Rotary storage table device
The rotating storage platform device uses a rotating shaft and a disc to drive the tray to rotate and blow air to cool it down, which solves the problem of large workpiece footprint and the need for cooling, and achieves efficient storage and cooling effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI DAOHONG AUTOMOTIVE EQUIP
- Filing Date
- 2025-06-03
- Publication Date
- 2026-05-01
AI Technical Summary
The finished workpieces are large in size and generate heat that needs to be cooled. Moreover, placing them all on the ground would take up a lot of space and leave no room for them.
Design a rotating storage platform device that uses a rotating shaft and a disc to drive the tray to rotate, and sets multiple nozzles on the tray to blow air for cooling. The tray is kept stable by connecting arms and side plates, and the motor drives the disc to rotate to achieve three-dimensional distribution and cooling of the workpiece.
It achieves efficient cooling of workpieces and saves space for storage. It occupies a small area, can hold more workpieces, has a comprehensive cooling effect, is easy to operate, and saves costs.
Smart Images

Figure CN224183046U_ABST
Abstract
Description
A rotating storage platform device Technical Field
[0001] This utility model relates to the technical field of workpiece storage, and in particular to a rotating storage platform device. Background Technology
[0002] With the continuous development and progress of industry, the manufacturing industry is also developing rapidly. When many machines are processing simultaneously, the number of workpieces produced increases, and the processed workpieces, which are at a high temperature, need to be cooled down. Placing too many workpieces on the ground takes up a lot of space, and cooling them is inconvenient, increasing the workload and making the process quite troublesome.
[0003] Therefore, how to solve the problem that the workpieces are large in size after processing, have heat that needs to be cooled, and occupy a large area on the ground with nowhere to put them? Summary of the Invention
[0004] The purpose of this utility model is to provide a rotating storage platform device, which mainly solves the problems of how to deal with the large volume of workpieces after processing, the need for cooling, and the large area occupied by placing them on the ground.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is: a rotary storage platform device, characterized in that: the rotary storage platform device includes a base, a frame connected to the base, a motor connected to the frame, the two ends of a rotating shaft connected to the frame via bearings, a first disc and a second disc connected to the rotating shaft, and several trays for placing workpieces connected between the first disc and the second disc, the rotating shaft rotating under the drive of the motor, the rotating shaft driving the first disc and the second disc to rotate, the first disc and the second disc driving the several trays to move, and a cooling mechanism for blowing air onto the workpieces on the trays is also connected to the frame.
[0006] Furthermore, the cooling mechanism includes a third bracket connected to the frame, the third bracket being connected to a fourth fixed bracket, and the fourth fixed bracket being connected to a first nozzle for blowing air onto the workpiece radially.
[0007] Furthermore, the frame is also provided with a first support, a second support, a fourth support and a fifth support. The first support and the second support correspond to the two sides of the first disc. The first support and the second support are respectively connected to a number of second nozzles. Each second nozzle corresponds to one end of a tray. The fourth support and the fifth support correspond to the two sides of the second disc. The fourth support and the fifth support are respectively connected to a number of third nozzles. Each third nozzle corresponds to the other end of a tray.
[0008] Furthermore, the pallet includes a base plate for supporting the workpiece, with a first connecting side plate and a second connecting side plate respectively connected to both sides of the base plate;
[0009] The first disk is connected to several first connecting arms. The first connecting arms are aligned with the radial direction of the first disk. The ends of the first connecting arms away from the first disk are provided with first connecting holes. The first connecting holes are connected to the top middle position of the first connecting side plate by bolts.
[0010] The second disk connects to several second connecting arms. The second connecting arms are aligned with the radial direction of the second disk. The ends of the second connecting arms away from the second disk are provided with second connecting holes. The second connecting holes are connected to the top middle position of the second connecting side plate by bolts.
[0011] Furthermore, several guide rods for limiting the position of the workpiece are connected to the bottom plate of the pallet.
[0012] Furthermore, the first disc or the first connecting arm is provided with a pin hole, and the frame is provided with a first fixing bracket for storing the pin and a second fixing bracket for matching the pin with the pin hole. The second fixing bracket is provided with a fixing hole for fixing the pin.
