Cooling equipment for magnetic assembly

By designing automated cooling equipment for cooling platforms and refrigeration modules, the problem of low fan cooling efficiency was solved, achieving efficient cooling of magnetic components and production continuity, while reducing personal hazards.

CN223649537UActive Publication Date: 2025-12-09BAOTOU INST MAGNETIC NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202423203250.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-09
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing fan cooling methods are inefficient in high-temperature fixtures, resulting in low cooling efficiency of magnetic components, which affects production efficiency and poses personal safety hazards.

Method used

Design a cooling device that includes a cooling platform, a refrigeration module, a detection module, and an alarm module. It utilizes heat-conducting plates and cooling fins for rapid cooling, and uses a water-cooled module for auxiliary heat dissipation. It combines detection fiber optics and a buzzer to achieve automated control.

Benefits of technology

It improves the cooling efficiency of magnetic components, ensures production continuity, reduces personal injury hazards, and enhances production line efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses cooling equipment for magnetic assemblies, which comprises a cooling platform, a plurality of cooling stations and a refrigeration module are arranged on the cooling platform, the cooling stations are used for placing jigs for bearing the magnetic assemblies to be cooled, and the refrigeration module is arranged at the position corresponding to the cooling stations and used for cooling the magnetic assemblies on the jigs. According to the utility model, the plurality of cooling stations for placing the jigs for bearing the magnetic assemblies to be cooled are arranged on the cooling platform, and the refrigeration modules are arranged at the corresponding positions of the cooling stations, so that the jigs and the magnetic assemblies on the cooling stations can be quickly cooled, the cooling efficiency of the jigs and the magnetic assemblies is improved, and the stability of the performance of the magnetic assemblies is ensured; therefore, the magnetic assembly can enter the next production process in time, and the subsequent production efficiency of the magnetic assembly is improved. And meanwhile, certain occupational hazards can be eliminated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of magnetic assembly cooling, and particularly to a kind of cooling equipment of magnetic assembly. BACKGROUND

[0002] In the current magnetic assembly production and processing flow, the magnetic assembly bonded is usually placed in the tunnel furnace with fixture, and the adhesive is heated to solidification temperature. After solidification, the magnetic assembly needs to be removed from the tunnel furnace and cooled to ensure its stable performance.

[0003] However, the current fan cooling method is not effective when facing high-temperature fixtures, resulting in low cooling efficiency of the magnetic assembly, causing the accumulation of magnetic assemblies on the production line, delaying the subsequent process and reducing production efficiency. In addition, the existing cooling operation mainly relies on manual operation, and when the fixture cannot be cooled in time, the operator may be injured by long-term contact with high-temperature fixtures. UTILITY MODEL CONTENT

[0004] The utility model aims to provide a kind of cooling equipment of magnetic assembly, which can effectively improve the cooling efficiency of magnetic assembly.

[0005] To achieve the above purpose, the utility model provides a kind of cooling equipment of magnetic assembly, which includes a cooling platform, a plurality of cooling stations and a refrigeration module are provided on the cooling platform, the cooling station is used to place the fixture containing the magnetic assembly to be cooled, and the refrigeration module is arranged at a position corresponding to the cooling station to cool the magnetic assembly on the fixture.

[0006] Preferably, the utility model further includes a detection module and an alarm module, the detection module and the alarm module are arranged on the cooling platform, and the detection module is arranged at a position corresponding to the cooling station.

[0007] Preferably, the detection module is a detection optical fiber, and the alarm module is a buzzer.

[0008] Preferably, the cooling stations are evenly distributed.

[0009] Preferably, the cooling platform is a heat-conducting plate, and the cooling stations are arranged on the top of the heat-conducting plate.

[0010] Preferably, the heat-conducting plate is made of copper.

[0011] Preferably, the utility model further includes a support cabinet, and the support cabinet is arranged below the cooling platform.

[0012] Preferably, the refrigeration module is a refrigeration sheet, and a plurality of refrigeration sheets are arranged at the bottom of the heat-conducting plate and correspond to the positions of the cooling stations.

[0013] Preferably, the water cooling module is arranged on the support cabinet, and a cold water pipeline of the water cooling module is arranged on the refrigeration fin.

[0014] Preferably, the bottom of the support cabinet is provided with universal wheels.

[0015] With the above scheme, the cooling device has the advantages that: the cooling device is provided with a plurality of cooling stations for placing jigs containing magnetic assemblies to be cooled on the cooling platform, and a refrigeration module is arranged at a position corresponding to each cooling station, so that the jigs and magnetic assemblies on the cooling stations can be rapidly cooled, the cooling efficiency of the jigs and magnetic assemblies is improved, the stability of the performance of the magnetic assemblies is ensured, the magnetic assemblies can enter the next production process in time, and the production efficiency of the subsequent magnetic assemblies is improved. Meanwhile, certain occupational hazards can be eliminated. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a schematic view of the overall structure of the cooling device in the embodiment of the utility model;

[0017] Figure 2 is a bottom view of the overall structure of the cooling device in the embodiment of the utility model;

[0018] Figure 3 is a top view of the cooling device in the embodiment of the utility model.

