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An ultraprecision positioning system using twist-roller friction drive

An ultraprecision positioning system using twist-roller friction drive
采用扭转滚子摩擦驱动的超精密定位系统
批准号:
13650252
负责人:
MIZUMOTO Hiroshi
金额:
$2.62万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
2001
资助国家:
日本
项目状态:
已结题
起止时间:
2001 至 2002

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中文摘要
翻译
扭辊摩擦传动机构是一种导程较小的丝杠。据报道,使用扭辊摩擦驱动机构的定位系统的定位分辨率小至0.2nm,其中AC螺线管用作致动器。在目前的研究中,而不是的压电陶瓷驱动器的运动减速机构,而扭辊摩擦驱动机构的定位分辨率的限制进行了研究。运动减速机构可以被看作是致动器变形到工作台位移的精确线性转换器。该机构的减速比小于千分之二,工作台的位移由光纤传感器检测。该光纤传感器在130kHz频率范围内的标称分辨率为0.25nm。通过外部低通滤波,可以获得更高的分辨率。检测到的工作台移动被反馈到控制压电致动器的电源电压的微计算机。从而实现了工作台定位的闭环控制系统。数字控制系统的LSB(最低有效位)为76 pm,这大于要研究的定位分辨率。为了实现小于LSB的精确控制,在控制器中采用了PNM(脉冲数调制)。控制系统的周期约为30μs。利用该闭环控制系统进行的步进定位实验表明,1nm、0.5nm和0.1nm的步进都得到了清晰的分辨。然而,噪声水平几乎等于步长,并且定位分辨率的限制被认为是50pm。由于扭辊摩擦传动机构具有运动转换的线性度和纳米级的高重复性,可精确控制工作台的位置,可作为提高超精密加工和测量精度的皮米级定位装置。
英文摘要
The twist-roller friction drive mechanism is a kind of lead screw having a small lead. It was reported that the positioning resolution of a positioning system using the twist-roller friction drive mechanism is as small as 0.2nm, where an AC servomotor was used as the actuator. In the present research, instead of the servomotor, a piezoelectric actuator with motion reduction mechanism is used, and the limitation of the positioning resolution of the twist-roller friction drive mechanism is investigated. The motion reduction mechanism can be regarded as a precise linear converter of the actuator deformation to the table displacement. The reduction ratio of the mechanism is less than two-thousandth.The displacement of the table is detected by a fiber-optic sensor. Nominal resolution of this fiber-optic sensor is 0.25nm in the frequency range to 130kHz. With external low-pass filtering, finer resolution can be obtained. Detected table movement is fed back to a microcomputer that controls the supply voltage for the piezoelectric actuator. Thus a closed-loop control system for the table positioning is realized. The LSB (Least Significant Bit) of the digital control system is 76pm, which is larger than the positioning resolution to be investigated. For the precise control less than the LSB, PNM (Pulse Number Modulation) is employed in the controller. Cycle time of the control system is about 30μs.Experiments of step positioning using the closed-loop control system shows that steps of 1nm, 0.5nm and 0.1nm are clearly resolved. However, the noise level is almost equal to the step width and the limitation of the positioning resolution is considered to be 50pm. Because of the linearity of motion conversion and high repeatability in nanometer range, the twist-roller friction drive mechanism can control the table position precisely and can be used as a picometer-positioning device for improving the ultraprecision machining and measurement.
期刊论文(4)
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会议论文
H.MIZUMOTO, M.SHIOE, S.ARII, M.YABUYA: "Picometer Positioning using Twist-roller Friction Drive Mechanism"Proceedings of 3rd International Conference of European Society for Precision Engineering and Nanotechnology. Vol.1. 121-124 (2002)
H.MIZUMOTO、M.SHIOE、S.ARII、M.YABUYA:“使用扭转滚轮摩擦驱动机构的皮米定位”欧洲精密工程和纳米技术学会第三届国际会议论文集。
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H.MIZUMOTO, M.SHIOE, S.ARII, M.YABUYA: "Picometer Positioning using Twist-roller Friction Drive Mechanism"Proceedings of 3rd International Conference of European Society for Precision Engineering and Nanotechnology. (in press). (2002)
H.MIZUMOTO、M.SHIOE、S.ARII、M.YABUYA:“使用扭转滚轮摩擦驱动机构的皮米定位”欧洲精密工程和纳米技术学会第三届国际会议论文集。
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水本 洋: "ワークショップ「超精密加工機の要素技術」5.ツイストローラ摩擦駆動機構"日本機械学会2002年度年次総会講演資料集. 第8巻. 398-399 (2002)
水本浩:《研讨会“超精密加工机的基本技术”5.扭转滚子摩擦驱动机构》日本机械工程学会2002年年会演讲资料第8卷。398-399(2002)。
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