Tunç, Lütfi Taner and Ozsahin, Orkun (2018) Use of inverse stability solutions for identification of uncertainties in the dynamics of machining processes. Advances in Manufacturing, 6 (3). pp. 308-318. ISSN 2095-3127 (Print) 2195-3597 (Online)
This is the latest version of this item.
Official URL: https://dx.doi.org/10.1007/s40436-018-0233-x
Abstract
Research on dynamics and stability of machining operations has attracted considerable attention. Currently, most studies focus on the forward solution of dynamics and stability in which material properties and the frequency response function at the tool tip are known to predict stable cutting conditions. However, the forward solution may fail to perform accurately in cases wherein the aforementioned information is partially known or varies based on the process conditions, or could involve several uncertainties in the dynamics. Under these circumstances, inverse stability solutions are immensely useful to identify the amount of variation in the effective damping or stiffness acting on the machining system. In this paper, the inverse stability solutions and their use for such purposes are discussed through relevant examples and case studies. Specific areas include identification of process damping at low cutting speeds and variations in spindle dynamics at high rotational speeds.
Item Type: | Article |
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Uncontrolled Keywords: | High speed milling; Inverse stability; Machining dynamics; Process damping; Spindle dynamics |
Divisions: | Faculty of Engineering and Natural Sciences Integrated Manufacturing Technologies Research and Application Center |
Depositing User: | Lütfi Taner Tunç |
Date Deposited: | 05 Jun 2023 11:27 |
Last Modified: | 05 Jun 2023 11:27 |
URI: | https://research.sabanciuniv.edu/id/eprint/45858 |
Available Versions of this Item
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Use of inverse stability solutions for identification of uncertainties
in the dynamics of machining processes. (deposited 04 Sep 2018 14:21)
- Use of inverse stability solutions for identification of uncertainties in the dynamics of machining processes. (deposited 05 Jun 2023 11:27) [Currently Displayed]