Description

This book contains the research report of the DFG Research Unit FOR 1845 (2014-2020) of the Universities of Bremen and Hannover. The thematic focus lies on speeding up ultra-precision machining technology by following a holistic approach to high-performance cutting. This includes ultra-precision milling at high spindle speeds (>10000 rpm), precision tool setting mechanisms for multi-cutting-edge diamond milling tools, magnetic levitation technology for high velocity feed axes, and dedicated control strategies for error identification and compensation at high speeds. Furthermore, automation and measurement aspects of the machine setup process especially for precision balancing of the spindle rotors are presented. Finally, it is demonstrated that how the developed technologies may be integrated into a common machine tool setup.

The target audience primarily comprises research experts and practitioners in production engineering, but the book may also be of interest to graduate students alike.

Ultra-precision High Performance Cutting: Report of DFG Research Unit FOR 1845

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Hardback by Ekkard Brinksmeier , Lars Schönemann

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This book contains the research report of the DFG Research Unit FOR 1845 (2014-2020) of the Universities of Bremen and... Read more

    Publisher: Springer Nature Switzerland AG
    Publication Date: 21/09/2021
    ISBN13: 9783030837648, 978-3030837648
    ISBN10: 3030837645

    Number of Pages: 174

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    This book contains the research report of the DFG Research Unit FOR 1845 (2014-2020) of the Universities of Bremen and Hannover. The thematic focus lies on speeding up ultra-precision machining technology by following a holistic approach to high-performance cutting. This includes ultra-precision milling at high spindle speeds (>10000 rpm), precision tool setting mechanisms for multi-cutting-edge diamond milling tools, magnetic levitation technology for high velocity feed axes, and dedicated control strategies for error identification and compensation at high speeds. Furthermore, automation and measurement aspects of the machine setup process especially for precision balancing of the spindle rotors are presented. Finally, it is demonstrated that how the developed technologies may be integrated into a common machine tool setup.

    The target audience primarily comprises research experts and practitioners in production engineering, but the book may also be of interest to graduate students alike.

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