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Ultrasonic Processes and Machines

160,49 €*

Sofort verfügbar, Lieferzeit: 1-3 Tage

Produktnummer: 18dd86a480f21a4847a5178f05d9854dda
Autor: Astashev, V.K. Babitsky, V. I.
Themengebiete: Nonlinear Theory Ultrasonic Processes Vibration control deformation dynamical systems dynamische Systeme erosion machining plastic deformation
Veröffentlichungsdatum: 18.11.2010
EAN: 9783642091247
Sprache: Englisch
Seitenzahl: 332
Produktart: Kartoniert / Broschiert
Verlag: Springer Berlin
Untertitel: Dynamics, Control and Applications
Produktinformationen "Ultrasonic Processes and Machines"
I don’t mind your thinking slowly, I mind your publishing faster than you think. Wolfgang Pauli (1900-1958) Technologies that use high frequency (ultrasonic) vibration to intensify processes are gaining wide recognition in scienti?c and industrial envir- ments. By superimposing high frequency vibration, the basic mechanical - haviour of many processesand materialsis seen to be transformed.This leads to the developmentof newmachines and processeswith advancedcharacter- tics. Despite the fact that ultrasonic technology has been employed for many years, there is no generalised understanding of ultrasonic machines and p- cesses.Theirdesignanddevelopmenthasmainlybeenachievedusingheuristic methods based on linear acoustical considerations. This book is intended to bridge the gap between the theory and prac- cal use of ultrasonic technology. It presents generalised foundations for the dynamics and control of ultrasonic processing systems. The main concept presented is to consider ultrasonic systems as special kinds of vibratory - chines that function by exploiting nonlinear dynamic processes. This assumes coupled considerations between the ultrasonic vibration’s in?uence on the processes, and the consequence of the transformed processing loads on the excitation and control of the working tools’ vibration. Analysis is conducted in a uni?ed manner and is based on structural and frequency methods that have become well established in engineering practice. These methods are adjusted by the authors for the application to nonlinear ultrasonic systems.

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