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Precise on-machine extraction of the surface normal vector using an eddy current sensor array

机译:使用涡流传感器阵列在机上精确提取表面法线向量

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摘要

To satisfy the requirements of on-machine measurement of the surface normal during complex surface manufacturing, a highly robust normal vector extraction method using an Eddy current (EC) displacement sensor array is developed, the output of which is almost unaffected by surface brightness, machining coolant and environmental noise. A precise normal vector extraction model based on a triangular-distributed EC sensor array is first established. Calibration of the effects of object surface inclination and coupling interference on measurement results, and the relative position of EC sensors, is involved. A novel apparatus employing three EC sensors and a force transducer was designed, which can be easily integrated into the computer numerical control (CNC) machine tool spindle and/or robot terminal execution. Finally, to test the validity and practicability of the proposed method, typical experiments were conducted with specified testing pieces using the developed approach and system, such as an inclined plane and cylindrical and spherical surfaces.
机译:为了满足在复杂表面制造过程中对表面法线进行机上测量的要求,开发了一种使用涡流(EC)位移传感器阵列的高度鲁棒的法向矢量提取方法,该方法的输出几乎不受表面亮度,机械加工的影响冷却液和环境噪声。首先建立基于三角形分布EC传感器阵列的精确法向矢量提取模型。涉及物体表面倾斜度和耦合干扰对测量结果以及EC传感器相对位置的影响的校准。设计了一种使用三个EC传感器和一个力传感器的新型设备,该设备可以轻松集成到计算机数控(CNC)机床主轴和/或机器人终端执行器中。最后,为了测试所提方法的有效性和实用性,使用所开发的方法和系统(例如倾斜平面,圆柱和球面)对指定的测试件进行了典型实验。

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