CN222949543U - Reinforcing device for reinforced concrete beam column - Google Patents
Reinforcing device for reinforced concrete beam column Download PDFInfo
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- CN222949543U CN222949543U CN202422160430.1U CN202422160430U CN222949543U CN 222949543 U CN222949543 U CN 222949543U CN 202422160430 U CN202422160430 U CN 202422160430U CN 222949543 U CN222949543 U CN 222949543U
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Abstract
The utility model relates to the technical field of concrete structure reinforcement, in particular to a reinforcement device for reinforced concrete beam columns, which comprises a support beam, wherein a cross beam is fixed at the top of the support beam, a vertical support plate is arranged at the left part of the support beam, the top of the support beam is rotationally connected with a reinforcement plate through a rotating shaft, stabilizing plates are arranged at the left side and the right side of the reinforcement plate, side fixing plates are arranged at the top of each stabilizing plate, support plates are fixed at the inner sides of the vertical support plate and the reinforcement plate, a connecting plate is arranged in each support plate, a bottom rotating shaft is fixed at the upper end of the bottom of the connecting plate, and a top rotating shaft is fixed at the lower end of the top of the connecting plate.
Description
Technical Field
The utility model belongs to the technical field of reinforcement of concrete structures, and particularly relates to a reinforcement device for reinforced concrete beams and columns.
Background
Reinforced concrete is used as a main structural material of modern buildings, and the unique structural strength and durability of the reinforced concrete make the reinforced concrete the first choice material for high-rise buildings, bridges, tunnels and other projects. However, with the increase of service life and the frequent occurrence of natural disasters (such as earthquakes and wind disasters), reinforcement of reinforced concrete structures has become an important issue.
However, most of the existing reinforcing devices are simply to fix steel plates at the bottom of a concrete beam, the reinforcing effect is poor in the mode, and meanwhile, the mode cannot be applicable to supporting beams and cross beams with different included angles, so that the application range of equipment is low.
Disclosure of utility model
Aiming at the situation, in order to overcome the defects of the prior art, the utility model provides a reinforcing device for a reinforced concrete beam column, which effectively solves the problems in the background art.
The technical scheme is that the reinforcing device for the reinforced concrete beam column comprises a supporting beam, wherein a cross beam is fixed at the top of the supporting beam, a ceiling is fixed at the top of the cross beam, a vertical supporting plate is arranged at the left part of the supporting beam, the vertical supporting plate is fixedly connected with the supporting beam through a plurality of positioning screws, the top of the supporting beam is rotatably connected with a reinforcing plate through a rotating shaft, the reinforcing plate is tightly attached to the bottom surface of the cross beam, stabilizing plates are arranged at the left side and the right side of the reinforcing plate, side fixing plates are arranged at the top of each stabilizing plate, reinforcing screws are slidably connected at the rear ends of the stabilizing plates and the rear ends of the side fixing plates, two side reinforcing nuts are arranged at the front ends of the stabilizing plates and the front ends of the side fixing plates, side reinforcing gears are fixed at the front ends of each side reinforcing nut, supporting plates are fixed at the inner sides of the vertical supporting plates and the reinforcing plates, connecting plates are arranged inside the supporting plates, a bottom rotating shaft is fixedly arranged at the upper end of each connecting plate, a top rotating shaft is fixedly arranged at the lower end of each connecting plate, a rotating shaft is arranged between the bottom rotating shaft and the rotating shaft, a screw thread ring is oppositely arranged at the top rotating shaft.
Preferably, a plurality of anti-slip heads are fixed on the right side of the vertical supporting plate, each supporting plate is connected with the connecting plate in a rotating mode through a supporting shaft, the rotating heads are fixed on the outer portion of the rotating ring, bottom internal threads are arranged at the lower end of the rotating ring, the bottom internal threads are connected with the bottom rotating shaft in a meshed mode, top internal threads are arranged at the upper end inside the rotating ring, the top internal threads are connected with the top rotating shaft in a meshed mode, and the top internal threads are opposite to the bottom internal threads.
