Automatic transplanting laser line body
The automatic transfer laser line enables the automatic transfer of heat sinks between processing stations and the disposal of waste materials, solving the problem of time-consuming inter-process transfer in existing technologies and improving processing efficiency and production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2026-03-31
AI Technical Summary
In the existing heat sink manufacturing process, the transfer time between processes is long, which leads to a longer processing cycle and an increased workload for workers, thus affecting processing efficiency.
Design an automatic transfer laser line, including a position adjustment module and a product transfer module, to realize the automatic transfer of heat sinks between processing positions. Combined with waste material handling and flipping devices, it improves processing efficiency.
Automated workflow and waste disposal shorten the production cycle of heat sinks, improve processing efficiency, reduce manual operations, and meet production needs.
Smart Images

Figure CN224058943U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of heat sink processing technology, and specifically relates to an automatic transfer laser line. Background Technology
[0002] The heat sink manufacturing process requires multiple cutting and cleaning operations. Currently, the processing stations are scattered, and after one process is completed, workers need to transfer the heat sink to the next station. This transfer process not only consumes a lot of time and increases the processing cycle of the heat sink, but also increases the workload of the workers, seriously affecting the processing efficiency. Therefore, the current heat sink processing needs to be improved. Utility Model Content
[0003] Purpose of the utility model: In order to overcome the above shortcomings, the purpose of this utility model is to provide an automatic transfer laser line, which has a simple structure, reasonable design, is easy to produce, has a high degree of automation, and improves work efficiency.
[0004] Technical Solution: To achieve the above objectives, this utility model provides an automatic transfer laser line, comprising: a transfer line, wherein at least one processing station is provided on one side of the transfer line, and the processing station is provided with a position adjustment module for adjusting the product position and a product transfer module. The automatic transfer laser line of this utility model, through the setting of the position adjustment module and the product transfer module, allows the line to automatically transfer heat sinks between various processing stations, effectively improving its processing efficiency, shortening the production cycle of the heat sinks, and better meeting production needs.
[0005] The position adjustment module includes a first position adjustment module and a second position adjustment module. The installation positions of the first position adjustment module and the second position adjustment module can be adjusted according to the needs of each processing position on the transfer line.
[0006] The first position adjustment module is mounted on the worktable of the processing station, and a protective mechanism is provided on the outside of the first position adjustment module. The arrangement of the first position adjustment module and the second position adjustment module allows for the selection of a suitable position adjustment mechanism according to actual needs.
[0007] Furthermore, the first position adjustment module includes an X-axis moving module and a Y-axis moving module. The Y-axis moving module is located on the worktable, and the X-axis moving module is located above the Y-axis moving module and is movably connected to the Y-axis moving module.
[0008] Preferably, the product transfer module includes a first product transfer module and a second product transfer module, which are located at corresponding processing positions on the transfer line. The arrangement of the first and second product transfer modules allows each workstation to select the appropriate transfer module according to its actual needs to complete the transfer of products between workstations.
[0009] Furthermore, the first product transfer module includes a first horizontal moving module, a first mounting frame, and a first product transfer mechanism. The first horizontal moving module is mounted on a workbench, and the first mounting frame is movably connected to the first horizontal moving module. A lifting module is mounted on the first mounting frame, and the first product transfer mechanism is connected to the lifting module. The first horizontal moving module and the lifting module can adjust the position of the first product transfer mechanism according to processing needs, allowing it to better complete the product transfer.
[0010] Preferably, the second product transplanting module includes a second horizontal moving module, a second mounting frame, and a second product transplanting mechanism. The second horizontal moving module is mounted on the workbench of the corresponding workstation. The second mounting frame is slidably connected to the second horizontal moving module via a sliding seat, and a second lifting module is provided on the second mounting frame. Mounting frames are located on both sides of the second mounting frame, and slide rails are provided on the mounting frames. The second product transplanting mechanism is connected to the second lifting module, and its two sides are connected to the slide rails via sliding blocks. The second product transplanting mechanism is slidably connected to the slide rails via sliding blocks. In actual use, its horizontal and vertical positions can be adjusted not only by the second horizontal moving module and the second lifting module, but also by adjusting the relative position of the second product transplanting mechanism and the second mounting frame according to the actual situation.
[0011] More preferably, the second product transplanting mechanism includes a second product transplanting mounting plate, at least one product transplanting unit, and a drive cylinder. The second product transplanting mounting plate is provided with a slide rail, the product transplanting unit is slidably connected to the slide rail via a sliding block, and the drive cylinder is mounted on the second product transplanting mounting plate, with its output end connected to the product transplanting unit.
