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An Automated Inner Dimensional Measurement System Based on a Laser Displacement Sensor for Long-Stepped Pipes

机译:基于激光位移传感器的长步管道自动内尺寸测量系统

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A novel measurement prototype based on a mobile vehicle that carries a laser scanning sensor is proposed. The prototype is intended for the automated measurement of the interior 3D geometry of large-diameter long-stepped pipes. The laser displacement sensor, which has a small measurement range, is mounted on an extended arm of known length. It is scanned to improve the measurement accuracy for large-sized pipes. A fixing mechanism based on two sections is designed to ensure that the stepped pipe is concentric with the axis of rotation of the system. Data are acquired in a cylindrical coordinate system and fitted in a circle to determine diameter. Systematic errors covering arm length, tilt, and offset errors are analyzed and calibrated. The proposed system is applied to sample parts and the results are discussed to verify its effectiveness. This technique measures a diameter of 600 mm with an uncertainty of 0.02 mm at a 95% confidence probability. A repeatability test is performed to examine precision, which is 1.1 μm. A laser tracker is used to verify the measurement accuracy of the system, which is evaluated as 9 μm within a diameter of 600 mm.
机译:提出了一种基于携带激光扫描传感器的移动车辆的新型测量原型。该原型旨在自动测量大直径长阶梯管的内部3D几何形状。测量范围较小的激光位移传感器安装在已知长度的延伸臂上。进行扫描以提高大型管道的测量精度。设计了基于两部分的固定机构,以确保阶梯管与系统的旋转轴同心。在圆柱坐标系中获取数据,并将其拟合成圆形以确定直径。分析并校准了涵盖臂长,倾斜和偏移误差的系统误差。将该系统应用于样件,并讨论了结果以验证其有效性。该技术可在95%的置信度下测量600毫米的直径,而不确定度为0.02毫米。进行重复性测试以检查精度,该精度为1.1μm。激光跟踪仪用于验证系统的测量精度,在600 mm的直径内评估为9μm。

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