Double-station laser peeling equipment

By designing a dual-station laser peeling equipment, the collaborative work of the first and second feeding components and the laser device solves the problems of large space occupation and high cost of existing equipment, and achieves efficient and low-cost transformer peeling processing.

CN223514512UActive Publication Date: 2025-11-04东莞市正工激光科技有限公司
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Patent Information

Application Number
CN202422583089.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-11-04
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In existing technologies, multiple peeling equipment on production lines occupy a large space and have high costs, which affects production efficiency.

Method used

A dual-station laser peeling device is designed, which uses first and second feeding components in conjunction with a laser device. The device is driven by a first driver to peel the transformer. It has a compact and efficient structure, uses a laser to peel at multiple angles, and combines the collaborative work of the conveying device and the laser device.

Benefits of technology

This has resulted in smaller equipment footprint, lower production costs, higher work efficiency, and improved production capacity.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223514512U_ABST
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Abstract

The utility model relates to the technical field of laser peeling, in particular to double-station laser peeling equipment which comprises a machine table, a laser device movably arranged on the machine table and a conveying device used in cooperation with the laser device. The conveying device comprises a first feeding assembly, a second feeding assembly and a first driver, the second feeding assembly and the first feeding assembly are arranged in a spaced mode, the first driver is used for driving the first feeding assembly and the second feeding assembly to be close to or away from the laser device, and the first feeding assembly and the second feeding assembly are driven by the first driver. And the laser device is used for carrying out peeling treatment on the transformer clamped by the first feeding assembly and the second feeding assembly. The device is compact in structure and reasonable in design, the overall structure is further simplified, work is efficient and coordinated, the occupied area is reduced, the production cost is reduced, and the productivity benefit is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to laser peeling technical field especially relates to a double position laser peeling equipment. BACKGROUND

[0002] For network transformer and other transformers, its core structure is composed of a core and an enameled wire wrapped on the core, the enameled wire needs to be electrically connected with the pin of the transformer, so the rubber skin on the surface of the enameled wire connected with the upper end part of the pin needs to be removed, after the rubber skin is removed, the degreasing part of the pin is immersed in tin to realize electrical connection, therefore, the peeling treatment of the transformer is usually operated step by step according to the assembly line, but in order to improve work efficiency, multiple assembly lines are often configured to work together, on the one hand, multiple assembly lines will occupy too much site area, leading to low space utilization, on the other hand, it will greatly increase the production cost and affect the production capacity benefit. SUMMARY

[0003] The utility model discloses a double position laser peeling equipment, compact structure and reasonable design, further simplify the overall structure, efficient and coordinated work, reduce the occupied area, reduce the production cost, improve the production capacity benefit.

[0004] In order to achieve the above object, a double position laser peeling equipment of the utility model, including machine table, the laser device of activity setting in machine table and the conveying device of cooperation with laser device, the conveying device includes first feeding assembly, the second feeding assembly of interval setting with first feeding assembly and the first driver for driving first feeding assembly and second feeding assembly close or away from laser device, first feeding assembly and second feeding assembly are driven via first driver, so that laser device carries out the peeling treatment to the transformer clamped by first feeding assembly and second feeding assembly.

[0005] Preferably, the output end of the first driver is drivingly connected with a moving seat, the first feeding assembly and the second feeding assembly are identical in structure and are respectively arranged on two sides of the moving seat, the first feeding assembly comprises a cavity, a driving shaft and a driven shaft rotatably arranged in the cavity, a motor drivingly connected with the driving shaft, a driving load carrier arranged on the driving shaft, a driven load carrier arranged on the driven shaft, a driving wheel sleeved on the outer side of the driving shaft, and a driven wheel sleeved on the outer side of the driven shaft, the driven shaft is provided with a plurality of driven shafts, the plurality of driven shafts are arranged at intervals along the length direction of the cavity, and a transmission belt is drivingly connected between the driving wheel and the driven wheel.

