Bibliographic Details
Title: |
Approximation Model Development and Dynamic Characteristic Analysis Based on Spindle Position of Machining Center. |
Authors: |
Kim, Ji-Wook1 (AUTHOR), Kim, Dong-Yul2 (AUTHOR), Won, Hong-In1 (AUTHOR), Noh, Yoo-Jeong3 (AUTHOR), Ko, Dae-Cheol4 (AUTHOR), Jang, Jin-Seok1 (AUTHOR) jsjang@kitech.re.kr |
Source: |
Materials (1996-1944). Oct2022, Vol. 15 Issue 20, p7158-N.PAG. 15p. |
Subject Terms: |
*SPINDLES (Machine tools), *DYNAMIC stiffness, *VIBRATION tests, *FACTORIAL experiment designs, *DYNAMIC models, *MACHINING |
Abstract: |
To evaluate the dynamic characteristics at all positions of the main spindle of a machine tool, an experimental point was selected using a full factorial design, and a vibration test was conducted. Based on the measurement position, the resonant frequency was distributed from approximately 236 to 242 Hz. The approximation model was evaluated based on its resonant frequencies and dynamic stiffness using regression and interpolation methods. The accuracy of the resonant frequency demonstrated by the kriging method was approximately 89%, whereas the highest accuracy of the dynamic stiffness demonstrated by the polynomial regression method was 81%. To further verify the approximation model, its dynamic characteristics were measured and verified at additional experimental points. The maximum errors yielded by the model, in terms of the resonant frequency and dynamic stiffness, were 1.6% and 7.1%, respectively. [ABSTRACT FROM AUTHOR] |
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Database: |
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