Magnetic levitation vibration isolator with coplace air flotation orthogonal decoupling and rolling knuckle bearing angle decoupling

A joint bearing and vibration isolator technology, which is applied in spring/shock absorber, vibration suppression adjustment, microlithography exposure equipment, etc., can solve the problem of poor positioning accuracy of air spring vibration isolator, large angular stiffness of rubber block, and large pendulum Long and other problems, to solve the effect of low positioning accuracy

Active Publication Date: 2013-04-24
HARBIN INST OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The problems of this method are as follows: 1) Due to the constraints of material properties and structural stiffness, the amplitude of vertical and horizontal stiffness reduction of the vibration isolator is limited; 2) The vertical and horizontal positioning accuracy of the air spring vibration isolator is very poor, It cannot meet the requirements of the photolithography process; 3) To achieve a lower horizontal stiffness requires a larger pendulum length, resulting in excessive height of the vibration isolator, prone to string-film resonance, and poor stability
The problems of this solution are: 1) In the disclosed technical solution, the vibration isolator cannot achieve precise positioning; 2) In the patent EP1803965A2, there is no degree of freedom of angular movement around the horizontal axis between the upper and lower mounting plates. The angular stiffness and natural frequency are very high; patents EP1803970A2 and US20080193061A1 use rubber blocks to provide angular freedom of rotation around the horizontal axis for the upper and lower mounting plates, but due to the high angular stiffness of the rubber blocks, the angular freedom of motion cannot be effectively achieved Degree decoupling, the friction between the decoupling mechanism components of the angular motion freedom introduces additional stiffness, which restricts the vibration isolation performance
However, the proposed technical solution still does not solve the problem of decoupling the precise positioning of the vibration isolator and the angular motion freedom of the upper and lower mounting plates.

Method used

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  • Magnetic levitation vibration isolator with coplace air flotation orthogonal decoupling and rolling knuckle bearing angle decoupling
  • Magnetic levitation vibration isolator with coplace air flotation orthogonal decoupling and rolling knuckle bearing angle decoupling
  • Magnetic levitation vibration isolator with coplace air flotation orthogonal decoupling and rolling knuckle bearing angle decoupling

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Embodiment Construction

[0032] Specific embodiments of the present invention are given below in conjunction with the accompanying drawings.

[0033] A maglev vibration isolator with coplanar air bearing orthogonal decoupling and rolling joint bearing angular decoupling, consisting of an upper mounting plate 1, a lower mounting plate 2, a clean compressed air source 3, an air pipe 26 and a vibration isolator main body 4, The vibration isolator main body 4 is installed between the upper mounting plate 1 and the lower mounting plate 2. The clean compressed air source 3 is connected to the vibration isolator main body 4 through the air pipe 26. The structure of the vibration isolator main body 4 is: the sleeve 6 The lower surface and the lower mounting plate 2 are lubricated and supported by the magnetic thrust bearing 24, the piston barrel 5 is installed in the sleeve 6 with an undercut, and is lubricated and supported with the sleeve 6 through the radial bearing cylindrical air bearing surface 22, and t...

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Abstract

The invention discloses a magnetic levitation vibration isolator with coplace air flotation orthogonal decoupling and rolling knuckle bearing angle decoupling and belongs to the technical field of precise vibration isolation. A sleeve of the main body of the vibration isolator and a lower installation plate are born by a magnetic levitation thrust bearing, a piston sleeve and the sleeve are respectively lubricated and supported by an air flotation surface, the freedom of the horizontal linear motion between an upper installation plate and the lower installation plate is decoupled through a coplace orthogonal air flotation guide rail, the freedom of angular motion between the upper installation plate and the lower installation plate is decoupled through a rolling knuckle bearing, and a voice coil motor, a displacement sensor, a limiting switch and controller and a driver form a position closed-loop feedback control system to accurately control the relative positions of the upper installation plate and the lower installation plate. The magnetic levitation vibration isolator has the advantages of being zero in three-dimensional rigidity, high in positioning accuracy, and capable of performing linear motion freedom decoupling and angular motion freedom decoupling, and can effectively solve the high-performance vibration isolation problem of ultra-precise measurement instruments and processing equipment, particularly step scanning photoetching machines.

Description

technical field [0001] The invention belongs to the technical field of precision vibration isolation, and mainly relates to a magnetic suspension vibration isolator for coplanar air bearing orthogonal decoupling and rolling joint bearing angle decoupling. Background technique [0002] With the continuous improvement of ultra-precision machining and measurement accuracy, environmental vibration has become an important factor restricting the improvement of the accuracy and performance of ultra-precision machining equipment and measuring instruments. In particular, the ultra-large-scale integrated circuit processing equipment represented by the step-scan lithography machine is extremely technically intensive and complex, and the key technical indicators have reached the limit of the existing technology, representing the highest level of ultra-precision processing equipment. Precision vibration isolation has become the core key technology in this type of equipment; the line widt...

Claims

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Application Information

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IPC IPC(8): F16F15/027G03F7/20
Inventor 谭久彬崔俊宁王雷
Owner HARBIN INST OF TECH
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