Oxygen busbar station building

By using connecting components and movable components in the oxygen bus station room, the problem of unstable connection between the oxygen bus and the station room is solved, and the effect of stable connection and convenient disassembly is achieved.

CN223242541UActive Publication Date: 2025-08-19ANHUI HUAYI ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202422610704.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-08-19
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

In the prior art, the connection effect between the oxygen busbar and the station building is poor, easy to shake, affecting the use effect.

Method used

The connecting components and movable components are adopted, including fixing plates, fixing clip seats, movable clip seats, hook plates, U-shaped seats, handles and connecting buckles. The oxygen bus body is fixed in the station building through the rotating shaft and the clamping structure, adapting to oxygen cylinders of different diameters, and stably connecting through the springs and spherical grooves of the movable components.

Benefits of technology

The stable connection between the oxygen busbar body and the station building is achieved, the connection effect is improved, the stability of oxygen supply and the convenient installation and disassembly process is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oxygen busbar station building which comprises a station building body, an oxygen busbar body, a connecting assembly and a movable assembly. The station house body comprises a house body and a house door. The two room doors are symmetrically and rotationally arranged on one side of the room body through hinges; the oxygen busbar body is connected with a room body through a connecting assembly; the connecting assembly comprises a fixed plate, a fixed clamping seat, a movable clamping seat, a hook-shaped plate, a U-shaped seat, a handle and a connecting buckle; the two fixing plates are symmetrically and fixedly arranged in the room body; the plurality of fixed clamping seats are connected with the fixed plate in a linear array through the movable components; the movable clamping seat is rotationally connected with the fixed clamping seat through a rotating shaft A; the hook-shaped plate is connected with the fixed clamping seat through the base A; the U-shaped seat is connected with the movable clamping seat through a base B; the handle is rotationally connected with the U-shaped seat through a rotating shaft; the connecting buckle is rotationally connected with the handle through a rotating shaft B; the oxygen busbar station building is simple and reasonable in structural design, the station building body and the oxygen busbar body can be stably connected, and the connecting effect is good.
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Description

Technical Field

[0001] The utility model relates to the technical field of oxygen busbars, in particular to an oxygen busbar station building. Background Art

[0002] An oxygen bus is a device for centralized gas supply or inflation. Its principle is to connect the oxygen in multiple oxygen cylinders to a main manifold through valves and conduits. After decompression and regulation, the oxygen is transported to the place of use or inflation point through a pipeline. This equipment not only ensures the stable and adjustable pressure of the oxygen source for gas-using appliances, but also achieves the purpose of uninterrupted gas supply. Oxygen busbars are widely used in hospitals, chemical industries, welding, electronics, scientific research institutions and other places.

[0003] For example, a station building provided by the Chinese utility model patent with publication number CN205618899U includes an exhaust duct, wherein the end of the exhaust duct is provided with a flange having a table top, the table top is provided with a through hole, a protective mesh cylinder is provided in the through hole, the protective mesh cylinder includes a filter cylinder and a filter cylinder bottom provided at the bottom of the filter cylinder, the top edge of the filter cylinder is provided with an outwardly protruding edge, the top inner side of the filter cylinder is provided with a handle, and the edge of the protective mesh cylinder is mounted on the table top and fixed by the retaining ring. The utility model can prevent animals such as mice and snakes from entering the exhaust duct and causing the exhaust duct to be blocked. In addition, the utility model is easy to install and disassemble, and after long-term use, accumulated dust and other debris can be cleaned at any time. Therefore, compared with the prior art, the utility model has the characteristics of preventing exhaust duct blockage and easy cleaning.

[0004] During the use of the oxygen bus, it is usually placed in the station building. However, in the existing technology, most stations and the oxygen bus are not fixed too much, and are only connected to the inner wall of the station building through the oxygen bus pipe. This not only easily causes the position of the oxygen bus to shake, but also affects the use effect of the oxygen bus station building. Utility Model Content

[0005] The purpose of the present invention is to provide an oxygen bus station building to solve the problem of poor connection between the station building and the oxygen bus bar proposed in the above background technology.

[0006] To achieve the above-mentioned objectives, the utility model provides the following technical solutions: an oxygen bus station building, comprising a station building body, an oxygen bus body, a connecting assembly and a movable assembly; the station building body comprises a building body and a building door; the two doors are symmetrically rotatable on one side of the building body through hinges; the oxygen bus body is connected to the building body through a connecting assembly; the connecting assembly comprises a fixed plate, a fixed clamp seat, a movable clamp seat, a hook-shaped plate, a U-shaped seat, a handle and a connecting buckle; the two fixed plates are symmetrically fixed in the building body; a plurality of the fixed clamp seats are connected to the fixed plate in a linear array through the movable assembly; the movable clamp seat is rotatably connected to the fixed clamp seat through a rotating axis A; an oxygen bus body oxygen cylinder clamping cavity is formed between the movable clamp seat and the fixed clamp seat; the hook-shaped plate is connected to the fixed clamp seat through a base A; the U-shaped seat is connected to the movable clamp seat through a base B; the handle is rotatably connected to the U-shaped seat through a rotating shaft; the connecting buckle is rotatably connected to the handle through a rotating axis B; the rotating axis B and the rotating axis are not in the same plane.

