CN109273208B - Heat dissipation transformer - Google Patents

Heat dissipation transformer Download PDF

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Publication number
CN109273208B
CN109273208B CN201811426102.4A CN201811426102A CN109273208B CN 109273208 B CN109273208 B CN 109273208B CN 201811426102 A CN201811426102 A CN 201811426102A CN 109273208 B CN109273208 B CN 109273208B
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fixedly connected
sliding
plates
transformer
columns
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CN109273208A (en
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张四龙
王强
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Jiangxi Xin Erli Electric Technology Co ltd
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Jiangxi Xin Erli Electric Technology Co ltd
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/06Mounting, supporting or suspending transformers, reactors or choke coils not being of the signal type
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/08Cooling; Ventilating
    • H01F27/085Cooling by ambient air

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  • Power Engineering (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The invention discloses a heat-dissipation transformer which comprises an underframe, an air blowing frame, a transformer frame and a transformer main body, wherein the underframe comprises a middle bottom plate, a trapezoidal sliding rail, two fixing plates, two hinged convex seats I, an upper plate and two lower plates, the trapezoidal sliding rail is fixedly connected to the upper end of the middle bottom plate, the fixing plates are fixedly connected to the left end and the right end of the middle bottom plate, the hinged convex seats I are fixedly connected to the front ends and the rear ends of the two fixing plates, the two lower plates are respectively hinged between the two hinged convex seats I at the left end and between the two hinged convex seats I at the right end, and the two upper plates are respectively connected to the upper ends of the two lower plates in a sliding manner.

