Transverse moving type three-dimensional parking equipment

An automated cleaning system controlled by gravity sensors, combined with a screw and threaded block design, solves the problem of untimely cleaning in traditional transverse automated parking systems, achieving efficient cleaning of parking platform surfaces and stable equipment operation.

CN223838721UActive Publication Date: 2026-01-27TANGSHAN BAOLE INTELLIGENT & SCI INC CO
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Patent Information

Application Number
CN202423300945.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional horizontal sliding parking systems lack an automatic cleaning mechanism, resulting in the accumulation of dust and impurities on the parking platform surface, which affects the appearance and service life of vehicles. Furthermore, manual cleaning is labor-intensive, resource-intensive, and not timely.

Method used

The cleaning process is initiated by a motor controlled by a gravity sensor. The design of the screw and threaded block enables automated cleaning by driving the cleaning components and vacuuming equipment through the screw, and efficient moving cleaning is achieved by using the threaded block and bevel gear transmission.

Benefits of technology

It enables intelligent and automated cleaning of parking platform surfaces, ensuring thorough cleaning, reducing vehicle scratches and damage, improving maintenance efficiency, and extending equipment lifespan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses transverse moving type three-dimensional parking equipment which comprises a frame and a parking plate, baffles are fixed to the two sides of the parking plate, the interiors of the baffles are hollow to form cavities, threaded rods are arranged in the cavities in a rotating mode, threaded blocks are arranged on the outer walls of the threaded rods in a threaded mode, and cleaning pieces are arranged on the inner sides of the threaded blocks. A first bevel gear is fixed to the end face of one side of the screw, and a transmission part is arranged on the back of the parking plate. Efficient moving cleaning is achieved through cooperation of a screw and a threaded block, the screw rotates to promote the threaded block to drive a supporting plate and dust collection equipment and a groove plate fixed to the supporting plate to move, a plurality of dust collection holes in the bottom of the groove plate can cover the surface of the parking plate in a large area, and dust and impurities are powerfully adsorbed through cooperation with negative pressure generated by the dust collection equipment; no matter the corners or the middle area of the parking plate can be deeply cleaned, and the cleaning effect without dead corners is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of transverse sliding three-dimensional parking technology, specifically a transverse sliding three-dimensional parking device. Background Technology

[0002] With the rapid pace of urbanization, the number of cars on the road is growing exponentially, making parking a serious problem and a major pain point for urban development. Multi-level parking systems, as an effective means of alleviating parking pressure, have emerged and are widely used in various locations.

[0003] While traditional lateral sliding parking systems have improved space utilization and met some parking needs to a certain extent, they still have many shortcomings. On the one hand, during long-term use, frequent vehicle entry and exit inevitably bring a large amount of dust, mud, and debris to the parking platform. These pollutants easily accumulate on the surface of the parking platform. However, most existing lateral sliding parking systems lack an effective automatic cleaning mechanism and often rely on manual cleaning at regular intervals. This not only consumes a lot of manpower and resources but also makes it difficult to guarantee the timeliness and comprehensiveness of cleaning. Manual cleaning usually needs to be carried out during the idle period of the parking equipment, which may conflict with the actual operation schedule, resulting in a longer cleaning cycle. The parking platform remains unclean for a long time, which increases the risk of vehicles being scratched and corroded during parking, affecting the appearance and service life of the vehicles. Utility Model Content

[0004] The purpose of this utility model is to provide a transverse three-dimensional parking device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a horizontal sliding three-dimensional parking device, including a frame and a parking plate, with baffles fixed on both sides of the parking plate, and a cavity formed inside the baffle. A screw rotates inside the cavity, and a threaded block is threaded on the outer wall of the screw. A cleaning component is provided on the inner side of the threaded block. A first bevel gear is fixed on one end face of the screw, and a transmission component is provided on the back of the parking plate.

[0006] Preferably, the side wall of the baffle is provided with a strip-shaped through groove.

[0007] Preferably, the cleaning component includes a support plate, which is fixed to the inner side of the threaded block and passes through the strip groove of the baffle. A grooved plate is fixed to the front end of the support plate, and a cavity is formed inside the grooved plate. Multiple dust suction holes are opened at the bottom end, and a dust suction device is fixed to the top end of the support plate.

[0008] Preferably, the vacuuming device is connected to the trough plate via a connecting hose.

[0009] Preferably, the transmission component includes a support block, which is fixed to the back of the parking plate. A rotating rod is rotatably mounted inside the support block, and a second bevel gear is fixed to both ends of the rotating rod, with the second bevel gear meshing with a first bevel gear.

