Smart Structures: Applications and Related Technologies
Springer Science & Business Media, 2001 - Computers - 358 pages
This book documents the state-of-the-art evaluation of the embryonic field of multifunctional materials and adaptive structures, more specifically in the area of active vibration suppression, shape control, noise attenuation, structural health monitoring, smart machines and micro-electro-mechanical systems with application in aircraft, aerospace, automobile, civil structures and consumer industry.
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ACTIVE SHAPE CONTROL
ACTIVE VIBRATION CONTROL
SMART MACHINE SYSTEMS
MICRO ELECTRO MECHANICAL SYSTEMS
HEALTH MONITORING SYSTEMS
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active vibration adaptive structure amplitude applied beam Bingham plastic bolted joint bonding Boundary Element Methods caleulated capacitive clutch coefficient components constant damper damping deformation devices displacement dynamic effect electric field electrode energy equations excitation experimental fabrication fibre Bragg grating film finite element flow fluid frequency friction function Gaul inertia input joint connections laminate layer linear load LPCVD machine material matrix measured mechanical membrane method modal mode mode shapes monitoring motor normal force operation optical fiber optimal output parameters particles performance piezo piezoelectric actuators piston plasma plate polysilicon pressure sensor refractive index Reynolds number rotor shear rate shear stress shown in Figure signal silicon micromachining Smart Structures solution speed stiffness strain strain gauges substrate surface technique temperature thermal thickness truss structure University of Stuttgart valve vector velocity viscosity voltage wafer wavelength wing yield stress