面向精度保持性提升的横梁水平轴导轨面主动设计方法

Active design methodology for guide rail surfaces to enhance straightness accuracy of horizontal linear axes in beams

  • 摘要: 装配尺寸链是数控机床公差设计的基础,工况作用下装配尺寸链会发生变异,其变异量一般远大于公差值的大小,导致传统的装配尺寸链反映的误差累积关系不准确。文章建立了一种能够考虑机床服役状态的变异装配尺寸链模型,尤其是针对机床形位公差建立了一种以机床行程为自变量的装配尺寸链。在此基础上,建立了主轴轴线和Z轴运动平行度的变异装配尺寸链,分析对封闭环影响最为显著的组成环,并通过导轨定位基准面精度主动设计方法抵消了重力作用下封闭环公差带位置的变化。该精度主动设计方法可提高横梁/框式立柱水平轴轴线运动的直线度。

     

    Abstract: The assembly dimension chain serves as the foundation for tolerance allocation in CNC machine tools, under operational conditions, variations in assembly dimension chains are observed, with their magnitude typically exceeding tolerance values by a significant margin. Consequently, the error accumulation relationships reflected by conventional assembly dimension chains are rendered inaccurate. A variant assembly dimension chain accounting for machine tool service conditions was developed in this study. Specifically, a mathematical model with machine tool travel as the independent variable was established for geometric tolerance analysis. Based on this framework, a variant assembly dimension chain characterizing the parallelism between the spindle axis and Z-axis motion was formulated. The component loop exhibiting the most significant influence on the closed loop was identified. To mitigate positional deviations of tolerance zones induced by gravitational loads, an active precision design methodology for the guide rail positioning reference surface was implemented. This approach has been demonstrated to enhance straightness accuracy of the horizontal axis motion in beams/gantry-type columns.

     

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