Mobile induction heating power supply

By introducing front and rear and up and down moving mechanisms into the mobile induction heating power supply, combined with components such as sliders, slide rods and servo motors, the problems of cabinet instability and inconvenient coil storage are solved, and the stable use and convenient storage of induction coils are achieved.

CN223157249UActive Publication Date: 2025-07-25ZHEJIANG HUAGUANG TECH CO LTD
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Patent Information

Application Number
CN202421373214.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-17
Publication Date
2025-07-25
Estimated Expiration
2034-06-17

AI Technical Summary

Technical Problem

The existing mobile induction heating power supply is unstable when used, the cabinet body is inconvenient to store the induction coil, and there is a lack of effective fixing devices.

Method used

The front and rear moving mechanism and the up and down moving mechanism are used to lift and fix the induction coil through components such as sliders, slide rods, dual-axis servo motors, and combine the moving wheel group and the cabinet fixing mechanism to ensure stable and convenient storage of the device.

Benefits of technology

It realizes stable use and convenient storage of induction coils, reduces space consumption, and improves the stability of the device's use and operation convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of induction heating power supplies, and discloses a movable induction heating power supply, which comprises a cabinet body, two sides of the interior of the cabinet body are fixedly connected with limiting plates, the two limiting plates are provided with clamping grooves, the inner sides of the two clamping grooves are jointly connected with a sliding block in a sliding manner, and the sliding block is connected with a connecting plate in a sliding manner. According to the utility model, the front-back moving mechanism and the up-down moving mechanism are matched with each other, so that the induction coil can be lifted when being used and can be retracted after being used, the storage is very convenient, and meanwhile, the external occupied space of the induction coil is reduced; and the induction coil can also be protected when the induction coil is placed in the cabinet body, and high practicability is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of induction heating power supplies, and particularly relates to a mobile induction heating power supply. Background Art

[0002] The induction heating power supply has the highest heating efficiency and the fastest speed for metal materials, and is low in consumption and environmentally friendly. It has been widely used in various industries for hot processing, heat treatment, hot assembly, welding, melting and other processes of metal materials. The induction heating power supply consists of two parts. One part is an AC power supply that provides energy, also known as a frequency conversion power supply; the other part is an induction coil that completes the electromagnetic induction energy conversion, called an inductor. However, the existing mobile induction heating power supplies generally have the following technical problems in actual use scenarios:

[0003] 1. When the induction coil heats a metal component, the main body part of the cabinet of the mobile induction heating power supply lacks a special fixing device. This may cause the cabinet to be unstable or even shake during the process of placing the metal component on the induction coil or during the electromagnetic heating process.

[0004] 2. Most of the coils of the existing induction heating power supplies are divided into two categories. One category is that the induction coil is an external and detachable induction coil; the second category is a coil that directly protrudes outside the cabinet and is fixedly connected to the power supply. These two categories generally have the problem of inconvenient storage of the induction coil.

[0005] In summary, a mobile induction heating power supply that can solve the above problems is proposed. Summary of the Utility Model

[0006] To solve the technical problems of the induction heating power supply, the utility model provides a mobile induction heating power supply.

[0007] The utility model is realized by adopting the following technical solutions: A mobile induction heating power supply includes a cabinet. Both sides inside the cabinet are fixedly connected with limiting plates. Card slots are opened on both of the limiting plates. A slider is slidably connected to the inner sides of the two card slots. A connecting plate is slidably connected to the slider. One end of the connecting plate is fixedly connected with a mounting frame. An induction coil is fixedly connected to one side of the mounting frame. The other end of the connecting plate is provided with a front-back moving mechanism for moving the induction coil forward and backward. An up-down moving mechanism for moving the induction coil up and down is arranged inside the cabinet. A moving wheel set mechanism for facilitating the movement of the cabinet of the induction heating power supply is arranged on the lower side of the bottom of the cabinet. A cabinet fixing mechanism for fixing the cabinet when the induction heating power supply works is arranged on the lower side of the cabinet. An LED control panel for facilitating operation is arranged on one side of the cabinet. A placing board for facilitating the placement and storage of the induction coil is arranged on the other side of the cabinet.

[0008] As a further improvement of the above solution, the front-back moving mechanism includes curved limiting grooves opened on both sides inside the cabinet body. A sliding rod is jointly and slidably connected to the inner sides of the two curved limiting grooves, and one end of the sliding rod is rotatably connected to the connecting plate.

