A Reconfigurable Modular Fixture With Redundant Actuation

Author:

Lyu Shengnan1,Xu Tianye1,Ding Xilun1,Xiao Hang1

Affiliation:

1. Robotics Institute, Beihang University , Beijing 100191 , China

Abstract

Abstract The rapid development of the automotive industry calls for large demands for fixtures with high modularity and full flexibility. A novel reconfigurable modular fixture is proposed in this article. The fixture, which provides high loading capacity, is designed based on the kinematic characteristics of dead point of linkage. The redundant actuation is introduced to increase the reliability of the mechanism. Kinematics of the loading mechanism is modeled and analyzed. The stiffness model of the mechanism is established through assembling the stiffness matrix of different links. Both kinematic parameters and structural parameters are optimized synchronously for obtaining the minimum deformations of the mechanism subject to constraints on volume and mass. The prototype of the developed fixture is designed and its comprehensive performance is analyzed. The modular design allows easier maintenance and replacement of the mechanism. The proposed design can also be utilized to other industrial applications.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering

Reference21 articles.

1. Design and Development of Flexible Fixturing System for Handling Irregular Shaped Components;Rukshan,2015

2. Design and Testing of a Highly Reconfigurable Fixture With Lockable Robotic Arms;Lu;ASME J. Mech. Des.,2016

3. An Automated Reconfigurable Flexible Fixture for Aerospace Pipeline Assembly Before Welding;Fan;Int. J. Adv. Manuf. Technol.,2018

4. Developing a New Concept of Self Reconfigurable Intelligent Swarm Fixtures;de Leonardo,2012

5. Conceptual Design of Intelligent Reconfigurable Welding Fixture for Rail Car Manufacturing Industry;Seloane;Procedia CIRP,2020

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