Mounting structure of oxygen generator assembly
By designing the installation structure of the oxygen generator components and utilizing a combination of components such as arc-shaped reinforcing plates and connecting plates, the problems of loosening and wear caused by external force vibration of the oxygen generator components were solved, thereby improving the stability and reliability of the equipment and extending its service life.
Patent Information
- Application Number
- CN202422864737.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Most existing oxygen generator components are unidirectionally fixed, making them susceptible to vibration and shaking due to external forces. This can lead to loose connections, gas leaks, or electric shocks, affecting equipment operating efficiency and reducing overall performance.
Design an installation structure that includes an oxygen generator body, a strip mounting plate, and a reinforcement module. Through the combination of components such as an arc-shaped reinforcement plate, a connecting plate, and a U-shaped frame, a stable support is provided to avoid the influence of external forces.
It improves the stability and reliability of the oxygen generator, reduces wear, extends equipment life, and ensures the overall performance and operational safety of the equipment.
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Figure CN223755113U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to installation structure field especially relates to an installation structure of oxygen generator assembly. BACKGROUND
[0002] Oxygen generator is the machine of making oxygen, its principle is to realize the oxygen production function using air separation technology, and the specific oxygen production process is to adopt the adsorption performance of molecular sieve, through the physical principle, with the large displacement oil -free compressor as the power, separates nitrogen and oxygen in air, and finally obtains high concentration oxygen, specifically, oxygen generator assembly includes compressor, oxygen storage and delivery structure and filter and the like, and the most important part of oxygen generator is compressor, this is used for compressing air to certain pressure to carry out adsorption separation in molecular sieve, and the performance and stability of compressor have great influence on the efficiency and life of oxygen generator.
[0003] The existing oxygen generator assembly is mostly one-way fixed installation, and if affected by external force, vibration and shaking may occur, which may cause the loosening or falling off of the connecting pipeline or cable, and further cause gas leakage or electric shock and other dangerous situations, affect the operation efficiency of the equipment, and the vibration and shaking may cause the abrasion of the internal components to be intensified, thereby reducing the overall performance of the equipment.
[0004] Therefore, in view of the above-mentioned existing oxygen generator assembly is mostly one-way fixed installation, if affected by external force, vibration and shaking may occur, which may increase the probability of dangerous situation, thereby affecting the operation efficiency of the equipment, and even reducing the overall performance of the equipment, an installation structure of oxygen generator assembly can be designed, a reinforcing structure is added outside the oxygen generator to reduce the influence of external force on the oxygen generator. CONTENT OF THE UTILITY MODEL
[0005] In order to overcome the problem that the existing oxygen generator assembly is mostly one-way fixed installation, if affected by external force, vibration and shaking may occur, which may increase the probability of dangerous situation, thereby affecting the operation efficiency of the equipment, and even reducing the overall performance of the equipment.
[0006] The utility model discloses a technical scheme for an installation structure of an oxygen generator assembly, comprising an oxygen generator body, a strip-shaped mounting plate and a reinforcing module. Two groups of strip-shaped mounting plates are horizontally arranged below the oxygen generator body to fixedly connect the oxygen generator body with the required position. A reinforcing module is arranged outside the oxygen generator body to reinforce the oxygen generator body and prevent it from being affected by external force. The reinforcing module comprises an arc-shaped reinforcing plate, two groups of which are horizontally arranged symmetrically. An arc-shaped rubber pad is fixedly installed on the inner side of the arc-shaped reinforcing plate. A connecting plate is symmetrically installed on both ends of the arc-shaped reinforcing plate. A connecting column is arranged in the middle of every two groups of connecting plates. A U-shaped frame is fixedly installed on the middle of the outer side of the arc-shaped reinforcing plate. A first rotating shaft is longitudinally arranged in the U-shaped frame. A second rectangular telescopic sleeve is arranged on the side of the U-shaped frame away from the arc-shaped reinforcing plate. The second rectangular telescopic sleeve is rotatably connected to the U-shaped frame through the first rotating shaft. A second rectangular telescopic column is arranged inside the second rectangular telescopic sleeve. Positioning pins are symmetrically arranged on both sides of the connection between the second rectangular telescopic column and the second rectangular telescopic sleeve. A rectangular mounting plate is arranged on the end of the second rectangular telescopic column away from the second rectangular telescopic sleeve. A second rotating shaft is longitudinally arranged on the end of the second rectangular telescopic column away from the second rectangular telescopic sleeve. The rectangular mounting plate is rotatably connected to the second rectangular telescopic column through the second rotating shaft.
[0007] Preferably, the position suitable for installing the oxygen generator body is selected. The strip-shaped mounting plate drives the oxygen generator body to be fixedly connected with the installation position. Then, the reinforcing module is arranged outside the oxygen generator body and is adjusted by rotation. Thus, the reinforcing module stably supports the oxygen generator body from both sides to prevent external force from affecting the oxygen generator body.
