Hot-pressing door ring conveying device
By designing a hot-pressed door ring conveyor device, and utilizing structures such as material racks, universal casters, and forklift frames, multiple hot-pressed door rings can be conveniently stacked and conveyed, solving the problems of inconvenient transportation and large area occupation in existing technologies, and improving conveying efficiency.
Patent Information
- Application Number
- CN202520063772.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-10
AI Technical Summary
In the existing technology, the transportation of automotive door ring stamping parts is not convenient, and when the quantity is large, they occupy a large area, and there is a lack of effective transportation solutions.
A hot-pressed door ring conveying device was designed, including a material rack, swivel casters, fixed casters, forklift frame, ankle cover, and ankle seat. These components enable the stacking and conveying of multiple hot-pressed door rings. The forklift frame and ankle cover are used to lift and stack the device. The pulling and locking components are combined to connect and move multiple devices.
It improves the conveying efficiency of hot-pressed door rings, reduces the occupied area, and enables convenient conveying and storage of multiple hot-pressed door rings.
Smart Images

Figure CN223645208U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of conveying device technology, and in particular to a hot-pressed door ring conveying device. Background Technology
[0002] Among existing patents, Chinese patent application number 202321525277.7 discloses a folding rack for transporting automotive door ring stamped parts, including a rack body and a spring gas support cylinder. A first rotating shaft is rotatably connected to the inner side of the rack body, and a first bracket is fixedly connected to the surface of the first rotating shaft. A polyurethane pressure strip is fixedly connected to the lower end of the first bracket. A support rod is fixedly connected to the middle of the rack body, and a support column is fixedly connected to the lower end of the rack body. A support plate is fixedly connected to the lower end of the support column. A first telescopic rod is fixedly connected to the upper end of the rack body, and a fixing seat is fixedly connected to the head of the first telescopic rod. The surface of the fixing seat has a fixing hole. Although this patent can increase the number of stacked automotive door ring stamped parts and save on space and transportation costs to some extent, it is still not convenient to transport, and it occupies a large area when the number of automotive door ring stamped parts is large. Therefore, the shortcomings are obvious, and a solution is urgently needed. Utility Model Content
[0003] In order to solve the above-mentioned technical problems, the purpose of this utility model is to provide a hot-pressed door ring conveying device.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A hot-pressed door ring conveying device includes a rack for storing hot-pressed door rings. Two swivel casters are mounted on one end of the rack's bottom surface, and two fixed casters are mounted on the other end. Two forklift frames are mounted in the middle of the rack's bottom surface. An ankle cover is mounted at each of the four corners of the rack's bottom surface, and an ankle seat is mounted at each of the four corners of the rack's top surface. The four ankle seats correspond one-to-one with the four ankle covers. The bottom surfaces of the ankle covers and forklift frames are higher than the lowest points of the swivel casters and fixed casters, respectively. An insertion hole is recessed on the bottom surface of the ankle cover. When two hot-pressed door ring conveying devices are stacked, the ankle seat of the previous hot-pressed door ring conveying device is inserted into the insertion hole of the next hot-pressed door ring conveying device.
[0006] Furthermore, a traction component is provided at one end of the material rack, and a traction lock component is provided at the other end of the material rack; when two hot-pressing gate ring conveying devices are arranged side by side, the traction lock component of the first hot-pressing gate ring conveying device locks the traction component of the second hot-pressing gate ring conveying device.
[0007] Furthermore, a base is provided on one side of the material rack, and the base is rotatably connected to the pulling member via a damping shaft. The damping shaft allows the pulling member to stay at any angle.
[0008] Furthermore, the rack includes a rack body, a storage cavity is provided in the middle of the rack body, the top surface and front side of the storage cavity are both open, the bottom surface of the storage cavity is provided with at least two lower support pads, the rear side of the storage cavity is provided with at least two upper support pads, the upper support pads are located above the lower support pads, and both the upper and lower support pads are provided with multiple partition slots. The partition slots of the upper support pads are used for the upper edge of the inner hole of the heat-pressing door ring to be inserted, and the partition slots of the lower support pads are used for the bottom edge of the heat-pressing door ring to be inserted.
