Accuracy analysis and error compensation for Tricept machine tool under load
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
https://link.springer.com/content/pdf/10.1007/s12206-021-0730-x.pdf
Reference35 articles.
1. L. Uriarte, M. Zatarain, D. Axinte, J. Yage-Fabra, S. Ihlenfeldt, J. Eguia and A. Olarra, Machine tools for large parts, CIRP Annals, 62(2) (2013) 731–750.
2. B. Siciliano, The Tricept robot: inverse kinematics, manipulability analysis and closed-loop direct kinematics algorithm, Robotica, 17(4) (1999) 437–445.
3. F. Caccavale, B. Siciliano and V. Luigi, The Tricept robot: dynamics and impedance control, IEEE/ASME Transactions on Mechatronics, 8 (2003) 263–268.
4. D. Zhang and C. Gosselin, Kinetostatic analysis and design optimization of the Tricept machine tool family, ASME J. of Manufacturing Science and Engineering, 124 (2002) 725–733.
5. M. Li et al., Dynamic formulation and performance comparison of the 3-DOF modules of two reconfigurable PKM — the Tricept and the trivariant, J. Mech. Des., 127(6) (2005) 1129–1136.
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