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Titlebook: Dynamics of Advanced Materials and Smart Structures; K. Watanabe,F. Ziegler Book 2003 Springer Science+Business Media B.V. 2003 Analysis.T

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书目名称Dynamics of Advanced Materials and Smart Structures
编辑K. Watanabe,F. Ziegler
视频video
丛书名称Solid Mechanics and Its Applications
图书封面Titlebook: Dynamics of Advanced Materials and Smart Structures;  K. Watanabe,F. Ziegler Book 2003 Springer Science+Business Media B.V. 2003 Analysis.T
描述Two key words for mechanical engineering in the future are Micro and Intelligence. It is weIl known that the leadership in the intelligence technology is a marter of vital importance for the future status of industrial society, and thus national research projects for intelligent materials, structures and machines have started not only in advanced countries, but also in developing countries. Materials and structures which have self-sensing, diagnosis and actuating systems, are called intelligent or smart, and are of growing research interest in the world. In this situation, the IUT AM symposium on Dynamics 0/ Advanced Materials and Smart Structures was a timely one. Smart materials and structures are those equipped with sensors and actuators to achieve their designed performance in achanging environment. They have complex structural properties and mechanical responses. Many engineering problems, such as interface and edge phenomena, mechanical and electro-magnetic interaction/coupling and sensing, actuating and control techniques, arise in the development ofintelligent structures. Due to the multi-disciplinary nature ofthese problems, all ofthe classical sciences and technologies, s
出版日期Book 2003
关键词Analysis; Transformation; design; fuzzy; fuzzy control; mechanical engineering; mechanics; model; modeling; m
版次1
doihttps://doi.org/10.1007/978-94-017-0371-0
isbn_softcover978-90-481-6192-8
isbn_ebook978-94-017-0371-0Series ISSN 0925-0042 Series E-ISSN 2214-7764
issn_series 0925-0042
copyrightSpringer Science+Business Media B.V. 2003
The information of publication is updating

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Model Reduction for Complex Adaptive Structures,g matrices becomes very large even for simple geometries [5–9]. To give an example, to obtain the transient response of a simple clamped plate with five pairs of sensors and actuators it is necessary to retain the first 50 structural modes and this results in an 800 × 800 matrix. In order to then in
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Transient Analysis of Smart Structures Using a Coupled Piezoelectric-Mechanical Theory,s being used as a sensor or actuator. Also, the uncoupled model is not capable of taking into consideration any electrical circuitry connected to the piezoelectric device. This has been recognized in some specific applications and coupled equations have been used to model passive damping circuits [4
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,Mysel’s Formula for Small Vibrations Superimposed Upon Large Static Deformations of Piezoelastic Boormula thus lies in the fact that known solutions of an auxiliary isothermal force problem can be utilized for presenting a formal solution of the linear coupled thermoelastic problem. The coupling to the thermal field can be often neglected in practical applications, particularly in the case of qua
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