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contributor authorOrr, Daniel
contributor authorJensen, Anna
contributor authorPeterson, Tyler
contributor authorBischoff, Brianna
contributor authorTaylor, Luke
contributor authorVelasco, Daira
contributor authorFullwood, David
contributor authorHowell, Larry L.
contributor authorBowden, Anton E.
date accessioned2025-04-21T10:14:39Z
date available2025-04-21T10:14:39Z
date copyright11/1/2024 12:00:00 AM
date issued2024
identifier issn1942-4302
identifier otherjmr_17_4_044501.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4305782
description abstractThis work introduces an interior contact-aided rolling element (I-CORE) compliant mechanism that draws upon the concepts used for the contact-aided rolling element, cross-axis flexural pivot, and pre-curved flexible beam. The I-CORE incorporates a bilinear compressive stiffness response with an initial tailorable stiffness governed by the flexural geometry, followed by a stiffness curve governed by the material stiffness at the contact point. The I-CORE mechanism can achieve one or two degrees of rotational freedom as well as a single degree of translational freedom. The purpose of the present work was to introduce the I-CORE mechanism, as well as a pseudo-rigid-body replacement model (PRBM) of the I-CORE mechanism which was subsequently validated using both finite element analysis and benchtop mechanical testing. A pseudo-rigid body model was created for the I-CORE to simplify the rapid adaptation of this mechanism to different design applications. This model was validated using both finite element analysis and benchtop mechanical testing under both compression and rotation loading conditions. Additionally, multiple configurations of the device were created and evaluated in order to test its sensitivity to certain design features including the flexure width, flexure thickness, and the radius of the rounded contact surfaces. It was found that the model is sensitive to the thickness of the flexures and that despite some limitations, the pseudo-rigid body model is sufficiently accurate for initial design work. Some possible applications of the mechanism are proposed.
publisherThe American Society of Mechanical Engineers (ASME)
titleThe Interior Contact-Aided Rolling Element
typeJournal Paper
journal volume17
journal issue4
journal titleJournal of Mechanisms and Robotics
identifier doi10.1115/1.4066851
journal fristpage44501-1
journal lastpage44501-8
page8
treeJournal of Mechanisms and Robotics:;2024:;volume( 017 ):;issue: 004
contenttypeFulltext


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