Efficient heat dissipation transformer

By using a servo motor-driven lead screw system, a serpentine copper tube water cooling system, and a reciprocating motor-driven cooling fan, the problems of multi-position contact and reciprocating oscillating airflow cooling of transformer coils were solved, thus improving heat dissipation efficiency.

CN223956414UActive Publication Date: 2026-02-27DONGGUAN BAIWEN ELECTRIC CO LTD
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Patent Information

Application Number
CN202520436944.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-27
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing transformers are not convenient to access from multiple points and to exchange heat and cool the coils during use, which affects the heat dissipation effect.

Method used

A servo motor-driven lead screw system and a serpentine copper tube combined with a water cooling system are used to achieve multi-position contact heat exchange of the coil, and a reciprocating motor-driven cooling fan is used for reciprocating oscillation and air blowing for heat dissipation.

Benefits of technology

It enables convenient multi-position contact heat exchange and reciprocating oscillating air blowing, thus improving the heat dissipation effect of the transformer.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient heat dissipation transformer which comprises an outer frame and a coil, the coil is arranged in the outer frame, a water tank is arranged at the bottom end in the outer frame, a water pump is installed in the water tank, and two sets of movable frames are symmetrically installed at the top end in the outer frame. Servo motors are installed at the top ends of the movable frames, lead screws are movably installed in the movable frames, the output ends of the servo motors are connected with the lead screws, the surfaces of the lead screws are sleeved with threaded sleeves, the threaded sleeves are in threaded connection with the lead screws, and lower pressing plates are installed among the multiple sets of threaded sleeves. A plurality of sets of springs are symmetrically installed at the bottom end of the lower pressing plate at equal intervals. According to the utility model, convenient multi-position contact is realized, the coil is subjected to heat exchange and cooling, the coil can be conveniently subjected to reciprocating swinging, blowing and heat dissipation, and the heat dissipation effect of the transformer is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to transformer technical field, concretely is a kind of high -efficient heat dissipation transformer. BACKGROUND

[0002] Transformer is a kind of device using electromagnetic induction principle to change alternating voltage, main component includes primary coil, secondary coil and iron core (or magnetic core), its main function includes voltage transformation, current transformation, impedance transformation, isolation and voltage stabilization (for magnetic saturation transformer), transformer converts certain grade alternating voltage and current into another grade voltage and current of same frequency by electromagnetic induction effect, transformer generates heat when working, when its heat is too high, it will affect the working efficiency of transformer, to avoid the influence of high temperature on its work, so a kind of high -efficient heat dissipation transformer is presented.

[0003] As the high -efficient heat dissipation transformer disclosed in the authorized announcement No.CN221927709U, the first shell heat dissipation fin is fixedly installed on the front of the corrosion -resistant transformer shell near the center, the detachable steel pipe support is fixedly installed on the bottom of the corrosion -resistant transformer shell near one side axis symmetry, the first detachable bolt is movably connected to the top of the detachable steel pipe support near the front center, the fixed support support is fixedly installed in the inside of the detachable steel pipe support near the center, the fixed shell top cover is fixedly installed on the top of the corrosion -resistant transformer shell, the moving antiskid hook is fixedly installed on the front of the other side of the corrosion -resistant transformer shell near the top axis symmetry;

[0004] It can be used to safely move equipment, save labor, improve equipment utilization, reduce cost, and is beneficial to the use of equipment in many ways, has reasonable space layout, compactness and small floor area, and is convenient to install and transport;

[0005] But it does not solve the problem that the existing transformer is not convenient for multi-position contact and heat exchange cooling of coil when in use, and is not conducive to reciprocating swing air blowing of coil, which affects the heat dissipation effect of transformer. UTILITY MODEL CONTENTS

[0006] The utility model aims at providing a kind of high -efficient heat dissipation transformer to solve the problem that transformer is not convenient for multi-position contact and heat exchange cooling of coil in the above background art, and is not conducive to reciprocating swing air blowing of coil, which affects the heat dissipation effect of transformer.

[0007] In order to achieve the above object, the utility model provides the following technical scheme: An efficient heat dissipation transformer, including external frame and coil, the inside of external frame is provided with coil, the bottom of the inside of external frame is provided with water tank, the inside of water tank is installed with water pump, the top of the inside of external frame is installed with two groups of moving frame, the top of moving frame is installed with servo motor, the inside of moving frame is all movably installed with lead screw, and the output of servo motor is connected with lead screw, the surface of lead screw is all equipped with threaded sleeve, and threaded sleeve is connected with lead screw in screw thread, and a plurality of threaded sleeves are installed with down plate between them, the bottom of down plate is symmetrically installed with a plurality of groups of springs with equal intervals, the lower portion of down plate is provided with the copper pipe of snake shape, and the copper pipe of snake shape is connected with spring, and the both ends of copper pipe of snake shape are connected with water pump through flexible hose.

