Rozbor dynamických drah soustružení
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Vysoká škola báňská – Technická univerzita Ostrava
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Abstract
This bachelor’s thesis focuses on the analysis and comparison of dynamic (trochoidal) turning toolpaths with conventional linear toolpaths. The aim of the thesis is to evaluate the effect of trochoidal toolpaths on machining efficiency.
The theoretical part includes a geometric and theoretical analysis of dynamic toolpaths, their relationship to chip thickness, and recommendations from tool manufacturers.
In the practical part, the toolpaths are analyzed and simulated in the SolidCAM 2025 CAM system and experimentally verified on a real part model used in production at Tatra. The results of the thesis provide practical recommendations for optimizing machining processes, particularly in the serial production of components for heavy-duty vehicles.
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paths, turning, workpiece, simulation, cutting conditions, chips