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Method of Evaluating Dynamic Accuracy of Five-axis Machine Tool Based on Test Piece and Comprehensive Evaluation System

机译:基于试件和综合评价系统的五轴机床动态精度评估方法

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摘要

To improve the dynamic accuracy of a five-axis machine tool, an evaluation method based on a test piece and a comprehensive evaluation (CE) system is proposed in this paper. The test pieces, namely, cone frustum and S test piece, in ISO 10791-7 are compared to show their ability to reflect the dynamic accuracy. After the comparison, the S test piece is selected owing to its various changes in contour error under different dynamic accuracies. The kinematic and dynamic simulation model is established to affect the effects of the various dynamic factors on the S test piece. The relationship between the dynamic factors and the S test piece is applied to the construction of a CE system. Then, the evaluation of the dynamic accuracy of the five-axis machine tool can be completed. On the basis of the evaluation result, the error is identified to determine the factors that must be adjusted. Thus, the dynamic accuracy of the five-axis machine tool can be improved by the adjustment. The proposed method is validated by experiments.
机译:为了提高五轴机床的动态精度,提出了一种基于试件和综合评价(CE)系统的评价方法。比较了ISO 10791-7中的测试件,即锥台和S形测试件,以显示其反映动态精度的能力。比较之后,由于S试样在不同动态精度下轮廓误差的变化,因此选择了S试样。建立运动学和动态仿真模型,以影响各种动态因素对S试件的影响。动态因素与S试件之间的关系适用于CE系统的构建。然后,可以完成对五轴机床动态精度的评估。根据评估结果,确定错误以确定必须调整的因素。因此,通过调整可以提高五轴机床的动态精度。实验验证了该方法的有效性。

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