[0009] Furthermore, the right side wall of the storage cavity is provided with a right positioning pad and a right pressing assembly. The right positioning pad is used to abut against the right side of the hot-pressing door ring, and the right pressing assembly is located above the right positioning pad. The right pressing assembly is used to press down on the top edge of the hot-pressing door ring.
[0010] Furthermore, the left side wall of the storage cavity is provided with a left pressing assembly and a left pressing assembly. The left pressing assembly is located above the left pressing assembly. The left pressing assembly is used to press the left side of the hot pressing door ring, and the left pressing assembly is used to press the top side of the hot pressing door ring downward.
[0011] Furthermore, the structures of the right-side pressing assembly, the left-side clamping assembly, and the left-side pressing assembly are the same.
[0012] Furthermore, the right-side pressing assembly includes two fixed seats fixedly disposed on the right side wall of the storage cavity, a pressing frame rotatably connected to the two fixed seats respectively, an elastic protective pad installed on the pressing frame, and a locking fastener for locking the pressing frame to the fixed seats.
[0013] Furthermore, both the upper and lower support pads are made of nylon.
[0014] Furthermore, a label is installed on one side wall of the material rack.
[0015] The beneficial effects of this utility model are as follows: In practical applications, multiple hot-pressed door rings are stacked in a rack. When it is necessary to transport the hot-pressed door rings stored in the rack, simply push the rack. The two swivel casters and two fixed casters work together to move the entire hot-pressed door ring conveyor, facilitating the transport of the stored hot-pressed door rings. When multiple hot-pressed door ring conveyors are available, the forklift's pallet can be inserted into the forklift frame to lift the hot-pressed door ring conveyor. The lifted hot-pressed door ring conveyor can then be stacked on top of another hot-pressed door ring conveyor. When two adjacent hot-pressed door ring conveyors are stacked, the foot seat of the next hot-pressed door ring conveyor is inserted into the insertion hole of the foot cover of the previous hot-pressed door ring conveyor, allowing multiple hot-pressed door ring conveyors to be stacked. This not only enables stacking and storage but also facilitates the transport of multiple stacked hot-pressed door ring conveyors. This invention has a simple structure. Not only can a single hot-pressed door ring conveying device facilitate the conveying of stored hot-pressed door rings, but multiple hot-pressed door ring conveying devices can also be stacked and transported, improving conveying efficiency and reducing the area occupied. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0017] Explanation of reference numerals in the attached figures:
[0018] 1. Hot-pressed door ring; 2. Material rack; 3. Universal casters; 4. Fixed casters; 5. Forklift frame; 6. Ankle cover; 7. Ankle seat; 8. Pulling component; 9. Pulling lock component; 10. Seat body; 11. Damping shaft; 12. Material rack body; 13. Storage cavity; 14. Lower support pad; 15. Upper support pad; 16. Divider slot; 17. Right side positioning pad; 18. Right side pressing assembly; 19. Left side clamping assembly; 20. Left side pressing assembly; 21. Fixed seat; 22. Pressing frame; 23. Elastic pad; 24. Locking fastener; 25. Label. Detailed Implementation
[0019] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.
[0020] like Figure 1As shown, the present invention provides a hot-pressed door ring conveying device, which includes a rack 2 for storing hot-pressed door rings 1. Two universal casters 3 are provided at one end of the bottom surface of the rack 2, and two fixed casters 4 are provided at the other end of the bottom surface of the rack 2. Two forklift frames 5 are provided in the middle of the bottom surface of the rack 2. An ankle cover 6 is provided at each of the four corners of the bottom surface of the rack 2, and an ankle seat 7 is provided at each of the four corners of the top surface of the rack 2. The four ankle seats 7 are respectively provided in correspondence with the four ankle covers 6. The bottom surface of the ankle cover 6 and the bottom surface of the forklift frame 5 are higher than the lowest point of the universal caster 3 and the lowest point of the fixed caster 4, that is, the universal caster 3 and the fixed caster 4 are in rolling contact with the ground. The forklift frame 5 and the ankle cover 6 are both off the ground. The bottom surface of the ankle cover 6 is recessed with an insertion hole. When two hot-pressed door ring conveying devices are stacked, the ankle seat 7 of the previous hot-pressed door ring conveying device is inserted into the insertion hole of the next hot-pressed door ring conveying device.
