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Calibration and capability assessment of on-machine measurement by integrating a laser displacement sensor

机译:通过集成激光位移传感器来校准和能力评估机上测量

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摘要

On-machine measurement is being used increasingly to inspect the features of machined components without removing the workpiece from the machine tool. In the present work, a laser displacement sensor is integrated on a machine tool to measure the elementary features of a step, hole, cylinder, and plane. An iterative calibration method is introduced to obtain the position and direction of the sensor accurately, and data processing is performed for filtration and edge recognition. The accuracy and uncertainty of detecting the characteristic parameters of height, diameter, roundness, and flatness by the laser-based on-machine measurement are evaluated and are compared with those of a mechanical probe. Furthermore, the capability of the on-machine measurement process on the adopted machine tool is assessed according to ISO 22514-7. The results show that the difference between the calibrated and actual sphere center is reduced to 4.7 mu m after five iterations. The on-machine measurement by the mechanical probe is more accurate, while that by the laser displacement sensor is more efficient. The uncertainties of the two methods are evaluated as being in the ranges of 2.4-3.7 mu m and 4.8-5.8 mu m, respectively. The accessible tolerances can be obtained to determine whether the machine tool is competent for requirement as a measuring device.
机译:机上测量越来越多地用于在不从机床上拆下工件的情况下检查已加工部件的特征。在目前的工作中,激光位移传感器集成在机床上,用于测量台阶、孔、圆柱和平面的基本特征。提出了一种迭代标定方法,精确获取传感器的位置和方向,并对数据进行滤波和边缘识别。对基于机器测量的激光检测高度、直径、圆度和平整度等特征参数的精度和不确定度进行了评估,并与机械探针进行了比较。此外,根据ISO 22514-7对所采用机床的机上测量过程的能力进行了评估。结果表明,经过五次迭代后,标定球心与实际球心的差值减小到4.7μm。机械探针的机上测量更准确,而激光位移传感器的机上测量效率更高。这两种方法的不确定度分别在2.4-3.7μm和4.8-5.8μm的范围内进行评估。可以获得可接近的公差,以确定机床是否能够满足测量设备的要求。

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