[0008] Preferably, two groups of first mounting holes are horizontally arranged on the strip-shaped mounting plate. First rectangular telescopic sleeves are fixedly installed on both sides of the upper end of the strip-shaped mounting plate. First rectangular telescopic columns fixedly connected with the oxygen generator body are arranged inside the first rectangular telescopic sleeves.
[0009] Preferably, fixed pins are symmetrically arranged on both sides of the connection between the first rectangular telescopic column and the first rectangular telescopic sleeve. A plurality of groups of fixing holes are linearly and symmetrically arranged on both sides of the first rectangular telescopic column. The fixed pins pass through the fixing holes of the first rectangular telescopic sleeve to be positioned and connected with the first rectangular telescopic column.
[0010] Preferably, first nuts are arranged outside both ends of the connecting column. Second nuts are arranged outside both ends of the first rotating shaft.
[0011] Preferably, a plurality of groups of positioning holes are symmetrically arranged on both sides of the second rectangular telescopic column. The positioning pins pass through the positioning holes of the second rectangular telescopic sleeve to be positioned and connected with the second rectangular telescopic column.
[0012] Preferably, third nuts are arranged outside both ends of the second rotating shaft.
[0013] Preferably, second mounting holes are arranged on the rectangular mounting plate.
[0014] The utility model discloses the beneficial effects have: select the position suitable for the installation of oxygen generator body, and the strip installation board drives oxygen generator body and fixed connection with the installation position, then the reinforcing module is covered in the outside of oxygen generator body, and the rotation is adjusted, thereby reinforcing module is firmly supported from the both sides of oxygen generator body, avoids the influence that external force causes to oxygen generator body, through this method, can ensure the stable support of oxygen generator, prevents the loosening or damage caused by vibration or external force impact, this helps to improve the overall stability and reliability of equipment, reduces the wear and tear in the equipment, prolongs the service life of equipment, improves the overall performance of equipment. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 The overall structure schematic diagram of the installation structure of the utility model is shown.
[0016] Figure 2 The strip installation plate structure schematic diagram of the installation structure of the utility model is shown.
[0017] Figure 3 The arc reinforcing plate structure schematic diagram of the installation structure of the utility model is shown.
[0018] Figure 4 The second rectangular telescopic sleeve structure schematic diagram of the installation structure of the utility model is shown.
[0019] The figure mark explanation: 1, oxygen generator body, 2, strip installation board, 201, first installation hole, 202, first rectangular telescopic sleeve, 203, first rectangular telescopic column, 204, fixed pin, 205, fixed hole, 301, arc reinforcing plate, 302, arc rubber pad, 303, connecting plate, 304, connecting column, 305, first nut, 306, U type frame, 307, first rotating shaft, 308, second nut, 309, second rectangular telescopic sleeve, 310, second rectangular telescopic column, 311, positioning pin, 312, positioning hole, 313, rectangular installation plate, 314, second installation hole, 315, second rotating shaft, 316, third nut. DETAILED DESCRIPTION
[0020] The utility model will be further explained below in connection with the drawings and examples.
[0021] Please refer to Figures 1-4The utility model provides a kind of mounting structure of oxygen generator assembly: an oxygen generator assembly mounting structure, including oxygen generator body 1, strip mounting plate 2 and reinforcing module;Two groups of strip mounting plate 2 for fixing and connecting oxygen generator body 1 with the position required are horizontally provided below oxygen generator body 1, reinforcing module for reinforcing oxygen generator body 1 to avoid its influence by external force is provided outside oxygen generator body 1, reinforcing module includes arc reinforcing plate 301, two groups of arc reinforcing plate 301 are horizontally provided, arc reinforcing plate 301 inside fixed mounting has arc rubber pad 302, connecting plate 303 is symmetrically installed at the both ends of arc reinforcing plate 301, connecting column 304 is provided in the middle of every two groups of connecting plate 303 that adhere, U-shaped frame 306 is fixedly installed in the middle of the outside of arc reinforcing plate 301, first rotating shaft 307 is longitudinally provided in U-shaped frame 306, second rectangular telescopic sleeve 309 is provided on the side of U-shaped frame 306 away from arc reinforcing plate 301, second rectangular telescopic sleeve 309 is rotatably connected with U-shaped frame 306 by first rotating shaft 307, second rectangular telescopic column 310 is provided in second rectangular telescopic sleeve 309, positioning pin 311 is symmetrically provided at the both sides of the junction of second rectangular telescopic column 310 and second rectangular telescopic sleeve 309, rectangular mounting plate 313 is provided at the end of second rectangular telescopic column 310 away from second rectangular telescopic sleeve 309, second rotating shaft 315 is longitudinally provided at the end of second rectangular telescopic column 310 away from second rectangular telescopic sleeve 309, rectangular mounting plate 313 is rotatably connected with second rectangular telescopic column 310 by second rotating shaft 315.
