Transportation device for heat exchanger tool
By designing a closed-loop conveyor line and lifting components, the problem of manual stacking during the transportation of heat exchanger tooling plates was solved, uninterrupted transportation was achieved, processing efficiency was improved, and costs were reduced.
Patent Information
- Application Number
- CN202422956459.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing heat exchanger tooling plates need to be manually stacked and re-delivered during transportation, resulting in high processing costs and low efficiency.
A heat exchanger tooling transportation device was designed. The conveying track, lifting warehouse and detection track were used to form a closed-loop conveyor line. The lifting assembly and drive assembly were used to achieve uninterrupted transportation of the conveyor plate. The conveying motor and transfer motor were combined to drive the conveyor plate to move between different tracks.
It improves processing efficiency, reduces overall processing costs, and has high transmission accuracy.
Smart Images

Figure CN223356596U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to tooling transportation, and more specifically, to a tooling transportation device for a heat exchanger. Background Art
[0002] With the continuous development of new energy vehicles, the battery temperature of new energy vehicles also requires a heat exchanger for battery temperature thermal management. The heat exchanger needs to be stacked with multiple different laminates, so different placement stations need to be set up on the tooling board. The tooling board needs to be placed on the conveyor belt in conjunction with the transfer plate, and then the tooling board is transported from the initial position to the processing station through the conveyor belt. During the transportation, different laminates are collected and finally transported to the processing station. However, after the existing transfer plate drives the processing plate to the processing station, the transfer plate needs to be manually stacked and then transported to the initial station and then transported again, resulting in high overall processing costs and low processing efficiency. Utility Model Content
[0003] In order to achieve the purpose of the present invention, the technical solution adopted by the present invention is: a heat exchanger tooling transportation device, used for transporting conveyor plates, including: a processing warehouse, a conveying track is provided in the processing warehouse, the processing warehouse is located on both sides of the conveying track and is provided with a feed port and a discharge port, the feed port and the discharge port are each provided with a lifting warehouse, the lifting warehouse is provided with a lifting component that cooperates with the conveying track, the upper surface of the processing warehouse is provided with a detection track, and the lifting component drives the conveying plate to and from the conveying track and the detection track.
[0004] Preferably, the detection track and the conveying track both include: a support frame, the support frame is provided with two parallel conveying parts, both ends of the parallel conveying parts are rotatably provided with a roller, the conveyor belt is mounted on the two rollers, the support frame is fixedly connected to a conveying motor, the output shaft of the conveying motor drives the roller to rotate and cooperates with the conveyor belt to drive the transfer plate from one end of the parallel conveying part to the other end.
[0005] Preferably, the lifting component includes: a lifting guide rail fixedly arranged in the lifting warehouse, the lifting guide rail is arranged perpendicular to the conveying track and the detection track, a lifting frame is provided for movement in the length direction of the lifting guide rail, and a driving component is fixedly connected in the lifting warehouse, and the driving component drives the lifting frame to reciprocate along the lifting guide rail.
[0006] Preferably, the driving assembly includes: a driving cylinder fixedly arranged in the lifting warehouse, the telescopic rod of the driving cylinder is fixedly connected to a lifting platform, two transfer gears are rotatably provided on the lower surface of the lifting platform, the transfer gears are matched with a chain, one end of the chain is fixedly connected to the lifting warehouse, and the other end of the chain is fixedly connected to the lifting frame.
[0007] Preferably, the lifting frame is fixedly connected to a conveying platform, and the conveying platform is provided with two transfer frames, and a transfer wheel is rotatably provided at both ends of the transfer frame, and the transmission belt is mounted on the two transfer wheels. The conveying platform is fixedly connected to a transfer motor, and the output shaft of the transfer motor drives the transfer wheel to rotate and drives the transmission plate to enter or exit the conveying platform.
[0008] Preferably, the conveying platform is fixedly connected to a limit block.
[0009] Preferably, the lifting warehouse is provided with a connecting hole connecting the conveying track and the detection track.
[0010] Compared with the prior art, the beneficial effects of the present invention are:
[0011] 1. A closed-loop conveyor line is formed by the conveyor track, two lifting bins, and the detection track to achieve uninterrupted transportation of conveyor plates, improve overall processing efficiency, and reduce processing costs.
[0012] 2. The telescopic rod of the driving cylinder drives the transfer gear and chain to drive the lifting frame to reciprocate along the lifting guide rail, thereby improving the overall transmission efficiency, having a compact structure and high overall transmission accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the overall structure of the heat exchanger tooling and transportation device of the utility model;
[0014] Figure 2 This is a partial structural diagram of the heat exchanger tooling and transportation device of the utility model;
[0015] Figure 3 This is a schematic diagram of the structure of the heat exchanger tooling and transportation device at position A of the utility model;
[0016] Figure 4 This is a schematic diagram of the internal structure of the lifting compartment of the heat exchanger tooling transportation device of the present invention.
