Orientation Order Analysis of Spherical Four-Bar Mechanisms

Author:

Tipparthi H.1,Larochelle P.1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Robotics and Spatial Systems Laboratory, Florida Institute of Technology, Melbourne, FL 32901-6975

Abstract

In this paper, we present a novel methodology for orientation order analysis of spherical RR dyads. The methodology is a spherical generalization of the recent works of Myszka, Murray, and Schmiedeler for assessing position order of planar RR dyads. The objective of the methodology is to determine if a prescribed fixed axis location for a spherical RR dyad will result in the dyad guiding a moving rigid-body through a set of finitely separated spherical orientations in the desired order (e.g., 1, 2, 3, 4, etc.). The planar propeller methodology of Myszka, Murray, and Schmiedeler is extended to yield a spherical hoop methodology. The result is a useful tool to determine if a given spherical RR dyad will guide a moving body through a set of prescribed orientations in the desired order. Finally, we demonstrate the utility of the hoop method for order analysis of spherical RR dyads in two case studies.

Publisher

ASME International

Subject

Mechanical Engineering

Reference23 articles.

1. Su, H., Perez, A., Collins, C., and McCarthy, J., 2010, “Synthetica 3.0,” http://www.umbv.edu/engineering/me/vrml.

2. Erdman, A. , 2010, “Lincages,” http://www.me.umn.edu/labs/lincages/.

3. Sphinx: Software for Synthesizing Spherical 4r Mechanisms;Larochelle

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