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An Enhanced Detection System of Drill Rod Bending Degree Based on Two-Dimensional Laser

机译:基于二维激光的钻杆弯曲度增强检测系统

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摘要

Drill rod straightness has to be strictly controlled and the maximum bending degree detection needs to be used in the straightening process. The mechanical bending degree measurement depends on machinery instruments and workers’ experience, often with low efficiency and precision. While the optical inspection, as a non-contact detection method, with higher precision and lower installation accuracy requirements, is frequently applied in the online detection system. Based on this, an enhanced bending degree detection system for a drill rod is proposed in this paper. Compared to the existing detection system, the main progress is to use a two-dimensional laser to quickly obtain arc profile data and fit with ellipse. Segment inspection idea is also utilized is this system as the camera that could obtain the whole drill rod in one shot needs extremely high resolution and price. A specialized algorithm is designed to fit the cross-section shape and whole centerline displacement based on the least square method. Some laboratory tests are conducted to verify this detection system, findings of which are compared to manual measured results. The maximum bending degree error is 2.14 mm and the maximum position error is 8.21 mm, which are both within the tolerance of error. Those results show the feasibility and precision of this enhanced detection system.
机译:必须严格控制钻杆的直线度,并且在矫直过程中必须使用最大弯曲度检测。机械弯曲度的测量取决于机械仪器和工人的经验,通常效率低,精度低。在线检测系统中,光学检测作为一种非接触检测方法,具有较高的精度和较低的安装精度要求。基于此,本文提出了一种增强的钻杆弯曲度检测系统。与现有的检测系统相比,主要的进展是使用二维激光来快速获取电弧轮廓数据并适合椭圆。分段检查的想法也被利用为该系统,因为能够一次性获得整个钻杆的摄像机需要极高的分辨率和价格。基于最小二乘法,设计了一种特殊的算法来拟合横截面形状和整个中心线位移。进行了一些实验室测试以验证该检测系统,并将其发现与手动测量结果进行比较。最大弯曲度误差为2.14mm,最大位置误差为8.21mm,均在误差范围内。这些结果表明了这种增强型检测系统的可行性和准确性。

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