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Extremely Low Temperature Low Heat Dissipation Precision Piezoelectric Ceramic Rotary Stage

A technology of piezoelectric ceramics and rotary table, which is applied in the direction of piezoelectric effect/electrostrictive or magnetostrictive motors, electrical components, generators/motors, etc. Changes, the reduction of the resonant frequency of the displacement stage, etc., to avoid performance loss and debugging difficulties, avoid mechanical vibration and noise coupling, and reduce heat dissipation power

Active Publication Date: 2022-05-17
UNIV OF SCI & TECH OF CHINA
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  • Abstract
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Problems solved by technology

[0006] In the prior art, there is disclosed a rotating structure that utilizes a friction plate to drive a translation stage fixed by a bearing, which is an inertial drive translation stage. The disadvantage of this inertial drive is that the motion accuracy is not high, and it cannot be used for sub-nanometer Precise drive control and often unavoidable heat generated by sliding friction
For extremely low temperature acquisition devices, the cooling power is usually only a few hundred microwatts at a temperature of 100mK, which is easily suppressed by the heating power generated by the aforementioned sliding friction, making the system need to wait for a long time to achieve the target work after the translation stage moves Temperature; inchworm drive can have high driving accuracy, but it cannot avoid the occurrence of sliding friction just like inertial drive; walking drive can realize friction drive without sliding, but for extremely low temperature systems, the deformation of piezoelectric ceramics itself is affected by thermal expansion and contraction The impact of the effect will be greatly reduced, and the driving efficiency only through the deformation of the piezoelectric ceramic itself is very low, and the walking drive requires high machining accuracy for the piezoelectric ceramic stack responsible for expansion and contraction, which is easily affected by temperature changes
[0007] The action efficiency of the translation stage can be improved by using the mechanical amplification structure, but the overall stiffness and displacement resolution of the structure will be reduced, and the thermal deformation of the mechanical structure itself in an extremely low temperature environment can reach the same shape as the piezoelectric ceramic stack itself. Compared with the variable phase, the normal drive at extremely low temperature needs to use a different structural size or calibration amount than that at normal temperature, which is more cumbersome to use
Low structural rigidity will reduce the resonant frequency of the translation platform, which will easily couple the translation platform with the environmental mechanical vibration and noise, which is not conducive to precision driving
[0008] The positioning sensing device of the piezoelectric displacement stage usually uses a carbon film resistor. The structure of the carbon film resistor itself will cause sliding friction. When the carbon film resistance is energized, it will also directly generate resistance heat, which will have a great negative impact on the refrigeration device.

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  • Extremely Low Temperature Low Heat Dissipation Precision Piezoelectric Ceramic Rotary Stage
  • Extremely Low Temperature Low Heat Dissipation Precision Piezoelectric Ceramic Rotary Stage
  • Extremely Low Temperature Low Heat Dissipation Precision Piezoelectric Ceramic Rotary Stage

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Embodiment Construction

[0040] The invention discloses a low-heat dissipation large-stroke precision piezoelectric ceramic servo rotary table, which is a piezoelectric ceramic rotary table with low heat dissipation, precise angle sensing, high-resolution closed-loop control and thermal deformation self-compensation, belonging to the precision The field of rotation control and the field of extremely low temperature measurement. It is mainly suitable for the precise rotation of samples required for precision measurement experiments and experimental devices in extremely low temperature environments with high heat dissipation requirements.

[0041] The invention designs a precision piezoelectric ceramic rotary table with no sliding friction, no resistance heat, thermal deformation self-compensation, high driving efficiency and high system rigidity, which is used for precision measurement experiments in extremely low temperature environments.

[0042] Specifically, the present invention discloses a piezoe...

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Abstract

A piezoelectric ceramic rotary table with low heat dissipation, including a mechanical amplification structure, a driving device, an angle sensing system and a general control system, wherein: the mechanical amplification structure includes two sets of identical substructures placed perpendicularly to each other, and the two opposite substructures The structure forms a group, and the two sub-structures alternately rub the rotating shaft through static friction to avoid sliding friction, thereby reducing the heat dissipation caused by rotation; the angle sensing system includes a detection electrode, an input electrode, a ground electrode and an output electrode. The capacitive impedance sensor, the angle sensing system is used to measure the rotation angle with high precision without heat dissipation, and transmits the signal to the control system to realize closed-loop control; the total control system includes a measurement system for measuring the signal of the capacitive sensor, for controlling A piezoceramic control system for the electric excitation of the piezoceramic stack and a computer as the input and output of the overall control system.

Description

technical field [0001] The invention relates to the technical field of precision rotation control and the technical field of extremely low temperature measurement, in particular to an extremely low temperature and low heat dissipation precision piezoelectric ceramic rotary table. Background technique [0002] Precision piezoelectric ceramic rotary stages are widely used in precision measurement systems such as electrical transport measurement systems and optical metrology systems to accurately rotate samples or experimental devices. Piezoelectric ceramic translation stages are limited by the small deformation of piezoelectric ceramics. Various translation stages with large strokes generally require a mechanical amplification structure composed of a flexible hinge and a lever amplification structure, and cooperate with the alternating actions of multiple groups of piezoelectric ceramic stacks. accomplish. The action modes of piezoelectric ceramics mainly include inertial dri...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02N2/00H02N2/02H02N2/04H02N2/06
CPCH02N2/001H02N2/007H02N2/02H02N2/046H02N2/06
Inventor 程光磊王浩远蔡方煦黄成园杜江峰
Owner UNIV OF SCI & TECH OF CHINA
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