Branch Reconfiguration of Bricard Linkages Based on Toroids Intersections: Plane-Symmetric Case

Author:

López-Custodio P. C.1,Dai J. S.1,Rico J. M.2

Affiliation:

1. Centre for Robotics Research, King's College London, University of London, Strand, London WC2R 2 LS, UK e-mail:

2. Mechanical Engineering Department, DICIS, Universidad de Guanajuato, Salamanca 36885, Guanajuato, Mexico e-mail:

Abstract

This paper for the first time reveals a set of special plane-symmetric Bricard linkages with various branches of reconfiguration by means of intersection of two generating toroids, and presents a complete theory of the branch reconfiguration of the Bricard plane-symmetric linkages. An analysis of the intersection of these two toroids reveals the presence of coincident conical singularities, which lead to design of the plane-symmetric linkages that evolve to spherical 4R linkages. By examining the tangents to the curves of intersection at the conical singularities, it is found that the linkage can be reconfigured between the two possible branches of spherical 4R motion without disassembling it and without requiring the usual special configuration connecting the branches. The study of tangent intersections between concentric singular toroids also reveals the presence of isolated points in the intersection, which suggests that some linkages satisfying the Bricard plane-symmetry conditions are actually structures with zero finite degrees-of-freedom (DOF) but with higher instantaneous mobility. This paper is the second part of a paper published in parallel by the authors in which the method is applied to the line-symmetric case.

Funder

Seventh Framework Programme

Engineering and Physical Sciences Research Council

Consejo Nacional de Ciencia y Tecnología

Publisher

ASME International

Subject

Mechanical Engineering

Reference60 articles.

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2. Screw Axes and Mobility in Spatial Mechanisms Via the Linear Complex;J. Mech.,1967

3. An Analysis of the Bricard Linkages;Mech. Mach. Theory,1980

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