[0008] Preferably, both sides of the inside of the external frame are symmetrically installed with integrated frames, and one side of the integrated frame is slidably provided with a back-shaped frame.

[0009] Preferably, both ends of the integrated frame are installed with limit frames, and both ends of the back-shaped frame are installed with sliding plates, and the sliding plates are slidably connected with the limit frames.

[0010] Preferably, the inside of the back-shaped frame is slidably installed with moving plates, and one side of the moving plate is installed with two groups of heat dissipation fans.

[0011] Preferably, the other side of the moving plate is installed with a placing block, and a plurality of groups of meshing columns with equal intervals are installed on the side wall of the placing block.

[0012] Preferably, arc-shaped plates are installed on the side walls of the moving plates on both sides of the placing block, and reciprocating motors are installed on the other side of the integrated frame.

[0013] Preferably, the output ends of the reciprocating motors are installed with transmission shafts, and the transmission shafts are slidably connected with the placing blocks and the arc-shaped plates.

[0014] Preferably, meshing gears are sleeved on the surfaces of the transmission shafts, and the meshing gears are meshed with the meshing columns.

[0015] Compared with the prior art, the utility model has the advantages that the transformer not only realizes convenient multi-position contact and heat exchange and cooling of the coil, facilitates reciprocating swing and air blowing heat dissipation of the coil, but also improves the heat dissipation effect of the transformer.

[0016] (1) by the coil is installed inside the outer frame, when the outer frame will produce heat during work, by servo motor driven screw rod rotation, by the screw rod through the threaded sleeve driven down the plate down, by the lower plate driven spring and the copper tube down, in the spring elastic cooperation, to make the copper tube and the top of the coil flexible connection, and then make the copper tube and the coil continuous contact, the cooling liquid into the inside of the water tank, by the water pump inside the water tank cooling liquid through the flexible hose into the inside of the copper tube, by the cooling liquid to through the copper tube to the coil complete heat exchange and take away the heat, so as to the top of the coil heat dissipation, when the need to disassemble the coil, reverse open servo motor, can be driven by the servo motor copper tube away from the coil up and move, to ensure the convenience of disassembly of the coil, realize the convenient multi position contact and heat exchange cooling of the coil;

[0017] (2) by the reciprocating motor driven transmission shaft and meshing gear rotation, by the meshing gear driven engagement column, by the engagement column through the moving plate driven back frame, when the uppermost engagement column moves to the meshing gear position, by the meshing gear through the engagement column driven moving plate in the back frame inside right, can drive the moving plate reciprocating movement in the back frame, by the moving plate driven heat dissipation fan reciprocating movement, under the mutual cooperation of the back frame, can drive the heat dissipation fan to move back and forth in a large range, so that the heat dissipation fan to reciprocating movement blowing heat dissipation of the coil, to improve the effect of heat dissipation, facilitate the reciprocating swing blowing heat dissipation of the coil, improve the effect of transformer heat dissipation. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is the three-dimensional structure of the present application schematic diagram;

[0019] Figure 2 is the three-dimensional perspective structure of the outer frame of the present application schematic diagram;

[0020] Figure 3 is the front view of the present application schematic diagram;

[0021] Figure 4 is the three-dimensional perspective structure of the lower plate of the present application schematic diagram;

[0022] Figure 5 is the three-dimensional perspective structure of the integrated frame of the present application schematic diagram;

[0023] Figure 6 is the three-dimensional structure of the heat dissipation fan of the present application schematic diagram.

[0024] In the figure: 1, external frame; 2, coil; 3, integrated frame; 4, lower pressing plate; 5, moving frame; 6, water pump; 7, water tank; 8, servo motor; 9, screw rod; 10, threaded sleeve; 11, spring; 12, coiled copper pipe; 13, placing block; 14, arc plate; 15, meshing column; 16, reciprocating motor; 17, transmission shaft; 18, meshing gear; 19, moving plate; 20, back-shaped frame; 21, limiting frame; 22, sliding plate; 23, cooling fan. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0026] Please refer to Figures 1-6 The utility model provides an embodiment: a high -efficient heat dissipation transformer, including external frame 1 and coil 2, the inside of external frame 1 is provided with coil 2, the bottom end in the inside of external frame 1 is provided with water tank 7, the inside of water tank 7 is installed with water pump 6, and water pump 6 plays the role of power drive, and the top end in the inside of external frame 1 is symmetrically installed with two groups of moving frame 5, and the top end of moving frame 5 is installed with servo motor 8, and servo motor 8 plays the role of power drive, and the inside of moving frame 5 is movably installed with screw rod 9, and the output end of servo motor 8 is connected with screw rod 9, and the surface of screw rod 9 is all equipped with threaded sleeve 10, and threaded sleeve 10 is connected with screw rod 9 in screw thread, and a plurality of threaded sleeves 10 are installed with lower pressing plate 4, and the bottom end of lower pressing plate 4 is symmetrically installed with a plurality of groups of springs 11 at equal intervals, and the lower of lower pressing plate 4 is provided with coiled copper pipe 12, and coiled copper pipe 12 is connected with spring 11, and the both ends of coiled copper pipe 12 are connected with water pump 6 through flexible hose,

