Precision Evaluation for Cycloidal Gears

Yi-Pei Shih, Shih-hung Lo, Bor-Tyng Sheen, Y. Tsai
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引用次数: 2

Abstract

Cycloidal gear drives have advantages of compact sizes, large reduction ratios, and low backlash. They are particularly suitable for applications in precise positioning and large output torque, such as industrial robots and machine tools. Up to now, the effective precision evaluation of cycloidal gears is lacked in commercial measuring devices. The main goal of this paper is to propose precision evaluation for cycloidal gears. The research focuses on (1) establishing a mathematical model of cycloidal gear and (2) developing a method for precision evaluation of cycloidal gear. The evaluation items cover the following areas of tooth profile and thickness errors, pitch errors, accumulation pitch errors and runout. The profile points measured by a coordinate measuring machine are divided into tooth groups and then formulated as curves using a B-spline curve fitting technique. The precision of cycloidal gear can be further evaluated. A case study on Nabtesco RV-25N is displayed to verified the correctness of the proposed method.
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摆线齿轮精度评价
摆线齿轮传动具有紧凑的尺寸,大的减速比,低的齿隙的优点。它们特别适用于精确定位和大输出扭矩的应用,如工业机器人和机床。到目前为止,在商用测量装置中缺乏有效的摆线齿轮精度评估方法。本文的主要目的是提出摆线齿轮的精度评价。研究重点是:(1)建立摆线齿轮的数学模型;(2)建立摆线齿轮精度评价方法。评估项目包括齿形和厚度误差、节距误差、累积节距误差和跳动。采用b样条曲线拟合技术,将三坐标测量机测得的齿形点划分为齿组,并形成曲线。可以进一步评价摆线齿轮的精度。以Nabtesco RV-25N为例,验证了所提方法的正确性。
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