Mute type intelligent adjustment heat dissipation transformer

By combining the lifting and swinging devices with the heat dissipation device, all-round heat dissipation and multi-angle blowing of the transformer can be achieved, solving the problems of low heat dissipation efficiency and high noise of traditional transformers, and improving the heat dissipation efficiency and use effect.

CN120637014APending Publication Date: 2025-09-12JIANGXI YAWEI ELECTRIC
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Patent Information

Application Number
CN202510847658.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Traditional transformer heat dissipation methods are inefficient, noisy, and difficult to achieve all-round heat dissipation, and cannot meet high-load operation requirements.

Method used

A lifting device and a swing device are used in conjunction with a heat dissipation device to achieve vertical displacement of the transformer and multi-angle blowing. The lifting device drives the bottom of the transformer to be exposed to the air environment, and the rotating mechanism is used to adjust the air outlet direction of the heat dissipation device to achieve all-round coverage and multi-angle blowing.

Benefits of technology

It significantly improves heat dissipation efficiency and usage effect, reduces operating noise, and achieves all-round efficient heat dissipation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of power equipment, and discloses a mute type intelligent adjustment heat dissipation transformer which comprises a transformer body, the bottom of the transformer body is correspondingly connected with a lifting device, and the lifting device is used for driving the transformer body to move in the vertical direction, so that the bottom of the transformer body is exposed to the air environment, and all-directional heat dissipation is achieved. The lifting device comprises a starting device, a swinging device and heat dissipation devices, the starting device is used for driving the swinging device connected with the top to ascend or descend, and after the starting device completes position adjustment, the swinging device drives the heat dissipation devices connected with the two ends of the swinging device to conduct angle adjustment through rotating mechanisms on the two sides; the air outlet of the heat dissipation device can cover the transformer located in the middle position in all directions, heat dissipation is achieved through multi-angle air blowing, and the heat dissipation efficiency and the using effect of the device are remarkably improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of power equipment, and in particular to a silent intelligent regulating heat dissipation transformer. Background Art

[0002] At present, transformers are widely used in power systems, and a large amount of heat is generated during their operation. If the heat cannot be dissipated in time, it will seriously affect the performance and life of the transformer, and even cause safety accidents. Traditional transformer heat dissipation methods mostly use natural heat dissipation or simple fan direct blowing heat dissipation. Not only is the heat dissipation efficiency low, it is difficult to meet the heat dissipation requirements under high-load operation, and the fan operation will generate a lot of noise, affecting the use environment. In addition, traditional heat dissipation structures are difficult to achieve all-round heat dissipation, and there are heat dissipation dead corners, which leads to excessively high local temperatures in the transformer. With the development of intelligent technology, the requirements for intelligent, silent and efficient heat dissipation of transformers are getting higher and higher, and existing heat dissipation devices can no longer adapt to these requirements well. Based on this, the present invention proposes a silent intelligent adjustable heat dissipation transformer to solve the above problems. Summary of the Invention

[0003] The object of the present invention is to provide a silent intelligent heat dissipation transformer to solve the problems raised in the above background technology.

[0004] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a silent intelligent adjustable heat dissipation transformer, comprising a transformer, wherein a lifting device is correspondingly connected to the bottom of the transformer, and the lifting device is used to drive the transformer to move in a vertical direction so that the bottom of the transformer is exposed to the air environment to achieve all-round heat dissipation. The lifting device comprises a starting device, a swinging device and a heat dissipation device. The starting device is used to drive the swinging device connected to the top to rise or fall. After the starting device completes the position adjustment, the swinging device will drive the heat dissipation devices connected to its two ends to adjust the angle through the rotating mechanisms on both sides, so that the air outlet of the heat dissipation device can fully cover the transformer located in the middle position, and dissipate heat through multi-angle blowing, which significantly improves the heat dissipation efficiency and use effect of the device.

[0005] As a preferred technical solution of the present invention, the starting device includes four supporting legs, the tops of the four supporting legs are fixedly connected to fixed columns, the tops of the four fixed columns are fixedly connected to long strips, and both ends of the tops of the long strips are fixedly connected to lifting columns.