[0027] The coil 2 is installed inside the outer frame 1, when the outer frame 1 generates heat during operation, the servo motor 8 is opened, the lead screw 9 is driven by the servo motor 8, the lower pressing plate 4 is driven by the lead screw 9 through the threaded sleeve 10 to move downward, the spring 11 and the copper pipe 12 are driven by the lower pressing plate 4 to move downward, under the elastic cooperation of the spring 11, the copper pipe 12 is elastically connected with the top of the coil 2, so that the copper pipe 12 and the coil 2 are in continuous contact, the cooling liquid is injected into the inside of the water tank 7, then the water pump 6 is opened, the cooling liquid in the inside of the water tank 7 is input into the inside of the copper pipe 12 through the flexible hose, the heat exchange of the coil 2 by the copper pipe 12 is completed by the cooling liquid and the heat is taken away, so as to cool the top of the coil 2, when the coil 2 needs to be disassembled, the servo motor 8 is opened in reverse, the copper pipe 12 is driven by the servo motor 8 to move upward and away from the coil 2, so as to ensure the disassembly convenience of the coil 2, the convenient multi-position contact and heat exchange of the coil are realized;

[0028] The integrated frame 3 is symmetrically installed on both sides of the inside of the outer frame 1, and the integrated frame 3 is symmetrically installed on both sides of the inside of the outer frame 1;

[0029] The upper and lower ends of the integrated frame 3 are provided with the limiting frame 21, and the upper and lower ends of the back-shaped frame 20 are provided with the sliding plate 22, and the sliding plate 22 is slidably connected with the limiting frame 21;

[0030] The moving plate 19 is slidably installed in the inside of the back-shaped frame 20, and the moving plate 19 is provided with two groups of heat dissipation fans 23 on one side, and the moving plate 19 is provided with the placing block 13 on the other side, and the placing block 13 is provided with a plurality of groups of meshing columns 15 at equal intervals on the side wall;

[0031] The arc-shaped plate 14 is installed on the side wall of the moving plate 19 on both sides of the placing block 13, the reciprocating motor 16 is installed on the other side of the integrated frame 3, the reciprocating motor 16 plays a role of power driving, the transmission shaft 17 is installed on the output end of the reciprocating motor 16, and the transmission shaft 17 is slidably connected with the placing block 13 and the arc-shaped plate 14;

[0032] The meshing gear 18 is sleeved on the surface of the transmission shaft 17, and the meshing gear 18 is meshed with the meshing column 15;

[0033] When the reciprocating motor 16 is turned on, the transmission shaft 17 and the meshing gear 18 are driven to rotate by the reciprocating motor 16, the meshing column 15 is driven to move by the meshing gear 18 under the meshing of the meshing gear 18 and the meshing column 15, the sliding plate 22 is driven to move by the meshing column 15 through the moving plate 19 under the sliding cooperation of the sliding plate 22 and the limiting frame 21, when the uppermost meshing column 15 moves to the position of the meshing gear 18, the moving plate 19 is driven to move right inside the meandering frame 20 by the meshing gear 18 through the meshing column 15 under the sliding cooperation of the transmission shaft 17 and the placing block 13 and the arc-shaped plate 14, and under the continuous rotating action of the meshing gear 18, the moving plate 19 can be driven to reciprocate inside the meandering frame 20, the cooling fan 23 is driven to reciprocate by the moving plate 19, and under the cooperation of the meandering frame 20, the cooling fan 23 can be driven to reciprocate in a large range, so that the cooling fan 23 is used to reciprocate and blow the coil to dissipate heat, thereby improving the heat dissipation effect, facilitating the reciprocating blowing heat dissipation of the coil, and improving the heat dissipation effect of the transformer.