[0012] In addition, it also includes a waste handling mechanism, which is located on the corresponding processing station; the worktable of the processing station is equipped with a slide rail;
[0013] The waste handling mechanism includes a waste handling mounting frame, at least one waste handling clamping mechanism, and a waste handling drive cylinder. The waste handling mounting frame is connected to a drive block on the waste handling drive cylinder, and one side is slidably connected to a slide rail via a sliding block. The waste handling clamping mechanism is mounted on the waste handling mounting frame, and the waste handling drive cylinder is located on the worktable. This waste handling mechanism allows for the removal of sheared waste, eliminating the need for manual waste removal.
[0014] This utility model also includes a flipping device, which is disposed on the corresponding processing position on the transfer line;
[0015] The flipping device includes a horizontal moving module, a vertical moving module, and a flipping mechanism. The horizontal moving module is mounted on the workbench, the vertical moving module is movably connected to the horizontal moving module, and the flipping mechanism is connected to the vertical moving module through a transition frame.
[0016] The flipping mechanism includes a flipping drive mechanism and a flipping frame. The flipping drive mechanism is mounted on the adapter frame, and the flipping frame is located on one side of the flipping frame and connected to the output end of the flipping drive mechanism. The flipping device enables automatic flipping of the product after the first shearing and cleaning, facilitating subsequent processing.
[0017] Furthermore, the transplanting line is provided with a first cutting station, a first cleaning station, a product flipping station, a second cutting station, and a second cleaning station. The first product transplanting module is located on one side of the first cutting station and the first cleaning station, the second product transplanting module is located on one side of the product flipping station, the second cutting station, and the second cleaning station, the waste material handling mechanism is located on one side of the first cutting station, and the flipping device is located at the product flipping station.
[0018] As can be seen from the above technical solution, this utility model has the following beneficial effects:
[0019] 1. The automatic transfer laser line described in this utility model, through the setting of position adjustment module and product transfer module, enables the line to realize automatic transfer of heat sinks between various processing positions, effectively improving its processing efficiency, shortening the production cycle of heat sinks, and better meeting production needs.
[0020] 2. The second product transplanting mechanism is slidably connected to the slide rail via a sliding block. In actual use, its horizontal and vertical positions can be adjusted not only by the second horizontal moving module and the second lifting module, but also by adjusting the relative position between the second product transplanting mechanism and the second mounting frame according to the actual situation.
[0021] 3. The waste handling mechanism can remove the waste after shearing, saving manual labor for waste removal.
[0022] 4. The flipping device can automatically flip the product after the first cutting and cleaning, making it easier for subsequent processing. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of the automatic transplanting laser line described in this utility model;
[0024] Figure 2 This is a partial schematic diagram of the automatic transplanting laser line in this utility model from another perspective;
[0025] Figure 3 This is a schematic diagram of the installation of the X-axis moving module in this utility model;
[0026] Figure 4 This is a schematic diagram of the structure of the first product transplanting module in this utility model;
[0027] Figure 5 This is a schematic diagram of the structure of the second product transplanting module in this utility model;
[0028] Figure 6 This is a schematic diagram of the waste handling mechanism in this utility model;
[0029] Figure 7 This is a schematic diagram of the flipping device in this utility model. Detailed Implementation
[0030] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments.
[0031] Example 1
[0032] like Figures 1 to 5 An automatic transplanting laser line is shown, comprising: a transplanting line 21, wherein at least one processing position is provided on one side of the transplanting line 21, and the processing position is provided with a position adjustment module 22 for adjusting the product position and a product transplanting module 23.
[0033] The position adjustment module 22 includes a first position adjustment module and a second position adjustment module. The installation positions of the first position adjustment module and the second position adjustment module can be adjusted according to the needs of each processing position on the transfer line 21.
[0034] The first position adjustment module is located on the workbench of the processing station, and a protective mechanism 24 is provided on the outside of the first position adjustment module. It should be noted that whether a first position adjustment module or a second position adjustment module is set on each processing station depends on its specific actual needs.
[0035] like Figure 3 The first position adjustment module shown includes an X-axis moving module 221 and a Y-axis moving module 222. The Y-axis moving module 222 is disposed on the worktable, and the X-axis moving module 221 is disposed above the Y-axis moving module 222 and is movably connected to the Y-axis moving module 222.
[0036] like Figure 1 , 2The product transfer module 23 shown in 4 and 5 includes a first product transfer module 231 and a second product transfer module 232, which are located at corresponding processing positions on the transfer line 21.
[0037] like Figure 4 The first product transplanting module 231 shown includes a first horizontal moving module 2311, a first mounting frame 2312, and a first product transplanting mechanism 2313. The first horizontal moving module 2311 is mounted on a workbench. The first mounting frame 2312 is movably connected to the first horizontal moving module 2311. The first mounting frame 2312 is provided with a lifting module 2314. The first product transplanting mechanism 2313 is connected to the lifting module 2314.