[0010] Preferably, the transmission component further includes a motor, which is fixed to the back of the support block. A first pulley is fixed to the outer wall of the output shaft of the motor. A belt is sleeved on the outer wall of the first pulley. A second pulley is provided at the other end of the belt and is fixed to the outer wall of the rotating rod.

[0011] Preferably, the transmission component is provided with a housing on its outer side, the housing can protect the transmission component, and the outer wall of the housing is fixed with a heat dissipation mesh.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] The gravity sensor inside the parking platform plays a key role. When the car is completely driven away from the parking platform, it can accurately sense and send a signal. Based on the preset time delay, it controls the motor to start the cleaning process, realizing the intelligent and automated operation of parking platform cleaning. It eliminates the need for manual intervention and ensures that cleaning is carried out at the best time after the vehicle leaves. This greatly improves the maintenance efficiency of parking equipment, keeps the surface of the parking platform clean at all times, provides a good environment for subsequent parking, and reduces potential scratches and other damage to vehicles caused by the accumulation of dust and impurities.

[0014] The cleaning component is ingeniously designed, achieving efficient moving cleaning through the cooperation of the screw and the threaded block. The rotation of the screw causes the threaded block to move the support plate and the vacuum cleaner and the slot plate fixed on it. The multiple suction holes at the bottom of the slot plate can cover a large area of ​​the parking plate surface. Combined with the negative pressure generated by the vacuum cleaner, it powerfully adsorbs dust and impurities, ensuring that the corners and middle areas of the parking plate can be deeply cleaned, ensuring a thorough cleaning effect.

[0015] The transmission system adopts a two-stage transmission structure. On the one hand, the motor output power is transmitted to the rotating rod via pulleys and belts. This flexible connection effectively buffers the starting impact and ensures smooth power transmission. On the other hand, the second bevel gears at both ends of the rotating rod mesh with the first bevel gear at one end of the screw, accurately transmitting torque to drive the screw to rotate. The structure is compact and the transmission accuracy is high, making the entire cleaning device operate stably and reliably, reducing the failure rate and extending the service life of the equipment. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 for Figure 1 Detailed diagram of the connection structure of the middle parking platform (top view cross-section);

[0018] Figure 3 for Figure 2 Enlarged detail of the connection structure of the mid-cleaning component;

[0019] Figure 4 for Figure 2 Detailed diagram of the connection structure viewed from below.

[0020] In the diagram: 1. Frame, 2. Parking plate, 3. Baffle, 4. Screw, 5. Threaded block, 6. Support plate, 7. Groove plate, 8. Vacuum cleaning device, 9. First bevel gear, 10. Support block, 11. Rotating rod, 12. Second bevel gear, 13. Motor, 14. First pulley, 15. Belt, 16. Second pulley. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-4 This utility model provides a technical solution for a transverse sliding three-dimensional parking device: A transverse sliding three-dimensional parking device includes a frame 1 and parking plates 2. Multiple parking plates 2 are arranged inside the frame 1. A gravity sensor is installed inside the parking plate 2. When a car is completely driven away from the parking plate 2, the gravity sensor receives a signal and controls the motor 13 to start working (the gravity sensor can be set to determine how long after it sends the signal to start working before the motor 13 starts working). The parking plate 2 is connected to the frame through a lifting device. Baffles 3 are fixed on both sides of the parking plate 2. The baffles 3 are used to support the screw 4. A cavity is formed inside the baffle 3. The screw 4 rotates inside the cavity. When the screw 4 rotates, it can drive the threaded block 5 to move back and forth on its outer wall. The threaded block 5 is threaded on the outer wall of the screw 4. A cleaning component is provided on the inner side of the threaded block 5. The cleaning component can clean the dust and impurities remaining on the surface of the parking plate 2. A first bevel gear 9 is fixed on one end face of the screw 4. A transmission component is provided on the back of the parking plate 2. A strip-shaped through groove is opened on the side wall of the baffle 3.

[0023] The cleaning component includes a support plate 6, which is fixed inside the threaded block 5. The support plate 6 provides support and installation position for the suction device 8. The support plate 6 passes through the strip groove of the baffle 3. A grooved plate 7 is fixed to the front end of the support plate 6. The grooved plate 7 is connected to the vacuuming device 8 through a connecting hose, so that negative pressure is generated inside the grooved plate 7 to clean the surface of the parking plate 2. A cavity is formed inside the grooved plate 7, and multiple suction holes are opened at the bottom end. The vacuuming device 8 is fixed to the top end of the support plate 6. The vacuuming device 8 is connected to the grooved plate 7 through a connecting hose.

