Noncontact measurement of rectangular splines shaft based on line-structured light

Siyuan Liu, Honglin Li, Conghui Wang, Fenghui Lian, J. Miao, Zhengyi Hu
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Abstract

The rectangular spline shaft, a typical type of shaft-tooth component, plays a significant role in mechanical transmissions. Existing methods for detecting size and positional tolerance in spline shafts often rely on contact-based measurement tech-niques, including specialized gauges and coordinate measuring machines (CMMs). To enhance the measurement efficiency, this paper proposes a method for measuring based on line-structured light. Firstly, a classification algorithm for data points on large and small cylindrical surfaces and keyway surface of spline shaft is established, contributing to the automatic measurement. Secondly, a coaxiality error measurement model is established based on the overall least squares method, improving the measurement accuracy. Finally, a measurement model for key width and positional tolerance is established through the rotation of the spline axis. In experiments, the size and positional tolerance of the spline shaft obtained using this method are compared with measurements by CMM, meeting the general machining accuracy requirements.
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基于线结构光的矩形花键轴非接触式测量技术
矩形花键轴是一种典型的轴齿部件,在机械传动中发挥着重要作用。检测花键轴尺寸和位置公差的现有方法通常依赖于接触式测量技术,包括专用量具和坐标测量机(CMM)。为了提高测量效率,本文提出了一种基于线结构光的测量方法。首先,建立了花键轴大、小圆柱面和键槽面数据点的分类算法,有助于实现自动测量。其次,基于总体最小二乘法建立了同轴度误差测量模型,提高了测量精度。最后,通过花键轴的旋转建立了键宽和位置公差的测量模型。在实验中,使用该方法获得的花键轴尺寸和位置公差与坐标测量机的测量结果进行了比较,符合一般加工精度要求。
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