[0006] As a preferred technical solution of the present invention, a pushing block is movably connected to the top center of the long board, a motor is fixedly connected to the bottom of the pushing block, and the top of the motor is fixedly connected to the bottom center of the long board, and the two lifting columns are fixedly connected to the top of the pushing block with a swing device.

[0007] As a preferred technical solution of the present invention, the swing device includes a base plate, the bottom of the base plate is fixedly connected to the two lifting columns and the top of the push block, an L-shaped bracket is fixedly connected to the outside of the base plate, the groove on the top of the L-shaped bracket is correspondingly connected to the bottom of the transformer, one end of the bottom of the base plate is fixedly connected to a connecting plate, the groove of the connecting plate is fixedly connected to a cylinder, and the output shaft end of the cylinder is fixedly connected to a semicircular block.

[0008] As a preferred technical solution of the present invention, one end of an elliptical plate is movably connected to the groove at the top of the semicircular block, and the other end of the elliptical plate is movably connected to a first long column. The bottom of the first long column is fixedly connected to a first gear, the outer surface of the first gear is meshed with a second gear, and the center of the second gear is fixedly connected to a second long column, and both ends of the first long column and the second long column are movably connected to the raised part at the top of the bottom plate, and the outer sides of both ends of the second long column are fixedly connected to clamping blocks, and the grooves of the two clamping blocks are fixedly connected to heat dissipation devices.

[0009] As a preferred technical solution of the present invention, the heat dissipation device includes a fixed round block, the top of the fixed round block is fixedly connected to the groove of the clamping block, both sides of the bottom of the fixed round block are fixedly connected with curved rods, the bottoms of the two curved rods are movably connected with rotating shafts, and the bottoms of the two rotating shafts are movably connected with hollow blocks.

[0010] As a preferred technical solution of the present invention, the upper and lower ends of the hollow block are movably connected with suction cups, the bottoms of the two suction cups are correspondingly connected to rotating blocks, the bottoms of the rotating blocks are movably connected with fan blades, the raised part on the top of the rotating block is fixedly connected to one end of the polygonal block, and the other end of the polygonal block is movably connected to the center bottom of the fixed circular block.

[0011] Compared with the prior art, the present invention has the following beneficial effects: A silent intelligent adjustable heat dissipation transformer is designed. The two ends of a long strip are respectively arranged to be fixedly connected to the top of a fixed column. The combination of four fixed columns and supporting feet can form a stable support system, effectively enhancing the bottom support strength. When the motor is started, it drives the pushing block fixedly connected to the top of the pushing block to move upward, thereby driving the swing device fixedly connected to the top of the pushing block to move synchronously. Since the lifting columns at both ends of the pushing block are also fixedly connected to the bottom of the swing device, the two lifting columns will rise and fall synchronously with the pushing block, thereby ensuring sufficient air circulation at the bottom of the transformer connected to the swing device.

[0012] A silent, intelligently adjustable heat-dissipating transformer sets a base plate on top of a push block. The upward thrust of the push block enables the base plate to achieve vertical displacement. When the base plate rises, the L-shaped bracket fixed to its outside is lifted synchronously, thereby raising the transformer so that its bottom is completely exposed to the air, achieving an all-round heat dissipation effect.

[0013] A silent intelligent adjustable heat dissipation transformer, which fixedly connects the cylinder output shaft end with the bottom of the semicircular block, can use the cylinder to drive the top semicircular block to move upward. Since one end of the elliptical plate is movably connected to the groove at the top of the semicircular block and the other end is connected to the first long column, the linear motion of the semicircular block can be converted into the rotational motion of the first long column. At this time, the first gear fixed to the bottom of the first long column will rotate synchronously, and drive the second gear meshing with the outer surface to rotate as well, and the second gear will quickly drive the second long column fixed in the center to swing, so that the clamping blocks connected to the outside of the two ends of the second long column can drive the heat dissipation device to achieve multi-angle swinging and blowing.

