Moubarak, P.; Ben-Tzvi, P. On the Dual-Rod Slider Rocker Mechanism and Its Applications to Tristate Rigid Active Docking. ASME Journal of Mechanisms and Robotics. 2013, 5 (1): 011010. doi:10.1115/1.4023178.
Koetsier, T. From Kinematically Generated Curves to Instantaneous Invariants: Episodes in the History of Instantaneous Planar Kinematics. Mechanism and Machine Theory. 1986, 21 (6): 489–498. doi:10.1016/0094-114x(86)90132-1.
F. C. Moon, "History of the Dynamics of Machines and Mechanisms from Leonardo to Timoshenko," International Symposium on History of Machines and Mechanisms, (H. S. Yan and M. Ceccarelli, eds.), 2009. doi:10.1007/978-1-4020-9485-9-1
A. B. Kempe, "On a general method of describing plane curves of the nth degree by linkwork," Proceedings of the London Mathematical Society, VII:213–216, 1876
R. Connelly and E. D. Demaine, "Geometry and Topology of Polygonal Linkages," Chapter 9, Handbook of discrete and computational geometry, (J. E. Goodman and J. O'Rourke, eds.), CRC Press, 2004
Freudenstein, F.; Sandor, G. N. Synthesis of Path Generating Mechanisms by Means of a Programmed Digital Computer. ASME Journal of Engineering for Industry. 1959, 81 (2): 159–168. doi:10.1115/1.4008283.
Sheth, P. N.; Uicker, J. J. IMP (Integrated Mechanisms Program), A Computer-Aided Design Analysis system for Mechanisms and Linkages. ASME Journal of Engineering for Industry. 1972, 94 (2): 454–464. doi:10.1115/1.3428176.
A. J. Rubel and R. E. Kaufman, 1977, "KINSYN III: A New Human-Engineered System for Interactive Computer-aided Design of Planar Linkages," ASME Transactions, Journal of Engineering for Industry, May
Muller, M. A novel classification of planar four-bar linkages and its application to the mechanical analysis of animal systems. Phil. Trans. R. Soc. Lond. B. 1996, 351 (1340): 689–720. PMID 8927640. doi:10.1098/rstb.1996.0065.
Simionescu, P.A. MeKin2D: Suite for Planar Mechanism Kinematics(PDF). ASME 2016 Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Charlotte, NC, USA: 1–10. 21–24 August 2016 [7 January 2017]. (原始内容存档(PDF)于2017-01-08).
Bryant, John; Sangwin, Chris. How round is your circle? : where engineering and mathematics meet. Princeton: Princeton University Press. 2008: 306. ISBN 978-0-691-13118-4. — Connections between mathematical and real-world mechanical models, historical development of precision machining, some practical advice on fabricating physical models, with ample illustrations and photographs
Kidwell, Peggy Aldrich; Amy Ackerberg-Hastings; David Lindsay Roberts. Tools of American mathematics teaching, 1800–2000. Baltimore: Johns Hopkins University Press. 2008: 233–242. ISBN 978-0-8018-8814-4. — "Linkages: a peculiar fascination" (Chapter 14) is a discussion of mechanical linkage usage in American mathematical education, includes extensive references
Parmley, Robert. (2000). "Section 23: Linkage." Illustrated Sourcebook of Mechanical Components. New York: McGraw Hill. ISBN0-07-048617-4 Drawings and discussion of various linkages.
Sclater, Neil. (2011). "Linkages: Drives and Mechanisms." Mechanisms and Mechanical Devices Sourcebook. 5th ed. New York: McGraw Hill. pp. 89–129. ISBN978-0-07-170442-7. Drawings and designs of various linkages.
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