[0007] Preferably, the movable clamping seat and the fixed clamping seat are both arc-shaped structures, and the movable clamping seat and the fixed clamping seat form a complete circular ring structure.

[0008] Preferably, the connecting buckle is snap-fitted with the hook-shaped plate.

[0009] Preferably, the movable component includes a fixed block, a movable slot and a movable block; the fixed block is fixed on the fixed clamp seat; a plurality of movable slots are provided on the fixed plate in a linear array; the movable block is slidably arranged in the movable slot, and the end of the movable block passes through the movable slot and is fixedly connected to the end of the fixed block.

[0010] Preferably, the movable block is an isosceles trapezoidal structure, and the size of the movable block on the side close to the fixed block is smaller than the size of the movable block on the side away from the fixed block.

[0011] Preferably, the movable component also includes a connecting groove, a connecting ball, a connecting spring and a spherical groove; a connecting groove is opened in the movable block; the connecting ball is slidably arranged in the connecting groove, and the spherical surface of the connecting ball extends to the outside through the connecting groove; the two ends of the connecting spring are respectively fixedly connected to the inner wall of the connecting groove and the connecting ball; a spherical groove is opened in the movable groove; the connecting ball is snap-fitted with the spherical groove.

[0012] Preferably, the spherical surface of the connecting ball contacts the inner wall of the connecting groove.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] 1. The utility model sets a connecting component, places the oxygen cylinder on the oxygen bus body in the fixed clamp seat and contacts the fixed clamp seat, then rotates the movable clamp seat through the rotating shaft A until the movable clamp seat contacts the oxygen cylinder on the oxygen bus body, buckles the connecting buckle on the hook plate, and rotates the handle and the U-shaped seat through the rotating shaft, so that the connecting buckle rotates with the handle through the rotating shaft B until the connecting buckle is engaged with the hook plate. At this time, the position of the oxygen bus body is fixed. Compared with the existing technology, the structural design of the utility model is simple and reasonable, and the station body and the oxygen bus body can be stably connected, and the connection effect is better.

[0015] When the cam is in the air, the spring is released, and the cam is released, so that the spring is in the air and the cam is in the air, so that the spring is released, and the cam is in the air, so that the spring is released, and the cam is in the air, so that the spring is released, and the cam is in the air, so that the spring is released, and the cam is in the air, so that the spring is released. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 This is a cross-sectional view of the overall structure of the utility model;

[0018] Figure 3 This is a cross-sectional view of the fixed plate structure of the present utility model;

[0019] Figure 4 This is a partial structural sectional view of the present invention;

[0020] Figure 5 For the utility model Figure 2 Enlarged schematic diagram of point A in the middle.

[0021] In the picture:

[0022] 1. Station building; 2. Oxygen busbar; 3. Connection components; 4. Movable components;

[0023] 101. Room body; 102. Door;

[0024] 301, fixed plate; 302, fixed clamp seat; 303, movable clamp seat; 304, hook plate; 305, U-shaped seat; 306, handle; 307, connecting buckle;

[0025] 401, fixed block; 402, movable slot; 403, movable block; 404, connecting slot; 405, connecting ball; 406, connecting spring; 407, spherical slot. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] See also Figures 1 to 5The utility model provides a technical solution: an oxygen bus station, comprising a station body 1, an oxygen bus body 2, a connecting assembly 3 and a movable assembly 4; the station body 1 comprises a room body 101 and a door 102; the two doors 102 are symmetrically rotated on one side of the room body 101 through hinges; the oxygen bus body 2 is connected to the room body 101 through the connecting assembly 3; the connecting assembly 3 comprises a fixed plate 301, a fixed clamp seat 302, a movable clamp seat 303, a hook plate 304, a U-shaped seat 305, a handle 306 and a connecting buckle 307; the two fixed plates 301 are symmetrically fixed in the room body 101; the three fixed clamp seats 302 are connected to the fixed plates 301 in a linear array through the movable assembly 4 ; The movable clamp seat 303 is rotatably connected to the fixed clamp seat 302 through the rotating shaft A; the oxygen cylinder clamping cavity of the oxygen bus body 2 is formed between the movable clamp seat 303 and the fixed clamp seat 302; the hook plate 304 is connected to the fixed clamp seat 302 through the base A; the U-shaped seat 305 is connected to the movable clamp seat 303 through the base B; the handle 306 is rotatably connected to the U-shaped seat 305 through the rotating shaft; the connecting buckle 307 is rotatably connected to the handle 306 through the rotating shaft B; the rotating shaft B and the rotating shaft are not on the same plane; the movable clamp seat 303 and the fixed clamp seat 302 are both arc-shaped structures, and the movable clamp seat 303 and the fixed clamp seat 302 form a complete circular ring structure; the connecting buckle 307 is snap-fitted with the hook plate 304. By placing the oxygen cylinder on the oxygen bus body 2 in the fixed clamp seat 302 and making contact with the fixed clamp seat 302, then rotating the movable clamp seat 303 through the rotation axis A until the movable clamp seat 303 makes contact with the oxygen cylinder on the oxygen bus body 2, the connecting buckle 307 is buckled on the hook plate 304, and the handle 306 and the U-shaped seat 305 are rotated through the rotating shaft, and the connecting buckle 307 is rotated with the handle 306 through the rotation axis B until the connecting buckle 307 is engaged with the hook plate 304. At this time, the position of the oxygen bus body 2 is fixed.