[0038] like Figure 5 The second product transplanting module 232 shown includes a second horizontal moving module 2321, a second mounting frame 2322, and a second product transplanting mechanism 2323. The second horizontal moving module 2321 is mounted on the workbench of the corresponding workstation. The second mounting frame 2322 is slidably connected to the second horizontal moving module 2321 through a sliding seat. A second lifting module 2324 is provided on the second mounting frame 2322. Mounting frames are provided on both sides of the second mounting frame 2322. Slide rails are provided on the mounting frames. The second product transplanting mechanism 2323 is connected to the second lifting module 2324, and both sides are connected to the slide rails through sliding blocks. The second product transplanting mechanism 2323 includes a second product transplanting mounting plate 23231, at least one product transplanting unit 23232, and a drive cylinder 23233. The second product transplanting mounting plate 23231 is provided with a slide rail. The product transplanting unit 23232 is slidably connected to the slide rail via a sliding block. The drive cylinder 23233 is mounted on the second product transplanting mounting plate 23231, and its output end is connected to the product transplanting unit 23232. It should be noted that the number of product transplanting units 23232 can be selected according to actual needs, and whether their connection to the second product transplanting mounting plate 23231 is movable can also be selected according to actual needs.
[0039] Example 2
[0040] like Figures 1 to 7 As shown, in addition to the contents of Embodiment 1, it also includes a waste material handling mechanism 25, which is located on the corresponding processing position; the worktable of the processing position is provided with a slide rail;
[0041] like Figure 6The waste handling mechanism 25 shown includes a waste handling mounting frame 251, at least one waste handling clamping mechanism 252, and a waste handling drive cylinder 253. The waste handling mounting frame 251 is connected to the drive block on the waste handling drive cylinder 253, and one side is slidably connected to the slide rail through a sliding block. The waste handling clamping mechanism 252 is mounted on the waste handling mounting frame 251, and the waste handling drive cylinder 253 is located on the workbench.
[0042] It also includes a flipping device 26, which is disposed on the corresponding processing position on the transfer line 21;
[0043] The flipping device 26 includes a horizontal moving module 261, a vertical moving module 262, and a flipping mechanism 263. The horizontal moving module 261 is mounted on the workbench, the vertical moving module 262 is movably connected to the horizontal moving module 261, and the flipping mechanism 263 is connected to the vertical moving module 262 through a transition frame.
[0044] The flipping mechanism 263 includes a flipping drive mechanism and a flipping frame. The flipping drive mechanism is mounted on the adapter frame, and the flipping frame is located on one side of the flipping frame and connected to the output end of the flipping drive mechanism.
[0045] It should be noted that the first position adjustment module, the second position adjustment module, and the flipping frame are all equipped with placement fixtures for placing products.
[0046] Example 3
[0047] The automatic transplanting laser line described in this embodiment is the same as that in Embodiment 1 or Embodiment 2.
[0048] It should be noted that the first cutting station, the first cleaning station, the product flipping station, the second cutting station, the second cleaning station, and the inspection station are all located at this station.
[0049] The transplanting line 21 is equipped with a first cutting station, a first cleaning station, a product flipping station, a second cutting station, and a second cleaning station. The first product transplanting module 231 is located on one side of the first cutting station and the first cleaning station. The second product transplanting module 232 is located on one side of the product flipping station, the second cutting station, and the second cleaning station. The waste material handling mechanism 25 is located on one side of the first cutting station, and the flipping device 26 is located at the product flipping station. It is conceivable that each station can be adjusted according to time requirements.
[0050] The working principle of the automatic transfer laser line described in this embodiment is as follows: The product to be processed is placed in the product placement fixture at the first cutting station. The product is laser-cut on a small surface according to the product processing requirements. After the laser cutting is completed, the first product transfer module 231 transfers the cut product to the first cleaning station. The surface of the product is cleaned by the cleaning equipment. The waste material handling mechanism 25 clamps the waste material and transfers it to the waste material collection box.
[0051] The first product transfer module 231 transfers the processed product to the flipping device 26 and places it on the fixture. The flipping device 26 flips the product onto the product placement fixture on the product transfer unit 232 of the second product transfer module 232.
[0052] The second product transfer module 232 transfers the product to the second cutting station, where it is cut again according to the cutting requirements. After cutting, the product is transferred to the second cleaning station for further cleaning.
[0053] It should be noted that when multiple product transfer units 23232 are set on the second product transfer module 232, products can be transferred simultaneously.
[0054] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements can be made without departing from the principle of the present utility model, and these improvements should also be considered within the protection scope of the present utility model.
