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Titlebook: Calm, Smooth and Smart; Novel Approaches for Peter Eberhard Book 2024 The Editor(s) (if applicable) and The Author(s), under exclusive lice

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Numerical and Experimental Assessment of Acoustic Radiation Damping,issipation in lightweight structures. The methodological content of this contribution centers around the acoustic boundary element method, which allows assessing the far-field sound radiation of structures involving complex geometries. Two approaches are followed to characterize the vibration of the
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Vibration Reduction by Energy Transfer Using Shape Adaption,h is a novel way of combining the concepts of damping and absorption inherently in a structure. By dynamically adapting the stiffness of a slender, beam-like structure through the use of shape adaption in the cross-section, energy is transferred from critical low-frequency modes into a specifically
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A Combined Numerical-Experimental Approach for the Damping Evaluation of Non-Linear Dissipative Vibue to bifurcations or harmonic coupling between modes. Well established methods for the experimental analysis of linear systems, where the system is simply excited in open-loop, can not cope with such nonlinear effects. However, a novel approach called experimental continuation, allows to account fo
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Field-Responsive Fluid Based Multi-degree-of-Freedom Dampers for Independently Adjustable Dissipatiamping in vibrating systems. Magneto (MR)- and electrorheological (ER) fluids have been implemented in damper technology as a novel invention two decades ago, whereby the resulted damping can be adjusted in real-time by controlling the strength of the applied field. Since the damping can be adjusted
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Granular Mixtures with Tailored Effective Properties,by earthquakes propagate through “granular” materials (like soil, concrete or asphalt), with the characteristics of the aggregate affecting the velocity, amplitude-damping and frequencies of the wave. Here, we focus on wave propagation and attenuation in biphasic granular mixtures made of soft and s
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https://doi.org/10.1007/978-3-8348-9267-6ion with dry friction to reduce vibrations. The dry friction combined with a prestress load allows a selective energy dissipation, whereas varying contact surfaces lead to robust dissipative forces. Furthermore, experiments with the dry friction lock-up damper and the prestressed sliding wedge damper are presented.
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