[0009] As a further improvement of the above solution, the up-down moving mechanism includes a load-bearing plate fixedly connected to the lower side inside the cabinet body. A double-shaft servo motor is fixedly connected to the upper side of the load-bearing plate, and a slider driving mechanism for making the slider reciprocate up and down along the card slot is arranged at the upper output end of the double-shaft servo motor.

[0010] As a further improvement of the above solution, the slider driving mechanism includes a threaded rod fixedly connected to the upper output end of the double-shaft servo motor. The threaded rod is threadedly sleeved with the slider, and the upper end of the threaded rod is rotatably connected to the upper side of the cabinet body.

[0011] As a further improvement of the above solution, the moving wheel set mechanism includes a plurality of rollers rotatably connected to the lower side of the bottom of the cabinet body, and a universal wheel is arranged on the other side of the cabinet body.

[0012] As a further improvement of the above solution, the cabinet body fixing mechanism includes a threaded sleeve fixedly connected to the bottom of the cabinet body. The threaded sleeve is threadedly sleeved with a threaded column. The lower end of the threaded column is rotatably connected to a push plate. A plurality of legs are fixedly connected to the lower side of the push plate. A push plate driving mechanism for making the push plate reciprocate up and down is arranged at the upper end of the threaded column, and a push plate positioning mechanism for positioning the push plate is arranged on the push plate.

[0013] As a further improvement of the above solution, the push plate driving mechanism includes an angular bayonet opened on the threaded column. The lower output end of the double-shaft servo motor passes through the load-bearing plate and is fixedly connected to an angular clamping rod, and the angular clamping rod is movably connected to the angular bayonet.

[0014] As a further improvement of the above solution, the push plate positioning mechanism includes a positioning groove opened on the push plate. A positioning block fixedly connected to the lower side of the cabinet body is slidably connected to the inner side of the positioning groove.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0016] 1. Through the mutual cooperation of the front-back moving mechanism and the up-down moving mechanism, the present utility model can be raised when the induction coil is in use and retracted when the use is completed, which is very convenient for storage. At the same time, the occupied space of the induction coil outside is reduced, and placing it inside the cabinet body can also play a role in protecting the induction coil.

[0017] 2. Through the cabinet body fixing mechanism, the present utility model can push out the legs through the push plate, and when the induction coil is working, the entire cabinet body can be lifted off the ground to achieve the effect of stabilizing and fixing the whole device. Brief Description of the Drawings

[0018] Figure 1 The front view of a mobile induction heating power supply provided by the present utility model;

[0019] Figure 2 The side view provided by the present utility model;

[0020] Figure 3 The first sectional view provided by the present utility model;

[0021] Figure 4 is Figure 3 the top view of;

[0022] Figure 5 is Figure 3 the bottom view of;

[0023] Figure 6 is Figure 3 the orthographic view of;

[0024] Figure 7 is a partial schematic view of the structure of the edge angle clamping rod (19) and the edge angle clamping opening (18).

[0025] Main Symbol Explanation:

[0026] 1, cabinet body; 2, induction coil; 3, mounting rack; 4, LED control panel; 5, universal wheel; 6, support leg; 7, push plate; 8, roller; 9, connecting plate; 10, placing plate; 11, slider; 12, sliding rod; 13, limiting plate; 14, curved limiting groove; 15, load-bearing plate; 16, threaded column; 17, threaded sleeve; 18, edge angle clamping opening; 19, edge angle clamping rod; 20, threaded rod; 21, clamping groove; 22, positioning block; 23, positioning groove; 24, double-shaft servo motor. Detailed Embodiment

[0027] Next, in combination with the drawings and the specific embodiments, the present utility model will be further described. It should be noted that, on the premise of no conflict, any combination of the following described embodiments or technical features can form a new embodiment.

[0028] Embodiment:

[0029] Please combine with Figures 1-7 , a mobile induction heating power supply of this embodiment includes a cabinet body 1. Both sides inside the cabinet body 1 are fixedly connected with limiting plates 13. Clamping grooves 21 are opened on both of the two limiting plates 13. A slider 11 is jointly slidably connected inside the two clamping grooves 21. Two slot holes are opened on the slider 11, as Figure 3As shown, the connecting plate 9 is assembled by two branches. The two branches slide in and out of the slot holes respectively. The connecting plate 9 is slidably connected to the slider 11. One end of the connecting plate 9 is fixedly connected to the mounting bracket 3. In this embodiment, the mounting bracket 3 is fixedly connected to the induction coil 2. In other embodiments, the mounting bracket 3 and the induction coil 2 can be designed to be detachable. After disassembly, the induction coil 2 is electrically connected to the mounting bracket 3 through a cable, which can expand the moving range of the induction coil 2. One side of the mounting bracket 3 is fixedly connected to the induction coil 2. The other end of the connecting plate 9 is provided with a front and rear moving mechanism for moving the induction coil 2 forward and backward. An up and down moving mechanism for moving the induction coil 2 up and down is provided inside the cabinet body 1. A moving wheel group mechanism for facilitating the movement of the cabinet body 1 of the induction heating power supply is provided on the lower side of the bottom of the cabinet body 1. A cabinet body fixing mechanism for fixing the cabinet body 1 when the induction heating power supply works is provided on the lower side of the cabinet body 1. An LED control panel 4 for facilitating operation is provided on one side of the cabinet body 1. A shelving plate 10 for facilitating the placement and storage of the induction coil 2 is provided on the other side of the cabinet body 1.

