Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation

We present a kinematic design of a translational parallel manipulator with fine adjustment capability of platform orientation. In order to clarify possible kinematic structures for it, structural synthesis of fully decoupled mechanism and partially decoupled mechanism both with six degrees of freedo...

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Main Authors: Masataka Tanabe, Yukio Takeda
Format: Article
Language:English
Published: SAGE Publishing 2010-01-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1155/2010/485358
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spelling doaj-5b2f6bfe96e84c9a9fb71670f927487b2020-11-25T01:20:48ZengSAGE PublishingAdvances in Mechanical Engineering1687-81322010-01-01210.1155/2010/48535810.1155_2010/485358Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform OrientationMasataka TanabeYukio TakedaWe present a kinematic design of a translational parallel manipulator with fine adjustment capability of platform orientation. In order to clarify possible kinematic structures for it, structural synthesis of fully decoupled mechanism and partially decoupled mechanism both with six degrees of freedom (dof) was carried out based on the synthesis results of translational and rotational parallel mechanisms with three dof. All possible kinematic structures were obtained. Of these, one partially decoupled mechanism was selected and a kinematic design of a prototype manipulator was done. Its characteristics in terms of workspace, singularity, orientation adjustment capability, and coupling characteristics between translational and rotational displacement were discussed with experimental results regarding fine adjustment capability of platform orientation.https://doi.org/10.1155/2010/485358
collection DOAJ
language English
format Article
sources DOAJ
author Masataka Tanabe
Yukio Takeda
spellingShingle Masataka Tanabe
Yukio Takeda
Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation
Advances in Mechanical Engineering
author_facet Masataka Tanabe
Yukio Takeda
author_sort Masataka Tanabe
title Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation
title_short Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation
title_full Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation
title_fullStr Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation
title_full_unstemmed Kinematic Design of a Translational Parallel Manipulator with Fine Adjustment of Platform Orientation
title_sort kinematic design of a translational parallel manipulator with fine adjustment of platform orientation
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8132
publishDate 2010-01-01
description We present a kinematic design of a translational parallel manipulator with fine adjustment capability of platform orientation. In order to clarify possible kinematic structures for it, structural synthesis of fully decoupled mechanism and partially decoupled mechanism both with six degrees of freedom (dof) was carried out based on the synthesis results of translational and rotational parallel mechanisms with three dof. All possible kinematic structures were obtained. Of these, one partially decoupled mechanism was selected and a kinematic design of a prototype manipulator was done. Its characteristics in terms of workspace, singularity, orientation adjustment capability, and coupling characteristics between translational and rotational displacement were discussed with experimental results regarding fine adjustment capability of platform orientation.
url https://doi.org/10.1155/2010/485358
work_keys_str_mv AT masatakatanabe kinematicdesignofatranslationalparallelmanipulatorwithfineadjustmentofplatformorientation
AT yukiotakeda kinematicdesignofatranslationalparallelmanipulatorwithfineadjustmentofplatformorientation
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