Clarifications of the mechanism of nano-fluctuation of aerostatic thrust bearing with surface restriction
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Takashi Matsuoka | Hiroshi Yabe | Takakazu Kitagawa | Tomoko Hirayama | Tomotaka Yoshimura | Teruhisa Hanafusa
[1] Hendrik Van Brussel,et al. A multiphysics model for optimizing the design of active aerostatic thrust bearings , 2010 .
[2] Dae-Gab Gweon,et al. A new 3-DOF Z-tilts micropositioning system using electromagnetic actuators and air bearings , 2000 .
[3] Haruo Mori,et al. A Study on Angular Stiffness and Damping Properties of Externally Pressurized Gas Thrust Bearing with Surface-restriction Compensation , 1983 .
[4] Kaiji Sato,et al. TREND OF PRECISION POSITIONING TECHNOLOGY , 2005 .
[5] Yoshikazu Arai,et al. Measurement of multi-degree-of-freedom error motions of a precision linear air-bearing stage , 2006 .
[6] Shuichi Dejima,et al. A surface motor-driven planar motion stage integrated with an XYθZ surface encoder for precision positioning , 2004 .
[7] Lisa Poyneer,et al. Demonstrating sub-nm closed loop MEMS flattening. , 2006, Optics express.
[8] P. A. McKeown,et al. The Role of Precision Engineering in Manufacturing of the Future , 1987 .
[9] K. J. Stout,et al. The design of aerostatic bearings for application to nanometre resolution manufacturing machine systems , 2000 .
[10] Hiroshi Yabe,et al. Development of Pneumatic Servo Bearing Actuator for Nanometer Positioning , 2009, Int. J. Autom. Technol..