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A pendulum gyro-stabilized composite vibration-reduction vehicle-mounted precision instrument working platform

A gyro-stabilized and precision instrument technology, applied in the direction of shock absorbers, shock absorber-spring combinations, instruments, etc., can solve the problems of complex accident scenes, time-consuming and labor-intensive adjustment of instrument levels, etc., and achieve good stability

Active Publication Date: 2019-11-12
SHANGHAI RES INST OF CHEM IND +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These instruments are usually in a horizontal state to work normally, and the accident scene is often complicated, uneven road surface, azimuth change, etc. will cause the vehicle to tilt or change the acceleration. The existence of these uncertainties makes the level adjustment of the instrument a time-consuming and laborious task.

Method used

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  • A pendulum gyro-stabilized composite vibration-reduction vehicle-mounted precision instrument working platform
  • A pendulum gyro-stabilized composite vibration-reduction vehicle-mounted precision instrument working platform
  • A pendulum gyro-stabilized composite vibration-reduction vehicle-mounted precision instrument working platform

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] Such as Figure 1~2 As shown, a pendulum-type gyro-stabilized compound vibration-absorbing vehicle-mounted precision instrument working platform includes an instrument placement platform 1, a universal movable support frame 2, an outer frame 3, a spring combination array vibration-damping pad 5, a pneumatic shock absorber 6, and a long Arm swing rod 7, balance pendulum 8, rubber limit ring 9, base 10, the instrument placement platform 1 is placed in the universal movable support frame 2, and the universal movable support frame 2 is placed in the outer frame 3 , the spring combination array damping pad 5 is placed under the instrument placement platform 1, the pneumatic shock absorber 6 is connected to both ends of the instrument placement platform 1, and one end of the long-arm swing rod 7 is connected to the instrument placement platform 1 , the other end is connected to the balance pendulum 8, and the rubber limit ring 9 is placed on the base 10 and used for the balan...

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Abstract

The invention relates to a pendulous gyroscope stable compound vibration absorbing vehicle-mounted precise instrument working platform. The pendulous gyroscope stable compound vibration absorbing vehicle-mounted precise instrument working platform comprises an instrument containing platform (1), a universal movement supporting frame (2), an outer frame (3), a spring combination array vibration absorbing mat (5), a pneumatic vibration absorber (6), a long arm swing rod (7), a balance pendulum (8), a rubber stop collar (9) and a base (10); and the instrument containing platform (1) is placed in the universal movement supporting frame (2), the universal movement supporting frame (2) is placed in the outer frame (3), the spring combination array vibration absorbing mat (5) is arranged below the instrument containing platform (1), and the pneumatic vibration absorber (6) is connected with the two ends of the instrument containing platform (1). Compared with the prior art, the dead axle performance of a gyroscope is used for overcoming the changes of accelerated speed of a carrying tool, the inclined degree of the gyroscope is corrected in time, and the working platform keeps in the horizontal state in the travelling process.

Description

technical field [0001] The invention relates to a pendulum-type gyro-stabilized compound vibration-reduction vehicle-mounted precision instrument working platform, which is suitable for the operation of the vehicle-mounted precision instrument. Background technique [0002] In recent years, public accidents have occurred frequently. In order to deal with on-site accidents in a timely manner and find out the cause of the accident, it is often necessary to place some precision analytical instruments on special vehicles in order to conduct qualitative and quantitative tests on on-site dangerous goods in time. These instruments can only work normally when they are in a horizontal state, and the accident scene is often complicated. The uneven road surface and azimuth change will cause the vehicle to tilt or the acceleration will change. The existence of these uncertainties makes the level adjustment of the instrument a time-consuming and laborious task. Contents of the invention...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16F13/00G12B5/00
CPCF16F13/002G12B5/00
Inventor 林建商照聪薛晓康周健张小沁丁卯
Owner SHANGHAI RES INST OF CHEM IND