Claims
1. An automated transplanting laser line body, characterized by: The utility model relates to a kind of transplanting line body (21), at least one processing position is provided on the side of the transplanting line body (21), position adjusting module (22) for adjusting product position and product transplanting module (23) are provided on the processing position. The position adjusting module (22) includes a first position adjusting module and a second position adjusting module, and the installation station of the first position adjusting module and the second position adjusting module can be adjusted according to the needs of each processing position on the transplanting line body (21).
2. The automatic transplanting laser line body according to claim 1, wherein: The first position adjusting module is provided on the workbench of the processing position, and a protection mechanism (24) is provided on the outside of the first position adjusting module. The first position adjusting module includes an X-axis moving module (221) and a Y-axis moving module (222), the Y-axis moving module (222) is provided on the workbench, and the X-axis moving module (221) is provided above the Y-axis moving module (222) and is movably connected with the Y-axis moving module (222).
3. The automatic transplanting laser line body according to claim 2, wherein: The product transplanting module (23) includes a first product transplanting module (231) and a second product transplanting module (232), and the first product transplanting module (231) and the second product transplanting module (232) are provided at the corresponding processing position of the transplanting line body (21).
4. The automatic transplanting laser line body according to claim 1, wherein: The first product transplanting module (231) includes a first horizontal moving module (2311), a first mounting frame (2312), and a first product transplanting mechanism (2313), the first horizontal moving module (2311) is provided on the workbench, the first mounting frame (2312) is movably connected with the first horizontal moving module (2311), and a lifting module (2314) is provided on the first mounting frame (2312), and the first product transplanting mechanism (2313) is connected with the lifting module (2314).
5. The automatic transplanting laser line body according to claim 4, characterized in that: The second product transplanting module (232) includes a second horizontal moving module (2321), a second mounting frame (2322), and a second product transplanting mechanism (2323), the second horizontal moving module (2321) is provided on the workbench of the corresponding station, the second mounting frame (2322) is slidably connected with the second horizontal moving module (2321) through a sliding seat, a second lifting module (2324) is provided on the second mounting frame (2322), mounting frames are provided on both sides of the second mounting frame (2322), sliding rails are provided on the mounting frames, the second product transplanting mechanism (2323) is connected with the second lifting module (2324), and both sides are connected with the sliding rails through sliding blocks.
6. The automatic transplanting laser line body according to claim 5, characterized in that: The second product transplanting mechanism (2323) includes a second product transplanting mounting plate (23231), at least one product transplanting unit (23232), and a driving cylinder (23233), the second product transplanting mounting plate (23231) is provided with a sliding rail, the product transplanting unit (23232) is slidably connected with the sliding rail through a sliding block, and the driving cylinder (23233) is installed on the second product transplanting mounting plate (23231), and the output end is connected with the product transplanting unit (23232).
7. The automatic transplanting laser line body according to claim 6, characterized in that: 8. The automatic transplanting laser line body according to claim 4, wherein: The waste carrying mechanism (25) is arranged on the corresponding processing position; the slide rail is arranged on the workbench of the processing position; The waste carrying mechanism (25) comprises a waste carrying mounting frame (251), at least one waste carrying clamping mechanism (252) and a waste carrying driving cylinder (253), the waste carrying mounting frame (251) is connected with the driving block on the waste carrying driving cylinder (253), one side is connected with the slide rail through the sliding block, the waste carrying clamping mechanism (252) is mounted on the waste carrying mounting frame (251), and the waste carrying driving cylinder (253) is arranged on the workbench.
9. The automatic transplanting laser line body according to claim 8, characterized in that: The turnover device (26) is arranged on the corresponding processing position of the transplanting line body (21); The turnover device (26) comprises a transverse movement module (261), a longitudinal movement module (262) and a turnover mechanism (263), the transverse movement module (261) is arranged on the workbench, the longitudinal movement module (262) is movably connected with the transverse movement module (261), and the turnover mechanism (263) is connected with the longitudinal movement module (262) through a connecting frame; The turnover mechanism (263) comprises a turnover driving mechanism and a turnover frame, the turnover driving mechanism is mounted on the connecting frame, and the turnover frame is arranged on one side of the turnover frame and connected with the output end of the turnover driving mechanism.
10. The automatic transplanting laser line body according to claim 9, characterized in that: The first cutting station, the first cleaning station, the product turnover station, the second cutting station and the second cleaning station are arranged on the transplanting line body (21), the first product transplanting module (231) is arranged on one side of the first cutting station and the first cleaning station, the second product transplanting module (232) is arranged on one side of the product turnover station, the second cutting station and the second cleaning station, the waste carrying mechanism (25) is arranged on one side of the first cutting station, and the turnover device (26) is arranged on the product turnover station.