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May 14, 2026Processes0 citationsOpen Access

Multi-Axis Dimensional Error Modeling and Sensitivity Analysis in a CNC Machining Center

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YTYunnan TengUniversidad del NoresteLXLiyang XieNortheastern University

Key Points

  • The aim is to develop a model for calculating dimensional errors in multi-axis CNC machining to enhance accuracy.
  • Established a multi-axis linkage dimensional error calculation model using multi-body system theory.
  • Conducted a comprehensive sensitivity analysis on the CNC machining center.
  • Validated the model with experimental data.
  • X-axis machining errors are most sensitive to δx(z), δx(y), δx(x), εy(y).
  • Y-axis machining error shows strong sensitivity to δy(z), δy(y), δy(x).
  • Z-axis machining error is highly affected by δz(z), δz(y), δz(x).

Abstract

To improve machining accuracy, a multi-axis linkage dimensional error calculation model was established based on multi-body system theory and validated by the experiment. A comprehensive sensitivity analysis for a CNC machining center was conducted. The results reveal that multi-axis machining errors depend not only on the machine’s structural dimensions but also dynamically vary with the axes’ motion positions. Specifically, X-axis machining errors are most sensitive to δx(z), δx(y), δx(x), εy(y). Y-axis machining error is more sensitive to δy(z), δy(y), and δy(x). Z-axis machining error is more sensitive to δz(z), δz(y), and δz(x). The practical implications of these findings identify the specific dimensional errors that most significantly impact overall accuracy, providing a targeted theoretical reference to prioritize the compensation of key dimensional errors and effectively enhance machine tool precision.

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Cite This Study

Teng et al. (2026) studied this question.

synapsesocial.com/papers/6a05684ea550a87e60a20d27https://doi.org/10.3390/pr14101566
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