Simulation of the Machining Error of Variable-Axis NC Machine Tool Based on Static Stiffness
Ding Hong
Abstract
Ding Hong
Abstract
The machining error of a variableaxis NC machine tool is analyzed by studying the deformation of Stewart platform, the kinetic part of the machine tool. Vector expression of machining error is derived on the condition of static loads. Moreover, the machining error is preadjusted by establishing a relevant preadjusted model. The method is universal and provides a theoretical foundation to improve the machining accuracy of the machine tool in static stiffness. A simulation example is finally given, demonstrating that the machining error arisen from the static stiffness does exist and the error has to be corrected.
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The machining error of a variableaxis NC machine tool is analyzed by studying the deformation of Stewart platform, the kinetic part of the machine tool. Vector expression of machining error is derived on the condition of static loads. Moreover, the machining error is preadjusted by establishing a relevant preadjusted model. The method is universal and provides a theoretical foundation to improve the machining accuracy of the machine tool in static stiffness. A simulation example is finally given, demonstrating that the machining error arisen from the static stiffness does exist and the error has to be corrected.
Key concepts: Machining, Machine tool, Stiffness, Variable (mathematics), Computer science, Mechanical engineering, Engineering, Structural engineering