Preferably, each stabilizing plate is provided with two vertical threaded holes of the adapting plate, each vertical threaded hole of the adapting plate is internally connected with an adapting screw in a meshed manner, an adapting bearing is fixed at the top of each adapting screw, an outer ring of each adapting bearing is fixedly connected with a side fixing plate at the top of each adapting bearing, and an adapting nut is fixed at the bottom of each adapting screw.
Preferably, each stabilizing plate is further provided with two transverse through holes of the adapting plate, each side fixing plate is provided with two transverse through holes of the side reinforcing plate, the front end of each reinforcing screw is fixed with a side reinforcing shaft, the bottom of each side reinforcing shaft is in sliding connection with the transverse through holes of the adapting plate, and the top of each side reinforcing shaft is in sliding connection with the transverse through holes of the side reinforcing plate.
Preferably, each side reinforcing shaft is in meshed connection with the outer side reinforcing nut, and a side reinforcing gear positioning ring is connected to the outer side of each upper group and the outer side of each lower group of side reinforcing gears in a sliding manner.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, the rotating ring can be rotated by rotating the rotating head, so that the bottom rotating shaft is meshed with the bottom internal thread, the top rotating shaft is meshed with the top internal thread, the included angle between the vertical supporting plate and the reinforcing plate can be changed, the supporting beams and the cross beams with different included angles are adapted, the purpose of supporting the reinforcing plate can be achieved, the purpose of reinforcing the bottom surface of the cross beam is achieved, the reinforcing effect is ensured, and the reinforcing accuracy is ensured.
According to the utility model, the adapting nut drives the adapting bearing to rotate along the vertical threaded hole of the adapting plate in the stabilizing plate, so that the side fixing plate is driven to move up and down, at the moment, the adapting screw can be ensured to rotate and the side fixing plate can be ensured to move up and down due to the action of the adapting bearing, so that the side fixing plate can be adapted to ceilings with different heights, the using range of equipment is increased, and the reinforcing effect of the side face of the ceilings is ensured.
According to the utility model, the side reinforcing nuts rotate to enable the two side fixing plates to clamp the side face of the ceiling, and further the side reinforcing gear positioning ring is clamped with the side reinforcing gear to prevent the side reinforcing gear from rotating, so that the side reinforcing nuts can be prevented from rotating, the two side fixing plates are prevented from moving, the reinforcing effect of the side fixing plates is ensured, and meanwhile, the stability of the whole equipment is ensured.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model.
In the drawings:
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a rear schematic view of the present utility model;
FIG. 3 is a schematic view of a reinforcement mechanism according to the present utility model;
FIG. 4 is a schematic view of a positioning mechanism according to the present utility model;
FIG. 5 is an enlarged schematic view of the positioning mechanism of the present utility model;
FIG. 6 shows the present utility model the interior of the rotating ring is schematically shown.