[0028] As a preferred embodiment, the movable assembly 4 includes a fixed block 401, a movable groove 402, a movable block 403, a connecting groove 404, a connecting ball 405, a connecting spring 406 and a spherical groove 407; the fixed block 401 is fixed on the fixed clamp seat 302; six movable grooves 402 are provided in a linear array on the fixed plate 301; the movable block 403 is slidably provided in the movable groove 402, and the end of the movable block 403 passes through the movable groove 402 and is fixedly connected to the end of the fixed block 401; the movable block 403 is an isosceles trapezoidal structure, and the size of the movable block 403 close to the fixed block 401 is smaller than the size of the movable block 403 away from the fixed block 401; a connecting groove is provided in the movable block 403 404; the connecting ball 405 is slidably arranged in the connecting groove 404, and the spherical surface of the connecting ball 405 extends through the connecting groove 404 to the outside; the two ends of the connecting spring 406 are fixedly connected to the inner wall of the connecting groove 404 and the connecting ball 405 respectively; a spherical groove 407 is opened in the movable groove 402; the connecting ball 405 is snap-fitted with the spherical groove 407; the spherical surface of the connecting ball 405 contacts the inner wall of the connecting groove 404; when the side surface of the movable block 403 contacts the inner bottom surface of the movable groove 402, the connecting ball 405 is snap-fitted with the spherical groove 407; by fixing the multiple oxygen cylinders on the oxygen bus body 2 to the fixed plate 301, the multiple oxygen cylinders on the oxygen bus body 2 are integrated and the connection is more stable. According to the diameter of the oxygen cylinder fixed on the oxygen busbar body 2 as needed, move the fixing clamp 302 to move the fixed block 401 upward, and move the movable block 403 upward in the movable groove 402, so that the spherical surface of the connecting ball 405 squeezes the spherical groove 407, and the connecting ball 405 slides in the connecting groove 404, so that the connecting spring 406 is forced to shrink until the spherical surface of the connecting ball 405 contacts the inner wall of the movable groove 402. At this time, the connecting spring 406 no longer shrinks until the spherical surface of the connecting ball 405 no longer contacts the inner wall of the movable groove 402. At this time, the movable block 403 falls off and cooperates with the movable groove 402, and the disassembly is completed. Then, select a fixed clamp seat 302 with a suitable clamp cavity, insert the movable block 403 into the movable groove 402, move the fixed block 401 downward, move the movable block 403 downward in the movable groove 402, and make the spherical surface of the connecting ball 405 squeeze the notch of the movable groove 402, so that the connecting ball 405 slides in the connecting groove 404, and the connecting spring 406 is forced to shrink until the spherical surface of the connecting ball 405 contacts the inner wall of the movable groove 402. At this time, the connecting spring 406 no longer shrinks until the side of the movable block 403 contacts the inner bottom surface of the movable groove 402. At this time, the connecting ball 405 is engaged with the spherical groove 407 to complete the installation.

