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Classification of Compliant Mechanisms and Determination of the Degrees of Freedom using the Concepts of Compliance Number and Pseudo-Rigid-Body Model

  • Pratheek Bagivalu Prasanna
  • , Ashok Midha
  • , Sushrut G. Bapat

Research output: Contribution to journalArticlepeer-review

Abstract

Understanding the kinematic properties of a compliant mechanism has always proved to be a challenge. A concept of compliance number offered earlier emphasized the development of terminology that aided in its determination. A method to evaluate the elastic degrees of freedom associated with the flexible segments/links of a compliant mechanism using the pseudo-rigid-body model (PRBM) concept is provided. In this process, two distinct classes of compliant mechanisms are developed involving: (i) Active Compliance and (ii) Passive Compliance. Furthermore, these also aid in a better characterization of the kinematic behavior of a compliant mechanism. A more lucid interpretation of the significance of compliance number is provided. Applications of this method to both active and passive compliant mechanisms are exemplified. Finally, an experimental procedure that aids in visualizing the degrees of freedom as calculated is presented.

Original languageAmerican English
JournalProceedings of the ASME Design Engineering Technical Conference (2019, Anaheim, CA)
Volume5A-2019
DOIs
StatePublished - Aug 1 2019

Keywords

  • Compliant mechanisms
  • Design
  • Experimental procedure
  • Flexible segments
  • Kinematic behaviors
  • Kinematic properties
  • Kinematics
  • Mechanisms
  • Passive compliance
  • Pseudo-rigid-body models, Degrees of freedom (mechanics)
  • Rigid structures, Active compliance

Disciplines

  • Mechanical Engineering

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