Magnetizing pile with efficient cooling system

Through the coordination of centralized air duct design and cooling fan, the problem of low heat dissipation efficiency caused by air duct dispersion in magnetic charging piles is solved, and components such as high-efficiency cooling of magnetic charging coils and capacitors are achieved, improving the heat dissipation effect and working efficiency of the magnetic charging process.

CN223140495UActive Publication Date: 2025-07-22HUAXIANG (SHENZHEN) HIGH TECH SERVICE CO LTD
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Patent Information

Application Number
CN202422251105.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-07-22
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The air ducts of existing magnetic charging piles are relatively dispersed, the heat dissipation efficiency is not high, and it is difficult to effectively cool the heating components such as the magnetic charging coil and capacitor.

Method used

The centralized air duct design is adopted, and the heat dissipation chamber, fixed ring and inner and outer ventilation grooves are used to drive the air flow from bottom to top. Combined with the heat dissipation ring and the air outlet filter plate, an efficient air flow path is formed, taking away the heat from multiple heating devices.

Benefits of technology

It improves the air flow efficiency and cooling efficiency, ensures efficient heat dissipation of the heating device during the magnetic charging process, and improves working efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of magnetizing piles, and discloses a magnetizing pile with an efficient cooling system, which comprises an equipment bin, the bottom of the equipment bin is fixedly connected with a support column, the top of the equipment bin is provided with a mounting groove, the inside of the mounting groove is detachably connected with a magnetizing coil, the inside of the equipment bin is fixedly connected with a heat dissipation bin, and the heat dissipation bin is fixedly connected with a cooling fan. An air inlet filter plate is fixedly connected to the bottom of the heat dissipation bin, a capacitor is detachably connected to the top of the air inlet filter plate, a heat dissipation ring is fixedly connected to the periphery of the capacitor, a heat dissipation fan is arranged in the heat dissipation bin, and a fixing ring is fixedly connected to the interior of the mounting groove. According to the utility model, the heat dissipation bin, the fixing ring and the internal and external ventilation slots are arranged, the heat dissipation fan is started to drive bottom airflow to flow towards the top, and the air flow direction is consistent with the flow direction of hot air flow from bottom to top, so that the air flow efficiency is improved, and meanwhile, the heat of a plurality of heating devices can be taken away, and the cooling efficiency is relatively high.
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Description

Technical Field

[0001] The utility model relates to the field of magnetizing piles, in particular to a magnetizing pile with an efficient cooling system. Background Art

[0002] A magnetizing pile, namely a cylindrical magnetizer, is a device used to magnetize objects (such as magnets, magnetic materials, etc.). It usually has a cylindrical shape. When an electric current passes through the coil inside the magnetizing pile, a strong magnetic field will be generated. This magnetic field will act on the magnetic material placed in the magnetizing pile to magnetize it or change its magnetic direction. During the magnetizing process, it is necessary to control the magnitude, direction, and duration of the electric current to ensure that the magnetic material obtains the required magnetic state.

[0003] The magnetizing coil and the capacitor are key components in the magnetizer that generate the magnetic field. When the capacitor instantaneously releases a high-voltage current through the magnetizing coil, a magnetic field will be generated to magnetize the magnetic material. In this process, the magnetizing coil itself, the fixture tooling in close contact with it, and the capacitor will all heat up due to the thermal effect of the current. Currently, the device usually uses heat dissipation ports and multiple sets of cooling fans to cool the heat-generating parts. Multiple sets of cooling fans need to be set, the air ducts are relatively scattered, and the heat dissipation efficiency is not high. Therefore, a magnetizing pile with an efficient cooling system is proposed to solve the above problems. Content of the Utility Model

[0004] In order to make up for the above deficiencies, the utility model provides a magnetizing pile with an efficient cooling system, aiming to improve the problem of relatively scattered air ducts and low heat dissipation efficiency in the prior art.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme: A magnetizing pile with an efficient cooling system includes an equipment bin. A support column is fixedly connected to the bottom of the equipment bin. An installation groove is opened at the top of the equipment bin. A magnetizing coil is detachably connected inside the installation groove. A heat dissipation bin is fixedly connected inside the equipment bin. An air inlet filter plate is fixedly connected to the bottom of the heat dissipation bin. A capacitor is detachably connected to the top of the air inlet filter plate. A heat dissipation ring is fixedly connected to the outer periphery of the capacitor. A cooling fan is arranged inside the heat dissipation bin. A fixing ring is fixedly connected inside the installation groove. An air outlet filter plate is fixedly connected inside the fixing ring. A card slot is opened at the top of the fixing ring. A support component is slidably connected inside the card slot. A magnetizing column is fixedly connected to the top of the support component. An outer ventilation groove is opened on the outer periphery of the magnetizing column. An inner ventilation groove is opened inside the magnetizing column.

