Lamination detection device
The stacking detection device, which combines the lifting component and the support part, solves the problems of inaccurate detection data and misalignment of gaps during the stacking process, and achieves efficient and accurate stacking detection.
Patent Information
- Application Number
- CN202423116269.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-17
AI Technical Summary
The existing detection data during the stacking process is inaccurate, and the gaps and misalignments between the stacked wafers make detection difficult, affecting production efficiency.
The tooling plate is brought to a stationary state by a lifting component for inspection. Multiple support parts and positioning blocks are combined to achieve different heights for inspection. A pressure plate is used to eliminate gaps, and pneumatic grippers are used to correct the side walls of the stacked plates, thereby improving inspection accuracy and reducing the risk of misalignment.
It improves the accuracy of stacked wafer inspection, reduces gaps and misalignments, lowers the inspection difficulty, and improves the overall inspection efficiency.
Smart Images

Figure CN223611397U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material detection field, more particularly, the utility model further relates to a lamination detection device. BACKGROUND
[0002] The battery temperature of new energy automobile also needs a heat exchanger to carry out battery temperature heat management, the heat exchanger needs to be stacked by multiple different laminations, therefore, the laminations need to be detected during stacking, and the existing detection is mainly artificial detection or equipment auxiliary detection, and direct detection during conveying is often used, which leads to the phenomenon that the detection data cannot be accurate, and influences subsequent production and processing.
[0003] Meanwhile, the laminations may appear gaps or misalignment during stacking, which leads to great difficulty in auxiliary detection and recognition, leads to many detection factors, and thus influences overall detection efficiency. UTILITY MODEL CONTENT
[0004] In order to realize the purpose of the utility model, the technical scheme that the utility model adopts is as follows: a lamination detection device is used to drive a tool plate on which laminations are placed to convey, comprising: a processing box, a conveying track for conveying the tool plate is arranged in the processing box, a jacking assembly is arranged in the middle section of the conveying track, the jacking assembly drives the tool plate to be jacked up and arranged directly above the conveying track, a detection assembly is arranged in the processing box, and the detection assembly detects the tool plate in the jacked-up state.
[0005] Preferably, the jacking assembly comprises: a positioning plate fixedly arranged in the processing box, a lifting cylinder is arranged below the positioning plate, the extension rod of the lifting cylinder is fixedly connected with the bottom of the positioning plate, the shell of the lifting cylinder is fixedly connected with a displacement plate, the displacement plate is fixedly connected with a plurality of lifting columns, the lifting columns extend to the upper surface of the positioning plate and are fixedly connected with a lifting plate, and the lifting plate drives the tool plate to be in the jacked-up state.
[0006] Preferably, the upper surface of the positioning plate is fixedly connected with a sliding rail, a support block is arranged on the sliding rail, the positioning plate is fixedly connected with a cylinder that drives the support block to move along the length direction of the sliding rail, the lower surface of the lifting plate is fixedly connected with a positioning block, and the positioning block and the support block cooperate to drive the lifting plate and the tool plate to be in a detection station.
[0007] Preferably, the support block is provided with a plurality of support portions, and the positioning block cooperates with different support portions to drive the lifting plate and the tool plate to be in different detection stations.
[0008] Preferably, the detection assembly comprises: a detection camera fixedly arranged in the processing box, a moving module is fixedly connected in the processing box, the moving module cooperates with a light, and the light moves along the length direction of the moving module.
[0009] Preferably, the processing box is provided with a clamping plate, the clamping plate is fixedly arranged in the processing box through a plurality of supporting columns, a pressing cylinder is fixedly connected to the clamping plate above the positioning plate, the telescopic rod of the pressing cylinder is fixedly connected with a pressing plate matched with the laminated sheet, and the clamping plate is also fixedly connected with a laminated sheet side wall correcting assembly.
[0010] Preferably, the pressing plate is fixedly connected with a chute, and the chute is fixedly connected with a pressing block through a locking assembly.
[0011] Preferably, the laminated sheet side wall correcting assembly comprises a downward moving cylinder fixedly arranged on the clamping plate, and the telescopic rod of the downward moving cylinder is fixedly connected with a pneumatic clamp jaw matched with the side wall of the laminated sheet assembly.
[0012] Preferably, the processing box is provided with a processing area and a driving area.
[0013] Compared with the prior art, the utility model has the beneficial effects that:
[0014] 1. The jacking assembly drives the tooling plate to be jacked up above the conveying track, and the detection assembly detects the tooling plate in a static state, so that the accuracy of detection data is improved.
[0015] 2. The tooling plate is static at different heights through cooperation of the plurality of supporting portions and the positioning blocks, so that the stacked products are detected in different height directions.
[0016] 3. The pressing plate presses the stacked products, reduces the gap phenomenon of the laminated sheets after stacking, reduces detection factors, and reduces identification difficulty.
