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AUTOMATED MEASURING PLANNING FOR ON-MACHINE MEASUREMENT AND RE-MACHINING PROCESS

机译:机上测量和重新加工过程的自动测量计划

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On-machine measurement (OMM) is introducing to Numerical Control (NC) machine tools. By the OMM, a workpiece is measured on the machine tool (i.e., without loading and unloading), so OMM can reduce the setup time and positioning error for reloading a workpiece. OMM is used for the process control during machining because it is still difficult to suppress the machining error caused by the cutting process such as the tool deflection, the tool wear and the heat deformation during machining. There are several approaches to on-machine measurement, including non-contact measurements using a laser displacement sensor or imaging equipment and contact measurements using a touch probe. However, to conduct OMM with a touch probe it is necessary to generate an NC program by operators. Moreover, for the process control and monitoring, the information of machining process should be considered in the measuring plan.For process control, measurement of a region that affects machining in the next process should be conducted during the machining process (i.e., after the machining of that region). Furthermore, when some machining abnormality that affects product quality occurs during the machining process, the abnormality should be detected and measured at an early stage to avoid unnecessary machining.This study aims to realize the automation of planning for on-machine measurement, where measurement is conducted at the necessary time during the machining process based on process planning for the early detection of machining abnormality. Furthermore, when a machining abnormality is detected based on the measurement results, the proposed system automatically judges whether to stop machining or to re-machine the affected region.
机译:机上测量(OMM)正在引入数控(NC)机床。通过OMM,可以在机床上测量工件(即无需装卸),因此OMM可以减少重新加载工件的准备时间和定位误差。 OMM用于加工过程中的过程控制,因为仍然难以抑制由于切削过程引起的加工误差,例如刀具偏斜,刀具磨损和加工过程中的热变形。机器上测量有几种方法,包括使用激光位移传感器或成像设备的非接触式测量以及使用测头的接触式测量。但是,要使用测头进行OMM,必须由操作员生成NC程序。此外,为了进行过程控制和监控,应在测量计划中考虑加工过程的信息。对于过程控制,应在加工过程中(即加工后)对影响下一个加工的区域进行测量。该地区)。此外,当在加工过程中发生一些影响产品质量的加工异常时,应及早发现并测量异常,以避免不必要的加工。根据加工计划在加工过程中的必要时间进行操作,以便及早发现加工异常。此外,当基于测量结果检测到加工异常时,所提出的系统自动判断是停止加工还是重新加工受影响的区域。

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