The device comprises a 1-supporting beam, a 2-vertical supporting plate, a 3-supporting plate, a 4-reinforcing plate, a 5-stabilizing plate, a 6-side fixing plate, a 7-reinforcing screw, a 101-cross beam, a 102-ceiling, a 201-positioning screw, a 202-anti-slip head, a 203-rotating shaft, a 301-supporting shaft, a 302-connecting plate, a 303-bottom rotating shaft, a 304-top rotating shaft, a 305-rotating ring, a 306-rotating head, a 307-bottom internal thread, a 308-top internal thread, a 401-reinforcing plate through hole, a 501-adapting nut, a 502-adapting bearing, a 503-adapting screw, a 504-adapting plate transverse through hole, a 505-adapting plate vertical threaded hole, a 601-side reinforcing plate through hole, a 701-side reinforcing shaft, a 702-side reinforcing nut, a 703-side reinforcing gear and a 704-side reinforcing gear positioning ring.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
In one embodiment, the method is described in FIGS. 1-3, Fig. 5 shows that the utility model comprises a supporting beam 1, wherein the supporting beam 1 is formed by concrete pouring, the supporting beam 1 is used for supporting the cross beam 101, the cross beam 101 is fixed at the top of the supporting beam 1, the cross beam 101 is formed by concrete pouring, the cross beam 101 is used for supporting the ceiling 102, the ceiling 102 is fixed at the top of the cross beam 101, the left part of the supporting beam 1 is provided with a vertical supporting plate 2, the vertical supporting plate 2 is made of alloy materials, the vertical supporting plate 2 is used for supporting the reinforcing plate 4, the vertical supporting plate 2 is fixedly connected with the supporting beam 1 through a plurality of positioning screws 201, the positioning screws 201 are used for fixing the vertical supporting plate 2, the top of the supporting beam 1 is rotationally connected with the reinforcing plate 4 through a rotating shaft 203, the reinforcing plate 4 is made of alloy materials, the reinforcing plate 4 is used for reinforcing the bottom surface of the cross beam 101, the reinforcing plate 4 is tightly attached to the bottom surface of the cross beam 101, the left side and the right side of the reinforcing plate 4 are respectively provided with a stabilizing plate 5, the stabilizing plates 5 are made of alloy materials, the stabilizing plates 5 are used for positioning the side fixing plates 6, the top of each stabilizing plate 5 is provided with a side fixing plate 6, the side fixing plates 6 are made of alloy materials, the side fixing plates 6 are used for reinforcing the side surface of the cross beam 101, the rear ends of the stabilizing plates 5 and the rear ends of the side fixing plates 6 are slidably connected with reinforcing screws 7, the reinforcing screws 7 are made of alloy materials, the reinforcing screws 7 are used for fixing the side reinforcing shafts 701, the front ends of the stabilizing plates 5 and the front ends of the side fixing plates 6 are respectively provided with two side reinforcing nuts 702, the side reinforcing nuts 702 are made of alloy materials, the side reinforcing nuts 702 are used for positioning front ends, the stabilizing plates 5 and front ends the side fixing plates 6, side reinforcing gears 703 are fixed at the front ends of the side reinforcing nuts 702, the side reinforcing gears 703 are made of alloy materials, the side reinforcing gears 703 are used for positioning the side reinforcing nuts 702 at the rear parts of the side reinforcing gears 703, the vertical supporting plates 2 and the inner sides of the reinforcing plates 4 are fixedly provided with supporting plates 3, the supporting plates 3 are made of alloy materials, the supporting plates 3 are used for positioning the connecting plates 302, each supporting plate 3 is internally provided with a connecting plate 302, the connecting plates 302 are made of alloy materials, the connecting plates 302 are used for fixing the bottom rotating shafts 303 and the top rotating shafts 304, the bottom rotating shafts 303 are fixed at the upper ends of the connecting plates 302, the bottom rotating shafts 303 are made of alloy materials, the top rotating shafts 304 are fixed at the lower ends of the connecting plates 302, the top rotating shafts 304 are made of alloy materials, the bottom rotating shafts 303 and the top rotating shafts 304 are in opposite threads, a rotating ring 305 is arranged between the bottom rotating shafts 303 and the top rotating shafts 304, the connecting plates 305 are made of alloy materials, the bottom rotating shafts 303 are made of alloy materials, and the top rotating shafts 303 are made of alloy materials, the top rotating shaft 304 and the rotating ring 305 cooperate to change the included angle between the vertical support plate 2 and the reinforcing plate 4, so as to adapt to the support beam 1 and the cross beam 101 with different included angles, and simultaneously achieve the purpose of supporting the reinforcing plate 4, thereby achieving the purpose of reinforcing the cross beam 101.
