CN218118166U - Follow-up supporting device - Google Patents

Follow-up supporting device Download PDF

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Publication number
CN218118166U
CN218118166U CN202221693080.XU CN202221693080U CN218118166U CN 218118166 U CN218118166 U CN 218118166U CN 202221693080 U CN202221693080 U CN 202221693080U CN 218118166 U CN218118166 U CN 218118166U
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China
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cylinder
auxiliary cylinder
main cylinder
auxiliary
main
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Active
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CN202221693080.XU
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Chinese (zh)
Inventor
罗少威
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Dalian Haihang Technology Co ltd
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Dalian Haihang Technology Co ltd
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Priority to CN202221693080.XU priority Critical patent/CN218118166U/en
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Abstract

A cylinder barrel in a main cylinder is divided into a main cylinder rodless cavity and a main cylinder rod cavity, the main cylinder rodless cavity is respectively communicated with an auxiliary cylinder A and an auxiliary cylinder B, and the auxiliary cylinder B is connected with a cold dryer, an air storage tank and a screw air compressor. The utility model discloses can be applicable to the balanced dead weight of marine helicopter take-off and landing training platform, it is big to have balanced load capacity, and response speed is fast, and compact structure reduces the platform and drives the power demand, strengthens platform structural rigidity, improves structure self natural frequency, and is energy-concerving and environment-protective.

Description

Follow-up supporting device
Technical Field
The utility model belongs to the technical field of the industrial technology and specifically relates to relate to follow-up braced system.
Background
In recent years, with the continuous development of the pneumatic balance technology, the application of the pneumatic balance technology in the fields of vehicles and military industry is continuously expanded, and the balance capability, the dynamic response, the structural strength, the energy conservation, the environmental protection and the like of the pneumatic balance technology are greatly developed. At present, in the field of six-degree-of-freedom motion platforms, the deadweight of the platform is balanced by adopting a hydraulic technology. The hydraulic system has the problems of complex structure, heavy weight, large occupied area, slow dynamic response, troublesome use and maintenance and the like. The exploration and the solution of the heavy-load quick-response dynamic balance technology become key and difficult tasks of the six-degree-of-freedom motion platform.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a follow-up strutting arrangement who has balanced load ability big, and response speed is fast, and compact structure reduces the platform and drives the power demand, strengthens platform structural rigidity, improves structure self natural frequency, characteristics such as energy-concerving and environment-protective are applicable to marine helicopter take-off and land training platform.
The utility model discloses a master cylinder, air cylinder A, air cylinder B, cold machine, gas holder and screw compressor machine do.
The cylinder barrel in the main cylinder is divided into a main cylinder rodless cavity and a main cylinder rod cavity, the main cylinder rodless cavity is respectively communicated with an auxiliary cylinder A and an auxiliary cylinder B, and the auxiliary cylinder B is connected with the cold dryer, the air storage tank and the screw air compressor.
Furthermore, a piston rod is arranged in the main cylinder, and a rod cavity of the main cylinder is provided with an exhaust hole which is communicated with the atmosphere.
Furthermore, drain valves are arranged on the auxiliary cylinder A and the auxiliary cylinder B, a safety valve and a pressure gauge are arranged on the auxiliary cylinder A, and an air inlet valve is arranged on the auxiliary cylinder B.
Furthermore, a filter member A is arranged between the auxiliary cylinder B and the cold dryer.
Further, the filter member a includes an S-stage filter and a P-stage filter.
Furthermore, a filter element B is arranged between the air storage tank and the cooling dryer.
Further, filter element B is a class Q filter.
Furthermore, the upper part and the lower part of the main cylinder are respectively provided with a hinged support, and the hinged support at the lower part is hinged with the ground embedded part.
The utility model discloses in the use, the gaseous process gas holder that produces during screw rod air pressure operation, after the cold machine of doing, gas directly gets into auxiliary cylinder B through the pipeline, auxiliary cylinder B is connected with the cylinder, the other end is connected with auxiliary cylinder A, auxiliary cylinder B installs the admission valve, auxiliary cylinder A installs the manometer, the relief valve, discharge valve, after reaching operating pressure, auxiliary cylinder B closes the admission valve, auxiliary cylinder reaches the pressurize state, the main cylinder reaches service conditions, be suitable for the marine helicopter training platform that takes off and land that links to each other with main cylinder upper portion.
Compared with the prior art, the utility model beneficial effect be:
(1) The self-balancing device is suitable for a ship helicopter take-off and landing training platform to balance dead weight;
(2) The platform has the advantages of large load balancing capacity, high response speed, compact structure, capability of reducing the requirement of platform driving force, capability of enhancing the structural rigidity of the platform, capability of improving the inherent frequency of the structure, energy conservation and environmental protection.
Drawings
Fig. 1 is a schematic structural view of the present invention;
in the figure, 1-a main cylinder, 2-a hinged support, 3-a ground embedded part, 4-a piston rod, 5-a main cylinder rodless cavity, 6-a main cylinder rod cavity, 7-an auxiliary cylinder A, 8-an auxiliary cylinder B, 9-a drain valve, 10-a safety valve, 11-a pressure gauge, 12-an air inlet valve, 13-a cold dryer, 14-S level filters, 15-P level filters, 16-an air storage tank, 17-a screw air compressor and 18-Q level filters.
Detailed Description
Example 1
As shown in figure 1 of the utility model, the upper part and the lower part of a master cylinder 1 are respectively provided with a hinged support 2, and the hinged support at the lower part is hinged with a ground embedded part 3. A piston rod 4 is arranged in the main cylinder, and a rod cavity of the main cylinder is provided with an exhaust hole communicated with the atmosphere. The cylinder barrel in the main cylinder is divided into a main cylinder rodless cavity 5 and a main cylinder rod cavity 6, the main cylinder rodless cavity is respectively communicated with an auxiliary cylinder A7 and an auxiliary cylinder B8 through high-pressure rubber pipes, drain valves 9 are arranged on the auxiliary cylinder A and the auxiliary cylinder B, a safety valve 10 and a pressure gauge 11 are arranged on the auxiliary cylinder A, and an air inlet valve 12 is arranged on the auxiliary cylinder B. The auxiliary cylinder B is connected with the cooling dryer 13, an S-stage filter 14 and a P-stage filter 15 are arranged between the auxiliary cylinder B and the cooling dryer, the air storage tank 16 and the screw air compressor 17 are connected, and a Q-stage filter 18 is arranged between the air storage tank and the cooling dryer.

