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Application of A Newly Developed Thermally Induced Volumetric Error Compensation Model in Improving Dimensional Accuracy of Parts

机译:新开发的热诱导体积误差补偿模型在提高零件尺寸精度的应用

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摘要

The thermally induced volumetric error of a machine tool has been recognised as a major contributor to the dimensional and geometric errors of component parts produced by that tool. Therefore, considerable research has focused on ways to compensate for this type of error. The traditional model of compensation for the thermally induced volumetric error of a three-axis machine tool requires the measurement of 21 geometric error components and their variations with temperature, which is difficult and time-consuming to conduct. In our previous research, we developed a simplified and economical method of compensation of thermally induced volumetric error by modeling the positioning error as functions of ball-screw nut temperature and travel distance. This paper describes the application of this newly developed compensation model in improving the dimensional accuracy of parts. The model was applied to reduce the positioning error of a number of drilled holes. The results showed an average reduction of absolute and relative errors by 30.44μm and 77%, respectively.
机译:机床的热诱导的体积误差已被识别为由该工具产生的部件部件的尺寸和几何误差的主要贡献者。因此,相当大的研究专注于弥补这种类型的错误的方法。用于三轴机床的热诱导的体积误差的传统补偿模型需要测量21个几何误差分量及其温度变化,这是难以和耗时的。在我们以前的研究中,我们通过将定位误差为滚珠丝杠螺母温度和行驶距离的功能来制定了一种简化和经济的热诱导体积误差的方法。本文介绍了这种新开发的补偿模型在提高零件的尺寸精度方面的应用。应用模型以减少多个钻孔的定位误差。结果表明,绝对和相对误差的平均降低了30.44μm和77%。

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