[0006] As a further description of the above technical solution:

[0007] The interior of the magnetizing column is provided with a fixing groove, and a baffle is fixedly connected inside the fixing groove. A placement box is slidably connected to the top surface of the baffle. Grooves are provided on both sides of the placement box, and sliding grooves are provided on the inner walls of both sides of the fixing groove. A sliding column is slidably connected inside the sliding groove, and a elastic piece is fixedly connected to the inner side of the sliding column.

[0008] As a further description of the above technical solution:

[0009] A number of vertical grooves are provided on the outer periphery of the heat dissipation ring, and the bottom of the heat dissipation ring is in contact with the top of the air inlet filter plate.

[0010] As a further description of the above technical solution:

[0011] The outer periphery of the fixing ring is in contact with the inner side of the magnetizing coil.

[0012] As a further description of the above technical solution:

[0013] The support assembly includes a clamping block, the outer periphery of the clamping block is slidably connected inside the clamping groove, a support leg is fixedly connected to the inner side of the clamping block, and the top end of the clamping block is fixedly connected to the bottom of the magnetizing column.

[0014] As a further description of the above technical solution:

[0015] The bottom of the support leg is in contact with the top of the air outlet filter plate.

[0016] As a further description of the above technical solution:

[0017] The outer periphery of the placement box is slidably connected inside the fixing groove.

[0018] As a further description of the above technical solution:

[0019] The inner side of the elastic piece is clamped inside the groove.

[0020] The utility model has the following beneficial effects:

[0021] 1. In the utility model, by setting the heat dissipation chamber, the fixing ring and the internal and external ventilation grooves, when the heat dissipation fan is turned on, it drives the air flow at the bottom to flow upward, and the air flow direction is from bottom to top, which is consistent with the flow direction of the hot air flow, improving the efficiency of air flow. At the same time, it can take away the heat of multiple heating devices, and the cooling efficiency is high.

[0022] 2. In the utility model, by setting the baffle and the elastic piece, multiple placement grooves can be arranged inside the magnetizing column, and the placement box can be conveniently pulled open and fixed. For example, a magnetizing body is placed inside, so that multiple magnetizing bodies can be conveniently magnetized, and the working efficiency is high. Description of the Drawings

[0023] Figure 1 The overall front view of a magnetizing pile with an efficient cooling system proposed by the present utility model;

[0024] Figure 2 The front sectional view of the equipment bin of a magnetizing pile with an efficient cooling system proposed by the present utility model;

[0025] Figure 3 The separated top view of the magnetizing column of a magnetizing pile with an efficient cooling system proposed by the present utility model;

[0026] Figure 4 The top sectional view of the magnetizing column of a magnetizing pile with an efficient cooling system proposed by the present utility model;

[0027] Figure 5 A magnetizing pile with an efficient cooling system proposed by the present utility model Figure 4 The enlarged view of part A.

[0028] Legend:

