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Titlebook: Mechanics and Model-Based Control of Smart Materials and Structures; Hans Irschik,Michael Krommer,Toshio Furukawa Book 2010 Springer-Verla

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書目名稱Mechanics and Model-Based Control of Smart Materials and Structures
編輯Hans Irschik,Michael Krommer,Toshio Furukawa
視頻videohttp://file.papertrans.cn/629/628409/628409.mp4
概述Includes supplementary material:
圖書封面Titlebook: Mechanics and Model-Based Control of Smart Materials and Structures;  Hans Irschik,Michael Krommer,Toshio Furukawa Book 2010 Springer-Verla
描述.Mechanics and model-based control are both rapidly expanding scientific fields and fundamental disciplines of mechatronics, sharing demanding mathematical and system-theoretic formulations and methods. The papers in this volume deal with smart materials, which allow the design and implementation of new types of actuator/sensor fields and networks. Main topics treated are fundamental studies on laminated, composite and functionally graded materials, thermal and piezoelectric actuation, active and passive damping, as well as vibrations and waves in smart structures. The book is based on the 1st Japanese-Austrian Workshop which took place in Linz in Fall 2008..
出版日期Book 2010
關(guān)鍵詞automatic control; composite material; deformation; friction; mechanical engineering; mechanics; mechatron
版次1
doihttps://doi.org/10.1007/978-3-211-99484-9
isbn_softcover978-3-7091-1916-7
isbn_ebook978-3-211-99484-9
copyrightSpringer-Verlag Vienna 2010
The information of publication is updating

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Thermal Stress Analysis in a Functionally Graded Material Considering Finite Thermal Wave Speed,te space approach and integral transform techniques(Laplace and Fourier transforms). The functionally graded material is approximated to a multi-layered medium. Each layer is homogeneous and isotropic. The surfaces are traction free and subjected to a partial heating. The numerical calculations for temperature and thermal stresses are carried out
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Output Regulation of Smart Structures, Theory and Practice,lasticity and Kirchhoff plate theory a mathematical model is derived, which is used for the controller design such that harmonic disturbance with either known or unknown disturbance frequency are asymptotically eliminated. Both simulations and laboratory experiments show the performance of the proposed approach
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Seismic Performance of Tuned Mass Dampers,re modeled as elastic single-degree-of-freedom oscillators and they are equipped with a single TMD. The TMD performance is assessed by means of response reduction coefficients, which are generated from the ratio of the structural response with and without TMD attached. It is found that TMDs are effe
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Problems in Fast Moving Non-Holonomic Elastic Systems,. Thereby, the particular methods exhibit special advantages and disadvantages according to the aim of investigation. For the derivation of the motion equations, the analytical methods display some drawbacks: the use of non-holonomic velocities needs an enormous effort and non-holonomic constraints
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