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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optical, in situ, three-dimensional, absolute shape measurements in CNC metal working lathes
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Optical, in situ, three-dimensional, absolute shape measurements in CNC metal working lathes

机译:CNC金属加工车床中的光学,原位,三维绝对形状测量

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摘要

Temperature drifts, tool deterioration, unknown vibrations, as well as spindle play are major effects which decrease the achievable precision of CNC lathes and lead to shape deviations of the processed workpieces. Since currently no measurement system exists for precise, in situ, 3D shape monitoring, much effort is required to simulate and compensate these effects. In this article, we propose an optical measurement principle for first part quality manufacturing. The absolute shape, meaning the diameter and surface profile, of the workpiece is determined from its tangential velocity and the surface distance. In order to allow keyhole access, both measurands are determined simultaneously with a single sensor. Measurements inside a metal working lathe show that the standard uncertainty for the absolute shape measurement is below 1 mu m. The measurement uncertainty is nearly independent of the lateral surface velocity and roughness. The in situ measurements are compared to measurements with a tactile coordinate measurement machine for reference.
机译:温度漂移,刀具退化,未知振动以及主轴游隙是主要的影响因素,它们降低了CNC车床可达到的精度,并导致加工工件的形状偏差。由于当前不存在用于精确的原位3D形状监视的测量系统,因此需要大量的工作来模拟和补偿这些影响。在本文中,我们提出了用于零件质量制造的光学测量原理。工件的绝对形状(即直径和表面轮廓)由切线速度和表面距离确定。为了允许钥匙孔进入,用单个传感器同时确定两个被测量物。在金属加工车床上进行的测量表明,绝对形状测量的标准不确定度低于1微米。测量不确定度几乎与侧面速度和粗糙度无关。将原位测量结果与使用触觉坐标测量机的测量结果进行比较,以供参考。

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