[0030] Please refer to Figure 3 and Figure 4 As shown, the front and rear moving mechanism includes curved limiting grooves 14 opened on both sides inside the cabinet body 1. A slide bar 12 is slidably connected to the inner sides of the two curved limiting grooves 14. The slide bar 12 is rotatably connected to one end of the connecting plate 9. Through the special structure of the curved limiting grooves 14, the induction coil 2 can move forward and backward while moving up and down at the same time, achieving the effect of being stored and lifted from the cabinet body 1.

[0031] Please refer to Figure 3 As shown, the up and down moving mechanism includes a load-bearing plate 15 fixedly connected to the lower side inside the cabinet body 1. A double-shaft servo motor 24 is fixedly connected to the upper side of the load-bearing plate 15. The upper output end of the double-shaft servo motor 24 is provided with a slider driving mechanism for moving the slider 11 up and down reciprocally along the card slot 21. The double-shaft servo motor 24 can be fixedly suspended inside the cabinet body 1 through the load-bearing plate 15 to play a supporting role.

[0032] Please refer to Figure 3 As shown, the slider driving mechanism includes a threaded rod 20 fixedly connected to the upper output end of the double-shaft servo motor 24. The threaded rod 20 is threadedly sleeved with the slider 11. The upper end of the threaded rod 20 is rotatably connected to the upper side of the cabinet body 1.

[0033] Please refer to Figure 5 As shown, the moving wheel group mechanism includes two rollers 8 rotatably connected to the lower side of the bottom of the cabinet body 1. A universal wheel 5 is provided on the other side of the cabinet body 1. Through the universal wheel 5, it is convenient for the operator to change the direction when pushing the cabinet body 1 to move.

[0034] Please refer to Figure 5As shown in the figure, the cabinet fixing mechanism includes a threaded sleeve 17 fixedly connected to the bottom of the cabinet 1. The threaded sleeve 17 penetrates through the bottom side of the cabinet 1 and is fixedly connected to the bottom through four bolts. A threaded column 16 is threadedly sleeved on the threaded sleeve 17. The lower end of the threaded column 16 is rotatably connected to a push plate 7. Four legs 6 are fixedly connected to the lower side of the push plate 7. A push plate driving mechanism for moving the push plate 7 up and down is arranged at the upper end of the threaded column 16, and a push plate positioning mechanism for positioning the push plate 7 is arranged on the push plate 7.

[0035] Please refer to Figure 3 As shown in the figure, the push plate driving mechanism includes an angular bayonet 18 opened on the threaded column 16. The lower output end of the dual-axis servo motor 24 passes through the bearing plate 15 and is fixedly connected to an angular clamping rod 19. The angular clamping rod 19 is movably connected to the angular bayonet 18. By rotating the angular clamping rod 19, the rotation of the angular bayonet 18 on the threaded column 16 is promoted, thereby achieving the effect of pushing the threaded column 16 downward. At this time, the angular clamping rod 19 slides downward relative to the inner side of the angular bayonet 18.

[0036] The push plate positioning mechanism includes a positioning groove 23 opened on the push plate 7. A positioning block 22 fixedly connected to the lower side of the cabinet 1 is slidably connected to the inner side of the positioning groove 23.