[0022] Please refer to Figure 2 In the embodiment, two groups of first mounting holes 201 are horizontally provided on strip mounting plate 2, first rectangular telescopic sleeve 202 is fixedly installed at the both sides of the upper end of strip mounting plate 2, first rectangular telescopic column 203 fixedly connected with oxygen generator body 1 is provided in first rectangular telescopic sleeve 202, first choose the position suitable for installing oxygen generator body 1, then pass bolt through first mounting hole 201, so that strip mounting plate 2 drives oxygen generator body 1 to be fixedly connected with installation position, fixed pin 204 is symmetrically provided at the both sides of the junction of first rectangular telescopic column 203 and first rectangular telescopic sleeve 202, a plurality of fixed holes 205 are linearly and symmetrically provided at the both sides of first rectangular telescopic column 203, fixed pin 204 passes through fixed hole 205 in first rectangular telescopic sleeve 202 and is positioned and connected with first rectangular telescopic column 203, according to the need of installation, by the adjustment of fixed pin 204, first rectangular telescopic column 203 drives oxygen generator body 1 to move vertically along first rectangular telescopic sleeve 202 to appropriate height, after confirming that the height is correct, pick up fixed pin 204, pass it through fixed hole 205 in first rectangular telescopic sleeve 202 and be positioned and connected with first rectangular telescopic column 203, thereby completing preliminary fixation.
[0023] Please refer to Figures 3-4In the embodiment, the first nut 305 is sleeved outside the connecting column 304, the second nut 308 is sleeved outside the second rotating shaft 307, the arc-shaped reinforcing plate 301 is placed on the both sides of the oxygen generator body 1, the connecting column 304 is inserted into the connecting plate 303, the first nut 305 is tightened, the second rectangular telescopic column 310 is positioned and connected with the second rectangular telescopic sleeve 309 through the positioning hole 312 and the positioning pin 311, the second rectangular telescopic column 310 drives the rectangular mounting plate 313 to move downward along the second rectangular telescopic sleeve 309, the positioning pin 311 is inserted into the second rectangular telescopic sleeve 309 through the positioning hole 312 and the second rectangular telescopic column 310 is positioned and connected, the third nut 316 is sleeved outside the second rotating shaft 315, the second nut 308 is loosened, the second rectangular telescopic sleeve 309 is rotated to the appropriate angle through the first rotating shaft 307 and the U-shaped frame 306, the third nut 316 is loosened, the rectangular mounting plate 313 is rotationally connected with the second rectangular telescopic column 310 through the second rotating shaft 315, the bolt is inserted into the second mounting hole 314, and the rectangular mounting plate 313 is fixedly connected with the ground.
[0024] In the working process, the position suitable for installing the oxygen generator body 1 is selected, the bolt is inserted into the first mounting hole 201, the strip-shaped mounting plate 2 drives the oxygen generator body 1 to be fixedly connected with the installation position, the first rectangular telescopic column 203 drives the oxygen generator body 1 to move vertically along the first rectangular telescopic sleeve 202 to the appropriate height through the adjustment of the fixing pin 204, the fixing pin 204 is inserted into the first rectangular telescopic sleeve 202 through the fixing hole 205 and the first rectangular telescopic column 203 is positioned and connected, and the preliminary fixing is completed.
[0025] When the preliminary fixing of the oxygen generator body 1 is completed, the arc-shaped reinforcing plate 301 is placed on the both sides of the oxygen generator body 1, the connecting column 304 is inserted into the connecting plate 303, and the first nut 305 is tightened to complete the assembly of the two arc-shaped reinforcing plates 301.
[0026] After assembly, according to the distance between the oxygen generator body 1 and the ground, loosen the second nut 308, so that the second rectangular telescopic sleeve 309 is rotated to the appropriate angle through the first rotating shaft 307 and the U-shaped frame 306, at the same time, loosen the third nut 316, the rectangular mounting plate 313 is connected through the second rotating shaft 315 and the second rectangular telescopic column 310, so that the rectangular mounting plate 313 is always parallel to the ground, then adjust the positioning pin 311, the second rectangular telescopic column 310 drives the rectangular mounting plate 313 to move downward along the second rectangular telescopic sleeve 309, so that the rectangular mounting plate 313 constantly fits the ground, then pick up the bolt and pass it through the second mounting hole 314, the rectangular mounting plate 313 is fixedly connected with the ground, after confirming that there is no error, tighten the first nut 305 and the second nut 308 in turn, then pass the positioning pin 311 through the positioning hole 312 and the second rectangular telescopic column 310 to positionally connect, thereby further reinforcing.