[0014] A silent, intelligently adjustable heat-dissipating transformer, with a fixed circular block connected to a clamping block, moves synchronously with the clamping block. When the center of the fixed circular block's bottom is flexibly connected to one end of a polygonal block and driven to rotate by a motor, the polygonal block rapidly drives the rotating block connected to the other end into a torsional motion. The rotating block, now secured to its outer surface by two suction cups, swings back and forth within the hollowed-out slot of the hollow block. The hollow block, flexibly connected by curved rods on either side, effectively absorbs vibrations generated by the fan blades, achieving wide-angle air supply and heat dissipation on both sides of the transformer. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a front structural schematic diagram of the present invention; Figure 2 It is a schematic diagram of the front and side structure of the present invention; Figure 3 This is an overall schematic diagram of the lifting device in the present invention; Figure 4 This is a schematic diagram of the starting device in the present invention; Figure 5 Schematic diagram of the swing device in the present invention; Figure 6 Schematic diagram of the connection between the first long column and the first gear in the present invention; Figure 7 Schematic diagram of the heat dissipation device of the present invention; Figure 8 It is a schematic diagram of the connection relationship between the two ends of the rotating block in the present invention.

[0016] In the figure: 1. transformer; 2. lifting device; 21. starting device; 211. supporting foot; 212. fixed column; 213. long strip; 214. lifting column; 215. pushing block; 216. motor; 22. swinging device; 221. bottom plate; 222. L-shaped bracket; 223. connecting plate; 224. cylinder; 225. semicircular block; 226. elliptical plate; 227. first long column; 228. first gear; 229. second gear; 2210. second long column; 2211. clamping block; 23. heat dissipation device; 231. fixed circular block; 232. bending rod; 233. rotating shaft; 234. hollow block; 235. suction cup; 236. rotating block; 237. fan blade; 238. polygonal block. DETAILED DESCRIPTION

[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0018] Example 1: Please refer to Figure 1-Figure 2 , a silent intelligent adjustable heat dissipation transformer, a silent intelligent adjustable heat dissipation transformer, comprising a transformer 1, a lifting device 2 is provided at the bottom of the transformer 1, and the bottom of the transformer 1 is correspondingly connected to the outer side of the lifting device 2, the lifting device 2 is used to drive the transformer 1 to move in the vertical direction, so that the bottom of the transformer 1 is exposed to the air environment to achieve all-round heat dissipation, the lifting device 2 includes a starting device 21, a swinging device 22 and a heat dissipation device 23, the starting device 21 is used to drive the swinging device 22 connected to the top to rise or fall, after the starting device 21 completes the position adjustment, the swinging device 22 will drive the heat dissipation devices 23 connected to its two ends to adjust the angle through the rotating mechanisms on both sides, so that the air outlet of the heat dissipation device 23 can fully cover the transformer 1 located in the middle position, and dissipate heat through multi-angle blowing, which significantly improves the heat dissipation efficiency and use effect of the device.

[0019] Example 2: Based on Example 1, Figure 3-8 As shown, the starting device 21 includes four supporting legs 211, and the tops of the four supporting legs 211 are each provided with a fixing column 212, and the tops of the four supporting legs 211 are fixedly connected to the bottoms of the fixing columns 212, and the tops of the four fixing columns 212 are provided with a long strip 213, and the tops of the four fixing columns 212 are fixedly connected to the two ends of the bottom of the long strip 213, and the two ends of the top of the long strip 213 are each provided with a lifting column 214, and the two ends of the top of the long strip 213 are fixedly connected to the bottom of the lifting column 214.

[0020] A pushing block 215 is provided at the top center of the long strip 213, and the top center of the long strip 213 is movably connected to the outer surface of the pushing block 215. A motor 216 is provided at the bottom of the pushing block 215, and the bottom of the pushing block 215 is fixedly connected to the output shaft end of the motor 216, and the top of the motor 216 is fixedly connected to the bottom center of the long strip 213. A swing device 22 is provided at the top of the two lifting columns 214 and the pushing block 215. By respectively setting the two ends of the long strip 213 and fixing them together with the top of the fixed column 212, a stable support system can be formed by combining the four fixed columns 212 with the support legs 211. , effectively enhancing the bottom support strength. When the motor 216 is started, it drives the push block 215 fixedly connected to its top to move upward, thereby driving the swing device 22 fixedly connected to the top of the push block 215 to move synchronously. Since the lifting columns 214 at both ends of the push block 215 are also fixedly connected to the bottom of the swing device 22, the two lifting columns 214 will rise and fall synchronously with the push block 215. This method can disperse the gravity on the top of the long plate 213 and quickly raise the height of the swing device 22. As a result, the bottom of the transformer 1 connected to the swing device 22 can obtain sufficient air circulation, significantly improving the heat dissipation effect. The two lifting columns 214 and the top of the push block 215 are fixedly connected to the bottom of the swing device 22.

