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TO IDENTIFY KEY GEOMETRIC ERRORS OF 3-AXIS NC MACHINE TOOL BY MACHINING ACCURACY FAILURE MODE ANALYSIS

机译:通过加工精度故障模式分析识别3轴数控机床的关键几何误差

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Machine tools usually cut two or more surfaces after the work piece clamped on work table. In order to improve the machining accuracy and optimize accuracy design, it is hoped that the geometric errors that influence the accuracy of machined surface prominently can be known beforehand, so the adjustment will be carried out with a definite objective rather than without any clue. Because the machining accuracy of each direction in 3-D space is different value, in this paper, machining accuracy failure mode was defined as the various combination of the machining accuracy of each direction according to whether it is up to the reserved objective value or not. A three-axis machine tool was selected as an example and there were 7 machining accuracy failure modes for it. Based on the generalized correlation analysis, the correlation relationships between 7 machining accuracy failure modes were analyzed, and the main failure modes that affect the machining accuracy of work piece to be machined were identified. For each machining accuracy failure mode, key geometric error that had major influence on it was identified based on sensitivity analysis. Finally, four stepped work pieces were milled by a 3-axis machine tool to illustrate the analytical method proposed in this study.
机译:在将工件夹紧在工作台上之后,机床通常会切割两个或多个表面。为了提高加工精度并优化精度设计,希望能够事先知道会显着影响加工表面精度的几何误差,因此,调整应以明确的目标而不是毫无头绪的方式进行。由于在3-D空间中每个方向的加工精度是不同的值,因此在本文中,根据是否达到保留的目标值,将加工精度故障模式定义为每个方向的加工精度的各种组合。 。以三轴机床为例,有7种加工精度故障模式。在广义相关分析的基础上,分析了7种加工精度失效模式之间的关联关系,确定了影响待加工工件加工精度的主要失效模式。对于每种加工精度故障模式,根据灵敏度分析确定对其产生重大影响的关键几何误差。最后,用三轴机床铣削四个阶梯状工件,以说明本研究中提出的分析方法。

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