[0027] Through the above steps, select a suitable position for installing the oxygen generator body 1, the strip-shaped mounting plate 2 drives the oxygen generator body 1 to be fixedly connected with the installation position, then the reinforcing module is sleeved on the outside of the oxygen generator body 1, and is adjusted in rotation, so that the reinforcing module stably supports the oxygen generator body 1 from both sides, avoiding the influence of external force on the oxygen generator body 1. By this method, the stable support of the oxygen generator can be ensured, and loosening or damage caused by vibration or external force impact can be prevented, which helps to improve the overall stability and reliability of the equipment, reduce the wear and tear inside the equipment, prolong the service life of the equipment, and improve the overall performance of the equipment. To solve the problem that most of the existing oxygen generator assemblies are fixedly installed in one direction, and may vibrate and shake if affected by external force, which may increase the probability of dangerous situations, thereby affecting the operating efficiency of the equipment, and even reducing the overall performance of the equipment.
Claims
1. An installation structure for an oxygen concentrator assembly, comprising an oxygen concentrator body (1); characterized in that: It also includes strip mounting plates (2) and reinforcement modules; two sets of strip mounting plates (2) are horizontally arranged below the oxygen generator body (1) for fixing the oxygen generator body (1) to the required position; the oxygen generator body (1) is covered with a reinforcement module for reinforcing the oxygen generator body (1) to prevent it from being affected by external forces. The reinforcement module includes an arc-shaped reinforcement plate (301), two sets of arc-shaped reinforcement plates (301) are arranged horizontally and symmetrically. An arc-shaped rubber pad (302) is fixedly installed on the inner side of the arc-shaped reinforcement plate (301). Connecting plates (303) are symmetrically installed at both ends of the arc-shaped reinforcement plate (301). A connecting column (304) is passed through the middle of each pair of connecting plates (303) that are in contact with each other. A U-shaped frame (306) is fixedly installed on the middle of the outer side of the arc-shaped reinforcement plate (301). A first U-shaped frame (306) is passed through the longitudinal side of the U-shaped frame (306). A pivot (307) is provided. A second rectangular telescopic sleeve (309) is provided on the side of the U-shaped frame (306) away from the arc-shaped reinforcing plate (301). The second rectangular telescopic sleeve (309) is rotatably connected to the U-shaped frame (306) through the first pivot (307). A second rectangular telescopic column (310) is provided inside the second rectangular telescopic sleeve (309). Positioning pins (311) are symmetrically provided on both sides of the connection between the second rectangular telescopic column (310) and the second rectangular telescopic sleeve (309). A rectangular mounting plate (313) is provided at the end of the second rectangular telescopic column (310) away from the second rectangular telescopic sleeve (309). A second pivot (315) is longitudinally inserted at the end of the second rectangular telescopic column (310) away from the second rectangular telescopic sleeve (309). The rectangular mounting plate (313) is rotatably connected to the second rectangular telescopic column (310) through the second pivot (315).
2. The installation structure of an oxygen generator component according to claim 1, characterized in that: Two sets of first mounting holes (201) are opened horizontally on the strip mounting plate (2). A first rectangular telescopic sleeve (202) is fixedly installed on each of the two sides of the upper end of the strip mounting plate (2). A first rectangular telescopic column (203) fixedly connected to the oxygen generator body (1) is sleeved inside the first rectangular telescopic sleeve (202).
3. The installation structure of an oxygen generator component according to claim 2, characterized in that: The first rectangular telescopic column (203) and the first rectangular telescopic sleeve (202) are symmetrically provided with fixing pins (204) on both sides. The first rectangular telescopic column (203) has multiple sets of fixing holes (205) symmetrically opened on both sides. The fixing pins (204) pass through the first rectangular telescopic sleeve (202) and are positioned and connected to the first rectangular telescopic column (203) through the fixing holes (205).
4. The installation structure of an oxygen generator component according to claim 1, characterized in that: A first nut (305) is fitted on the outside of each end of the connecting column (304), and a second nut (308) is fitted on the outside of each end of the first rotating shaft (307).
5. The installation structure of an oxygen generator component according to claim 1, characterized in that: The second rectangular telescopic column (310) has multiple sets of positioning holes (312) symmetrically opened on both sides. The positioning pin (311) passes through the second rectangular telescopic sleeve (309) and is positioned and connected to the second rectangular telescopic column (310) through the positioning holes (312).
6. The installation structure of an oxygen generator component according to claim 1, characterized in that: The second shaft (315) has a third nut (316) fitted on the outside of each end.
7. The installation structure of an oxygen generator component according to claim 1, characterized in that: A second mounting hole (314) is provided on the rectangular mounting plate (313).