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Pitch deviation measurement of an involute spur gear by a rotary profiling system

机译:旋转仿形系统测量渐开线正齿轮的螺距偏差

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摘要

This paper presents surface-profiling based gear pitch deviation measurement for an involute spur gear. A rotary profiling system, which consists of an air-bearing spindle and a displacement sensor with a diamond stylus, is employed to measure gear pitch deviation. In measurement of gear pitch deviation, an eccentric error between a gear axis and a motion axis of the rotary stage in the profiling system would affect accuracy of gear profile measurement. In this paper, at first, the influence of the eccentric error on measurement of gear pitch deviation is estimated in computer simulation based on a geometric model of the profiling system. After that, a new scanning method named "opposite-direction dual scanning method" is proposed so that a steep profile of gear flank surface with a local slope of up to 90° can be measured by the developed rotary profiling system. For compensating distortions in the measured gear tooth profile, which are induced not only by the eccentric error but also by a probe offset introduced by the proposed scanning method, a self-calibration and compensation method is applied. To verify the feasibility of the proposed method, measurement of gear pitch deviation of a master involute spur gear with a certificate data is carried out. Measurement uncertainty of the proposed method is also analyzed.
机译:本文介绍了渐开线正齿轮基于表面轮廓的齿轮螺距偏差测量。旋转轮廓系统由一个空气轴承主轴和一个带有菱形针的位移传感器组成,用于测量齿轮螺距偏差。在齿轮节距偏差的测量中,仿形系统中齿轮轴和旋转平台的运动轴之间的偏心误差会影响齿轮轮廓测量的准确性。在本文中,首先,在基于仿形系统几何模型的计算机仿真中,估算了偏心误差对齿轮螺距偏差测量的影响。此后,提出了一种新的扫描方法,称为“反向双向扫描方法”,以便通过开发的旋转轮廓分析系统可以测量出齿轮齿侧面的陡峭轮廓,其局部坡度最高为90°。为了补偿所测齿轮齿形中的不仅由偏心误差引起的畸变,而且还补偿由所提出的扫描方法引入的探针偏移引起的畸变,使用自校准和补偿方法。为了验证该方法的可行性,对带有证书数据的主渐开线正齿轮的齿距偏差进行了测量。还分析了该方法的测量不确定度。

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