[0029] Working principle: When in use, first, according to the diameter size of the oxygen cylinder on the oxygen bus body 2 that needs to be fixed, move the fixed clamp seat 302, so that the fixed block 401 moves upward, and the movable block 403 moves upward in the movable groove 402, so that the spherical surface of the connecting ball 405 squeezes the spherical groove 407, and the connecting ball 405 slides in the connecting groove 404, so that the connecting spring 406 is forced to shrink until the spherical surface of the connecting ball 405 contacts the inner wall of the movable groove 402. At this time, the connecting spring 406 no longer shrinks until the spherical surface of the connecting ball 405 no longer contacts the inner wall of the movable groove 402. At this time, the movable block 403 falls off from the cooperation with the movable groove 402, and the disassembly is completed. Then, select the fixed clamp seat 302 with the appropriate clamp cavity, insert the movable block 403 into the movable groove 402, move the fixed block 401 downward, and move the movable block 403 downward in the movable groove 402, and make the spherical surface of the connecting ball 405 squeeze the movable The groove 402 is notched, so that the connecting ball 405 slides in the connecting groove 404, causing the connecting spring 406 to be forced to contract until the spherical surface of the connecting ball 405 contacts the inner wall of the movable groove 402. At this time, the connecting spring 406 no longer contracts until the side of the movable block 403 contacts the inner bottom surface of the movable groove 402. At this time, the connecting ball 405 is engaged with the spherical groove 407 to complete the installation. Next, the oxygen cylinder on the oxygen bus body 2 is placed in the fixed clamp seat 302 and contacts the fixed clamp seat 302. Then, the movable clamp seat 303 is rotated by the rotation axis A until the movable clamp seat 303 contacts the oxygen cylinder on the oxygen bus body 2. Then, the connecting buckle 307 is buckled on the hook plate 304, and the handle 306 and the U-shaped seat 305 are rotated by the rotation axis, so that the connecting buckle 307 is rotated with the handle 306 by the rotation axis B until the connecting buckle 307 is engaged with the hook plate 304. At this time, the position of the oxygen bus body 2 is fixed.

[0030] The above is the working process of the entire device, and the contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field.

[0031] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An oxygen bus station building, characterized in that: The invention comprises a station building body (1), an oxygen bus body (2), a connecting assembly (3) and a movable assembly (4); the station building body (1) comprises a building body (101) and a door (102); the two doors (102) are symmetrically rotated on one side of the building body (101) through hinges; the oxygen bus body (2) is connected to the building body (101) through a connecting assembly (3); the connecting assembly (3) comprises a fixed plate (301), a fixed clamp seat (302), a movable clamp seat (303), a hook plate (304), a U-shaped seat (305), a handle (306) and a connecting buckle (307); the two fixed plates (301) are symmetrically fixed in the building body (101); a plurality of fixed plates (301) are ... The fixed clamp seat (302) is connected to the fixed plate (301) in a linear array through a movable assembly (4); the movable clamp seat (303) is rotatably connected to the fixed clamp seat (302) through a rotation axis A; an oxygen bus body (2) oxygen cylinder clamping cavity is formed between the movable clamp seat (303) and the fixed clamp seat (302); the hook plate (304) is connected to the fixed clamp seat (302) through a base A; the U-shaped seat (305) is connected to the movable clamp seat (303) through a base B; the handle (306) is rotatably connected to the U-shaped seat (305) through a rotating shaft; the connecting buckle (307) is rotatably connected to the handle (306) through a rotating shaft B; the rotating shaft B and the rotating shaft are not on the same plane.

2. The oxygen bus station building according to claim 1, characterized in that: The movable clamping seat (303) and the fixed clamping seat (302) are both arc-shaped structures, and the movable clamping seat (303) and the fixed clamping seat (302) form a complete circular ring structure.

3. The oxygen bus station building according to claim 1, characterized in that: The connecting buckle (307) is snap-fitted with the hook-shaped plate (304).

4. The oxygen bus station building according to claim 2, characterized in that: The movable assembly (4) comprises a fixed block (401), a movable slot (402) and a movable block (403); the fixed block (401) is fixedly mounted on the fixed clamp seat (302); a plurality of movable slots (402) are provided on the fixed plate (301) in a linear array; the movable block (403) is slidably mounted in the movable slot (402), and an end portion of the movable block (403) passes through the movable slot (402) and is fixedly connected to an end portion of the fixed block (401).

5. The oxygen bus station building according to claim 4, characterized in that: The movable block (403) is an isosceles trapezoidal structure, and the size of the movable block (403) on the side close to the fixed block (401) is smaller than the size of the movable block (403) on the side away from the fixed block (401).

6. The oxygen bus station building according to claim 5, characterized in that: The movable assembly (4) further comprises a connecting groove (404), a connecting ball (405), a connecting spring (406) and a spherical groove (407); a connecting groove (404) is provided in the movable block (403); the connecting ball (405) is slidably arranged in the connecting groove (404), and the spherical surface of the connecting ball (405) extends to the outside through the connecting groove (404); two ends of the connecting spring (406) are fixedly connected to the inner wall of the connecting groove (404) and the connecting ball (405), respectively; a spherical groove (407) is provided in the movable groove (402); and the connecting ball (405) is snap-fitted with the spherical groove (407).

7. The oxygen bus station building according to claim 6, characterized in that: The spherical surface of the connecting ball (405) contacts the inner wall of the connecting groove (404).

Citation Information

Patent Citations

  • Room of standing

    CN205618899U