Active Vibration Suppression Platform for Milling Machine
Autor: | Ping-Hsueh Hsieh, Nan-Chyuan Tsai, Hsin Lin Chiu, Cheng-Wei Yeh |
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Rok vydání: | 2019 |
Předmět: |
0209 industrial biotechnology
Materials science Noise (signal processing) 020208 electrical & electronic engineering Process (computing) Mechanical engineering 02 engineering and technology Vibration Least mean squares filter 020901 industrial engineering & automation Quality (physics) Machined surface 0202 electrical engineering electronic engineering information engineering Surface roughness Metal cutting |
Zdroj: | ECC |
DOI: | 10.23919/ecc.2019.8795682 |
Popis: | An active vibration-suppressed workholding platform (AVSWP) for milling machines is proposed. As to metal cutting, vibration is one of the major factors which affect the surface roughness of finished workpieces. Once the excessive vibration is present during milling process, the surface roughness of the workpiece would be accordingly downgraded. Therefore, AVSWP is proposed to actively suppress the vibration induced by the cutting force. To achieve this goal, an active noise feedback controller based on FxLMS (Filtered-x Least Mean Square) algorithm is applied to achieve satisfactory performance in terms of vibration suppression. According to the experimental results, the vibration of workpiece during milling process can be effectively suppressed by 55% compared with the open-loop case. Besides, from the realistically finished workpieces, it can be observed that the quality of machined surface is upgraded, owing to the vibration of workpiece being successfully suppressed by AVSWP. |
Databáze: | OpenAIRE |
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