<div class="csl-bib-body">
<div class="csl-entry">Krause, M. W., Bleicher, F., & Habersohn, C. (2025). Design and Evaluation of a Piezo-Driven Turning Tool for Machining Non-Circular Geometries. In <i>Proceedings of the 36th International DAAAM Symposium 2025</i> (pp. 0186–0190). https://doi.org/10.2507/36th.daaam.proceedings.025</div>
</div>
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/225462
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dc.description.abstract
Conventional turning processes are inherently limited to the generation of rotationally symmetric geometries due to the
fixed kinematics between the cutting tool and the rotating workpiece. To overcome this limitation and enable the
fabrication of non-circular profiles, a superimposed radial oscillation of the cutting tool can be introduced. This additional
degree of freedom allows for the controlled deviation from circular paths, thereby enabling the machining of a broad
spectrum of arbitrary geometries, constrained primarily by the actuator’s stroke amplitude. Precise synchronisation
between the oscillatory motion of the tool and the angular position of the workpiece is essential to ensure contour fidelity
and surface quality. In this context, a piezo-actuated turning tool was developed and experimentally evaluated. The system
is capable of generating a sinusoidal radial displacement with a maximum amplitude of 85 µm. Experimental results
demonstrate the tool’s ability to consistently and accurately reproduce non-circular profiles, confirming the feasibility
and repeatability of piezo-assisted turning for advanced shape generation. The approach offers a promising solution for
applications requiring high-precision non-rotationally symmetric components
en
dc.language.iso
en
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dc.relation.ispartofseries
DAAAM Proceedings
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dc.subject
Non-circular turning
en
dc.subject
Piezoelectric actuation
en
dc.subject
Shape control
en
dc.title
Design and Evaluation of a Piezo-Driven Turning Tool for Machining Non-Circular Geometries
en
dc.type
Inproceedings
en
dc.type
Konferenzbeitrag
de
dc.relation.isbn
9783902734471
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dc.description.startpage
0186
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dc.description.endpage
0190
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dc.type.category
Full-Paper Contribution
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tuw.booktitle
Proceedings of the 36th International DAAAM Symposium 2025