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Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears

Year 2009, Volume: 22 Issue: 3, 197 - 201, 26.03.2010

Abstract

Electronic cam is a combination of a computer program for motion definition and a high performance servo mechanism. In this study a new method for generating electronic cam motion is introduced. The proposed method, based on a Graphical User Interface (GUI), uses a stepper motor and a rack-pinion system. The proposed electronic cam allows the user to create any type of non-linear motion in setup limitations. The GUI offers to enter parameters of the stepper motor which will be used as an actuator, takes data of the cam from defined position, plots the basic graphs on cam-follower mechanism, gets parameters of the pinion gear converting the rotary motion into the linear motion, sets up the computer connection and runs the stepper motor in real time by using a PC’s parallel port. Besides, it allows the user to animate both classical and proposed cam mechanisms. With this method, one can obtain a high-speed, reliable and application-oriented motion, just as obtained from a mechanical cam system.

                                                      

Key Words: Electronic Cam, GUI, Programming, Stepper Motor, Pinion Gear.

References

  • Kim, D.H., Tsao, T.C., “Robust performance control of electrohydraulic actuators for electronic cam motion generation”, IEEE Trans. on Control Syst. Technol., 8(2): 220-227 (2000).
  • Chung-Shu, L., Shyr-Long, J., Wei-Hua, C.,
  • “Electronic cam motion generation with special reference to constrained velocity, acceleration, and jerk”, ISA Transactions, 43(3): 427-443 (2004).
  • Yang-Hung, C., Wei-Hua, C., Chung-Shu, L., Shyr-Long, J., “A novel master switching method for electronic cam control with special reference to multi-axis coordinated trajectory Control Engineering Practice, 14(2): 107-120 (2006). following”,
  • Kenjo, T., Sugawara, A., “Stepping motors and their microprocessor controls”, 2.ed., Oxford University Press, England (1994).
  • Acarnley, P., Stepping motors: “A guide to theory and practice”, IEE Control Engineering Series 63, 4.ed., The Institution of Electrical Engineers, London (2002). [6] Rogers, D.F., Adams, J.A., “Mathematical Elements for Computer Graphics”, 2.ed., McGraw- Hill Publication Company, New York (1990).
Year 2009, Volume: 22 Issue: 3, 197 - 201, 26.03.2010

Abstract

References

  • Kim, D.H., Tsao, T.C., “Robust performance control of electrohydraulic actuators for electronic cam motion generation”, IEEE Trans. on Control Syst. Technol., 8(2): 220-227 (2000).
  • Chung-Shu, L., Shyr-Long, J., Wei-Hua, C.,
  • “Electronic cam motion generation with special reference to constrained velocity, acceleration, and jerk”, ISA Transactions, 43(3): 427-443 (2004).
  • Yang-Hung, C., Wei-Hua, C., Chung-Shu, L., Shyr-Long, J., “A novel master switching method for electronic cam control with special reference to multi-axis coordinated trajectory Control Engineering Practice, 14(2): 107-120 (2006). following”,
  • Kenjo, T., Sugawara, A., “Stepping motors and their microprocessor controls”, 2.ed., Oxford University Press, England (1994).
  • Acarnley, P., Stepping motors: “A guide to theory and practice”, IEE Control Engineering Series 63, 4.ed., The Institution of Electrical Engineers, London (2002). [6] Rogers, D.F., Adams, J.A., “Mathematical Elements for Computer Graphics”, 2.ed., McGraw- Hill Publication Company, New York (1990).
There are 6 citations in total.

Details

Primary Language English
Journal Section Chemical Engineering
Authors

Ahmet Altıntas

Publication Date March 26, 2010
Published in Issue Year 2009 Volume: 22 Issue: 3

Cite

APA Altıntas, A. (2010). Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears. Gazi University Journal of Science, 22(3), 197-201.
AMA Altıntas A. Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears. Gazi University Journal of Science. March 2010;22(3):197-201.
Chicago Altıntas, Ahmet. “Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears”. Gazi University Journal of Science 22, no. 3 (March 2010): 197-201.
EndNote Altıntas A (March 1, 2010) Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears. Gazi University Journal of Science 22 3 197–201.
IEEE A. Altıntas, “Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears”, Gazi University Journal of Science, vol. 22, no. 3, pp. 197–201, 2010.
ISNAD Altıntas, Ahmet. “Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears”. Gazi University Journal of Science 22/3 (March 2010), 197-201.
JAMA Altıntas A. Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears. Gazi University Journal of Science. 2010;22:197–201.
MLA Altıntas, Ahmet. “Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears”. Gazi University Journal of Science, vol. 22, no. 3, 2010, pp. 197-01.
Vancouver Altıntas A. Electronic Cam Motion Generation by Using Stepper Motors and Pinion Gears. Gazi University Journal of Science. 2010;22(3):197-201.