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Analysis of geometric and thermal errors of linear encoder for real-time compensation

机译:用于实时补偿的线性编码器几何和热误差分析

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Thermal errors that cause temperature deformations is one of the main factors that influence the accuracy of precision machines. Displacement measuring systems are used in robotics, precision machine tools and other technological equipment, where exist abundant heat sources. The accuracy of linear encoder is affected by both: thermal sources and the changing external ambient temperature. Therefore, thermoelastic deformations occurring due to the changes in the ambient temperature is an important factor that should be estimated in the process of machine operation. This article presents a study on the thermal errors of optical linear encoder. Compensation of thermal errors is considered a more convenient, effective and economical way in comparison to the ways of thermal error handling and reduction. On the basis of analytic calculations, digital FEM analysis and experimental research, the models of thermal errors that are used for the real-time compensation are determined. The methodology of thermal error compensation, which could be easily realized in a linear encoder itself is presented in the article. (C) 2019 Elsevier B.V. All rights reserved.
机译:导致温度变形的热误差是影响精密机器准确性的主要因素之一。位移测量系统用于机器人,精密机床和其他技术设备,其中存在丰富的热源。线性编码器的准确性受以下内容:热源和改变外部环境温度的影响。因此,由于环境温度的变化而发生的热弹性变形是在机器操作过程中估计的重要因素。本文介绍了光学线性编码器的热误差的研究。与热误差处理和减少的方式相比,热误差的补偿被认为是一种更方便,有效和经济的方式。在分析计算的基础上,数字有限元分析和实验研究,确定了用于实时补偿的热误差模型。在物品中介绍了在线性编码器本身容易地实现的热误差补偿的方法。 (c)2019 Elsevier B.v.保留所有权利。

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