Dimensional Synthesis of Compliant Constant-Force Slider Mechanisms

Author:

Howell Larry L.1,Midha Ashok2,Murphy Morgan D.3

Affiliation:

1. Brigham Young University

2. Purdue University

3. Delco Electronics Corporation

Abstract

Abstract Constant-force mechanisms produce a constant output force for a range of input displacements. Such mechanisms are important in applications with a varying displacement but a constant resultant force required. Constant-force mechanism designs have been limited to rigid-link mechanisms, but the design of compliant, or flexible link, constant force mechanisms could increase the number of applications by taking advantage of the unique characteristics of compliant mechanisms. Murphy (1993) developed type-synthesis theories for compliant mechanisms and applied them to generate possible configurations for compliant constant-force slider mechanisms. This paper concentrates on the dimensional synthesis of several of the resulting topologies. Optimization and the pseudo-rigid-body-model concept are employed in the design procedure. An example application as an electrical connection for use in electronic chip carriers is also illustrated.

Publisher

American Society of Mechanical Engineers

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1. Research on the line-arc-line constant-torque flexure hinge (LAL-CTFH) based on improved pseudo-rigid-body model (PRBM);Mechanism and Machine Theory;2022-08

2. Spatial compliant constant-force mechanism;Mechanism and Machine Theory;2013-09

3. Method of Dynamic Detection for Clutch of Real Vehicle Based on RFID Technology;Advanced Materials Research;2012-12

4. Design and microfabrication of a constant-force microgripper;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2011-07-25

5. Design of a Compliant Mechanism to Modify an Actuator Characteristic to Deliver a Constant Output Force;Journal of Mechanical Design;2006

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