[0021] In practical applications, multiple hot-pressed door rings 1 are stacked in the rack 2. When it is necessary to transport the hot-pressed door rings 1 stored in the conveyor, simply push the rack 2. The two swivel casters 3 and two fixed casters 4 will cooperate to move the entire hot-pressed door ring conveyor, facilitating the transport of the stored hot-pressed door rings 1. When there are multiple hot-pressed door ring conveyors, the forklift's plate can be inserted into the forklift frame 5 to lift the hot-pressed door ring conveyor. The lifted hot-pressed door ring conveyor can then be stacked on top of another hot-pressed door ring conveyor. When two adjacent hot-pressed door ring conveyors are stacked, the foot seat 7 of the next hot-pressed door ring conveyor is inserted into the insertion hole of the foot cover 6 of the previous hot-pressed door ring conveyor, allowing multiple hot-pressed door ring conveyors to be stacked. This not only allows for stacking and storage but also facilitates the transport of multiple stacked hot-pressed door ring conveyors. This invention features a simple structure. Not only can a single hot-pressed door ring conveyor facilitate the transport of stored hot-pressed door rings 1, but multiple hot-pressed door ring conveyors can also be stacked and transported, improving transport efficiency and reducing the footprint. Furthermore, the hot-pressed door ring conveyors can also be transported using a forklift.
[0022] In this embodiment, a pulling member 8 is provided at one end of the material rack 2, and a pulling lock member 9 is provided at the other end of the material rack 2. When two hot-pressed door ring conveying devices are arranged side by side, the pulling lock member 9 of the previous hot-pressed door ring conveying device locks the pulling member 8 of the next hot-pressed door ring conveying device. In practical applications, when conveying a single hot-pressed door ring conveying device or multiple stacked hot-pressed door ring conveying devices, the pulling member 8 can be pulled to move the hot-pressed door ring conveying device. When there are multiple hot-pressed door ring conveying devices, not only can several hot-pressed door ring conveying devices be stacked together, but also two hot-pressed door ring conveying devices in front and behind can be connected together to achieve the simultaneous movement of multiple hot-pressed door ring conveying devices. Specifically, the pulling lock member 9 of the previous hot-pressed door ring conveying device locks the pulling member 8 of the next hot-pressed door ring conveying device, so that the two hot-pressed door ring conveying devices in front and behind are connected together and can move together.
[0023] In this embodiment, a seat 10 is provided on one side of the material rack 2. The seat 10 is rotatably connected to the pulling member 8 via a damping shaft 11. The damping shaft 11 allows the pulling member 8 to stop at any angle. With this structural design, when the two hot-pressing door ring conveying devices need to be connected together, the pulling member 8 is rotated downwards so that the pulling member 8 of the latter hot-pressing door ring conveying device is locked together with the pulling lock member 9 of the former hot-pressing door ring conveying device. When the pulling member 8 is not needed, the pulling member 8 is erected to avoid the pulling member 8 being laid flat and occupying space.
[0024] In this embodiment, the material rack 2 includes a material rack 2 body. A storage cavity 13 is provided in the middle of the material rack 2 body. The top surface and front side of the storage cavity 13 are both open. At least two lower support pads 14 are provided on the bottom surface of the storage cavity 13. At least two upper support pads 15 are provided on the rear side of the storage cavity 13. The upper support pads 15 are located above the lower support pads 14. Both the upper support pads 15 and the lower support pads 14 are provided with multiple partition slots 16. The partition slots 16 of the upper support pads 15 are used for the upper edge of the inner hole of the heat-pressing door ring 1 to be inserted. The partition slots 16 of the lower support pads 14 are used for the bottom edge of the heat-pressing door ring 1 to be inserted. In practical applications, multiple hot-pressed door rings 1 are horizontally stacked in the storage cavity 13. The lower support pad 14 supports the bottom edge of the hot-pressed door ring 1, and the upper support pad 15 supports the upper edge of the inner hole of the hot-pressed door ring 1. The upper edge of the inner hole of the hot-pressed door ring 1 is inserted into the partition slot 16 of the upper support pad 15, and the bottom edge of the hot-pressed door ring 1 is inserted into the partition slot 16 of the lower support pad 14, so as to position and separate two adjacent hot-pressed door rings 1, ensuring the positional accuracy and stability of the hot-pressed door rings 1, and preventing two adjacent hot-pressed door rings 1 from contacting each other.
