Dynamic analysis and vibration testing of CFRP drive-line system used in heavy-duty machine tool

[Display omitted] Low critical rotary speed and large vibration in the metal drive-line system of heavy-duty machine tool affect the machining precision seriously. Replacing metal drive-line with the CFRP drive-line can effectively solve this problem. Based on the composite laminated theory and the...

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Veröffentlicht in:Results in physics 2018-03, Vol.8, p.1110-1118
Hauptverfasser: Yang, Mo, Gui, Lin, Hu, Yefa, Ding, Guoping, Song, Chunsheng
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Sprache:eng
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Zusammenfassung:[Display omitted] Low critical rotary speed and large vibration in the metal drive-line system of heavy-duty machine tool affect the machining precision seriously. Replacing metal drive-line with the CFRP drive-line can effectively solve this problem. Based on the composite laminated theory and the transfer matrix method (TMM), this paper puts forward a modified TMM to analyze dynamic characteristics of CFRP drive-line system. With this modified TMM, the CFRP drive-line of a heavy vertical miller is analyzed. And the finite element modal analysis model of the shafting is established. The results of the modified TMM and finite element analysis (FEA) show that the modified TMM can effectively predict the critical rotary speed of CFRP drive-line. And the critical rotary speed of CFRP drive-line is 20% higher than that of the original metal drive-line. Then, the vibration of the CFRP and the metal drive-line were tested. The test results show that application of the CFRP drive shaft in the drive-line can effectively reduce the vibration of the heavy-duty machine tool.
ISSN:2211-3797
2211-3797
DOI:10.1016/j.rinp.2018.01.067