A Straightness Control System for Motor Shaft Straightening with the Stroke Prediction Algorithm

Y. Zang, Hong Lu, Yongquan Zhang, Essa Alghannam, Zexing Guo, Le Li
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Abstract

Motor shaft is widely used in many industrial fields. As a crucial factor, the motor shaft straightness has significant impact on its working performance, thus the straightening process becomes an essential step in shaft manufacturing. In order to achieve automatic straightening of the motor shaft, a motor shaft straightness control system is designed in this paper. A motor shaft straightening process is developed for this system. The factors affecting the straightness of the motor shaft are analyzed. Three deformation patterns are proposed based on the analysis of motor shaft deformation. A structure of the modular straightness control system is designed based on the motor shaft straightening process. A motor shaft straightening stroke prediction algorithm is developed based on the three-point bending process by FEM and elastic-plastic deformation theory. The validity of the system and the correctness of the straightening stroke prediction algorithm are verified by experiments.
基于行程预测算法的电机轴矫直直线度控制系统
电机轴广泛应用于许多工业领域。电机轴的直线度是影响电机工作性能的关键因素,因此校直工艺成为电机轴制造中必不可少的步骤。为了实现电机轴的自动校直,本文设计了一种电机轴直线度控制系统。针对该系统开发了一种电机轴矫直工艺。分析了影响电机轴直线度的因素。在分析电机轴变形的基础上,提出了三种变形模式。设计了一种基于电机轴矫直过程的模块化直线度控制系统结构。采用有限元法和弹塑性变形理论,提出了一种基于三点弯曲过程的电机轴校直行程预测算法。通过实验验证了系统的有效性和校直行程预测算法的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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