An intelligent generator storage warehouse
By designing a multi-directional shipping system and using electric motors and servo motors to control the movement of sliding plates and pallets, the problem of forklift congestion in existing technologies has been solved, enabling multiple forklifts to work collaboratively and improving the shipping and loading efficiency of the intelligent generator.
Patent Information
- Application Number
- CN202522192498.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-10-16
AI Technical Summary
Existing intelligent generator storage warehouses can only ship in one direction, causing forklift congestion and reducing the speed of loading and unloading.
The design incorporates a multi-directional shipping system that uses motors, servo motors, and drive mechanisms to control the movement of sliding plates and pallets, enabling multiple forklifts to work collaboratively. Combined with the use of roller shutters and conveyors, this system facilitates multi-directional shipping.
It increased the amount of goods shipped and loaded per unit time, reduced forklift congestion, and improved storage and shipping efficiency.
Smart Images

Figure CN224676994U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of intelligent generator manufacturing technology, and specifically relates to an intelligent generator storage warehouse. Background Technology
[0002] Intelligent generator storage warehouses are highly automated warehousing facilities designed to efficiently and safely store and manage various types of generator equipment. These warehouses are typically equipped with mobile lifting and loading mechanisms to automate the handling, storage, and shipping of generators.
[0003] An existing intelligent generator storage warehouse uses a mobile lifting and unloading mechanism to place intelligent generators on storage racks inside the warehouse. When generators need to be retrieved in bulk for shipment, the mobile lifting and unloading mechanism moves the intelligent generators from the storage racks and places them in the shipping area, where forklifts load them onto transport vehicles. However, since it can only ship in one direction, it restricts the operating path of forklifts and other transport vehicles. This causes forklifts to queue in this area, resulting in severe congestion. This can easily create a bottleneck when shipping large quantities of generators quickly, reducing the overall shipping and loading speed of intelligent generators. Utility Model Content
[0004] In view of this, this utility model addresses the shortcomings of the prior art by providing an intelligent generator storage warehouse that can simultaneously ship from multiple directions, enabling multiple forklifts to work together to quickly load intelligent generators onto transport vehicles, significantly increasing the shipment and loading volume of intelligent generators per unit time.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: an intelligent generator storage warehouse, including a wall, a storage rack is provided on the bottom wall of the wall, a guide rail is provided on the bottom wall of the wall, a sliding plate is slidably provided on the outer surface of the guide rail, a connecting frame plate is provided at the upper end of the sliding plate, the sliding plate and the connecting frame are fixed by welding, a sliding plate is slidably provided inside the connecting frame plate through a guide column, a support plate is slidably provided inside the sliding plate, multiple conveyors are also provided on the bottom wall of the wall, a box is provided on the bottom wall of the wall, a conveyor is rotatably provided inside the box through a rotating column, a drive mechanism is provided inside the box, and the drive mechanism can change the angle of the conveyor.
[0006] The drive mechanism includes a worm gear rotatably mounted inside the housing. A worm wheel, meshing with the worm gear, is fixedly sleeved on the outer arc surface of the rotating column. A drive unit for driving the worm gear to rotate is installed inside the housing. The drive unit includes a motor installed inside the housing. The output shaft of the motor is connected to the left end of the worm gear through a coupling.
[0007] As a further improvement of this utility model, roller shutter doors are provided in the installation openings on the front and left and right sides of the wall.
[0008] As a further improvement of this utility model, a lead screw is rotatably arranged inside the connecting frame plate, and a sliding plate is threadedly connected to the lead screw. A motor is arranged at the upper end of the connecting frame plate, and the output shaft of the motor is connected to the upper end of the lead screw through a coupling. A lead screw is rotatably arranged inside the sliding plate, and the rear side of the support plate is threadedly connected to the lead screw. A motor is arranged on the left side of the sliding plate, and the output shaft of the motor is connected to the left end of the lead screw through a coupling. Multiple rollers are rotatably arranged inside the sliding plate through a rotating column, and the multiple rollers are in contact with the upper end of the sliding plate. A servo motor is arranged on the left side of the sliding plate, and the output shaft of the servo motor is connected to the left end of the rotating column on the rear side through a coupling.
[0009] Compared with the prior art, the beneficial effects of this utility model are as follows: Firstly, by controlling motor one, motor two, and servo motor to adjust the up, down, forward, backward, left, and right movement of the tray, the intelligent generator can be quickly stored on the storage rack. The automated operation requires no human intervention, significantly improving storage efficiency.
[0010] Secondly, by controlling the operation of the motor, the conveyor on the rotating column can be rotated and adjusted. By controlling the opening of the conveyor and the left conveyor, the intelligent generator on the pallet can be transported to the front and rear left conveyors. Then, the forklifts located at the front and rear left roller shutters can pick it up for loading. It can simultaneously deliver goods in multiple directions, allowing multiple forklifts to work together to quickly load the intelligent generator into the transport vehicle, significantly increasing the output and loading capacity of the intelligent generator per unit time.