[0029] 1. Equipment bin; 2. Support column; 3. Installation groove; 4. Magnetizing coil; 5. Heat dissipation bin; 6. Air inlet filter plate; 7. Capacitor; 8. Heat dissipation ring; 9. Heat dissipation fan; 10. Fixed ring; 11. Air outlet filter plate; 12. Card slot; 13. Card block; 14. Support leg; 15. Magnetizing column; 16. Outer ventilation groove; 17. Inner ventilation groove; 18. Fixed groove; 19. Baffle; 20. Placing box; 21. Groove; 22. Sliding groove; 23. Sliding column; 24. Elastic sheet. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0031] Refer to Figure 1 - Figure 2, An embodiment provided by the present utility model: A magnetizing pile with an efficient cooling system, including an equipment bin 1 for installing and fixing equipment. A support column 2 for fixing and supporting is fixedly connected to the bottom of the equipment bin 1. There are three groups of support columns 2, which are evenly distributed in a ring at the bottom of the equipment bin 1. An installation groove 3 is opened at the top of the equipment bin 1. A magnetizing coil 4 is detachably connected inside the installation groove 3. After passing a high-voltage current through the magnetizing coil 4, a strong magnetic field will be generated to magnetize the magnet inside the magnetizing coil 4. A heat dissipation bin 5 is fixedly connected inside the equipment bin 1. An air inlet filter plate 6 is fixedly connected to the bottom of the heat dissipation bin 5. A capacitor 7 is detachably connected to the top of the air inlet filter plate 6. The capacitor 7 can store electric current and instantaneously release the current to form a high-voltage current. There are four groups of capacitors 7, which are evenly distributed in a ring at the top of the air inlet filter plate 6. A heat dissipation ring 8 is fixedly connected to the outer periphery of the capacitor 7. The heat dissipation ring 8 is made of aluminum or copper and has good heat dissipation and heat conduction effects. A number of vertical grooves are opened on the outer periphery of the heat dissipation ring 8 to increase the contact area between the heat dissipation ring 8 and the air and enhance the heat dissipation effect. The bottom of the heat dissipation ring 8 is in contact with the top of the air inlet filter plate 6. A heat dissipation fan 9 is arranged inside the heat dissipation bin 5. When the heat dissipation fan 9 is turned on, the air flow at the bottom will be transported to the top. A fixing ring 10 for fixing connection is fixedly connected inside the installation groove 3. The outer periphery of the fixing ring 10 is in contact with the inner side of the magnetizing coil 4. An air outlet filter plate 11 for facilitating air outlet is fixedly connected inside the fixing ring 10.

[0032] Refer to Figure 2 - Figure 4 , A card slot 12 is opened at the top of the fixing ring 10. There are four groups of card slots 12, which are evenly distributed in a ring at the top of the fixing ring 10. A support assembly is slidably connected inside the card slot 12. The support assembly includes a card block 13. The outer periphery of the card block 13 is slidably connected inside the card slot 12. A support leg 14 for fixing and supporting is fixedly connected to the inner side of the card block 13. The bottom of the support leg 14 is in contact with the top of the air outlet filter plate 11. A magnetizing column 15 is fixedly connected to the top of the support assembly. The magnetizing column 15 is used to place the object to be magnetized. The top end of the card block 13 is fixedly connected to the bottom of the magnetizing column 15. The support assembly makes the magnetizing column 15 stably located inside the magnetizing coil 4 and at the same time raises the magnetizing column 15 to create a space for air circulation at the top end of the air outlet filter plate 11. Four groups of outer ventilation grooves 16 are opened on the outer periphery of the magnetizing column 15, which are evenly distributed in a ring on the outer periphery of the magnetizing column 15 to increase the air flow through area. An inner ventilation groove 17 for facilitating air flow is opened inside the magnetizing column 15.

[0033] Refer to Figure 4 - Figure 5, a fixing groove 18 is formed inside the magnetizing column 15. There are four groups of fixing grooves 18, which are evenly distributed in a ring inside the magnetizing column 15. A baffle 19 is fixedly connected inside the fixing groove 18. There are multiple groups of baffles 19, which are linearly and evenly distributed from top to bottom inside the fixing groove 18. A placement box 20 is slidably connected to the top surface of the baffle 19. The placement box 20 can hold magnetizing objects inside. The outer periphery of the placement box 20 is slidably connected inside the fixing groove 18. A set of grooves 21 are formed on both sides of the placement box 20. Sliding grooves 22 are formed on the inner walls of both sides of the fixing groove 18. There are two groups of sliding grooves 22 on each side of the fixing groove 18, which are symmetrically arranged front and back inside the fixing groove 18. A sliding column 23 is slidably connected inside the sliding groove 22. The sliding column 23 can slide along the inner wall of the sliding groove 22. An elastic sheet 24 is fixedly connected to the inner side of the sliding column 23. The elastic sheet 24 has a certain elasticity and can deform and generate a restoring elastic force after being squeezed. The inner side of the elastic sheet 24 is clamped inside the groove 21 to fix the placement box 20.