[0019] Label explanation:

[0020] 1, cooling platform; 10, cooling station; 11, heat conduction plate; 2, refrigeration module; 20, refrigeration fin; 3, detection module; 30, detection optical fiber; 4, alarm module; 40, buzzer; 5, support cabinet; 50, universal wheel; 6, jig; 7, water cooling module. DETAILED DESCRIPTION

[0021] The utility model will be further described in combination with the drawings and specific embodiments.

[0022] The embodiment provides a kind of cooling equipment of magnetic assembly, as shown in Figures 1 to 3 It includes cooling platform 1, and cooling platform 1 is equipped with several cooling stations 10 and refrigeration modules 2, cooling station 10 is used to place the jig 6 that contains magnetic assembly to be cooled, and refrigeration module 2 is arranged at the position corresponding to cooling station 10, for cooling the magnetic assembly on jig 6.

[0023] The cooling platform 1 of the embodiment is equipped with multiple cooling stations 10, and each cooling station 10 is correspondingly provided with a refrigeration module 2, so that when cooling, jig 6 can be placed on cooling station 10, and refrigeration module 2 can cool jig 6 and magnetic assembly on cooling station 10 through cooling platform 1.

[0024] The embodiment also includes a control module (not shown in the figure), which controls the refrigeration temperature of the refrigeration module 2 by setting the control module, so that the cooling temperature on the cooling platform 1 can adjust the temperature range according to the actual demand. In addition, the cooling station 10 of the embodiment can adapt to different jigs 6 and magnetic components, flexible to use, and can effectively improve the cooling efficiency, thereby improving the production efficiency of the subsequent magnetic components.

[0025] As shown in Figure 1 and Figure 3 It also includes a detection module 3 and an alarm module 4, which are arranged on the cooling platform 1, and the detection module 3 is arranged at a position corresponding to the cooling station 10.

[0026] The embodiment sets a detection module 3 at a position corresponding to each cooling station 10, which can detect whether the jig 6 and the magnetic component are placed on the cooling station 10. When the jig 6 and the magnetic component on the cooling station 10 complete the cooling and temperature reduction, the alarm module 4 corresponding to the cooling station 10 will issue an alarm to remind the operator to take the jig 6 and the magnetic component that have completed the cooling and temperature reduction from the cooling station 10, which is convenient to use. If the detection module 3 detects that there is no jig 6 and magnetic component placed on the cooling station 10, the alarm module 4 corresponding to the cooling station 10 will not issue an alarm, which is cleverly designed.

[0027] Further, the detection module 3 is a detection optical fiber 30, and the alarm module 4 is a buzzer 40. The detection optical fiber 30 of the embodiment has high sensitivity, which is conducive to accurately detecting the jig 6 and the magnetic component on the cooling station 10, and the buzzer 40 has fast response speed and clear sound, which can adapt to complex production and processing environment.

[0028] As shown in Figure 3 The cooling stations 10 of the embodiment are uniformly distributed to ensure that each cooling station 10 can obtain uniform cooling effect. The uniform distribution of the cooling stations 10 can also improve the space utilization of the cooling platform 1 and improve the cooling efficiency.

[0029] As shown in Figure 1 The cooling platform 1 is a heat conduction plate 11, and the cooling station 10 is arranged on the top of the heat conduction plate 11. The cooling platform 1 of the embodiment adopts the heat conduction plate 11, so that the refrigeration module 2 can quickly reduce the temperature of the heat conduction plate 11 and improve the cooling efficiency. The heat conduction plate 11 can provide uniform temperature distribution, so that each cooling station 10 on the heat conduction plate 11 can obtain uniform cooling effect.

[0030] Further, the heat-conducting plate 11 of the present embodiment is made of copper material, which has excellent heat-conducting performance, so that the cooling module 2 can quickly reduce the temperature of the heat-conducting plate 11 and improve the cooling efficiency. In addition, copper has good corrosion resistance and rigidity, which effectively prolongs the service life of the equipment. At the same time, it is more convenient in production and processing. In addition, when the jig 6 and the magnetic assembly are placed on the cooling platform 1 made of copper material, no adsorption will occur between the copper and the magnetic assembly, so as not to affect the magnetic assembly.

[0031] As shown in Figure 1 and Figure 2 , the support cabinet 5 is arranged below the cooling platform 1. The support cabinet 5 of the present embodiment provides stable support for the cooling platform 1, ensuring the stability and reliability of the entire cooling device.

[0032] As shown in Figure 2 , the cooling module 2 is a refrigeration sheet 20, and a plurality of refrigeration sheets 20 are arranged at the bottom of the heat-conducting plate 11 and correspond to the positions of the cooling stations 10.