[0013] Furthermore, the first disc connects to 10 first connecting arms, and the second disc connects to 10 second connecting arms. Each of the first and second connecting arms is connected to a tray in a one-to-one correspondence.
[0014] Furthermore, the frame is connected to a fuse box, which is equipped with a key switch for controlling the motor to restart.
[0015] Furthermore, the first disk and the first connecting arm are provided with a plurality of first weight reduction holes, and the second disk and the second connecting arm are provided with a plurality of second weight reduction holes.
[0016] Furthermore, the base is connected to the foot support, and the foot support is connected to the foot cup;
[0017] The motor is connected to the frame via a third fixed bracket.
[0018] In view of the above technical features, the present invention has the following beneficial effects:
[0019] 1. This utility model discloses a rotating storage rack device, which uses a rotating shaft and discs (a first disc and a second disc) to install a tray between the two discs (a first disc and a second disc), thus designing a simple rotating storage rack. The two discs are driven to rotate by a motor, and the two discs carry the trays and move along the circumference of the discs. Several trays are distributed in a three-dimensional manner, which takes up less space, can arrange more trays, and can hold more workpieces. The device is equipped with multiple nozzles (such as a first nozzle, a second nozzle, and a third nozzle) for cooling. The device is easy to operate, solves the problem of having too many workpieces and not having enough place to put them, and also solves the problem of workpieces having heat that needs to be cooled, thus saving costs. Attached Figure Description
[0020] Figure 1 is a schematic diagram of a rotating storage platform device in specific embodiment 1.
[0021] Figure 2 is a schematic diagram of a rotating storage platform device in specific embodiment 1.
[0022] Figure 3 is a schematic diagram of a rotating storage platform device in specific embodiment 1 (with some components hidden).
[0023] In the diagram: 1. Base; 2. Frame; 3. First fixed bracket; 4. Pin; 5. Safety box; 6. Second fixed bracket; 7. Third fixed bracket; 8. Motor; 9. Bearing; 10. First disc; 10-1. First connecting arm; 10-2. First weight-reducing hole; 11. Shaft; 12. First bracket; 13. Second bracket; 14. Tray; 14-1. Base plate; 14-2. First connecting side plate; 14-3. Second connecting side plate; 15. Guide rod; 16. Second disc; 16-1. Second connecting arm; 16-2. Second weight-reducing hole; 17. Third bracket; 18. Fourth fixed bracket; 19. First nozzle; 20. Foot support; 21. Foot cup; 22. Second nozzle; 23. Third nozzle; 24. Fourth bracket; 25. Fifth bracket. Detailed Implementation
[0024] The present invention will be further described below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims.
[0025] Referring to Figures 1 to 3, in specific embodiment 1, this embodiment 1 provides a rotating storage platform device, including a base 1, a frame 2 connected to the base 1, a motor 8 connected to the frame 2 (the motor is prior art and will not be discussed in detail here), the frame 2 is connected to both ends of a rotating shaft 11 via bearings 9, that is, the outer ring of the bearing 9 is connected to the frame 2, and the inner ring of the bearing 9 is connected to the rotating shaft 11, a first disc 10 and a second disc 16 are connected to the rotating shaft 11, and a plurality of trays 14 for placing workpieces are connected between the first disc 10 and the second disc 16. The rotating shaft 11 rotates under the drive of the motor 8, and the rotating shaft 11 drives the first disc 10 and the second disc 16 to rotate, and the first disc 10 and the second disc 16 drive the plurality of trays 14 to move (for example, move along the circumference of the first disc 10 and the second disc 16). A cooling mechanism for blowing air on the workpieces on the trays 14 is also connected to the frame 2.
[0026] The cooling mechanism includes a third bracket 17 on the connecting frame 2, the third bracket 17 is connected to a fourth fixed bracket 18, and the fourth fixed bracket 18 is connected to a first nozzle 19 for blowing air onto the workpiece radially. Here, "radial" refers to the radial direction of the first disk 10. For example, three first nozzles 19 are arranged side by side and blow air evenly onto the workpiece on a tray 14 to ensure that the workpiece can be blown with air from beginning to end and can be cooled evenly and as a whole. That is, when the tray 14 moves, when it passes the first nozzle 19, the first nozzle 19 blows air onto the workpiece on the corresponding tray 14 to achieve cooling.