[0025] In this embodiment, the right side wall of the storage cavity 13 is provided with a right positioning pad 17 and a right pressing component 18. The right positioning pad 17 is used to abut against the right side of the hot-pressed door ring 1, and the right pressing component 18 is located above the right positioning pad 17. The right pressing component 18 is used to press down on the top edge of the hot-pressed door ring 1. In practical applications, when the hot-pressed door ring 1 is stored in the storage cavity 13, the right positioning pad 17 abuts against the right side of the hot-pressed door ring 1, and the right pressing component 18 presses down on the top edge of the hot-pressed door ring 1 to press and fix the hot-pressed door ring 1, further improving the positional accuracy and stability of the hot-pressed door ring 1.
[0026] In this embodiment, the left side wall of the storage cavity 13 is provided with a left-side pressing component 19 and a left-side pressing component 20. The left-side pressing component 20 is located above the left-side pressing component 19. The left-side pressing component 19 is used to press the left side of the hot-pressed door ring 1, and the left-side pressing component 20 is used to press the top side of the hot-pressed door ring 1 downward. In practical applications, when the hot-pressed door ring 1 is stored in the storage cavity 13, the right-side positioning pad 17 abuts against the right side of the hot-pressed door ring 1, the left-side pressing component 19 presses the left side of the hot-pressed door ring 1, and both the left-side pressing component 20 and the right-side pressing component 18 press down on the top side of the hot-pressed door ring 1 to press and fix the hot-pressed door ring 1, further improving the positional accuracy and stability of the hot-pressed door ring 1.
[0027] In this embodiment, the structures of the right pressing component 18, the left pressing component 19, and the left pressing component 20 are the same.
[0028] In this embodiment, the right-side pressing assembly 18 includes two fixed seats 21 fixedly disposed on the right side wall of the storage cavity 13, a pressing frame 22 rotatably connected to the two fixed seats 21, an elastic protective pad 23 installed on the pressing frame 22, and a locking fastener 24 for locking the pressing frame 22 onto the fixed seat 21. Specifically, the pressing frame 22 is U-shaped or U-shaped, and the locking fastener 24 can be a bolt assembly. In practical applications, when the right-side pressing assembly 18 presses against the top edge of the hot-pressing door ring 1, the elastic protective pad 23 abuts against the top edge of the hot-pressing door ring 1, and the locking fastener 24 locks the pressing frame 22 onto the fixed seat 21. When it is necessary to release the hot-pressed door ring 1, loosen the locking fastener 24 so that the lower pressing frame 22 can swing upward, thereby separating the elastic pad 23 from the top edge of the hot-pressed door ring 1. Then, the locking fastener 24 locks the angle position of the lower pressing frame 22 onto the fixed seat 21. At this time, the hot-pressed door ring 1 in the storage cavity 13 can be taken out and put in.
[0029] In this embodiment, both the upper support pad 15 and the lower support pad 14 are made of nylon.
[0030] In this embodiment, a label 25 is provided on one side wall of the material rack 2. The label 25 can identify information such as the model of the stored hot-pressed door ring 1, so that the staff can quickly know the model and other information of the hot-pressed door ring 1 stored by the hot-pressed door ring conveying device.
[0031] All technical features in this embodiment can be freely combined according to actual needs.
[0032] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.
