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Vibration Protection Systems : Negative and Quasi-Zero Stiffness[¾çÀå]

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Design and deploy improved vibration protection systems with this essential reference. For researchers, engineers, professors and students.

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Design and deploy advanced vibration protection systems based on elastic composites under post-buckling, with this essential reference. Methods for designing vibration protection systems with negative and quasi-zero stiffness are formulated, explained, and demonstrated in practice. All key steps of the system design are covered, including the type and number synthesis, modelling and studying of stress-strain state under post-buckling of elastic composite designs, chaotic dynamics and stability conditions, real-time dimensioning, and active motion control. In addition to coverage of underlying theory, the use in helicopters, buses, railroad vehicles, construction equipment and agricultural machinery are included. An excellent reference for researchers and practicing engineers, as well as a tutorial for university students and professors with an interest in study, development and application of alternative methods of vibration protection anywhere.

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Goverdovskiy, Vladimir Nicholas [Àú] ½ÅÀ۾˸² SMS½Åû
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Vladimir Nicholas Goverdovskiy is a Foreign Researcher at the University of Ulsan.

ÀÌâ¸í [Àú] ½ÅÀ۾˸² SMS½Åû
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Chang-Myung Lee is a Professor of Mechanical and Aerospace Engineering at the University of Ulsan.

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