[0017] 4. The pneumatic clamp jaw corrects the side wall of the stacked products, reduces the misalignment phenomenon of the stacking, further reduces detection factors, and reduces identification difficulty. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a whole structure schematic view of the laminated sheet detection device of the utility model;
[0019] Figure 2 It is a local structure schematic view of the laminated sheet detection device of the utility model Figure One ;
[0020] Figure 3 It is a local structure schematic view of the laminated sheet detection device of the utility model Figure Two ;
[0021] Figure 4 It is an enlarged view of the structure A of the laminated sheet detection device of the utility model;
[0022] Figure 5The utility model discloses a partial structure diagram of lamination detection device Figure Three .
[0023] In the drawing: 1, processing box;2, conveying track;3, tooling plate;4, positioning plate;5, lifting cylinder;6, displacement plate;7, lifting column;8, lifting plate;9, slide rail;10, support block;11, positioning block;12, detection camera;13, movement module;14, light;15, clamping plate;16, down pressure cylinder;17, compression plate;18, down pressure block;19, down moving cylinder;20, pneumatic clamping jaw. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0025] Figure 1 As shown in Figure 5 The utility model provides a technical scheme: a lamination detection device is used for conveying tooling plate 3 on which laminations are placed, and the laminations are stacked and then processed into a heat exchanger of a new energy automobile battery in a processing area.
[0026] It comprises processing box 1, and the processing box 1 is equipped with a processing area and a driving area. The processing area is equipped with a device for assisting in detecting the stacked lamination assembly, and the driving area is used for placing driving elements (power supply, transformer, air pump and the like).
[0027] The processing box 1 is equipped with a conveying track 2 for conveying the tooling plate 3, and the conveying track 2 adopts an existing synchronous belt conveying. The tooling plate 3 is placed on the synchronous belt, and the tooling plate 3 is driven by the synchronous belt to move along the length direction of the conveying track 2, so that the conveying of the tooling plate 3 is facilitated. The tooling plate 3 is equipped with a conveying plate for placing the lamination assembly (a plurality of laminations are stacked).
[0028] A jacking assembly is arranged in the middle section of the conveying track 2, and the jacking assembly drives the tooling plate 3 to be jacked up and arranged directly above the conveying track 2. A detection assembly is arranged in the processing box 1, and the detection assembly detects the tooling plate 3 in the jacked-up state. The jacking assembly mainly drives the tooling plate 3 to be jacked up, so that the tooling plate 3 can be detected in a static state, the detection difficulty is reduced, and the accuracy of the detection data is improved.
[0029] The jacking assembly comprises: a positioning plate 4 fixedly arranged in the machining box 1, a lifting cylinder 5 arranged below the positioning plate 4, a telescopic rod of the lifting cylinder 5 fixedly connected with the bottom of the positioning plate 4, a displacement plate 6 fixedly connected with the outer shell of the lifting cylinder 5, a plurality of lifting columns 7 fixedly connected with the displacement plate 6, a lifting plate 8 fixedly connected with the lifting columns 7 extending to the upper surface of the positioning plate 4, and the tool plate 3 driven by the lifting plate 8 in the jacking state.
[0030] Since the detection assembly is fixed in the height direction, in order to realize the multiple height stops of the tool plate 3, a sliding rail 9 is fixedly connected with the upper surface of the positioning plate 4, a support block 10 is movably arranged on the sliding rail 9, a cylinder fixedly connected with the positioning plate 4 drives the support block 10 to move along the length direction of the sliding rail 9, a positioning block 11 is fixedly connected with the lower surface of the lifting plate 8, and the positioning block 11 cooperates with the support block 10 to drive the lifting plate 8 and the tool plate 3 to be in the detection station.
[0031] The support block 10 is provided with a plurality of support portions, and two support portions are adopted in the embodiment. The positioning block 11 cooperates with different support portions to drive the lifting plate 8 and the tool plate 3 to be in different detection stations.
[0032] The detection assembly comprises: a detection camera 12 fixedly arranged in the machining box 1, a moving module 13 fixedly connected in the machining box 1, and a light 14 cooperating with the moving module 13 and moving along the length direction of the moving module 13. The light 14 is mainly used for lighting to cooperate with the detection camera 12. The distance of the light 14 needs to be adjusted for different stack assemblies, so as to assist the detection camera 12 in detection.
[0033] The stack assembly needs to be pretreated before detection. The machining box 1 is provided with a clamping plate 15 fixedly arranged in the machining box 1 through a plurality of supporting columns. A pressing cylinder 16 is fixedly connected with the clamping plate 15 above the positioning plate 4. A pressing plate 17 matched with the stack is fixedly connected between the clamping plate 15 and the positioning plate 4 through a telescopic rod of the pressing cylinder 16. The clamping plate 15 is also fixedly connected with a stack side wall correcting assembly.
[0034] The pressing plate 17 is mainly used for pressing treatment of the stack assembly, driving the stacked stack to be pressed and eliminating the gap, and reducing the difficulty of subsequent detection.
[0035] The pressing plate 17 is fixedly connected with a sliding groove. A pressing block 18 is fixedly connected in the sliding groove through a locking assembly. The pressing block 18 cooperates with the sliding groove, so as to facilitate replacement of different pressing blocks 18 and improve the adaptability of the equipment.
