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Contactless Measurement Of Rectilinearity Of An Elongated Object Based On The Example A Crane Rail

机译:基于起重机导轨实例的伸长物体直线度的非接触式测量

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The common aim of engineering surveys is to determine deviations from rectilinearity for elongated objects. We have developed a number of methods for measuring points that represent an elongated object. These are the constant straight (optical, laser, mechanical-string) method, the trigonometric method, geometric levelling method, photogrammetric methods and terrestrial laser scanning. When taking these measurements, it is crucial to have a direct access to the survey points of the measured object. Factors impeding the measurements include: adverse lighting conditions, vibration, dust, refractory effects, lack of direct access to the survey points, etc.The authors have developed a measurement methodology and designed a measuring set for taking measurements that enable to determine the location of survey points on an elongated object.The measurement is based on the constant straight method and the measuring set consists of the horizontal levelling staff and two laser pointers. The measuring set relies on the angular intersection (fixed angle) method. Intersection occurs when two laser beams meet. To determine the location of the survey point indicated by the mentioned laser beams, we used levelling staff readings taken with the surveying instrument that establishes the reference constant straight.Experimental studies carried out in the laboratory and in the field helped to determine the accuracy of measurements taken with the designed measuring set (the accuracy was below ± 1 mm) and revealed that this accuracy is comparable to accuracies achieved with famous classical measurement methods.
机译:工程勘测的共同目标是确定细长物体与直线度的偏差。我们已经开发出许多方法来测量代表细长物体的点。这些是恒定的直线(光学,激光,机械弦)方法,三角法,几何平整法,摄影测量法和地面激光扫描。进行这些测量时,直接访问被测对象的测量点至关重要。阻碍测量的因素包括:不利的照明条件,振动,灰尘,耐火效果,无法直接进入测量点等。作者开发了一种测量方法并设计了一套测量装置,用于进行测量,从而确定被测物体的位置。测量是基于恒定直线法,测量集由水平水准仪和两个激光指示器组成。测量集依赖于角交点(固定角度)方法。当两个激光束相遇时发生相交。为了确定上述激光束指示的测量点的位置,我们使用了通过测量仪器获取的水准仪读数来建立参考常数直线度。在实验室和现场进行的实验研究有助于确定测量的准确性使用设计的测量装置(精度低于±1 mm)进行测量,结果表明该精度可与著名的经典测量方法所达到的精度相媲美。

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