Ultrasonic horn design for ultrasonic machining technologies

Many of industrial applications and production technologies are based on the application of ultrasound. In many cases, the phenomenon of ultrasound is also applied in technological processes of the machining of materials. The main element of equipments that use the effects of ultrasound for machinin...

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Main Author: Naď M.
Format: Article
Language:English
Published: University of West Bohemia 2010-07-01
Series:Applied and Computational Mechanics
Subjects:
Online Access:http://www.kme.zcu.cz/acm/index.php/acm/article/view/76/34
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spelling doaj-dc0f2686b28a4b47a6ff508e225ae07a2021-09-02T14:37:59ZengUniversity of West BohemiaApplied and Computational Mechanics1802-680X2010-07-01417988Ultrasonic horn design for ultrasonic machining technologiesNaď M.Many of industrial applications and production technologies are based on the application of ultrasound. In many cases, the phenomenon of ultrasound is also applied in technological processes of the machining of materials. The main element of equipments that use the effects of ultrasound for machining technology is the ultrasonic horn – so called sonotrode. The performance of ultrasonic equipment, respectively ultrasonic machining technologies depends on properly designed of sonotrode shape. The dynamical properties of different geometrical shapes of ultrasonic horns are presented in this paper. Dependence of fundamental modal properties (natural frequencies, mode shapes) of various sonotrode shapes for various geometrical parameters is analyzed. Modal analyses of the models are determined by the numerical simulation using finite element method (FEM) design procedures. The mutual comparisons of the comparable parameters of the various sonotrode shapes are presented.http://www.kme.zcu.cz/acm/index.php/acm/article/view/76/34UltrasoundUltrasonic machining technologiesModal propertiesUltrasonic hornLongitudinal vibrationFinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Naď M.
spellingShingle Naď M.
Ultrasonic horn design for ultrasonic machining technologies
Applied and Computational Mechanics
Ultrasound
Ultrasonic machining technologies
Modal properties
Ultrasonic horn
Longitudinal vibration
Finite element method
author_facet Naď M.
author_sort Naď M.
title Ultrasonic horn design for ultrasonic machining technologies
title_short Ultrasonic horn design for ultrasonic machining technologies
title_full Ultrasonic horn design for ultrasonic machining technologies
title_fullStr Ultrasonic horn design for ultrasonic machining technologies
title_full_unstemmed Ultrasonic horn design for ultrasonic machining technologies
title_sort ultrasonic horn design for ultrasonic machining technologies
publisher University of West Bohemia
series Applied and Computational Mechanics
issn 1802-680X
publishDate 2010-07-01
description Many of industrial applications and production technologies are based on the application of ultrasound. In many cases, the phenomenon of ultrasound is also applied in technological processes of the machining of materials. The main element of equipments that use the effects of ultrasound for machining technology is the ultrasonic horn – so called sonotrode. The performance of ultrasonic equipment, respectively ultrasonic machining technologies depends on properly designed of sonotrode shape. The dynamical properties of different geometrical shapes of ultrasonic horns are presented in this paper. Dependence of fundamental modal properties (natural frequencies, mode shapes) of various sonotrode shapes for various geometrical parameters is analyzed. Modal analyses of the models are determined by the numerical simulation using finite element method (FEM) design procedures. The mutual comparisons of the comparable parameters of the various sonotrode shapes are presented.
topic Ultrasound
Ultrasonic machining technologies
Modal properties
Ultrasonic horn
Longitudinal vibration
Finite element method
url http://www.kme.zcu.cz/acm/index.php/acm/article/view/76/34
work_keys_str_mv AT nadm ultrasonichorndesignforultrasonicmachiningtechnologies
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