Sareh Esmaeili and J. R. René Mayer
Article (2020)
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Abstract
The ball-bar instrument is used to estimate a maximum number of hysteretic error sources. Machine error parameters include inter- and intra-axis errors as well as hysteresis effects. An error model containing cubic polynomial functions and modified qualitative variables, for hysteresis modeling, is proposed to identify such errors of the three nominally orthogonal linear axes machine. Such model has a total of 90 coefficients, not all of which being necessary. A numerical analysis is conducted to select a minimal but complete non-confounded set of error coefficients. Four different ball-bar test strategies to estimate the model coefficients are simulated and compared. The first one consists of circular trajectories on the primary planes XY, YZ, and XZ and the others use the XY plane, as an equator, and either four, five, or nine meridians. It is concluded that the five-meridian strategy can estimate the additional eight error coefficients: ECZ1, ECZ2, ECZ3, ECZb, EZY3, EZX3, ECX3, and ECXb. The Jacobian condition number is improved by increasing the number of meridians to 5. Further increasing the number of meridians from five to nine improves neither the number of estimable coefficients nor the conditioning, and so as it increases, the test time it was dismissed.
Uncontrolled Keywords
three-axis machine tool; 3D telescopic ball-bar test; geometric and hysteretic error model
Subjects: | 2100 Mechanical engineering > 2100 Mechanical engineering |
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Department: | Department of Mechanical Engineering |
Funders: | CRSNG / NSERC - CANRIMT Strategic Research Network Grant |
Grant number: | 479639-15 |
PolyPublie URL: | https://publications.polymtl.ca/9399/ |
Journal Title: | Journal of Manufacturing and Materials Processing (vol. 4, no. 1) |
Publisher: | MDPI |
DOI: | 10.3390/jmmp4010024 |
Official URL: | https://doi.org/10.3390/jmmp4010024 |
Date Deposited: | 16 Aug 2023 13:41 |
Last Modified: | 27 Sep 2024 12:39 |
Cite in APA 7: | Esmaeili, S., & Mayer, J. R. R. (2020). An integrated geometric and hysteretic error model of a three axis machine tool and its identification with a 3D telescoping ball-bar. Journal of Manufacturing and Materials Processing, 4(1), 14 pages. https://doi.org/10.3390/jmmp4010024 |
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