[0021] The swing device 22 includes a base plate 221, the bottom of which is fixedly connected to two lifting columns 214 and the top of a pushing block 215. An L-shaped bracket 222 is provided on the outside of the base plate 221, and the outside of the base plate 221 is fixedly connected to the inner side of the top of the L-shaped bracket 222. The top groove of the L-shaped bracket 222 is correspondingly connected to the bottom of the transformer 1. A connecting plate 223 is provided at one end of the bottom of the base plate 221, and one end of the bottom of the base plate 221 is fixedly connected to the top of the connecting plate 223. A cylinder 224 is provided at the bottom groove of the connecting plate 223, and the bottom groove of the connecting plate 223 is fixedly connected to the bottom of the cylinder 224. By setting the base plate 221 on the top of the pushing block 215, the upward thrust of the pushing block 215 can be used to enable the base plate 221 to achieve vertical displacement. When the base plate 221 rises, the L-shaped bracket 222 fixedly connected to its outer side will be lifted synchronously, thereby lifting the transformer 1 so that its bottom is completely exposed to the air, achieving an all-round heat dissipation effect. In addition, the L-shaped bracket 222 has a hollowed-out groove, which can further enhance air convection and quickly improve the heat dissipation efficiency of the bottom of the transformer 1. The output shaft end of the cylinder 224 is provided with a semicircular block 225, and the output shaft end of the cylinder 224 is fixedly connected to the bottom of the semicircular block 225.

[0022] The top groove of the semicircular block 225 is provided with an elliptical plate 226, and the top groove of the semicircular block 225 is movably connected to one end of the elliptical plate 226, the other end of the elliptical plate 226 is provided with a first long column 227, and the other end of the elliptical plate 226 is movably connected to the top of the first long column 227, a first gear 228 is provided at the bottom of the first long column 227, and the bottom of the first long column 227 is fixedly connected to the center of the first gear 228, a second gear 229 is provided on the outer surface of the first gear 228, and the outer surface of the first gear 228 is meshed with the outer surface of the second gear 229, a second long column 2210 is provided at the center of the second gear 229, and the center of the second gear 229 is fixedly connected to the bottom of the second long column 2210, and both ends of the first long column 227 and the second long column 2210 are movably connected to the top raised part of the bottom plate 221, and the outer sides of both ends of the second long column 2210 are provided with clamping blocks 2211, and the outer sides of both ends of the second long column 2210 are meshed with the clamping blocks The bottom of the block 2211 is fixedly connected, and the grooves of the two clamping blocks 2211 are both provided with a heat dissipation device 23. By fixing the connecting plate 223 to one end of the bottom of the bottom plate 221, it can be raised and lowered synchronously with the bottom plate 221. When the bottom plate 221 completes the height adjustment, the cylinder 224 will drive the top semicircular block 225 to move upward. Since one end of the elliptical plate 226 is movably connected to the groove on the top of the semicircular block 225 and the other end is connected to the first long column 227, the linear motion of the semicircular block 225 can be converted into a rotational motion of the first long column 227. At this time, the first gear 228 fixed to the bottom of the first long column 227 will rotate synchronously, and drive the second gear 229 engaged with the outer surface to rotate as well, and let the second gear 229 quickly drive the second long column 2210 fixed in the center to swing, and finally the clamping blocks 2211 connected to the outer sides of the two ends of the second long column 2210 can drive the heat dissipation device 23 to achieve multi-angle swing blowing, forming a distributed heat dissipation structure. The grooves of the two clamping blocks 2211 are fixedly connected to the bottom of the heat dissipation device 23.

[0023] The heat dissipation device 23 includes a fixed round block 231, the top of the fixed round block 231 is fixedly connected to the groove of the clamping block 2211, and curved rods 232 are provided on both sides of the bottom of the fixed round block 231, and both sides of the bottom of the fixed round block 231 are fixedly connected to the top of the curved rod 232, and the bottoms of the two curved rods 232 are provided with rotating shafts 233, and the bottoms of the two curved rods 232 are movably connected to the top of the rotating shaft 233, and the bottoms of the two rotating shafts 233 are provided with hollow blocks 234, and the bottoms of the two rotating shafts 233 are movably connected to the left and right sides of the hollow block 234.

