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A monocular-vision-based contouring error detection method for CNC machine tools

机译:基于单目视觉的数控机床轮廓误差检测方法

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Contouring error detection for machine tools can be used to effectively evaluate their dynamic performances. In this paper, a cost-effective monocular-vision-based contouring error detection method is proposed to precisely measure the two-dimensional error of an arbitrary trajectory under wide working range and higher feed rate conditions. First, a novel measurement fixture with high accuracy is designed and calibrated, in which 196 coded primitives are utilized to accurately characterize the motion trajectory of a five-axis machine tool. Then, to ensure the measurement accuracy and efficiency for high-speed contouring error, a telecentric imaging system is employed to capture the image sequence of the primitives, with a selected small field of view and low camera resolution. Moreover, to extend the working range of measurement system, a primitives' decoding and position estimation algorithm based on the pre-calibrated geometric constraint is proposed to measure an arbitrary contouring error in a wide range. Finally, the contouring error can be accurately assessed by data transformation and post-calculation. Experiments for the contouring error detection of a butterfly curve interpolation at 3000mm/min are performed in a five-axis machine tool. The results, compared with the cross-grid encoder, shows that the average detecting error is 4.2μm, which verifies the vision measurement accuracy and feasibility.
机译:机床轮廓误差检测可用于有效评估其动态性能。本文提出了一种经济有效的基于单眼视觉的轮廓误差检测方法,用于在宽工作范围和较高进给率条件下精确测量任意轨迹的二维误差。首先,设计并校准了一种新型的高精度测量夹具,其中利用196个编码原语来准确表征五轴机床的运动轨迹。然后,为了确保高速轮廓误差的测量精度和效率,采用了远心成像系统来捕获图元的图像序列,并选择了较小的视野和较低的相机分辨率。此外,为扩展测量系统的工作范围,提出了一种基于预校准几何约束的图元解码和位置估计算法,可以在较大范围内测量任意轮廓误差。最后,轮廓误差可以通过数据转换和后计算来准确评估。在五轴机床上以3000mm / min的速度进行蝶形曲线插补轮廓误差检测的实验。结果与跨网编码器相比,平均检测误差为4.2μm,验证了视觉测量的准确性和可行性。

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