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  4. Development of a Damped Toolholder for Vibration-Assisted High-Precision Milling Using High Damping Metals
 
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2024
Conference Paper
Title

Development of a Damped Toolholder for Vibration-Assisted High-Precision Milling Using High Damping Metals

Abstract
Ultrasonic vibration-assisted machining (UVAM) is one of the most promising innovations in high precision machining of advanced materials such as titanium alloys for aerospace applications or silicon carbide materials for the semiconductor industry. UVAM improves the process efficiency by increasing tool life through lower cutting forces and temperatures. However, in vibration-assisted milling applications, it is necessary to isolate the spindle system from the vibrations induced by the oscillation actor in order to maintain the long-term accuracy of the machine. This paper presents an innovative approach based on the integration of high damping materials into the toolholder to improve its damping capacity while maintaining the necessary stiffness. Therefore, the tool holder was developed with cylindrical damping inserts in a radial pattern with shrink fit connections. According to the results it was shown that the damping capability of a conventional toolholder can be improved without unacceptably reducing its radial stiffness compared to a standard toolholder geometry.
Author(s)
Tschöpel, Julius
Hocke, Toni
Polte, Mitchel  
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Fleiner, Bernfried
Dicke, Clemens
Uhlmann, Eckart  
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Mainwork
Production at the Leading Edge of Technology  
Conference
German Academic Association for Production Technology (WGP Congress) 2023  
DOI
10.1007/978-3-031-47394-4_37
Language
English
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Keyword(s)
  • material damping

  • ultra-precision machining

  • Ultrasonic vibration-assisted machining (UVAM)

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