Synthesis of Universal Motion Curves in Generalized Model

Author:

Cheng Wen-Teng1

Affiliation:

1. Department of Mechanical Engineering, I-Shou University, Ta-Hsu, Kaohsiung 84008, Taiwan, R.O.C.

Abstract

The universal motion curve is synthesized in a generalized model. The acceleration curve is divided into seven intervals of which the curve shapes on varying-acceleration intervals can be prescribed by arbitrary functions. The characteristics of the motion curve are controlled completely by four shape functions of acceleration and seven time increments. To simplify the synthesis derivation, normalized function and symmetric function are defined to represent these shape functions. The displacement, velocity, acceleration, and jerk curves are derived in piecewise function forms and the peak values of velocity and acceleration are also expressed in explicit parametric forms. The designers can quickly construct the motion curves according to the synthesis formulas and the step-by-step procedures. The helpfulness and convenience of these formulas are demonstrated by three examples in symbolic or numerical solution.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference17 articles.

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2. Tesar, D., and Matthew, G. K., 1976, The Dynamic Synthesis, Analysis, and Design of Modeled Cam Systems, Lexington Books, Lexington, Massachusetts.

3. Makino, H., 1976, Mechanisms of Automation Machines, Japanese Industrial Press, Tokyo.

4. Chen, F. Y., 1982, Mechanics and Design of Cam Mechanisms, Pergamon, New York.

5. Jensen, P. W., 1987, Cam Design and Manufacture, Marcel Dekker, New York.

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