[0037] The implementation principle of a mobile induction heating power supply in the embodiment of the present application is as follows: When the staff heats a metal component, the dual-axis servo motor 24 is started. The lower output end of the dual-axis servo motor 24 rotates, promoting the rotation of the angular clamping rod 19. Since it is movably connected to the angular bayonet, at this time, the threaded column 16 rotates and moves downward within the threaded sleeve 17, directly pushing the push plate 7 downward. Since the lower end of the threaded column 16 is rotatably connected to the push plate 7, at this time, the positioning block 22 and the positioning groove 23 slide relative to each other, preventing the push plate 7 from shifting, achieving the effect that the four legs 6 abut against the ground until the entire cabinet 1 is lifted from the ground. At the same time, the upper output end of the dual-axis servo motor 24 promotes the rotation of the threaded rod 20. Due to the limiting effect of the slider 11 and the card slot 21, the slider 11 threadedly sleeved on the threaded rod 20 moves upward. Since both ends of the sliding rod 12 are limited and clamped in the curved limiting groove 14, when the slider 11 moves upward, the connecting plate 9 extends forward, pushing the induction coil 9 to rise from within the cabinet 1.

[0038] The above implementation manners are only the preferred implementation manners of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention belong to the scope of protection required by the present invention.

Claims

1. A mobile induction heating power supply, comprising a cabinet (1), characterized in that, On both sides inside the cabinet body (1), there are fixedly connected limit plates (13). On both of the two limit plates (13), there are card slots (21) opened. Inside the two card slots (21), there is a sliding block (11) connected in common. A connecting plate (9) is slidably connected to the sliding block (11). One end of the connecting plate (9) is fixedly connected with a mounting frame (3). On one side of the mounting frame (3), there is an induction coil (2) fixedly connected. At the other end of the connecting plate (9), there is a front and rear moving mechanism for moving the induction coil (2) forward and backward. Inside the cabinet body (1), there is an up and down moving mechanism for moving the induction coil (2) up and down. Under the bottom side of the cabinet body (1), there is a moving wheel set mechanism for facilitating the movement of the cabinet body (1) of the induction heating power supply. On the lower side of the cabinet body (1), there is a cabinet body fixing mechanism for fixing the cabinet body (1) when the induction heating power supply works. On one side of the cabinet body (1), there is an LED control panel (4) for facilitating operation. On the other side of the cabinet body (1), there is a placing board (10) for facilitating the placement and storage of the induction coil (2).

2. The mobile induction heating power supply according to claim 1, characterized in that, The front and rear moving mechanism includes curved limit slots (14) opened on both sides inside the cabinet body (1). Inside the two curved limit slots (14), there is a sliding rod (12) connected in common. The sliding rod (12) is rotatably connected to one end of the connecting plate (9).

3. The mobile induction heating power supply according to claim 1, characterized in that, The up and down moving mechanism includes a load-bearing plate (15) fixedly connected to the lower side inside the cabinet body (1). On the upper side of the load-bearing plate (15), there is a double-shaft servo motor (24) fixedly connected. On the upper output end of the double-shaft servo motor (24), there is a sliding block driving mechanism for moving the sliding block (11) to reciprocate up and down along the card slot (21).

4. The mobile induction heating power supply according to claim 3, characterized in that, The sliding block driving mechanism includes a threaded rod (20) fixedly connected to the upper output end of the double-shaft servo motor (24). The threaded rod (20) is threadedly sleeved with the sliding block (11). The upper end of the threaded rod (20) is rotatably connected to the upper side of the cabinet body (1).

5. The mobile induction heating power supply according to claim 1, characterized in that The moving wheel set mechanism includes a plurality of rollers (8) rotatably connected to the lower side of the bottom of the cabinet body (1). On the other side of the cabinet body (1), there is a universal wheel (5).

6. The mobile induction heating power supply according to claim 4, characterized in that, The cabinet body fixing mechanism includes a threaded sleeve (17) fixedly connected to the bottom of the cabinet body (1). The threaded sleeve (17) is threadedly sleeved with a threaded column (16). The lower end of the threaded column (16) is rotatably connected to a push plate (7). On the lower side of the push plate (7), there are a plurality of legs (6) fixedly connected. On the upper end of the threaded column (16), there is a push plate driving mechanism for moving the push plate (7) to reciprocate up and down. On the push plate (7), there is a push plate positioning mechanism for positioning the push plate (7).

7. The mobile induction heating power supply according to claim 6, wherein The push plate driving mechanism includes an angular bayonet (18) opened on the threaded column (16). The lower output end of the double-shaft servo motor (24) passes through the load-bearing plate (15) and is fixedly connected with an angular bayonet rod (19). The angular bayonet rod (19) is movably connected with the angular bayonet (18).

8. The mobile induction heating power supply according to claim 6, wherein The push plate positioning mechanism includes a positioning groove (23) formed in the push plate (7), and a positioning block (22) fixedly connected to the lower side of the cabinet body (1) is slidably connected to the inner side of the positioning groove (23).