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The mixed-body model: A method for predicting large deflections in stepped cantilever beams

  • Brandon S. Sargent(corresponding author)
    ,
  • Collin R. Ynchausti
    ,
  • Todd G. Nelson
    ,
  • Larry L. Howell
*Corresponding author for this work
  • Brigham Young University
    ,
  • University of Southern Indiana
Research Output:
Chapter in Book/Report/Conference proceeding
Conference contribution

Abstract

This paper presents a method for predicting endpoint coordinates, stress, and force to deflect stepped cantilever beams under large deflections. This method, the Mixed-Body Model or MBM, combines small deflection theory and the Pseudo-Rigid-Body Model for large deflections. To analyze the efficacy of the model, the MBM is compared to a model that assumes the first step in the beam to be rigid, to finite element analysis, and to the numerical boundary value solution over a large sample set of loading conditions, geometries, and material properties. The model was also compared to physical prototypes. In all cases, the MBM agrees well with expected values. Optimization of the MBM parameters yielded increased agreement, leading to average errors of <0.01 to 3%. The model provides a simple, quick solution with minimal error that can be particularly helpful in design.

Bibliographic Information

Output type

Research Output:
Chapter in Book/Report/Conference proceeding
Conference contribution

Original language

English

Article number

V08AT08A022

Publication milestones

  • Published - 2021

Publication status

Published - 2021

Publisher

American Society of Mechanical Engineers (ASME)

Publication series

  • Publication series name: Proceedings of the ASME Design Engineering Technical Conference
    Volume: 8A-2021

ISBN (Electronic)

9780791885444

Publication IDs

  • Scopus: 85119983585

Host publication title

45th Mechanisms and Robotics Conference (MR)