[0017] In the figure: 1. Processing chamber; 2. Conveying track; 3. Lifting chamber; 4. Inspection track; 5. Lifting guide rail; 6. Lifting frame; 7. Driving cylinder; 8. Lifting platform; 9. Transfer gear; 10. Chain; 11. Conveying platform; 12. Transfer motor; 13. Conveyor belt; 14. Limit block. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0019] Figures 1 to 4 As shown, the utility model provides a technical solution: a heat exchanger tooling transportation device for transporting conveyor plates, comprising: a processing warehouse 1, a conveying track 2 is provided in the processing warehouse 1, a detection track 4 is provided on the upper surface of the processing warehouse 1, the processing warehouse 1 is located on both sides of the conveying track 2 and is provided with a feed port and a discharge port, and a lifting warehouse 3 is provided at the feed port and the discharge port, and a lifting component cooperating with the conveying track 2 is provided in the lifting warehouse 3.
[0020] The conveying track 2, the two lifting bins 3 and the detection track 4 form a closed-loop conveying line, which enables uninterrupted transportation of the conveyor plates and improves the overall processing efficiency.
[0021] Both the inspection track 4 and the conveyor track 2 include a support frame with two parallel conveying sections. Each of the parallel conveying sections is rotatably provided with a roller, and a conveyor belt is mounted on the two rollers. The support frame is fixedly connected to a conveyor motor. The output shaft of the conveyor motor drives the rollers to rotate, and in conjunction with the conveyor belt, the conveyor plate is transported from one end of the parallel conveying section to the other. The inspection track 4 and the conveyor track 2 utilize existing synchronous belt conveying methods. The conveyor plate rests on the conveyor belt, which then drives the conveyor plate along the length of the parallel conveying section. The conveyor plate is transported to its initial position (i.e., the feed port of the conveyor track 2), where it drives the tooling plate to be placed on the conveyor plate. The conveyor plate primarily positions the tooling plate to improve overall processing accuracy.
[0022] The lifting warehouse 3 is provided with a connecting hole connecting the conveying track 2 and the detection track 4. The connecting hole is mainly for the convenience of the conveying plate to pass through. The lifting component drives the conveying plate to and from the conveying track 2 and the detection track 4. The lifting component includes: a lifting guide rail 5 fixedly arranged in the lifting warehouse 3, the lifting guide rail 5 is arranged perpendicular to the conveying track 2 and the detection track 4, and a lifting frame 6 is provided for movement in the length direction of the lifting guide rail 5. A driving component is fixedly connected to the lifting warehouse 3, and the driving component drives the lifting frame 6 to reciprocate along the lifting guide rail 5.
[0023] The drive assembly includes: a drive cylinder 7 fixedly arranged in the lifting chamber 3, a telescopic rod of the drive cylinder 7 fixedly connected to a lifting platform 8, two transfer gears 9 are rotatably provided on the lower surface of the lifting platform 8, and the transfer gears 9 are matched with a chain 10, one end of the chain 10 is fixedly connected to the lifting chamber 3, and the other end of the chain 10 is fixedly connected to the lifting frame 6. When the telescopic rod of the drive cylinder 7 drives the lifting platform 8 upward, since the other end of the chain 10 is fixed in the lifting chamber 3, the telescopic rod of the drive cylinder 7 drives the lifting frame 6 to rise along the lifting guide rail 5 during the extension process, thereby driving the conveyor plate from the conveying track 2 to the detection track 4.
[0024] The lifting frame 6 is fixedly connected to a conveying platform 11, and the conveying platform 11 is provided with two transfer frames. A transfer wheel is rotatably provided at both ends of the transfer frame. The transmission belt 13 is mounted on the two transfer wheels. The conveying platform 11 is fixedly connected to a transfer motor 12. The output shaft of the transfer motor 12 drives the transfer wheel to rotate and drives the conveying plate to enter or exit the conveying platform 11.
[0025] The transmission method of the above-mentioned conveyor belt 13 also adopts the existing synchronous belt conveying method, which mainly drives the conveying plate of the conveying track 2 or the detection track 4 into the conveying platform 11, and then drives the lifting frame 6 to rise and fall through the driving component, so as to realize the conveying plate driving the tooling plate to travel back and forth between the conveying track 2 and the detection track 4.