[0006] Preferably, the outer side of the driving carrier seat is provided with a first connecting sleeve, the driving carrier seat is connected with the driving shaft through the first connecting sleeve, the driving carrier seat is provided with a first carrier groove, the middle part of the first carrier groove is provided with a first positioning column, the driving carrier seat is provided with a first material blocking plate, the first material blocking plate abuts against the first carrier groove, the outer side of the driven carrier seat is provided with a second connecting sleeve, the driven carrier seat is connected with the driven shaft through the second connecting sleeve, the driven carrier seat is provided with a second carrier groove, the middle part of the second carrier groove is provided with a second positioning column, and the driven carrier seat is provided with a second material blocking plate.

[0007] Preferably, the driven shaft is provided with an induction sheet, and the moving seat is provided with an inductor matched with the induction sheet.

[0008] Preferably, the laser device comprises a stand, a laser device movably arranged on the stand, and a second driver for driving the laser device to move along the Z-axis direction of the stand, and the laser device is driven to approach or move away from the conveying device via the second driver.

[0009] Preferably, a reinforcing rib is arranged at the connection between the stand and the machine table.

[0010] The utility model has the advantages of compact structure, reasonable design, further simplification of the overall structure, efficient and coordinated work, reduced occupied area, reduced production cost and improved production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0011] Fig. 1 The figure is a structural schematic view of the utility model.

[0012] Fig. 2 The figure is an exploded structural schematic view of the conveying device of the utility model.

[0013] The figure comprises:

[0014] 1 - machine table

[0015] 2 - laser device 21 - stand 22 - laser device

[0016] 23 - second driver 24 - reinforcing rib

[0017] 3 - conveying device 31 - first feeding assembly 311 - cavity

[0018] 312 - driving shaft 313 - driven shaft 314 - motor

[0019] 315 - driving carrier seat 316 - driven carrier seat 317 - driving wheel

[0020] 318 - driven wheel 319 - transmission belt 3110 - first connecting sleeve 3111 - first material carrying groove 3112 - first positioning column 3113 - first material blocking plate

[0021] 3114 - second connecting sleeve 3115 - second material carrying groove 3116 - second positioning column

[0022] 3117 - second material blocking plate 3118 - inductive sheet

[0023] 32 - second feeding assembly 33 - first driver 34 - moving seat

[0024] 35 - inductor. DETAILED DESCRIPTION

[0025] The utility model is described in detail below in combination with the drawings.

[0026] As Figs. 1-2 shown, the utility model relates to a double-station laser peeling device, which comprises a machine table 1, a laser device 2 movably arranged on the machine table 1, and a conveying device 3 used in cooperation with the laser device 2, wherein the conveying device 3 comprises a first feeding assembly 31, a second feeding assembly 32 arranged at intervals with the first feeding assembly 31, and a first driver 33 for driving the first feeding assembly 31 and the second feeding assembly 32 to approach or move away from the laser device 2, and the first feeding assembly 31 and the second feeding assembly 32 are driven via the first driver 33 so that the laser device 2 performs peeling treatment on the transformer clamped by the first feeding assembly 31 and the second feeding assembly 32.

[0027] In operation, the transformer is picked up by the external material conveying mechanism and placed in the first feeding assembly 31 and the second feeding assembly 32 respectively, the first driver 33 drives the first feeding assembly 31 and the second feeding assembly 32 to approach the laser device 2, the laser device 2 first performs laser peeling treatment on the transformer placed in the first feeding assembly 31, then the first driver 33 drives the first feeding assembly 31 to move away from the laser device 2, at the same time, the second feeding assembly 32 is driven to approach the laser device 2, so that the laser device 2 performs laser peeling treatment on the transformer placed in the second feeding assembly 32, at the same time, the transformer that has completed the laser peeling treatment is taken off from the first feeding assembly 31 by the external material conveying mechanism, and a new transformer to be peeled is continuously placed in the first feeding assembly 31, therefore, the above operation steps are repeated to take off the transformer that has completed the laser peeling treatment from the second feeding assembly 32 and place a new transformer to be peeled in the second feeding assembly 32. Since the first feeding assembly 31 and the second feeding assembly 32 are arranged at intervals, the structure is compact, the space occupied is small, the action is coherent and flexible, the work is efficient and uninterrupted, and the first driver 33 selects the linear module of the prior art. The utility model has the advantages of compact structure, reasonable design, further simplification of the overall structure, efficient and coordinated work, reduction of the occupied area, reduction of the production cost and improvement of the production capacity and benefits.

