The Finite Element Analysis of High Precision Positioning System

Author:

František Trebuňa1,Jozef Bocko1,Miroslav Pástor1,Pavol Lengvarský1,Erik Prada2

Affiliation:

1. Technical University of Košice , Faculty of Mechanical Engineering, Department of Applied Mechanics and Mechanical Engineering , Letná 9, 042 00 Košice , Slovakia

2. Division of Machine and Devices , ZTS VVÚ KOŠICE , Južná trieda 95, 041 24 Košice , Slovakia

Abstract

Abstract The paper deals with design and computation of precise positioning mechanism. The aim of mechanism is to transfer applied load without any change of position of parts in question. The stabilization of position is assured by elastic elements connected to reductor which is adjusted into correct position by an actuator. The functionality of mechanism and its stiffness and strength characteristics were checked by the finite element method. The computations were accomplished for prescribed displacement of reductor. On the base of this type of loading the behaviour of the structure was evaluated.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering

Reference8 articles.

1. [1] J. Torres, H. H. Asada. High-gain, high transmissibility PZT displacement amplification using a rolling-contact buckling mechanism and preload compensation springs. IEEE Transactions on Robotics2014 (30), 781 – 791.

2. [2] Š. Havlík, J. Hricko. Mechanisms for small and micro robotic devices. Appl. Mech. Mater.2014 (613), 11 – 20.

3. [3] J. Hricko, Š. Havlík. Exchange of effectors for small mobile robots and UAV. Mech. Mach. Sci.2019 (67), 308 – 315.

4. [4] M. Kelemen, M. Pástor, I. Virgala, A. Gmiterko. Precision positioning with mechanically amplified actuator. Ame. J. Mech. Eng.2017 (5), 316 – 320.

5. [5] F. Trebuňa, J. Bocko, M. Pástor, P. Lengvarský. Deformation and strength properties of elastic members of high precision positioning equipment. Ame. J. Mech. Eng. 2017 (5), 263 – 268.

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