Research on Prediction Method of Transmission Accuracy of Harmonic Drive

Hu Qiushi, Zhifeng Liu, L. Cai, Congbin Yang, Tao Zhang, Wang Guang
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引用次数: 3

Abstract

Harmonic drive is an indispensable device for robotic joint, and transmission accuracy of harmonic drive is one of its most important performance indexes. Due to the unsystematic research on the accuracy of harmonic drive, the accuracy consistency of harmonic drive is poor, and the prediction accuracy is seriously insufficient. This study focuses on modeling of transmission error system and prediction of transmission accuracy. Through tracing analysis of transmission error of harmonic drive, a transmission error model including manufacturing, assembly and tooth profile error is established. Based on Rayleigh distribution of error sources and considering multi-tooth meshing effect of harmonic drive, the transmission accuracy prediction model is built. Tooth profile error is measured by gear measuring center, dimension error and geometric tolerance are gauged by coordinate measuring machine. The transmission accuracy of three types harmonic drive (SHG14, SHG20 and SHG25) is measured by harmonic transmission error test bench under rated conditions. The comparison results show that the difference between the predicted and experimental values is less than 15%, which proves the validity of the accuracy prediction model. Prediction method play a crucial role for accuracy control of harmonic drive system.
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谐波传动传动精度预测方法研究
谐波传动是机器人关节不可缺少的装置,谐波传动的传动精度是其最重要的性能指标之一。由于对谐波传动精度的研究不系统,导致谐波传动精度一致性差,预测精度严重不足。本文主要研究了传输误差系统的建模和传输精度的预测。通过对谐波传动传动误差的跟踪分析,建立了包含制造误差、装配误差和齿形误差的传动误差模型。基于误差源的瑞利分布,考虑谐波传动的多齿啮合效应,建立了传动精度预测模型。齿形误差由齿轮测量中心测量,尺寸误差和几何公差由三坐标测量机测量。在额定工况下,利用谐波传动误差试验台对SHG14、SHG20和SHG25三种谐波传动装置的传动精度进行了测试。对比结果表明,预测值与实验值的差异小于15%,证明了精度预测模型的有效性。预测方法对谐波传动系统的精度控制起着至关重要的作用。
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