[0028] The output end of the first driver 33 of the embodiment is drivingly connected with a moving seat 34, the first feeding assembly 31 and the second feeding assembly 32 are the same in structure and are respectively arranged at two sides of the moving seat 34, the first feeding assembly 31 comprises a cavity 311, a driving shaft 312 and a driven shaft 313 rotatably arranged in the cavity 311, a motor 314 drivingly connected with the driving shaft 312, a driving load carrier 315 arranged on the driving shaft 312, a driven load carrier 316 arranged on the driven shaft 313, a driving wheel 317 sleeved outside the driving shaft 312 and a driven wheel 318 sleeved outside the driven shaft 313, a plurality of driven shafts 313 are arranged, the plurality of driven shafts 313 are arranged along the length direction of the cavity 311, and a transmission belt 319 is drivingly connected between the driving wheel 317 and the driven wheel 318. Specifically, the first feeding assembly 31 and the second feeding assembly 32 are respectively arranged at the left side and the right side of the moving seat 34, and the stress uniformity is good, when the motor 314 drives the driving shaft 312 to rotate, on one hand, the driving shaft 312 drives the driving wheel 317 to rotate, the rotating driving wheel 317 drives the driven wheel 318 to rotate through the transmission belt 319, a plurality of driven wheels 318 are arranged at two sides of the driving wheel 317, as preferred, the driven wheel 318 can be arranged in an even number of two, four, six or the like, or arranged in an odd number of one, three, five or the like; on the other hand, the driving shaft 312 drives the driving load carrier 315 to rotate, the rotating driven wheel 318 drives the driven load carrier 316 to rotate through the driven shaft 313, so that the driving load carrier 315 and the driven load carrier 316 drive the transformer to rotate at multiple angles, so that the laser device 2 performs multi-angle and omnidirectional peeling treatment on the transformer, and the peeling efficiency and peeling quality are improved.

[0029] The outer side of the active carrier seat 315 of the embodiment is provided with a first connecting sleeve 3110, the active carrier seat 315 is connected with the active rotating shaft 312 through the first connecting sleeve 3110, the first carrier groove 3111 is arranged in the active carrier seat 315, the first positioning column 3112 is arranged in the middle part of the first carrier groove 3111, the first material blocking plate 3113 is arranged on the active carrier seat 315, the first material blocking plate 3113 is in abutment with the first carrier groove 3111, the outer side of the driven carrier seat 316 is provided with a second connecting sleeve 3114, the driven carrier seat 316 is connected with the driven rotating shaft 313 through the second connecting sleeve 3114, the second carrier groove 3115 is arranged in the driven carrier seat 316, the second positioning column 3116 is arranged in the middle part of the second carrier groove 3115, the second material blocking plate 3117 is arranged on the driven carrier seat 316, and the second material blocking plate 3117 is in abutment with the second carrier groove 3115. Specifically, the active carrier seat 315 is connected with the active rotating shaft 312 through the first connecting sleeve 3110, the active carrier seat 315 accommodates the transformer through the first carrier groove 3111, the first positioning column 3112 protrudes into the transformer, further fixes the position of the transformer in the first carrier groove 3111, has good positioning effect, and the first material blocking plate 3113 is in abutment with the first carrier groove 3111, effectively prevents the transformer from accidentally falling out of the first carrier groove 3111, and has high work safety. The driven carrier seat 316 is connected with the driven rotating shaft 313 through the second connecting sleeve 3114, the driven carrier seat 316 accommodates the transformer through the second carrier groove 3115, the second positioning column 3116 protrudes into the transformer, further fixes the position of the transformer in the second carrier groove 3115, has good positioning effect, and the second material blocking plate 3117 is in abutment with the second carrier groove 3115, effectively prevents the transformer from accidentally falling out of the second carrier groove 3115, and has high work safety.