[0024] The transmission component includes a support block 10, which is fixed to the back of the parking plate 2. The support block 10 is used to provide support for the rotating rod 11. The rotating rod 11 is rotatable inside the support block 10. When the rotating rod 11 rotates, it can drive the first bevel gear 9 to rotate through the second bevel gear 12. The two ends of the rotating rod 11 are fixed with the second bevel gear 12, and the second bevel gear 12 is meshed with the first bevel gear 9.

[0025] The transmission component also includes a motor 13, which is fixed to the back of the support block 10. The motor 13 is used to provide power output. A first pulley 14 is fixed to the outer wall of the output shaft of the motor 13. The first pulley 14 is connected to a second pulley 16 through a belt 15. The belt 15 is sleeved on the outer wall of the first pulley 14. The second pulley 16 is provided at the other end of the belt 15 and is fixed to the outer wall of the rotating rod 11. The second pulley 16 can drive the rotating rod 11 to rotate. A housing is provided on the outside of the transmission component to protect the transmission component. A heat dissipation mesh is fixed to the outer wall of the housing.

[0026] Working Principle: When a horizontal sliding three-dimensional parking system is put into use, as a car drives away from the top of the parking platform 2, the gravity sensor sends a signal. After a specific time, the motor 13 and the vacuum cleaner 8 start working. When the motor 13 starts working, the first pulley 14 rotates, which drives the second pulley 16 to rotate via the belt 15. Then, the second pulley 16 drives the rotating rod 11 to rotate. During the rotation of the rotating rod 11, the second bevel gear 12 meshes with the first bevel gear 9, which drives the first bevel gear 9 to rotate, thereby driving the screw 4 to rotate inside the baffle 3. When the screw 4 rotates, the threaded block 5 moves forward on its outer wall. During the movement, the support plate 6 drives the trough plate 7 and the vacuum cleaner 8 to move. When started, the vacuum cleaner 8 starts working and generates negative pressure inside the trough plate 7 through the connecting hose, thereby cleaning the dust and impurities remaining on the surface of the parking platform 2 through the vacuum holes at the bottom of the trough plate 7. After cleaning, the motor 13 can be reversed to reset it. After resetting, the motor 13 and the vacuum cleaner 8 stop working.

Claims

1. A horizontal sliding three-dimensional parking system, comprising a frame (1) and parking platforms (2), characterized in that, The parking plate (2) is fixed with baffles (3) on both sides. The baffles (3) form a cavity inside. A screw (4) rotates inside the cavity. A threaded block (5) is threaded on the outer wall of the screw (4). A cleaning component is provided on the inner side of the threaded block (5). A first bevel gear (9) is fixed on one end face of the screw (4). A transmission component is provided on the back of the parking plate (2).

2. The transverse sliding three-dimensional parking system according to claim 1, characterized in that, The side wall of the baffle (3) has a strip-shaped through groove.

3. The horizontal sliding three-dimensional parking system according to claim 1, characterized in that, The cleaning component includes a support plate (6), which is fixed to the inner side of the threaded block (5) and passes through the strip groove of the baffle (3). A grooved plate (7) is fixed to the front end of the support plate (6), and a cavity is formed inside the grooved plate (7). Multiple dust suction holes are opened at the bottom end. A dust suction device (8) is fixed to the top end of the support plate (6).

4. A transverse sliding three-dimensional parking system according to claim 3, characterized in that, The vacuum cleaner (8) is connected to the trough plate (7) via a connecting hose.

5. A transverse sliding three-dimensional parking system according to claim 1, characterized in that, The transmission component includes a support block (10), which is fixed to the back of the parking plate (2). Inside the support block (10), there is a rotating rod (11). At both ends of the rotating rod (11), there are second bevel gears (12), and the second bevel gears (12) are meshed with the first bevel gears (9).

6. A transverse sliding three-dimensional parking system according to claim 5, characterized in that, The transmission component also includes a motor (13), which is fixed to the back of the support block (10). A first pulley (14) is fixed to the outer wall of the output shaft of the motor (13). A belt (15) is sleeved on the outer wall of the first pulley (14). A second pulley (16) is provided at the other end of the belt (15), and the second pulley (16) is fixed to the outer wall of the rotating rod (11).

7. A transverse sliding three-dimensional parking system according to claim 5, characterized in that, The transmission component is provided with an outer shell, which can protect the transmission component, and the outer wall of the outer shell is fixed with a heat dissipation mesh.