Prediction of Quasistatic Errors in Three-Axis CNC Machining Centers

Xiong Chen, Aseervadam Geddam
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Abstract

Quasistatic error sources, which include thermal, mechanical loading and geometric error sources, are responsible for a very large proportion (typically, 70%) of the volumetric errors of a CNC machine tool. This paper discusses the development of a general quasistatic error model for multi-axis CNC machining centers using rigid body kinematics. To predict the quasistatic errors at any position in the workspace, a new method was proposed using the meshing concepts developed in the FEM literature. Finally, the spatial rate of change of the error was analyzed. The model and analysis method can be used as the basis of a compensation scheme as well as in budgeting of errors on a machine tool.
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三轴数控加工中心准静态误差预测
准静态误差源,包括热、机械载荷和几何误差源,在数控机床的体积误差中占很大比例(通常为70%)。本文讨论了用刚体运动学建立多轴数控加工中心的一般准静态误差模型。为了预测工作空间中任意位置的准静态误差,提出了一种利用有限元文献中提出的网格划分概念的新方法。最后,分析了误差的空间变化率。该模型和分析方法可以作为补偿方案的基础,也可以作为机床误差预算的依据。
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