Claims
1. A hot-pressed door ring conveying device, characterized in that: The device includes a rack (2) for storing hot-pressed door rings (1). Two swivel casters (3) are provided at one end of the bottom surface of the rack (2), and two fixed casters (4) are provided at the other end of the bottom surface of the rack (2). Two forklift frames (5) are provided in the middle of the bottom surface of the rack (2). An ankle cover (6) is provided at each of the four corners of the bottom surface of the rack (2), and an ankle seat (7) is provided at each of the four corners of the top surface of the rack (2). The four ankle seats (7) are respectively provided in correspondence with the four ankle covers (6). The bottom surface of the ankle cover (6) and the bottom surface of the forklift frame (5) are higher than the lowest point of the swivel casters (3) and the lowest point of the fixed casters (4). The bottom surface of the ankle cover (6) is recessed with an insertion hole. When two hot-pressed door ring conveying devices are stacked, the ankle seat (7) of the previous hot-pressed door ring conveying device is inserted into the insertion hole of the next hot-pressed door ring conveying device.
2. The hot-pressed door ring conveying device according to claim 1, characterized in that: One end of the material rack (2) is provided with a traction member (8), and the other end of the material rack (2) is provided with a traction lock member (9); when two hot-pressing gate ring conveying devices are arranged side by side, the traction lock member (9) of the first hot-pressing gate ring conveying device locks the traction member (8) of the second hot-pressing gate ring conveying device.
3. The hot-pressed door ring conveying device according to claim 2, characterized in that: A seat (10) is provided on one side of the material rack (2). The seat (10) is rotatably connected to the pulling member (8) via a damping shaft (11). The damping shaft (11) allows the pulling member (8) to stay at any angle.
4. The hot-pressed door ring conveying device according to claim 1, characterized in that: The material rack (2) includes a material rack (2) body. A storage cavity (13) is provided in the middle of the material rack (2) body. The top surface and front side of the storage cavity (13) are open. At least two lower support pads (14) are provided on the bottom surface of the storage cavity (13). At least two upper support pads (15) are provided on the rear side of the storage cavity (13). The upper support pads (15) are located above the lower support pads (14). Both the upper support pads (15) and the lower support pads (14) are provided with multiple partition slots (16). The partition slots (16) of the upper support pads (15) are used for the upper edge of the inner hole of the heat-pressing door ring (1) to be inserted. The partition slots (16) of the lower support pads (14) are used for the bottom edge of the heat-pressing door ring (1) to be inserted.
5. The hot-pressed door ring conveying device according to claim 4, characterized in that: The right side wall of the storage cavity (13) is provided with a right positioning pad (17) and a right pressing assembly (18). The right positioning pad (17) is used to abut against the right side of the hot pressing door ring (1). The right pressing assembly (18) is located above the right positioning pad (17) and is used to press down on the top edge of the hot pressing door ring (1).
6. The hot-pressed door ring conveying device according to claim 5, characterized in that: The left side wall of the storage cavity (13) is provided with a left pressing assembly (19) and a left pressing assembly (20). The left pressing assembly (20) is located above the left pressing assembly (19). The left pressing assembly (19) is used to press the left side of the hot pressing door ring (1), and the left pressing assembly (20) is used to press the top side of the hot pressing door ring (1) downward.
7. A hot-pressed door ring conveying device according to claim 6, characterized in that: The structure of the right pressing component (18), the left pressing component (19), and the left pressing component (20) are the same.
8. The hot-pressed door ring conveying device according to claim 7, characterized in that: The right-side pressing assembly (18) includes two fixed seats (21) fixedly disposed on the right side wall of the storage cavity (13), a pressing frame (22) rotatably connected to the two fixed seats (21), an elastic pad (23) installed on the pressing frame (22), and a locking fastener (24) for locking the pressing frame (22) to the fixed seat (21).
9. A hot-pressed door ring conveying device according to claim 4, characterized in that: Both the upper support pad (15) and the lower support pad (14) are made of nylon.
10. A hot-pressed door ring conveying device according to claim 1, characterized in that: A label (25) is provided on one side wall of the material rack (2).
Citation Information
Patent Citations
Folding material frame for transporting automobile door ring stamping parts
CN220765024U