[0034] Working principle: the coil 2 is installed inside the outer frame 1, heat is generated during the working process of the outer frame 1, the screw rod 9 is driven to rotate by the servo motor 8, the lower pressing plate 4 is driven to move downward by the screw rod 9 through the threaded sleeve 10, the spring 11 and the coiled copper tube 12 are driven to move downward by the lower pressing plate 4, and the coiled copper tube 12 is elastically connected with the top of the coil 2 under the elastic cooperation of the spring 11, so that the coiled copper tube 12 continuously contacts the coil 2, the cooling liquid is injected into the inside of the water tank 7, the cooling liquid in the inside of the water tank 7 is input into the inside of the coiled copper tube 12 by the water pump 6, the coil 2 is heat-exchanged by the coiled copper tube 12 and the heat is taken away, so that the top of the coil 2 is cooled, when the coil 2 needs to be disassembled, the servo motor 8 is turned off in reverse, the coiled copper tube 12 is driven to move upward and away from the coil 2 by the servo motor 8, the disassembly convenience of the coil 2 is ensured, the transmission shaft 17 and the meshing gear 18 are driven to rotate by the reciprocating motor 16, the meshing column 15 is driven to move by the meshing gear 18, the meandering frame 20 is driven to move by the meshing column 15 through the moving plate 19, when the uppermost meshing column 15 moves to the position of the meshing gear 18, the moving plate 19 is driven to move right inside the meandering frame 20 by the meshing gear 18 through the meshing column 15 under the sliding cooperation of the transmission shaft 17 and the placing block 13 and the arc-shaped plate 14, and under the continuous rotating action of the meshing gear 18, the moving plate 19 can be driven to reciprocate inside the meandering frame 20, the cooling fan 23 is driven to reciprocate by the moving plate 19, and under the cooperation of the meandering frame 20, the cooling fan 23 can be driven to reciprocate in a large range, so that the cooling fan 23 is used to reciprocate and blow the coil to dissipate heat, thereby improving the heat dissipation effect, the above is the whole use of the high-efficiency heat dissipation transformer.

Claims

1. A high-efficiency heat dissipating transformer comprising an outer frame (1) and a coil (2), characterized in that: The interior of the outer frame (1) is provided with a coil (2), the bottom end of the interior of the outer frame (1) is provided with a water tank (7), the interior of the water tank (7) is mounted with a water pump (6), the top end of the interior of the outer frame (1) is symmetrically mounted with two groups of moving frames (5), the top end of the moving frame (5) is mounted with a servo motor (8), the interior of the moving frame (5) is movably mounted with a lead screw (9), and the output end of the servo motor (8) is connected with the lead screw (9), the surface of the lead screw (9) is sleeved with a threaded sleeve (10), the threaded sleeve (10) is threadedly connected with the lead screw (9), a plurality of threaded sleeves (10) are mounted between the plurality of threaded sleeves (10), the bottom end of the lower pressing plate (4) is symmetrically mounted with a plurality of springs (11) at equal intervals, the lower side of the lower pressing plate (4) is provided with a serpentine copper pipe (12), the serpentine copper pipe (12) is connected with the spring (11), and the two ends of the serpentine copper pipe (12) are connected with the water pump (6) through flexible hoses.

2. A high efficiency heat dissipating transformer as claimed in claim 1, wherein: The two sides of the interior of the outer frame (1) are symmetrically mounted with integrated frames (3), and one side of the integrated frame (3) is slidably provided with a back-shaped frame (20).

3. A high efficiency heat dissipating transformer as claimed in claim 2, wherein: The upper and lower ends of the integrated frame (3) are mounted with limit frames (21), and the upper and lower ends of the back-shaped frame (20) are mounted with sliding plates (22), and the sliding plates (22) and the limit frames (21) are slidably connected.

4. A high efficiency heat dissipating transformer as claimed in claim 2, wherein: The interior of the back-shaped frame (20) is slidably mounted with a moving plate (19), and one side of the moving plate (19) is mounted with two groups of heat dissipation fans (23).

5. A high efficiency heat dissipating transformer as claimed in claim 4, wherein: The other side of the moving plate (19) is mounted with a placing block (13), and the side wall of the placing block (13) is mounted with a plurality of engagement columns (15) at equal intervals.

6. A high efficiency heat dissipating transformer as claimed in claim 5, wherein: The side wall of the moving plate (19) on the two sides of the placing block (13) is mounted with an arc-shaped plate (14), and the other side of the integrated frame (3) is mounted with a reciprocating motor (16).

7. A high efficiency heat dissipating transformer as claimed in claim 6, wherein: The output end of the reciprocating motor (16) is mounted with a transmission shaft (17), and the transmission shaft (17) and the placing block (13) and the arc-shaped plate (14) are slidably connected.

8. A high efficiency heat dissipating transformer according to claim 7, characterized in that: The surface of the transmission shaft (17) is sleeved with an engagement gear (18), and the engagement gear (18) and the engagement column (15) are engaged with each other.

Citation Information

Patent Citations

  • Efficient heat dissipation transformer

    CN221927709U