[0027] The frame 2 is also equipped with a first support 12, a second support 13, a fourth support 24, and a fifth support 25. The first support 12 and the second support 13 correspond to the two sides of the first disc 10. The first support 12 and the second support 13 are respectively connected to a number of second nozzles 22. Each second nozzle 22 corresponds to one end of a tray 14 (for example, the end near the first disc 10). The fourth support 24 and the fifth support 25 correspond to the two sides of the second disc 16. The fourth support 24 and the fifth support 25 are respectively connected to a number of third nozzles 23. Each third nozzle 23 corresponds to the other end of a tray 14 (for example, the end near the second disc 16). That is to say, the second nozzles 22 blow air from the first disc 10 toward the second disc 16 onto the workpiece on the tray 14, and the third nozzles 23 blow air from the second disc 16 toward the first disc 10 onto the workpiece on the tray 14. When the tray 14 moves and moves to the corresponding pair of second nozzles 22 and third nozzles 23, the corresponding second nozzles 22 and third nozzles 23 blow air onto the workpiece to achieve cooling.
[0028] The first nozzle 19, the second nozzle 22, and the third nozzle 23 blow air onto the workpiece from three directions. The operation of the rotating storage platform device enables comprehensive cooling of the workpiece from all directions, ensuring that air can reach the workpiece from all angles, resulting in faster cooling.
[0029] The tray 14 includes a base plate 14-1 for supporting the workpiece. A first connecting side plate 14-2 and a second connecting side plate 14-3 are respectively connected to the two sides of the base plate 14-1. The first connecting side plate 14-2 is close to the first disk 10, and the second connecting side plate 14-3 is close to the second disk 16.
[0030] The first disk 10 is connected to several first connecting arms 10-1. The first connecting arms 10-1 are aligned with the radial direction of the first disk 10. The end of the first connecting arm 10-1 away from the first disk 10 is provided with a first connecting hole. The first connecting hole is connected to the top middle position of the first connecting side plate 14-2 by bolts to ensure that the tray 14 will not flip during movement and to always ensure that the center of gravity of the tray 14 is stable.
[0031] The second disc 16 is connected to several second connecting arms 16-1. The second connecting arms 16-1 are aligned radially with the second disc 16. The ends of the second connecting arms 16-1 away from the second disc 16 are provided with second connecting holes, which are bolted to the top center of the second connecting side plate 14-3. Thus, when the first disc 10 and the second disc 16 rotate synchronously, several pallets 14 also move circumferentially (the movement of the pallets 14 is similar to the movement of Ferris wheel cabins). During the movement, the pallets 14 remain stable and will not tip over, ensuring that the workpiece is placed more stably on the pallets 14 during the movement.
[0032] Several guide rods 15 are connected to the bottom plate 14-1 of the pallet 14 for limiting the workpiece. The operator places the workpiece according to the area formed by the guide rods 15, which is efficient. The guide rods 15 can also limit the placed workpiece in the horizontal direction to prevent the workpiece from accidentally slipping off the pallet 14.
[0033] The first disc 10 or the first connecting arm 10-1 is provided with a pin hole. The frame 2 is provided with a first fixing bracket 3 for storing the pin 4 and a second fixing bracket 6 for matching the pin 4 with the pin hole. The second fixing bracket 6 is provided with a fixing hole for fixing the pin 4. Matching the pin 4 with the pin hole means that after the pin 4 is inserted into the fixing hole on the second fixing bracket 6, it is also embedded in the pin hole, stopping the first disc 10 or the first connecting arm 10-1 where the pin hole is located. After the motor 8 stops running, the first disc 10 stops rotating. When the first disc 10 needs to rotate, the pin 4 is taken out from the pin hole and the fixing hole. The taken-out pin 4 can be inserted into the hole of the first fixing bracket 3, realizing the storage or placement of the pin 4 and preventing the pin 4 from being lost.