[0036] The locking assembly can adopt screw locking or locking by a lock, so as to improve the locking effect of the pressing block 18 and improve the replacement efficiency of the pressing block 18.
[0037] The lamination misalignment phenomenon also occurs in the lamination stacking process, so the lamination side wall correction assembly is needed to drive the lamination assembly to correct the side wall, and the lamination side wall correction assembly needs to correct the side wall of the lamination assembly first, and then the pressing block 18 is pressed to drive the lamination to be pressed.
[0038] The lamination side wall correction assembly comprises a downward moving air cylinder 19 fixedly arranged on the clamping plate 15, and the telescopic rod of the downward moving air cylinder 19 is fixedly connected with a pneumatic clamp jaw 20 matched with the side wall of the lamination assembly. The pneumatic clamp jaw 20 drives the lamination side wall to be corrected.
[0039] When working, the tool plate 3 drives the conveying plate to enter the conveying track 2, and drives the tool plate 3 to move from one side of the machining box 1 to the other side through the conveying track 2.
[0040] When the tool plate 3 is conveyed to the top of the jacking assembly, the jacking assembly drives the tool plate 3 to be jacked up, mainly by a sensor to judge whether the tool plate 3 moves to the top of the jacking assembly.
[0041] The lamination side wall correction assembly needs to correct the side wall of the lamination assembly first, and then the pressing block 18 is pressed to drive the lamination to be pressed. After the pressing is completed, the lamination assembly is detected by the detection assembly, and the tool plate 3 is driven to be stationary at different heights by the cooperation of the different supporting parts of the supporting block 10 and the positioning block 11, so that the lamination assembly is detected at different heights.
[0042] After detection is completed, the jacking assembly drives the tool plate 3 to fall into the conveying track 2, and the conveying track 2 drives the tool plate 3 to be conveyed to the next station.
[0043] The embodiments of the utility model disclose the better embodiment, but it is not limited to this, the ordinary skill of the art, the person, the spirit of the utility model is appreciated to the above-mentioned embodiment very easily, and different extension and change are made, but as long as not departing from the spirit of the utility model, all are in the protection range of the utility model.
Claims
1. A lamination detecting device for driving a tool plate on which a lamination is placed to be conveyed, characterized by, Include: Processing box, the processing box is equipped with conveying track for tooling plate conveying, the conveying track middle section is equipped with a lifting assembly, the lifting assembly drives tooling plate lifting to be arranged directly above the conveying track, the processing box is equipped with a detection assembly, the detection assembly detects tooling plate in the lifting state.
2. The lamination inspection apparatus according to claim 1, characterized by The lifting assembly includes: a positioning plate fixedly arranged in the processing box, a lifting cylinder is arranged below the positioning plate, the extension rod of the lifting cylinder is fixedly connected with the bottom of the positioning plate, the outer shell of the lifting cylinder is fixedly connected with a displacement plate, the displacement plate is fixedly connected with a plurality of lifting columns, the lifting columns extend to the upper surface of the positioning plate and are fixedly connected with a lifting plate, the lifting plate drives the tooling plate to be in the lifting state.
3. The lamination inspection apparatus according to claim 2, characterized by The upper surface of the positioning plate is fixedly connected with a sliding rail, the sliding rail is movably provided with a support block, the positioning plate is fixedly connected with a cylinder for driving the support block to move along the length direction of the sliding rail, the lower surface of the lifting plate is fixedly connected with a positioning block, the positioning block cooperates with the support block to drive the lifting plate and the tooling plate to be in the detection station.
4. The lamination inspection apparatus according to claim 3, characterized by The support block is provided with a plurality of support portions, and the positioning block cooperates with different support portions to drive the lifting plate and the tooling plate to be in different detection stations.
5. The lamination inspection apparatus according to claim 1, characterized by The detection assembly includes: a detection camera fixedly arranged in the processing box, a moving module is fixedly connected in the processing box, the moving module cooperates with a light, and the light moves along the length direction of the moving module.
6. The lamination inspection apparatus of claim 1, wherein The processing box is provided with a clamping plate, the clamping plate is fixedly arranged in the processing box through a plurality of supporting columns, a pressing cylinder is fixedly connected above the clamping plate, the extension rod of the pressing cylinder is fixedly connected with a pressing plate matched with the laminated sheet between the clamping plate and the positioning plate, and the clamping plate is further fixedly connected with a laminated sheet side wall correction assembly.
7. The lamination inspection apparatus according to claim 6, characterized by The pressing plate is fixedly connected with a sliding groove, and a pressing block is fixedly connected in the sliding groove through a locking assembly.
8. The lamination inspection apparatus according to claim 6, characterized by The laminated sheet side wall correction assembly includes: a downward moving cylinder fixedly arranged on the clamping plate, and the extension rod of the downward moving cylinder is fixedly connected with a pneumatic clamp jaw matched with the side wall of the laminated sheet assembly.
9. The lamination inspection apparatus of claim 1, wherein The processing box is provided with a processing area and a driving area.