[0030] The driven rotating shaft 313 of the embodiment is provided with an induction sheet 3118, and the moving seat 34 is provided with an inductor 35 used in cooperation with the induction sheet 3118. Specifically, the induction sheet 3118 is used for triggering the inductor 35, the cooperation of the induction sheet 3118 and the inductor 35 improves the rotation accuracy of the driven rotating shaft 313, the inductor 35 can be an infrared inductor 35 in the prior art, in actual application, when the driven rotating shaft 313 drives the induction sheet 3118 to rotate to the position of the inductor 35, the inductor 35 is triggered to work, at this time, the inductor 35 sends a working instruction to the motor 314 to command the motor 314 to stop driving, thereby positioning the driven rotating shaft 313 at a preset rotation angle, has good limiting effect, and avoids excessive movement of the driven rotating shaft 313 to cause poor work.

[0031] The laser device 2 of the embodiment comprises a stand 21, a laser 22 movably arranged on the stand 21, and a second driver 23 for driving the laser 22 to move along the Z-axis direction of the stand 21, and the laser 22 is driven to approach or move away from the conveying device 3 through the second driver 23. Specifically, the stand 21 is arranged vertically to the machine table 1, the second driver 23 is mounted on the stand 21, the second driver 23 drives the laser 22 to move up and down along the Z-axis direction of the stand 21, and the laser 22 is caused to approach or move away from the conveying device 3 to perform the laser peeling work, and the second driver 23 is selected from the prior art linear module.

[0032] The connecting part between the stand 21 and the machine table 1 is provided with a reinforcing rib 24. Specifically, the connecting part between the stand 21 and the machine table 1 is provided with the reinforcing rib 24, the support stability of the stand 21 is enhanced, the stand 21 is not easy to deform and bend during the work process, and the structural strength of the stand 21 is improved.

[0033] The above is only the preferred embodiment of the present application, and for those skilled in the art, according to the idea of the present application, the specific implementation and application range can be changed, and the content of the specification should not be understood as the limitation of the present application.

Claims

1. A dual station laser exfoliation apparatus, characterized by: The device comprises a machine table, a laser device movably arranged on the machine table, and a conveying device used in cooperation with the laser device, wherein the conveying device comprises a first feeding assembly, a second feeding assembly arranged at a distance from the first feeding assembly, and a first driver for driving the first feeding assembly and the second feeding assembly to move close to or away from the laser device, and the first feeding assembly and the second feeding assembly are driven by the first driver to enable the laser device to perform peeling treatment on a transformer held by the first feeding assembly and the second feeding assembly.

2. A dual station laser hair removal device according to claim 1, wherein: The output end of the first driver is drivingly connected with a moving seat, the first feeding assembly and the second feeding assembly are structurally identical and are arranged on two sides of the moving seat respectively, the first feeding assembly comprises a cavity, a driving shaft and a driven shaft movably arranged in the cavity, a motor drivingly connected with the driving shaft, a driving load carrier arranged on the driving shaft, a driven load carrier arranged on the driven shaft, a driving wheel sleeved on the outside of the driving shaft, and a driven wheel sleeved on the outside of the driven shaft, the driven shaft is provided in plurality, and the plurality of driven shafts are arranged at a distance along the length direction of the cavity, and a transmission belt is drivingly connected between the driving wheel and the driven wheel.

3. A dual station laser hair removal device according to claim 2, wherein: The outside of the driving load carrier is provided with a first connecting sleeve, the driving load carrier is connected with the driving shaft through the first connecting sleeve, the driving load carrier is provided with a first load groove in the inside thereof, the middle part of the first load groove is provided with a first positioning column, the driving load carrier is provided with a first material blocking plate, the first material blocking plate abuts against the first load groove, the outside of the driven load carrier is provided with a second connecting sleeve, the driven load carrier is connected with the driven shaft through the second connecting sleeve, the driven load carrier is provided with a second load groove in the inside thereof, the middle part of the second load groove is provided with a second positioning column, and the driven load carrier is provided with a second material blocking plate.

4. A dual station laser hair removal device according to claim 3, wherein: The driven shaft is provided with an inductor, and the moving seat is provided with an inductor used in cooperation with the inductor.

5. A dual station laser hair removal device according to claim 1, wherein: The laser device comprises a stand, a laser movably arranged on the stand, and a second driver for driving the laser to move along the Z-axis direction of the stand, and the laser is driven by the second driver to move close to or away from the conveying device.

6. A dual station laser hair removal device according to claim 5, wherein: A reinforcing rib is arranged at the connection between the stand and the machine table.