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Motion and Environment Error Compensation for Ultra-precision Lathe

机译:超精密车床的运动和环境误差补偿

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摘要

Recently, the demand for Ultra-precision products is rapidly increasing, especially in such industries as semi-conductors, computers, aerospace, and precision machinary. Ultra-precision processing is also extremely needed for NT in the field of mechanical engineering. Lately, together with drastic advancement of electronic and photonics industry, the need of Ultra-precision processing is increased in the manufacturing of various kernel parts, which are connected with these industrial fields. Especially, motion accuracy to nanometers is required in order in stroke of hundreds millimeters according as the diameter of the processed object great and the processing accuracy rises. In this case, the response speed absolute delay due to inertial mass of the moving parts is very large. Therefore, real-time motion error compensation becomes the barest necessity. In this paper, we used ultra-precision cutting unit (UPCU) to cope with the problem. A special UPCU was designed and tested to obtain sub-micrometer from accuracy in diamond turning of flat surfaces. The thermal growth spindle error was compensated in real time using the UPCU driven by piezoelectric actuator along with a laser encoder displacement sensor.
机译:近来,对超精密产品的需求正在迅速增长,特别是在半导体,计算机,航空航天和精密机械等行业。在机械工程领域,NT也非常需要超精密加工。近来,随着电子和光子学行业的飞速发展,在与这些工业领域相关的各种内核部件的制造中对超精密处理的需求增加了。尤其是,随着被处理物的直径大且加工精度提高,需要以几百毫米的行程进行纳米级的运动精度。在这种情况下,由于运动部件的惯性质量导致的响应速度绝对延迟非常大。因此,实时运动误差补偿成为当务之急。在本文中,我们使用了超精密切割单元(UPCU)来解决该问题。设计并测试了一种特殊的UPCU,可从平面金刚石车削的精度中获得亚微米。使用压电致动器驱动的UPCU和激光编码器位移传感器实时补偿热生长主轴误差。

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