Generalized Abbe Principle: Position Error Propagation in Machine Elements

Author:

Pegna Joseph1

Affiliation:

1. Department of Mechanical Engineering, Aeronautical Engineering and Mechanics, Rensselaer Polytechnic Institute, Troy, New York 12180-3590

Abstract

In the quest for ever finer levels of technology integration, mechanical linkages reach their precision limits at about 5 micrometers per meter of workspace. Beyond this physical limit, all six dimensional degrees of freedom need to be precisely ascertained to account for mechanical imperfections. This paper substantiates Wu’s vision of “precision machines without precision machinery.” A formulation and statistical characterization of position and orientation error propagation in rigid bodies are presented for two extreme models of measurement. It is shown that error distribution is uniquely dependent upon the design of the measurement plan. The theoretical foundations presented were evolved in the course of designing precision machinery. Other potential applications include: fixture design, metrology, and geometric tolerance verification.

Publisher

ASME International

Subject

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

Reference21 articles.

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2. Wu S. M. , and NiJ., “Precision Machining Without Precise Machinery,” Annals of CIRP, Vol. 38/1 (1989) pp. 533–536.

3. Ni, J., and Wu, S. M., “Laser Alignment Techniques for Simultaneous Machine Tool Geometric Error Detection,” SPIE Optical Testing and Metrology II, (1988) pp. 694–701.

4. Ni J. , and WuS. M., “On-line Measurement Technique for Machine Volumetric Error Compensation,” ASME Journal of Engineering for Industry, v 115, n 1, (Feb 1993) pp. 85–92

5. Maxwell, J. and Pegna, J., “Micron Scale Prototyping by Selective Laser Induced Chemical Vapor Deposition,” Proc. of ASME Design Automation Conf., Boston, Ma., Sept 17-20, 1995.

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