key features and commercial performance. Readers will gain invaluable information and insight into the current and potential future applications of shape memory alloys. Part one covers the properties and processing of shape memory effect and superelasticity in alloys for practical users with chapters covering the basic characteristics of Ti-Ni-based and Ti-Nb-based shape memory and superelastic (SM/SE) alloys, the development and commercialisation of TiNi and Cu-based alloys, industrial processing and device elements, design of SMA coil springs for actuators before a final overview on the development of SM and SE applications. Part two introduces SMA application technologies with chapters investigating SMAs in electrical applications, hot-water supply, construction and housing, automobiles and railways and aerospace engineering before looking at the properties, processing and applications of Ferrous (Fe)-based SMAs. Part three focuses on the applications of superelastic alloys and explores their functions in the medical, telecommunications, clothing, sports and leisure industries. The appendix briefly describes the history and activity of the Association of Shape Memory Alloys (ASMA). With its distinguished editors and team of expert contributors, Shape memory and superelastic alloys: Applications and technologies is be a valuable reference tool for metallurgists as well as for designers, engineers and students involved in one of the many industries in which shape memory effect and superelasticity are used such as construction, automotive, medical, aerospace, telecommunications, water/heating, clothing, sports and leisure. Explores important applications of shape memory and superelastic alloys discussing their key features and commercial performance Assesses the properties and processing of shape memory effect and superelasticity in alloys for practical users with chapters covering the basic characteristics Introduces SMA application technologies investigating SMAs in electrical applications, hot-water supply, construction and housing, automobiles and railways and aerospace engineering
Shape Memory Alloys
Author | : H. R. Chen |
Publsiher | : Unknown |
Total Pages | : 0 |
Release | : 2010 |
Genre | : Shape memory alloys |
ISBN | : 1607417898 |
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A shape memory alloy (SMA, also known as a smart metal, memory alloy, or muscle wire) is an alloy that "remembers" its shape, and can be returned to that shape after being deformed, by applying heat to the alloy. When the shape memory effect is correctly harnessed, this material becomes a lightweight, solid-state alternative to conventional actuators such as hydraulic, pneumatic, and motor-based systems. Shape memory alloys have numerous applications in the medical and aerospace industries. This book presents the latest research in the field from around the globe.
Shape Memory and Superelastic Alloys
Author | : K Yamauchi,I Ohkata,K. Tsuchiya,S Miyazaki |
Publsiher | : Woodhead Publishing |
Total Pages | : 0 |
Release | : 2011-04-30 |
Genre | : Technology & Engineering |
ISBN | : 1845697073 |
Download Shape Memory and Superelastic Alloys Book in PDF, Epub and Kindle
Shape memory and superelastic alloys possess properties not present in ordinary metals meaning that they can be used for a variety of applications. Shape memory and superelastic alloys: Applications and technologies explores these applications discussing their key features and commercial performance. Readers will gain invaluable information and insight into the current and potential future applications of shape memory alloys. Part one covers the properties and processing of shape memory effect and superelasticity in alloys for practical users with chapters covering the basic characteristics of Ti-Ni-based and Ti-Nb-based shape memory and superelastic (SM/SE) alloys, the development and commercialisation of TiNi and Cu-based alloys, industrial processing and device elements, design of SMA coil springs for actuators before a final overview on the development of SM and SE applications. Part two introduces SMA application technologies with chapters investigating SMAs in electrical applications, hot-water supply, construction and housing, automobiles and railways and aerospace engineering before looking at the properties, processing and applications of Ferrous (Fe)-based SMAs. Part three focuses on the applications of superelastic alloys and explores their functions in the medical, telecommunications, clothing, sports and leisure industries. The appendix briefly describes the history and activity of the Association of Shape Memory Alloys (ASMA). With its distinguished editors and team of expert contributors, Shape memory and superelastic alloys: Applications and technologies is be a valuable reference tool for metallurgists as well as for designers, engineers and students involved in one of the many industries in which shape memory effect and superelasticity are used such as construction, automotive, medical, aerospace, telecommunications, water/heating, clothing, sports and leisure.