Design of a Continuum Mechanism that Matches the Movement of an Eight-bar Linkage

Author:

Liu Xueao1,McCarthy J. Michael2

Affiliation:

1. B312 New Main Building, No. 37 Xueyuan Road, Haidian District, Beijing, 100083, China Beijing, 100083 China

2. University of California Irvine 4200 Engineering Gateway Irvine, CA 92697

Abstract

Abstract This paper presents a design methodology for mechanisms consisting of a single continuous structure, continuum mechanisms, that blends the kinematic synthesis of rigid-body mechanisms with topology optimization for compliant mechanisms. Rather than start with a generic structure that is shaped to achieve a required force deflection task for a compliant mechanism, our approach shapes the initial structure based on kinematic synthesis of a rigid body mechanism for the required movement, then the structure is shaped using Finite Element Analysis to achieve the required force deflection relationship. The result of this approach is a continuum mechanism with the same workpiece movement as the rigid link mechanism when actuated. An example illustrates the design process to obtain an eight-bar linkage that guides its workpiece in straight-line rectilinear movement. We show that the resulting continuum mechanism provides the desired rectilinear movement. A 210 mm physical model machined from Nylon-6 is shown to achieve 21.5mm rectilinear movement with no perceived deviation from a straight-line.

Funder

National Science Foundation

Publisher

ASME International

Subject

Mechanical Engineering

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