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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Laser scanning-based straightness measurement of precision bright steel rods at one point
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Laser scanning-based straightness measurement of precision bright steel rods at one point

机译:基于激光扫描的单点精密光亮钢棒直线度测量

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摘要

In industrial manufacturing of bright steel rods, one important quality factor is the straightness or straightness deviation. Depending on the application, deviations of less than 0.1 mm per meter rod length are desired and can be reached with state-of-the-art manufacturing equipment. Such high-quality requirements can only be guaranteed with continuous quality control. Manual straightness measurements conducted offline using a dial gauge provide accurate results on single positions of the rod. We propose a contactless, optical measurement technique based on laser scanning which has the potential to be used inline during production to inspect all rods over the entire length. Only for calibration of the system the rod needs to be turned around its axis. For the measurement of straightness deviation, it is not required to turn the rod. The method is based on evaluating the intensity signal of the reflected laser radiation against the scan angle. It is shown that in combination with an accurate calibration, this signal can be used to determine the rod's deviation from a straight rod. We explain the measurement and calibration principle as well as data evaluation. We present the experimental setup and first measurement results on a single position on several samples. For a homogeneous sample surface and neglecting laser drift, accuracy and precision were determined to be in the range of 10-20 mu m. We discuss the working principle of a potential inline system.
机译:在光亮钢棒的工业制造中,一个重要的质量因素是直线度或直线度偏差。根据应用的不同,每米杆长的偏差小于 0.1 毫米,并且可以使用最先进的制造设备达到。只有通过持续的质量控制才能保证这种高质量要求。使用千分表离线进行的手动直线度测量可在杆的单个位置上提供准确的结果。我们提出了一种基于激光扫描的非接触式光学测量技术,该技术有可能在生产过程中在线使用,以检查整个长度上的所有棒材。仅用于系统校准时,需要绕其轴转动杆。对于直线度偏差的测量,不需要转动杆。该方法基于评估反射激光辐射的强度信号与扫描角度的关系。结果表明,结合精确的校准,该信号可用于确定杆与直杆的偏差。我们解释了测量和校准原理以及数据评估。我们展示了多个样品在单个位置上的实验设置和首次测量结果。对于均匀的样品表面并忽略激光漂移,确定准确度和精度在 10-20 μ m 范围内。我们讨论了潜在内联系统的工作原理。

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