[0033] The refrigeration sheet 20 of the present embodiment is directly arranged at the bottom of the heat-conducting plate 11 and corresponds to the cooling station 10, which can quickly reduce the temperature at the cooling station 10 and is beneficial to improve the cooling efficiency. In addition, the refrigeration sheet 20 can be precisely controlled in temperature, which helps to ensure that the magnetic assembly maintains a constant temperature during the cooling process and avoids performance differences caused by temperature fluctuations. The refrigeration sheet 20 of the present embodiment adopts Zave12V model, and the refrigeration temperature in normal temperature space can be as low as 3℃. In other embodiments, other models of refrigeration sheets 20 can also be used.

[0034] As shown in Figure 2 , the water cooling module 7 is arranged on the support cabinet 5, and the cold water pipeline of the water cooling module 7 is arranged on the refrigeration sheet 20. Since the refrigeration sheet 20 generates heat during refrigeration, the present embodiment also provides a water cooling module 7, and the cold water pipeline of the water cooling module 7 is arranged on the refrigeration sheet 20, which can take away the heat generated by the refrigeration sheet 20 during refrigeration, thereby improving the refrigeration efficiency of the refrigeration sheet 20. The water cooling module 7 of the present embodiment adopts SLMZ-S-L24V30W model, and other models of water cooling modules 7 can also be used in other embodiments. At the same time, the power supply of the present embodiment adopts 12V / 30A, which is used for power supply of the refrigeration sheet 20 and the water cooling module 7.

[0035] As shown in Figure 1 and Figure 2As shown, the support cabinet 5 of the embodiment is provided with universal wheels 50 at the bottom, so that the whole cooling device can be easily moved, whether it is to adjust the position inside the production line, or to move the device to other areas for operation or maintenance, which is very convenient and improves the flexibility of use. Of course, the universal wheels 50 are provided with locking devices to ensure the stability of the support cabinet 5 during cooling.

[0036] The use process of the embodiment is as follows:

[0037] After turning on the power of the device, the refrigeration fin 20 and the water cooling module 7 work, and a waiting time of 120 seconds is required, so that the whole cooling platform 1 can be reduced to the required temperature.

[0038] Place the magnetic assembly together with the jig 6 on the cooling station 10 of the cooling platform 1, at this time the detection optical fiber 30 will detect whether the jig 6 exists on the cooling station 10.

[0039] After waiting for a period of time to reduce the temperature of the jig 6 and the magnetic assembly, the buzzer 40 will issue an alarm to indicate that the cooling is complete, and the operator only needs to take the jig 6 and the magnetic assembly from the cooling platform 1, and then the next production process can be carried out.

[0040] The orientation terms mentioned in the present specification are defined with respect to the structure shown in the drawings, and they are relative concepts, so they may change accordingly according to different positions and different use states. Therefore, these or other orientation terms should not be interpreted as limiting terms.

[0041] The above is only the preferred embodiment of the present application, and is not a limitation on the design of the present application. Any equivalent changes made according to the key design of the present application shall fall within the scope of protection of the present application.

Claims

1. A cooling device for a magnetic assembly, characterized by: The cooling platform is provided with a plurality of cooling stations and refrigeration modules, the cooling stations are used for placing jigs containing magnetic assemblies to be cooled, and the refrigeration modules are arranged at positions corresponding to the cooling stations and used for cooling the magnetic assemblies on the jigs.

2. A magnetic assembly cooling apparatus as claimed in claim 1, wherein: The detection module and the alarm module are arranged on the cooling platform, and the detection module is arranged at a position corresponding to the cooling station.

3. A magnetic assembly cooling apparatus as claimed in claim 2, wherein: The detection module is a detection optical fiber, and the alarm module is a buzzer.

4. A magnetic assembly cooling apparatus as claimed in claim 1, wherein: The cooling stations are uniformly arranged.

5. A magnetic assembly cooling apparatus as claimed in claim 1, wherein: The cooling platform is a heat conduction plate, and the cooling stations are arranged on the top of the heat conduction plate.

6. A magnetic assembly cooling apparatus as claimed in claim 5, wherein: The heat conduction plate is made of copper.

7. A magnetic assembly cooling apparatus as claimed in claim 5, wherein: The support cabinet is arranged below the cooling platform.

8. A magnetic assembly cooling apparatus as claimed in claim 7, wherein: The refrigeration modules are refrigeration pieces, a plurality of the refrigeration pieces are arranged on the bottom of the heat conduction plate and correspond to the positions of the cooling stations.

9. A magnetic assembly cooling apparatus as claimed in claim 8, wherein: The water cooling module is arranged on the support cabinet, and a cold water pipeline of the water cooling module is arranged on the refrigeration pieces.

10. A magnetic assembly cooling apparatus as claimed in claim 7, wherein: The bottom of the support cabinet is provided with universal wheels.