Multi-objective Correction Method for Thermal Model Parameters of CNC Machine Tool Spindle System

2014 ◽  
Vol 50 (15) ◽  
pp. 119 ◽  
Author(s):  
Xiaolei DENG
2021 ◽  
Vol 1043 (2) ◽  
pp. 022037
Author(s):  
Hong-Xia Chen ◽  
Yan-Qing Gong ◽  
Baosiriguleng ◽  
Wei-Long Qi

2021 ◽  
Author(s):  
Wenjie Cao ◽  
Haolin Li ◽  
Qiang Li

Abstract In order to improve the machining accuracy of the thermal error prediction model of CNC machine tools, a new method for calculating the position of the measuring points optimal combination researched on linear correlation is proposed, according to the thermal-mechanical finite element analysis(FEA) model of spindle system established after analyzing the thermal characteristics of heat source temperature field of CNC machine tool spindle system. Based on the correlation analysis(CA) of the finite element model of heat source temperature field of CNC machine tool spindle system, combined with the concept of mutual information (MI), this method measures the information of the measurement point variables including the thermal error variables and uses principal component analysis (PCA) to eliminate the collinearity effect within measuring point variables. By using multilinear regression(MR), The thermal error prediction model(CAMI-PCAMR) is established. The accuracy of the prediction model is verified by comparing the actual measurement thermal error with the predicted thermal error through the experimental measurement and analysis of the thermal error of the CNC end grinder test machine tool system. That the axial prediction accuracy of this method can reach 1.099 \(\mu m\), and the prediction radial accuracy can reach 1.28 \(\mu m\) under the variable ambient condition, so as to provide parameters and theoretical guidance for embedding temperature sensors in the machine tool to compensate thermal error in the design stage. And the experimental results also show that the CAMI-PCAMR method is superior to the gray correlation and fuzzy clustering(FC-GCA) modeling method.


2012 ◽  
Vol 510 ◽  
pp. 23-27 ◽  
Author(s):  
Zhong Qi Sheng ◽  
Zong Xiao Zhu ◽  
Chang Chun Liu ◽  
Chao Biao Zhang

The main heat source of the spindle system of CNC machine tool has been analyzed. The friction heat of the motor as well as the bearing has been calculated. This paper established the finite element model of the spindle system of a precise CNC turning center, and used ANSYS to analyze the steady temperature field of the spindle system and the thermal deformation of the spindle. Finally, this paper proposed a solution to install a cooling sleeve in front of the spindle box, which can apparently reduce the thermal error of machine spindle.


2014 ◽  
Vol 529 ◽  
pp. 207-212 ◽  
Author(s):  
Xiu Rong Zhu ◽  
Gui Ping Wang

In order to study the greenness of CNC machine tool, the influence greenness on fault information of CNC machine tools main shaft system was analyzed. According to the fault characteristics and green evaluation index, the failure influence degree of spindle system to the surrounding environment, people's physical and mental health was analyzed in the aspects of environment, human and economic by combining fuzzy evaluation with fault analysis. The main factors affecting its green were found out, the failure reasons were analyzed, and measurement improvements were suggested. The greenness was analyzed before and after improvement. The results show that the failure rate of the improved main shaft system reduces greatly and the green level is improved significantly. The comprehensive evaluation score of green degree is increased from 55.62 to 64.87, and the green product is obtained.


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