[0011] Thirdly, by setting up roller shutter doors on the front, back, and left sides, it is convenient for personnel to quickly enter the interior of the storage warehouse from all directions. Attached Figure Description
[0012] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0013] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a cross-sectional structural diagram of the present invention; Figure 3 This is a schematic diagram of the front structure of this utility model; Figure 4 This is a bottom view of the sliding plate structure of this utility model; Figure 5 This is a cross-sectional structural diagram of the box body of this utility model.
[0014] In the diagram: 101, wall; 102, roller shutter door; 201, storage rack; 202, guide rail; 203, movable shell; 204, connecting frame plate; 205, lead screw one; 206, motor one; 207, pallet; 208, motor two; 209, roller; 210, servo motor; 211, sliding plate; 212, lead screw two; 301, conveyor; 302, housing; 303, worm gear; 304, worm; 305, motor three. Detailed Implementation
[0015] To better understand this utility model, the following embodiments further illustrate its content, but the scope of protection of this utility model is not limited to the embodiments described below. Numerous specific details are set forth in the following description to provide a more thorough understanding of this utility model. However, it will be apparent to those skilled in the art that this utility model can be practiced without one or more of these details.
[0016] like Figure 1 , 2 As shown in Figures 3 and 4, an intelligent generator storage warehouse includes a wall 101. A storage rack 201 is provided on the bottom wall of the wall 101. A guide rail 202 is provided on the bottom wall of the wall 101. A sliding plate 211 is slidably provided on the outer surface of the guide rail 202. A connecting frame plate 204 is provided at the upper end of the sliding plate 211. The sliding plate 211 is slidably provided inside the connecting frame plate 204 through a guide column. A support plate 207 is slidably provided inside the sliding plate 211. Multiple conveyors 301 are also provided on the bottom wall of the wall 101. A box 302 is provided on the bottom wall of the wall 101. A conveyor is rotatably provided inside the box 302 through a rotating column. A drive mechanism is provided inside the box 302. The drive mechanism can change the angle of the conveyor.
[0017] A lead screw 205 is rotatably mounted inside the connecting frame plate 204. The sliding plate 211 is threadedly connected to the lead screw 205. A motor 206 is mounted on the upper end of the connecting frame plate 204. The output shaft of the motor 206 is connected to the upper end of the lead screw 205 via a coupling. A lead screw 212 is rotatably mounted inside the sliding plate 211. The rear side of the support plate 207 is threadedly connected to the lead screw 212. A motor 208 is mounted on the left side of the sliding plate 211. The output shaft of the motor 208 is connected to the left end of the lead screw 212 via a coupling. Multiple rollers 209 are rotatably mounted inside the sliding plate 211 via a rotating column. The multiple rollers 209 are in contact with the upper end of the sliding plate. A servo motor 210 is mounted on the left side of the sliding plate 211. The output shaft of the servo motor 210 is connected to the left end of the rotating column on the rear side via a coupling.
[0018] like Figure 5As shown, the drive mechanism includes a worm 304 rotatably disposed inside the housing 302. A worm wheel 303, which meshes with the worm 304, is fixedly sleeved on the outer arc surface of the rotating column. A drive unit for driving the worm 304 to rotate is disposed inside the housing 302. The drive unit includes a motor disposed inside the housing 302. The output shaft of the motor is connected to the left end of the worm 304 through a coupling.
[0019] like Figure 1 , 2 As shown, roller shutter doors 102 are installed in the installation openings on the front and left and right sides of the wall 101.
[0020] By opening the front roller shutter, a forklift is used to place the smart generator with a pallet onto the front conveyor 301. Then, by controlling the operation of the front conveyor 301 and conveyor 306, the smart generator with the pallet is transported onto the conveyor 306. Next, the operation of conveyor 301 and conveyor 306 is stopped. Then, by controlling the operation of motor 206, the output shaft drives the lead screw 205 to rotate, causing the pallet 207 on the sliding plate 211 to align with the gap between the pallet and the conveyor 306. Then, the operation of motor 206 is stopped. Next, by controlling the operation of servo motor 210, the output shaft drives the roller 209 on the rotating column to slide to the left along the groove of guide rail 202, fully inserting the pallet 207 into the lower end of the pallet. Then, the operation of servo motor 210 is stopped. Finally, by controlling the operation of motor 206, the pallet 207 on the sliding plate 211... 07. After lifting the smart generator on the tray to a suitable height, motor 206 is turned off. Then, by controlling servo motor 210, the smart generator on the tray can be moved to the right side of storage rack 201. Then, motor 208 is turned on, and the output shaft drives screw 212 to rotate, so that the tray with the smart generator on the tray 207 moves backward into the storage rack 201. Then, motor 208 is turned off. Then, motor 206 is turned on, so that the tray 207 moves downward, placing the smart generator with the tray inside the storage rack 201. Then, motor 206 is turned off. By controlling motor 206, motor 208 and servo motor 210 to adjust the up, down, forward, backward and left and right movement of the tray 207, the remaining smart generators can be quickly stored on storage rack 201.