In a second embodiment, as shown in fig. 4 and fig. 6, on the basis of the first embodiment, a plurality of anti-slip heads 202 are fixed on the right side of the vertical support plate 2, the anti-slip heads 202 are made of alloy materials, the anti-slip heads 202 are used for increasing friction force between the vertical support plate 2 and the support beam 1, thereby increasing stability of the vertical support plate 2, each support plate 3 is rotationally connected with the connecting plate 302 inside the support plate through a support shaft 301, a rotating head 306 is fixed outside the rotating ring 305, the rotating head 306 is made of alloy materials, the rotating head 306 is convenient to rotate the rotating ring 305, the inner lower end of the rotating ring 305 is provided with a bottom internal thread 307, the bottom internal thread 307 is made of alloy materials, the inner upper end of the rotating ring 305 is provided with a top internal thread 308, the top internal thread 308 is made of alloy materials, the top internal thread 308 is in meshed connection with the top rotating shaft 304, the top internal thread 308 is in opposite direction with the bottom internal thread 307, each upper plate 505 is provided with a side adapting plate 505, each adapting plate is provided with a side adapting plate 501, each adapting plate is further provided with a side adapting plate 501, each adapting plate is provided with a side adapting nut is meshed with a side adapting plate, and each adapting plate is provided with a side adapting nut is meshed with a side adapting nut, and each adapting plate is provided with a side adapting plate is meshed with a side adapting nut, and each adapting plate is equipped with a side adapting nut is equipped with a side adapting plate is respectively, and a side adapting plate is equipped with a adapting nut is equipped with a adapting plate is respectively, and a adapting plate is equipped with a adapting plate is respectively. The adapter plate transverse through holes 504 facilitate sliding of the side reinforcing shafts 701, each side fixing plate 6 is provided with two side reinforcing plate through holes 601, each side reinforcing plate through hole 601 facilitates sliding of the top side reinforcing shaft 701, the front end of each reinforcing screw 7 is fixedly provided with a side reinforcing shaft 701, each side reinforcing shaft 701 is made of an alloy material, each side reinforcing shaft 701 is used for connecting two stabilizing plates 5 and two side fixing plates 6, the bottom side reinforcing shaft 701 is in sliding connection with the adapter plate transverse through holes 504, the top side reinforcing shaft 701 is in sliding connection with the side reinforcing plate through holes 601, each side reinforcing shaft 701 is in meshed connection with a side reinforcing nut 702 outside the side reinforcing shaft 701, each side reinforcing gear 703 is in sliding connection with a side reinforcing gear positioning ring 704 outside the top and bottom side reinforcing shafts, each side reinforcing gear positioning ring 704 is internally provided with a tooth buckle, each side reinforcing gear positioning ring is made of an alloy material, and each side reinforcing gear positioning ring 704 is used for positioning the side reinforcing gears 703 so as to prevent the side reinforcing gears 703 from rotating;
When the device is used, a worker drills holes on the supporting beam 1 according to the size of the vertical supporting plate 2 and installs expansion screws in the holes, the worker further makes the vertical supporting plate 2 closely attached to the supporting beam 1 through a plurality of positioning screws 201, the vertical supporting plate 2 can be prevented from sliding due to the function of the anti-slip heads 202, the worker further rotates two rotating heads 306, thereby rotating the rotating ring 305, thereby engaging the bottom internal screw 307 with the bottom rotating shaft 303, simultaneously engaging the top internal screw 308 with the top rotating shaft 304, thereby enabling the distance between the top rotating shaft 304 and the bottom rotating shaft 303 to be variable, the connecting plate 302 can be reversed due to the function of the supporting shaft 301, the reinforcing plate 4 can be rotated due to the function of the rotating shaft 203, so that the reinforcing plate 4 is tightly attached to the bottom surface of the cross beam 101, the support beams 1 and the cross beam 101 with different angles are adapted, the purpose of reinforcing the bottom surface of the cross beam 101 is achieved, further, the worker drills through holes according to the height of the cross beam 101, further, the worker installs two stabilizing plates 5 on both sides of the cross beam 101, at this time, the worker rotates the plurality of adapting nuts 501 together so that the plurality of adapting screws 503 are engaged with the stabilizing plates 5 outside the adapting nuts, thereby enabling the two side fixing plates 6 to move up and down, thereby adapting the cross beam 101 with different heights, thereby enabling the side fixing plates 6 to be positioned in the middle position of the cross beam 101, thereby ensuring the side reinforcing effect, further, the worker inserts the plurality of side reinforcing shafts 701 into the adapting plate transverse through holes 504 and the side reinforcing plate through holes 601, so that the stabilizer plate 5 and the front end are penetrated out from the front side of the side fixing plate 6, the side reinforcing nuts 702 are sequentially rotated outside the side reinforcing shafts 701 by a further worker, so that the two side fixing plates 6 are close to each other, the side of the cross beam 101 is clamped, the purpose of reinforcing the side of the cross beam 101 is achieved, the side reinforcing gears 703 are clamped by the further worker, the upper side reinforcing gear 703 and the lower side reinforcing gear 703 are relatively fixed, the side reinforcing gears 703 are prevented from rotating, the side reinforcing nuts 702 are prevented from rotating, and the reinforcing effect of the side fixing plates 6 is ensured.
