Characteristics of Beam-Based Flexure Modules

Author:

Awtar Shorya1,Slocum Alexander H.1,Sevincer Edip2

Affiliation:

1. Precision Engineering Research Group, Massachusetts Institute of Technology, Cambridge, MA 01239

2. Omega Advanced Solutions Inc., Troy, NY 12108

Abstract

The beam flexure is an important constraint element in flexure mechanism design. Nonlinearities arising from the force equilibrium conditions in a beam significantly affect its properties as a constraint element. Consequently, beam-based flexure mechanisms suffer from performance tradeoffs in terms of motion range, accuracy and stiffness, while benefiting from elastic averaging. This paper presents simple yet accurate approximations that capture the effects of load-stiffening and elastokinematic nonlinearities in beams. A general analytical framework is developed that enables a designer to parametrically predict the performance characteristics such as mobility, over-constraint, stiffness variation, and error motions, of beam-based flexure mechanisms without resorting to tedious numerical or computational methods. To illustrate their effectiveness, these approximations and analysis approach are used in deriving the force–displacement relationships of several important beam-based flexure constraint modules, and the results are validated using finite element analysis. Effects of variations in shape and geometry are also analytically quantified.

Publisher

ASME International

Subject

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

Reference16 articles.

1. Exact Constraint

2. Flexures

3. Ejik, J. V. , 1985, “On the Design of Plate Spring Mechanism,” Ph.D. thesis, Delft University of Technology, Delft, The Netherlands.

4. Awtar, S. , 2004, “Analysis and Synthesis of Planer Kinematic XY Mechanisms,” Sc.D. thesis, Massachusetts Institute of Technology, Cambridge MA (http://web.mit.edu/shorya/www).

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