[0024] The hollow block 234 is provided with suction cups 235 at both ends, and the upper and lower ends of the hollow block 234 are movably connected to the top of the suction cup 235. The bottom of the two suction cups 235 is provided with a rotating block 236, and the bottom of the two suction cups 235 is correspondingly connected to the outer surface of the rotating block 236. The bottom of the rotating block 236 is provided with a fan blade 237, and the bottom of the rotating block 236 is movably connected to the bottom of the fan blade 237. The top raised part of the rotating block 236 is provided with a polygonal block 238, and the top raised part of the rotating block 236 is fixedly connected to one end of the polygonal block 238. The fixed circular block 231 is provided to be connected to the clamping block 2211 and can move synchronously with the clamping block 2211. When the bottom center of the fixed circular block 231 is movably connected through one end of the polygonal block 238 and driven to rotate by the motor 216, the polygonal block 238 will quickly drive the rotating block 236 connected at the other end to produce a torsional motion. At this time, the rotating block 236 can swing back and forth in the hollow groove of the hollow block 234 through the two suction cups 235 fixedly connected to the outer surface, and the hollow block 234 can effectively absorb the vibration generated by the rotation of the fan blades 237 through the movably connected curved rods 232 on both sides, thereby reducing the operating noise. Finally, the fan blades 237 connected to the bottom of the rotating block 236 are allowed to reciprocate, thereby realizing wide-angle air supply and heat dissipation on both sides of the transformer 1, and the other end of the polygonal block 238 is movably connected to the bottom center of the fixed circular block 231.

[0025] The working principle of the present invention is as follows: Raise the position of the transformer: The starting device 21 includes four fixed columns 212. The four fixed columns 212 and the supporting feet 211 at the bottom provide a stable foundation for the bottom of the entire device. When the motor 216 is started, its output shaft will drive the push block 215 connected to the top to move upward. Since the top of the push block 215 and the two lifting columns 214 on both sides are also fixedly connected to the bottom of the swing device 22, when the push block 215 rises, it will drive the swing device 22 and the transformer 1 connected to the swing device 22 to rise synchronously. In this process, the gravity on the top of the long board 213 can be quickly dispersed through the lifting columns 214 and the pushing block 215, effectively raising the height of the transformer 1 so that the bottom of the transformer 1 can be completely exposed to the air environment; Adjust the heat dissipation direction: When the starting device 21 pushes the transformer 1 to complete the position adjustment, the swing device 22 will start. The swing device 22 includes a connecting plate 223. The connecting plate 223 will rise and fall synchronously with the bottom plate 221. When the bottom plate 221 stops rising, the cylinder 224 will quickly drive the semicircular block 225 connected at the top to move upward. Since one end of the elliptical plate 226 is movably connected to the groove at the top of the semicircular block 225 and the other end is connected to the first long column 227, the linear motion of the semicircular block 225 can pass through the elliptical plate. 226 is converted into a rotational motion of the first long column 227. The rotated first long column 227 will then cause the first gear 228 fixed to the bottom to rotate. The first gear 228 will drive the rotation of the second gear 229 on the outer surface through the meshing connection, thereby driving the swing of the second long column 2210. Finally, the clamping blocks 2211 connected to the outer sides of the two ends of the second long column 2210 can drive the heat sink 23 to achieve multi-angle swing, adjust the direction of the air outlet of the heat sink 23, and enable it to fully cover the transformer 1 located in the middle position. Multi-directional heat dissipation: When one end of the polygonal block 238 in the heat dissipation device 23 is driven by the motor 216 to rotate at the center bottom of the fixed circular block 231, the polygonal block 238 connects to the corresponding rotating block 236 at the other end and generates a torsional motion. At this time, the rotating block 236, fixedly connected via two suction cups 235 on its outer surface, oscillates back and forth within the hollow groove of the hollow block 234, effectively absorbing the vibration generated by the rotation of the fan blades 237 and reducing operating noise. Simultaneously, the oscillation of the rotating block 236 also drives the fan blades 237 connected at the bottom to reciprocate, achieving wide-angle air supply and heat dissipation on both sides of the transformer 1. The multi-angle air blowing significantly improves the heat dissipation efficiency and performance of the device.

