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Integrated Geometric Error Compensation of Machining Processes on CNC Machine Tool

机译:数控机床加工过程的综合几何误差补偿

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Kinematic errors due to geometric inaccuracies in machining system cause deviations of tool positions and orientation from being machined point on the workpiece, which consequently affect geometric accuracy of the machined surface. This paper presents an integrated geometric error model of machining system and compensation method on machine tools. Regarding a machine tool, fixtures, workpiece and tool as an assembly, an integrated geometric error model has been established. The integrated error is modeled by the propagation and the accumulation of errors based on Jacobian-Torsor theory. It is different with previous model, in this model, all the geometric errors of machining system are converted into the machine tool instead of the workpiece machining surface. As is well known in the machine tool, there are 21 geometric error of a 3-axis milling machine tool, which can be measured by laser interferometer. Based on this integrated model and machine tool error, the combination of geometric errors of machining system reflect on the machine tool can be predicted. Finally, a new compensation method is proposed to realize the error compensation, NC program is corrected corresponding NC codes according to the predicted errors during virtual machining before it is fed to the actual machining. A case demonstrates the application of how the method could be used in error compensation for machining processes.
机译:由于加工系统中几何形状不准确而导致的运动学误差会导致刀具位置和方向偏离工件上的加工点,从而影响加工表面的几何精度。提出了加工系统的综合几何误差模型和机床补偿方法。关于机床,固定装置,工件和工具的装配,已经建立了一个综合的几何误差模型。基于Jacobian-Torsor理论,通过误差的传播和累积对集成误差进行建模。与以前的模型不同,在该模型中,加工系统的所有几何误差均转换为机床而不是工件加工表面。在机床中众所周知,三轴铣床的几何误差为21,可以通过激光干涉仪进行测量。基于该综合模型和机床误差,可以预测机床上反映的加工系统几何误差的组合。最后,提出了一种新的补偿方法来实现误差补偿,在虚拟加工过程中,根据虚拟加工过程中的预测误差,对数控程序进行相应的数控代码校正,然后送入实际加工。案例演示了该方法如何用于加工过程的误差补偿的应用。

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