Positioning Accuracy and Numerical Analysis of the Main Casting Mechanism of the Hybrid Casting Robot

Author:

Li Long12ORCID,Chen Binyang1ORCID,Wang Chengjun12ORCID

Affiliation:

1. College of Artificial Intelligence, Anhui University of Science and Technology, Huainan, China

2. State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines, Anhui University of Science and Technology, Huainan, China

Abstract

The positioning accuracy is a key index to measure the performance of the robot. This paper studies the positioning accuracy of the main pouring mechanism of the hybrid truss pouring robot and analyzes that the main error sources affecting the positioning accuracy are machining error, assembly error, and thermal deformation error. Error transfer matrix is constructed to describe the influence of machining errors and assembly errors on the position and pose of the terminal, and the error parameters have physical significance. The probability distribution of sensitive errors is discussed. A joint regression prediction model based on sensitive error sets is established to determine the thermal deformation error on the basis of fully considering the contribution rate of component error. The results show that the position error has a wide range of influences on the end pose, but the angle error is more sensitive, and the probability distribution of the sensitive error is concentrated. The reliable data can be obtained without reorganizing the measurement in the calibration process. The joint regression model considering the contribution rate of component error can effectively eliminate the collinearity problem in the prediction of thermal deformation from a single heat source. Compared with the single regression model, it has better prediction accuracy and effect.

Funder

Natural Science Research Project of Anhui Universities

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Reference22 articles.

1. Mathematical modelling of linear motion error for Hexarot parallel manipulators

2. Error analysis of high-speed precision micro-spindle equipped with micro-tool in mechanical micro-grinding;W. Li;International Journal of Advanced Manufacturing Technology,2018

3. Manufacturing technologies toward extreme precision;Z. Zhang;International Journal of Extreme Manufacturing,2019

4. Machining with the walking hex;A. Olarra;A walking parallel kinematic machine tool for in situ operations, CIRP Annals,2019

5. Mechanism error compensation method of parallel curve feeding platform;Z. X. Meng;Journal of Beijing Forestry University,2016

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