[0034] Working principle: When the device needs to be cooled, turn on the cooling fan 9. The cooling fan 9 will drive the air flow to flow from bottom to top. The air flow will enter the cooling chamber 5 through the air inlet filter plate 6, pass through the cooling ring 8. After the cooling ring 8 conducts the heat of the capacitor 7, it is carried away by the air flow, and then moves upward through the air outlet filter plate 11, passes through the inner ventilation groove 17 and the outer ventilation groove 16, and takes away the heat inside the magnetizing column 15. At the same time, the air flow passes through the inside of the magnetizing coil 4. The air duct is relatively vertical and unobstructed, and the air flow direction is from bottom to top, which is consistent with the flow direction of the hot air flow, improving the efficiency of air flow. At the same time, it can take away the heat of multiple heating components, and the cooling efficiency is relatively high. When magnetizing is required, the placement box 20 can be pulled out, then the component to be magnetized is placed in, and pushed into the fixing groove 18, squeezing the elastic sheet 24. The elastic sheet 24 is squeezed, and the front and rear ends open, driving the sliding column 23 to slide inside the sliding groove 22. When the groove 21 slides to the position of the elastic sheet 24, the elastic sheet 24 is not stressed and returns to its original state, fixing the placement box 20, so that the placement box 20 can be conveniently pulled open and fixed, and thus the magnetizing body can be conveniently magnetized.

[0035] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A magnetizing pile with an efficient cooling system, comprising an equipment bin (1), characterized in that: The bottom of the equipment bin (1) is fixedly connected with support columns (2). An installation groove (3) is opened at the top of the equipment bin (1). An energizing coil (4) is detachably connected inside the installation groove (3). A heat dissipation bin (5) is fixedly connected inside the equipment bin (1). An air inlet filter plate (6) is fixedly connected to the bottom of the heat dissipation bin (5). A capacitor (7) is detachably connected to the top of the air inlet filter plate (6). A heat dissipation ring (8) is fixedly connected to the outer periphery of the capacitor (7). A heat dissipation fan (9) is arranged inside the heat dissipation bin (5). A fixing ring (10) is fixedly connected inside the installation groove (3). An air outlet filter plate (11) is fixedly connected inside the fixing ring (10). A clamping groove (12) is opened at the top of the fixing ring (10). A support assembly is slidably connected inside the clamping groove (12). The top of the support assembly is fixedly connected with an energizing column (15). An outer ventilation groove (16) is opened on the outer periphery of the energizing column (15). An inner ventilation groove (17) is opened inside the energizing column (15).

2. The magnetizing pile with an efficient cooling system according to claim 1, characterized in that: A fixing groove (18) is opened inside the energizing column (15). A baffle plate (19) is fixedly connected inside the fixing groove (18). A placement box (20) is slidably connected to the top surface of the baffle plate (19). Grooves (21) are opened on both sides of the placement box (20). Sliding grooves (22) are opened on the inner walls of both sides of the fixing groove (18). A sliding column (23) is slidably connected inside the sliding groove (22). An elastic sheet (24) is fixedly connected to the inner side of the sliding column (23).

3. The magnetizing pile with an efficient cooling system according to claim 1, characterized in that: A number of vertical grooves are opened on the outer periphery of the heat dissipation ring (8). The bottom of the heat dissipation ring (8) is in contact with the top of the air inlet filter plate (6).

4. The magnetizing pile with an efficient cooling system according to claim 1, characterized in that: The outer periphery of the fixing ring (10) is in contact with the inner side of the energizing coil (4).

5. The magnetizing pile with an efficient cooling system according to claim 1, characterized in that: The support assembly includes a clamping block (13). The outer periphery of the clamping block (13) is slidably connected inside the clamping groove (12). A support leg (14) is fixedly connected to the inner side of the clamping block (13). The top end of the clamping block (13) is fixedly connected to the bottom of the energizing column (15).

6. The magnetizing pile with an efficient cooling system according to claim 5, characterized in that: The bottom of the support leg (14) is in contact with the top of the air outlet filter plate (11).

7. The magnetizing pile with an efficient cooling system according to claim 2, characterized in that: The outer periphery of the placement box (20) is slidably connected inside the fixing groove (18).

8. The magnetizing pile with an efficient cooling system according to claim 2, wherein: The inner side of the elastic sheet (24) is clamped inside the groove (21).