[0026] The conveying platform 11 is fixedly connected with a limit block 14. The limit block 14 is used to place the conveying plate for limiting the position, thereby improving the movement accuracy.
[0027] like Figures 1 to 4 As shown, during operation, the conveyor plate enters the conveyor track 2 from the initial position (that is, the feed port of the conveyor track 2), the tooling plate is placed on the conveyor plate, and the transmission plate is driven by the conveyor belt for transportation. During the transportation process, different stacks are placed on the workstations of the tooling plate.
[0028] When the conveyor belt drives the transmission plate to the processing station (that is, the discharge port of the conveyor track 2), the transmission plate drives the tooling plate into the lifting warehouse 3. There are handles on the two parallel sides of the tooling plate. The technicians use the handles to drive the tooling plate to separate from the transmission plate and drive the tooling plate to the next station.
[0029] After the tooling plate is detached, the telescopic rod of the driving cylinder 7 drives the lifting platform 8 downward. Since the other end of the chain 10 is fixed in the lifting warehouse 3, the telescopic rod of the driving cylinder 7 drives the lifting frame 6 downward along the lifting guide rail 5 during the extension process, thereby driving the conveying plate from the detection track 4 to the conveying track 2.
[0030] The conveying track 2 drives the conveying plate to the lifting warehouse 3 on the other side. After the conveying plate enters the lifting warehouse 3, the telescopic rod of the driving cylinder 7 drives the lifting platform 8 upward. Since the other end of the chain 10 is fixed in the lifting warehouse 3, the telescopic rod of the driving cylinder 7 drives the lifting frame 6 to rise along the lifting guide rail 5 during the extension process, thereby driving the conveying plate from the conveying track 2 to the detection track 4.
[0031] From then on, the tooling plate is driven back and forth by the transmission plate for transportation, which improves the overall work efficiency and reduces the overall processing cost.
[0032] The embodiments disclosed in the present invention are preferred embodiments, but are not limited to them. Ordinary technicians in this field can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. As long as they do not deviate from the spirit of the present invention, they are all within the scope of protection of the present invention.
Claims
1. A heat exchanger tooling transport device for transporting a transfer plate, characterized in that: It includes: a processing warehouse, a conveying track is provided in the processing warehouse, a feed port and a discharge port are provided on both sides of the conveying track, a lifting warehouse is provided at the feed port and the discharge port, a lifting component is provided in the lifting warehouse to cooperate with the conveying track, a detection track is provided on the upper surface of the processing warehouse, and the lifting component drives the transmission plate to and from the conveying track and the detection track.
2. The heat exchanger tooling transportation device according to claim 1, characterized in that: The detection track and the conveying track both include: a support frame, the support frame is provided with two parallel conveying parts, each end of the parallel conveying part is rotatably provided with a roller, the conveyor belt is set on the two rollers, the support frame is fixedly connected to the conveying motor, the output shaft of the conveying motor drives the roller to rotate and cooperates with the conveyor belt to drive the transmission plate from one end of the parallel conveying part to the other end.
3. The heat exchanger tooling transportation device according to claim 1, characterized in that: The lifting assembly includes: a lifting guide rail fixedly arranged in the lifting warehouse, the lifting guide rail is arranged perpendicular to the conveying track and the detection track, a lifting frame is provided with a lifting frame that moves in the length direction of the lifting guide rail, and a driving assembly is fixedly connected in the lifting warehouse, and the driving assembly drives the lifting frame to reciprocate along the lifting guide rail.
4. The heat exchanger tooling transportation device according to claim 3, characterized in that: The driving assembly includes: a driving cylinder fixedly arranged in the lifting warehouse, the telescopic rod of the driving cylinder is fixedly connected to a lifting platform, two transfer gears are rotatably provided on the lower surface of the lifting platform, the transfer gears are matched with a chain, one end of the chain is fixedly connected to the lifting warehouse, and the other end of the chain is fixedly connected to the lifting frame.
5. The heat exchanger tooling transportation device according to claim 4, characterized in that: The lifting frame is fixedly connected to a conveying platform, and the conveying platform is provided with two transfer frames. A transfer wheel is rotatably provided at both ends of the transfer frame, and the transmission belt is sleeved on the two transfer wheels. The conveying platform is fixedly connected to a transfer motor, and the output shaft of the transfer motor drives the transfer wheel to rotate and drives the transmission plate to enter or exit the conveying platform.
6. The heat exchanger tooling transportation device according to claim 5, characterized in that: The conveying platform is fixedly connected with a limit block.
7. The heat exchanger tooling transportation device according to claim 3, characterized in that: The lifting warehouse is provided with a connecting hole connecting the conveying track and the detection track.