[0034] The first disc 10 connects to 10 first connecting arms 10-1, and the second disc 16 connects to 10 second connecting arms 16-1. Each first connecting arm 10-1 and each second connecting arm 16-1 is connected to a tray 14. The trays 14 are evenly distributed around the circumference of the first disc 10 and the second disc 16. That is, the first disc 10 and the second disc 16 of this device are designed to have 10 branches. Each branch plate (i.e., the first connecting arm 10-1 and the second connecting arm 16-1) is fixed with a tray 14. Each tray 14 is equipped with four guide rods 15 to fix the workpiece. The motor 8 rotates to make the tray 14 rotate like a Ferris wheel cabin. During the rotation, the tray 14 can swing slightly left and right to buffer and prevent the tray 14 from overturning. The guide rods 15 prevent the workpiece from falling.
[0035] The frame 2 is connected to the fuse box 5. The fuse box 5 is equipped with a key switch for controlling the restart of the motor 8 (a key switch is an electromechanical device that combines the functions of a lock and a switch. It controls the circuit on and off by inserting and turning a key. Key switches are existing technology and will not be discussed in detail here). As a protective device, if the motor 8 fails, the key switch in the fuse box 5 can be used to restart the motor 8.
[0036] The first disk 10 and the first connecting arm 10-1 are provided with a plurality of first weight-reducing holes 10-2, and the second disk 16 and the second connecting arm 16-1 are provided with a plurality of second weight-reducing holes 16-2, so as to reduce the weight of the first disk 10 and the first connecting arm 10-1, and reduce the weight of the second disk 16 and the second connecting arm 16-1.
[0037] The base 1 is connected to the foot support 20, the foot support 20 is connected to the foot cup 21, and the base 1 is connected to the ground through the foot support 20 and the foot cup 21; the motor 8 is connected to the frame 2 through the third fixed bracket 7.
[0038] A rotating storage platform device is fixed to the ground by foot support 20 and foot cup 21. When the workpiece is finished and needs to be stored, the motor 8 is turned off. First, the pin 4 is inserted into the fixing hole of the second fixed bracket 6 and the pin hole on the first connecting arm 10-1 (the pin hole can also be set on the first disc 10). The first disc 10 and the first connecting arm 10-1 stop rotating. The rotating shaft 11, the second disc 16 and the second connecting arm 16-1 all stop rotating. Several trays 14 stop moving. At this time, it is convenient for the operator to place several workpieces on several trays 14 respectively. After placement, the pin 4 is removed from the pin hole and the fixing hole and stored on the first fixed bracket.
[0039] The motor 8 is started, and the motor 8 drives the rotating shaft 11 to rotate with the assistance of the bearing 9. The rotating shaft 11 drives the first disk 10 and the second disk 16 to rotate, causing several trays 14 to move circumferentially. During the movement, the first nozzle 19, the second nozzle 22, and the third nozzle 23 blow air at multiple angles and in three dimensions onto several workpieces on several trays 14, helping to cool the workpieces. The several trays 14 are distributed in a three-dimensional manner, occupying less space, allowing for the arrangement of more trays 14 and the placement of more workpieces, while simultaneously achieving the purpose of cooling the workpieces.
[0040] When it is necessary to remove the workpiece, for example, when the pallet 14 rotates to the appropriate position, the motor 8 stops and the motor 8 is turned off. The pin 4 is simultaneously inserted into the fixing hole of the second fixed bracket 6 and the pin hole on the first connecting arm 10-1 (the pin hole can also be set on the first disc 10). The first disc 10 and the first connecting arm 10-1 stop rotating. The rotating shaft 11, the second disc 16 and the second connecting arm 16-1 all stop rotating. Several pallets 14 stop moving. At this time, it is convenient to remove the workpiece on the pallet 14. This process is repeated.
[0041] During the above process, the first nozzle 19, the second nozzle 22, and the third nozzle 23 blow air onto the workpiece to achieve cooling. The nozzles of the first nozzle 19, the second nozzle 22, and the third nozzle 23 are all flat and widened, which can blow air over a larger area and improve the cooling effect on the workpiece.