[0021] When a large batch of intelligent generators needs to be shipped from the warehouse, the three roller shutter doors 102 are opened simultaneously. Then, by controlling motor 1 206, the gap between pallet 207 and the tray on the storage rack 201 is aligned, and then motor 1 206 is turned off. Next, by controlling motor 2 208, pallet 207 is moved into the interior of pallet 207, and then motor 2 208 is turned off. Then, motor 1 206 is turned on to lift the intelligent generator on the tray, and then motor 1 206 is turned off. Then, by controlling motor 2 208, the intelligent generator on the tray is moved off the storage rack 201, and then motor 2 208 is turned off. Then, servo motor 210 is turned on to move the intelligent generator on the tray to the top of conveyor 306, and then its operation is turned off. Then, motor 2 208 is turned on to place the intelligent generator on the tray on the top of conveyor 306. Finally, motor 1 206 is turned on to move pallet 207 backward.
[0022] Subsequently, by controlling the operation of the front conveyor 301 and conveyor 306, the smart generator with the pallet is transported to the front conveyor 301. Then, the operation of conveyor 301 and conveyor 306 is turned off. The forklift located on the left side of the warehouse can then load the smart generator onto the pallet. Following the above operation method, by controlling motor 206, motor 208, and servo motor 210 to adjust the up, down, forward, backward, left, and right movement of the pallet 207, the remaining smart generators on the storage rack can be quickly placed onto conveyor 306. After conveyor 306 completes its first delivery, by controlling the operation of motor 305, the output shaft drives the worm wheel 303, which meshes with the worm gear 304, to rotate, causing the conveyor 306 on the rotating column to rotate 90 degrees forward. The forklift is then opened... Conveyor 306 and the left-side conveyor 301 transport the smart generator on the pallet to the rear conveyor 301. Then, a forklift located at the rear roller shutter 102 can remove it for loading. When the next smart generator on the pallet is placed on conveyor 306, motor 305 can be controlled to rotate conveyor 306 90 degrees in the opposite direction, and conveyor 306 can be opened to transport it back to the left-side conveyor 301 for loading by a forklift. When the next smart generator on the next pallet is placed on conveyor 306, motor 305 can be controlled to rotate conveyor 306 90 degrees in the opposite direction, and conveyor 306 can be opened to transport it back to the front conveyor 301, where a forklift located at the front roller shutter 102 can remove it for loading. This achieves rapid unloading of the smart generator.
[0023] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.
Claims
1. A smart generator storage warehouse, comprising walls (101), characterized in that: A storage rack (201) is provided on the bottom wall of the wall (101). A guide rail (202) is provided on the bottom wall of the wall (101). A sliding plate (211) is slidably provided on the outer side of the guide rail (202). A connecting frame plate (204) is provided at the upper end of the sliding plate (211). The sliding plate (211) is slidably provided inside the connecting frame plate (204) through a guide column. A support plate (207) is slidably provided inside the sliding plate (211). Multiple conveyors (301) are also provided on the bottom wall of the wall (101). A box (302) is provided on the bottom wall of the wall (101). A conveyor (306) is rotatably provided inside the box (302) through a rotating column. A driving mechanism is provided inside the box (302). The driving mechanism can change the angle of the conveyor (306).
2. The intelligent generator storage warehouse as described in claim 1, characterized in that: The connecting frame plate (204) is internally rotatably equipped with a lead screw (205), and the sliding plate (211) is threadedly connected to the lead screw (205). The upper end of the connecting frame plate (204) is equipped with a motor (206), and the output shaft of the motor (206) is connected to the upper end of the lead screw (205) through a coupling.
3. The intelligent generator storage warehouse as described in claim 1, characterized in that: The sliding plate (211) is internally rotatably equipped with a second lead screw (212), and the rear side of the support plate (207) is threadedly connected to the second lead screw (212). The left side of the sliding plate (211) is equipped with a second motor (208), and the output shaft of the second motor (208) is connected to the left end of the second lead screw (212) through a coupling.
4. The intelligent generator storage warehouse as described in claim 1, characterized in that: The sliding plate (211) has multiple rollers (209) inside which are rotatably arranged via a rotating column. The multiple rollers (209) are in contact with the upper end of the sliding plate. A servo motor (210) is arranged on the left side of the sliding plate (211). The output shaft of the servo motor (210) is connected to the left end of the rotating column on the rear side via a coupling.
5. The intelligent generator storage warehouse as described in claim 1, characterized in that: The drive mechanism includes a worm (304) rotatably disposed inside the housing (302), a worm wheel (303) fixedly sleeved on the outer arc surface of the rotating column and meshing with the worm (304), and a drive unit for driving the worm (304) to rotate is disposed inside the housing (302).
6. The intelligent generator storage warehouse as described in claim 5, characterized in that: The drive unit includes a motor installed inside the housing (302), and the output shaft of the motor is connected to the left end of the worm gear (304) via a coupling.
7. The intelligent generator storage warehouse as described in claim 1, characterized in that: Roller shutters (102) are installed in the installation openings on the front and left and right sides of the wall (101).