Hinges and Curved Lamina Emergent Torsional Joints in Cylindrical Developable Mechanisms

Author:

Seymour Kendall1,Bilancia Pietro2,Magleby Spencer1,Howell Larry1

Affiliation:

1. Department of Mechanical Engineering, Brigham Young University, Provo, UT 84602

2. Department of Mechanical, Energy, Management and Transportation Engineering, University of Genova, Genova 16145, Italy

Abstract

Abstract Cylindrical developable mechanisms are devices that conform to and emerge from a cylindrical surface. These mechanisms can be formed or cut from the cylinder wall itself. This paper presents a study on adapting traditional hinge options to achieve revolute motion in these mechanisms. A brief overview of options is given, including classical pin hinges, small-length flexural pivots, initially curved beams, and an adaptation of the membrane thickness-accommodation technique. Curved lamina emergent torsional (LET) joints are then evaluated in detail, and a thin-walled modeling assumption is checked analytically and empirically. A small-scale cylindrical developable mechanism is then evaluated with Nitinol curved LET joints.

Publisher

ASME International

Subject

Mechanical Engineering

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