[0042] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0043] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0044] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural or procedural transformations made based on the content of the present utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present utility model.
Claims
1. A rotating storage platform device, characterized in that: The rotating storage platform includes a base (1), a frame (2) connected to the base (1), a motor (8) connected to the frame (2), and the two ends of a rotating shaft (11) connected to the frame (2) via bearings (9). A first disc (10) and a second disc (16) are connected to the rotating shaft (11). Several trays (14) for placing workpieces are connected between the first disc (10) and the second disc (16). The rotating shaft (11) rotates under the drive of the motor (8), and the rotating shaft (11) drives the first disc (10) and the second disc (16) to rotate. The first disc (10) and the second disc (16) drive several trays (14) to move. A cooling mechanism for blowing air onto the workpieces on the trays (14) is also connected to the frame (2).
2. The rotating storage platform device according to claim 1, characterized in that: The cooling mechanism includes a third bracket (17) connected to the frame (2), the third bracket (17) being connected to a fourth fixed bracket (18), and the fourth fixed bracket (18) being connected to a first nozzle (19) for blowing air onto the workpiece radially.
3. The rotating storage platform device according to claim 2, characterized in that: The frame (2) is also provided with a first support (12), a second support (13), a fourth support (24) and a fifth support (25). The first support (12) and the second support (13) correspond to the two sides of the first disc (10). The first support (12) and the second support (13) are respectively connected to a number of second nozzles (22). Each second nozzle (22) corresponds to one end of a tray (14). The fourth support (24) and the fifth support (25) correspond to the two sides of the second disc (16). The fourth support (24) and the fifth support (25) are respectively connected to a number of third nozzles (23). Each third nozzle (23) corresponds to the other end of a tray (14).
4. The rotating storage platform device according to claim 3, characterized in that: The tray (14) includes a base plate (14-1) for supporting the workpiece. The base plate (14-1) is connected to a first connecting side plate (14-2) and a second connecting side plate (14-3) on both sides respectively. A first disc (10) is connected to a plurality of first connecting arms (10-1). The first connecting arms (10-1) are aligned with the radial direction of the first disc (10). The end of the first connecting arm (10-1) away from the first disc (10) is provided with a first connecting hole. The first connecting hole is connected to the top middle position of the first connecting side plate (14-2) by bolts. A second disc (16) is connected to a plurality of second connecting arms (16-1). The second connecting arms (16-1) are aligned with the radial direction of the second disc (16). The end of the second connecting arm (16-1) away from the second disc (16) is provided with a second connecting hole. The second connecting hole is connected to the top middle position of the second connecting side plate (14-3) by bolts.
5. The rotating storage platform device according to claim 4, characterized in that: Several guide rods (15) for limiting the workpiece are connected to the bottom plate (14-1) of the pallet (14).
6. The rotating storage platform device according to claim 5, characterized in that: The first disc (10) or the first connecting arm (10-1) is provided with a pin hole, and the frame (2) is provided with a first fixing bracket (3) for storing the pin (4) and a second fixing bracket (6) for matching the pin (4) with the pin hole. The second fixing bracket (6) is provided with a fixing hole for fixing the pin (4).
7. The rotating storage platform device according to claim 6, characterized in that: The first disk (10) is connected to 10 first connecting arms (10-1), and the second disk (16) is connected to 10 second connecting arms (16-1). The first connecting arms (10-1) and the second connecting arms (16-1) are connected to a tray (14) in a one-to-one correspondence.
8. The rotating storage platform device according to claim 7, characterized in that: The frame (2) is connected to the fuse box (5), which is equipped with a key switch for controlling the restart of the motor (8).
9. The rotating storage platform device according to claim 8, characterized in that: The first disk (10) and the first connecting arm (10-1) are provided with a plurality of first weight reduction holes (10-2), and the second disk (16) and the second connecting arm (16-1) are provided with a plurality of second weight reduction holes (16-2).
10. The rotating storage platform device according to claim 9, characterized in that: The base (1) is connected to the foot support (20), and the foot support (20) is connected to the foot cup (21); the motor (8) is connected to the frame (2) through the third fixed bracket (7).