Claims (8)

1. The utility model provides a follow-up strutting arrangement mainly includes master cylinder, auxiliary cylinder A, auxiliary cylinder B, cold machine, gas holder and screw compressor machine futilely, its characterized in that: the cylinder barrel in the main cylinder is divided into a main cylinder rodless cavity and a main cylinder rod cavity, the main cylinder rodless cavity is respectively communicated with an auxiliary cylinder A and an auxiliary cylinder B, and the auxiliary cylinder B is connected with a cold dryer, a gas storage tank and a screw air compressor.
2. The follower support device of claim 1, wherein: a piston rod is arranged in the main cylinder, and a rod cavity of the main cylinder is provided with an exhaust hole which is communicated with the atmosphere.
3. The compliant support apparatus of claim 1 wherein: the auxiliary cylinder A and the auxiliary cylinder B are both provided with drain valves, the auxiliary cylinder A is provided with a safety valve and a pressure gauge, and the auxiliary cylinder B is provided with an air inlet valve.
4. The follower support device of claim 1, wherein: and a filter member A is arranged between the auxiliary cylinder B and the cold dryer.
5. The compliant support apparatus of claim 4 wherein: the filter element a includes an S-stage filter and a P-stage filter.
6. The compliant support apparatus of claim 1 wherein: a filter element B is arranged between the air storage tank and the cold dryer.
7. The compliant support apparatus of claim 6 wherein: and the filter element B is a Q-stage filter.
8. The compliant support apparatus of claim 1 wherein: the upper part and the lower part of the main cylinder are respectively provided with a hinged support, and the hinged support at the lower part is hinged with a ground embedded part.
CN202221693080.XU 2022-07-04 2022-07-04 Follow-up supporting device Active CN218118166U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221693080.XU CN218118166U (en) 2022-07-04 2022-07-04 Follow-up supporting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221693080.XU CN218118166U (en) 2022-07-04 2022-07-04 Follow-up supporting device

Publications (1)

Publication Number Publication Date
CN218118166U true CN218118166U (en) 2022-12-23

Family

ID=84516195

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221693080.XU Active CN218118166U (en) 2022-07-04 2022-07-04 Follow-up supporting device

Country Status (1)

Country Link
CN (1) CN218118166U (en)

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