The working flow of the utility model is as follows: when the device is used, a worker drills holes on the supporting beam 1 according to the size of the vertical supporting plate 2 and installs expansion screws in the holes, the worker further makes the vertical supporting plate 2 closely contact with the supporting beam 1 through a plurality of positioning screws 201, the vertical supporting plate 2 can be prevented from sliding due to the function of the anti-slip heads 202, the worker further rotates two rotating heads 306, thereby rotating the rotating ring 305, thereby engaging the bottom internal screw 307 with the bottom rotating shaft 303, simultaneously engaging the top internal screw 308 with the top rotating shaft 304, thereby enabling the distance between the top rotating shaft 304 and the bottom rotating shaft 303 to be variable, and the connecting plate 302 can be reversed due to the function of the supporting shaft 301, at this time, the reinforcing plate 4 is rotated by the rotation shaft 203, so that the reinforcing plate 4 is tightly attached to the bottom surface of the cross beam 101, and the supporting beams 1 and the cross beam 101 with different included angles are adapted, so as to achieve the purpose of reinforcing the bottom surface of the cross beam 101, further, the staff drills through holes according to the height of the cross beam 101, further, the staff installs two stabilizing plates 5 on both sides of the cross beam 101, at this time, the staff rotates a plurality of adapting nuts 501 together to enable a plurality of adapting screws 503 to be meshed with the stabilizing plates 5 outside the same, so that the two side fixing plates 6 are moved up and down, so as to adapt the cross beam 101 with different heights, so that the side fixing plates 6 are positioned in the middle position of the cross beam 101, thereby ensuring the side reinforcing effect, further staff inserts a plurality of lateral part reinforcing shafts 701 into the inside of the transverse through holes 504 of the adapting plate and the through holes 601 of the lateral part reinforcing plates, so that the front end of the stabilizing plate 5 and the front end of the lateral part fixing plate 6 penetrate out, further staff rotates the lateral part reinforcing nuts 702 outside the lateral part reinforcing shafts 701 in sequence, so that the two lateral part fixing plates 6 are close to each other, thereby clamping the lateral surface of the cross beam 101, thereby achieving the purpose of reinforcing the lateral surface of the cross beam 101, and further staff clamps the two lateral part reinforcing gear positioning rings 704 outside the lateral part reinforcing gears 703, thereby fixing the upper and lower lateral part reinforcing gears 703 relatively, preventing the lateral part reinforcing gears 703 from rotating, preventing the lateral part reinforcing nuts 702 from rotating, and ensuring the reinforcing effect of the lateral part fixing plates 6.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (5)
1. A reinforcing device for reinforced concrete beams and columns is characterized by comprising a supporting beam (1), wherein a cross beam (101) is fixed at the top of the supporting beam (1), a ceiling (102) is fixed at the top of the cross beam (101), a vertical supporting plate (2) is arranged at the left part of the supporting beam (1), the vertical supporting plate (2) is fixedly connected with the supporting beam (1) through a plurality of positioning screws (201), a reinforcing plate (4) is rotatably connected at the top of the supporting beam (1) through a rotating shaft (203), the reinforcing plate (4) is tightly attached to the bottom surface of the cross beam (101), stabilizing plates (5) are arranged at the left side and the right side of the reinforcing plate (4), side fixing plates (6) are arranged at the top of each stabilizing plate (5), reinforcing screws (7) are slidably connected at the rear sides of the stabilizing plates (5) and the rear ends of the side fixing plates (6), two side reinforcing