[0026] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A silent intelligent heat dissipation transformer, comprising a transformer (1), characterized in that: The bottom of the transformer (1) is connected to a lifting device (2), and the lifting device (2) is used to drive the transformer (1) to move in a vertical direction, so that the bottom of the transformer (1) is exposed to the air environment, thereby achieving all-round heat dissipation. The lifting device (2) includes a starting device (21), a swinging device (22) and a heat dissipation device (23). The starting device (21) is used to drive the swinging device (22) connected to the top to rise or fall. After the starting device (21) completes the position adjustment, the swinging device (22) drives the heat dissipation devices (23) connected to its two ends to adjust the angle through the rotating mechanisms on both sides, so that the air outlet of the heat dissipation device (23) can fully cover the transformer (1) located in the middle position. The heat dissipation efficiency and use effect of the device are significantly improved by blowing air at multiple angles.

2. The silent intelligent heat dissipation transformer according to claim 1, characterized in that: The starting device (21) comprises four supporting legs (211), the tops of the four supporting legs (211) are fixedly connected to fixing columns (212), the tops of the four fixing columns (212) are fixedly connected to long strips (213), and the top ends of the long strips (213) are fixedly connected to lifting columns (214).

3. The silent intelligent heat dissipation transformer according to claim 2, characterized in that: The top center of the long strip (213) is movably connected to a push block (215), the bottom of the push block (215) is fixedly connected to a motor (216), and the top of the motor (216) is fixedly connected to the bottom center of the long strip (213), and the two lifting columns (214) are fixedly connected to the top of the push block (215) with a swing device (22).

4. The silent intelligent heat dissipation transformer according to claim 3, characterized in that: The swing device (22) comprises a bottom plate (221), the bottom of the bottom plate (221) is fixedly connected to the two lifting columns (214) and the top of the push block (215), an L-shaped bracket (222) is fixedly connected to the outside of the bottom plate (221), the top groove of the L-shaped bracket (222) is correspondingly connected to the bottom of the transformer (1), one end of the bottom of the bottom plate (221) is fixedly connected to a connecting plate (223), the groove of the connecting plate (223) is fixedly connected to a cylinder (224), and the output shaft end of the cylinder (224) is fixedly connected to a semicircular block (225).

5. The silent intelligent heat dissipation transformer according to claim 4, characterized in that: One end of an elliptical plate (226) is movably connected to the groove at the top of the semicircular block (225), and the other end of the elliptical plate (226) is movably connected to a first long column (227). The bottom of the first long column (227) is fixedly connected to a first gear (228), and the outer surface of the first gear (228) is meshedly connected to a second gear (229). The center of the second gear (229) is fixedly connected to a second long column (2210), and both ends of the first long column (227) and the second long column (2210) are movably connected to the top raised portion of the bottom plate (221). The outer sides of both ends of the second long column (2210) are fixedly connected to a clamping block (2211), and the grooves of the two clamping blocks (2211) are fixedly connected to a heat dissipation device (23).

6. The silent intelligent heat dissipation transformer according to claim 5, characterized in that: The heat dissipation device (23) comprises a fixed circular block (231), the top of the fixed circular block (231) is fixedly connected to the groove of the clamping block (2211), the bottom of the fixed circular block (231) is fixedly connected to curved rods (232) on both sides, the bottoms of the two curved rods (232) are movably connected to rotating shafts (233), and the bottoms of the two rotating shafts (233) are movably connected to hollow blocks (234).

7. The silent intelligent heat dissipation transformer according to claim 6, characterized in that: The upper and lower ends of the hollow block (234) are movably connected to suction cups (235), the bottoms of the two suction cups (235) are correspondingly connected to rotating blocks (236), the bottoms of the rotating blocks (236) are movably connected to fan blades (237), the top raised portion of the rotating block (236) is fixedly connected to one end of the polygonal block (238), and the other end of the polygonal block (238) is movably connected to the central bottom of the fixed circular block (231).