nuts (702) are respectively arranged at the front sides of the stabilizing plates (5) and the front ends of the side fixing plates (6), reinforcing plates (702) are fixedly provided with reinforcing side fixing gears (703), the inner side fixing plates (3) are arranged at the inner sides of the supporting plates (3), the bottom rotating shaft (303) is fixed at the upper end of the connecting plate (302), the top rotating shaft (304) is fixed at the lower end of the connecting plate (302), the threads of the bottom rotating shaft (303) and the threads of the top rotating shaft (304) are opposite, and a rotating ring (305) is arranged between the bottom rotating shaft (303) and the top rotating shaft (304).
2. A reinforcing apparatus for reinforced concrete beam columns according to claim 1, wherein a plurality of anti-slip heads (202) are fixed on the right side of the vertical support plate (2), each support plate (3) is rotatably connected with the connecting plate (302) inside the vertical support plate through a support shaft (301), a rotating head (306) is fixed outside the rotating ring (305), a bottom internal thread (307) is arranged at the lower end inside the rotating ring (305), the bottom internal thread (307) is in meshed connection with the bottom rotating shaft (303), a top internal thread (308) is arranged at the upper end inside the rotating ring (305), the top internal thread (308) is in meshed connection with the top rotating shaft (304), and the top internal thread (308) is opposite to the bottom internal thread (307).
3. The reinforcing device for reinforced concrete beam columns according to claim 1, wherein two vertical threaded holes (505) of an adapting plate are formed in each stabilizing plate (5), an adapting screw (503) is connected to the inside of each vertical threaded hole (505) of the adapting plate in an meshed mode, an adapting bearing (502) is fixed to the top of each adapting screw (503), an outer ring of each adapting bearing (502) is fixedly connected with a side fixing plate (6) on the top of each adapting bearing, and an adapting nut (501) is fixed to the bottom of each adapting screw (503).
4. A reinforcing apparatus for reinforced concrete beam columns according to claim 3, wherein two adapting plate transverse through holes (504) are further formed in each stabilizing plate (5), two side reinforcing plate through holes (601) are formed in each side fixing plate (6), side reinforcing shafts (701) are fixed to the front ends of the reinforcing screws (7), the bottom of each side reinforcing shaft (701) is slidably connected with each adapting plate transverse through hole (504), and the top of each side reinforcing shaft (701) is slidably connected with each side reinforcing plate through hole (601).
5. A reinforcing apparatus for a reinforced concrete beam column according to claim 4, wherein each of said side reinforcing shafts (701) is engaged with said side reinforcing nuts (702) on the outside thereof, and a side reinforcing gear positioning ring (704) is slidably connected to the outside of each of said upper and lower sets of said side reinforcing gears (703).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422160430.1U CN222949543U (en) | 2024-09-04 | 2024-09-04 | Reinforcing device for reinforced concrete beam column |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422160430.1U CN222949543U (en) | 2024-09-04 | 2024-09-04 | Reinforcing device for reinforced concrete beam column |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222949543U true CN222949543U (en) | 2025-06-06 |
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ID=95872447
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422160430.1U Active CN222949543U (en) | 2024-09-04 | 2024-09-04 | Reinforcing device for reinforced concrete beam column |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222949543U (en) |
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- 2024-09-04 CN CN202422160430.1U patent/CN222949543U/en active Active
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