Description

Heat dissipation transformer
Technical Field
The invention relates to a transformer, in particular to a heat-dissipation transformer.
Background
The invention discloses a heat-dissipation transformer with the application number of CN201721032199.1, relates to the technical field of transformers, and particularly relates to a heat-dissipation transformer which comprises a transformer main body, a heat-dissipation structure and a shell, wherein rectangular slotted holes are uniformly formed in the surface of the shell, the heat-dissipation structure is arranged between the transformer main body and the shell and consists of a thermal coupling element, a heat-conducting insulating silicone grease pad, a rotating shaft and fan blades, the thermal coupling element is tightly attached to each surface of the transformer, the heat-conducting insulating silicone grease pad is tightly attached to the thermal coupling element, one end of the rotating shaft is connected with the fan blades, and the other end of the rotating shaft is connected with the transformer main body through the. The heat dissipation structure is arranged around the transformer main body, so that the heat dissipation effect of the transformer main body is greatly improved; the copper sheet is embedded in the heat-conducting insulating silicone grease pad to increase the heat conduction area, so that the heat dissipation efficiency is further improved; the fan blades are arranged between the heat-conducting insulating silicon grease pad and the shell, so that the radiating speed can be further improved under the action of external wind. However, the position adjustment capability of the heat dissipation transformer is general, and the installation requirements of various positions cannot be met.
Disclosure of Invention
The present invention is directed to a heat-dissipating transformer, so as to solve the problems of the related art.
In order to realize the purpose, the invention provides the following technical scheme: a heat dissipation transformer comprises an underframe, an air blowing frame, a transformer frame and a transformer main body, wherein the underframe comprises a middle bottom plate, a trapezoidal sliding rail, fixing plates, hinged convex seats I, upper plates and lower plates, the upper end of the middle bottom plate is fixedly connected with the trapezoidal sliding rail, the left end and the right end of the middle bottom plate are fixedly connected with the fixing plates, the front ends and the rear ends of the two fixing plates are fixedly connected with the hinged convex seats I, the lower plates are provided with two lower plates, the two lower plates are respectively hinged between the two hinged convex seats I at the left end and between the two hinged convex seats I at the right end, and the two upper plates are respectively connected to the upper ends of the two lower plates in a sliding manner;
the blowing frame comprises a sliding block, a thick cylinder, a motor and a fan, the sliding block is connected to the trapezoidal sliding rail in a sliding mode, the thick cylinder is fixedly connected to the upper end of the sliding block, the motor is fixedly connected to the upper end of the thick cylinder, and the fan is fixedly connected to an output shaft of the upper end of the motor;
the transformer frame comprises a circular ring bracket, side plates, hinged convex seats II, folding rods and sliding rings, wherein the side plates are fixedly connected to the left end and the right end of the circular ring bracket, the hinged convex seats II are fixedly connected to the front end and the rear end of each side plate, the upper ends of the upper plates are hinged to the left end and the right end of each hinged convex seat II, the folding rods are fixedly connected to the left end and the right end of the circular ring bracket, the sliding rings are fixedly connected to the lower ends of the folding rods, and the transformer main body is fixedly connected to the upper ends of the circular ring bracket.
Preferably, the chassis still includes circular bumping post, fastening screw I, fixed cover and slip post, two the equal fixedly connected with in upper end of hypoplastron fixed cover, two fixed sheatheeing in all through threaded connection has fastening screw I, two the equal fixedly connected with of lower extreme of upper plate the slip post, two slip post sliding connection respectively is two fixed sheatheeing in, two fastening screw I pushes up respectively two on the slip post, two the equal fixedly connected with of lower extreme of slip post circular bumping post, two circular bumping post is located two respectively the lower extreme of fixed cover.
Preferably, the blowing frame further comprises a fastening screw II and a fastening screw seat, the fastening screw seat is fixedly connected to the sliding block, the fastening screw II is connected to the fastening screw seat through threads, and the fastening screw II abuts against the front end of the middle bottom plate.
Preferably, the transformer frame further comprises threaded holes, and a plurality of threaded holes are uniformly distributed on the circular ring bracket in a circular manner.
Preferably, the transformer body is fixedly connected to the upper end of the ring bracket by screws, and the screws for fixing the transformer body are screwed into the plurality of screw holes.
Compared with the prior art, the invention has the beneficial effects that: 1. through the trapezoidal slide rail of upper end fixedly connected with of well bottom plate, the equal fixedly connected with fixed plate in both ends about well bottom plate, the articulated boss of equal fixedly connected with in both ends around two fixed plates
Figure DEST_PATH_IMAGE001
The two lower plates are respectively hinged with two hinged convex seats at the left end
Figure 609503DEST_PATH_IMAGE001
Two hinged convex seats at the middle and right ends
Figure 425012DEST_PATH_IMAGE001
Between, two upper plates are sliding connection respectively in the upper end of two hypoplastron for trapezoidal slide rail's effect is for supplying the slider to slide from side to side on it, and two hypoplastron can rotate in the upper end of two fixed plates respectively, and the upper plate can be on the hypoplastron vertical sliding adjustment upper plate and the whole length of hypoplastron.
2. Through slider sliding connection on trapezoidal slide rail, the thick cylinder of upper end fixedly connected with of slider, thick cylindrical upper end fixedly connected with motor, fixedly connected with fan on the upper end output shaft of motor for the slider can be on trapezoidal slide rail the horizontal slip, can drive the fan when the output shaft of motor rotates and rotate, blows out the air and cools down for the transformer main part when the fan rotates.
3. Through the equal fixedly connected with sideboard in both ends about the ring bracket, both ends are equal fixedly connected with articulated convex seat around two sideboard
Figure 634277DEST_PATH_IMAGE001
Figure 445631DEST_PATH_IMAGE001
The upper ends of the two upper plates are respectively hinged with two hinged convex seats at the left end
Figure 423952DEST_PATH_IMAGE001
Figure 879204DEST_PATH_IMAGE001
Two hinged convex seats at the middle and right ends
Figure 326497DEST_PATH_IMAGE001
Figure 423766DEST_PATH_IMAGE001
Between, the equal fixedly connected with in both ends rolls over the pole about ring bracket lower extreme, fixedly connected with sliding ring between the lower extreme of two rolls over the pole, the upper end fixedly connected with transformer main part of ring bracket for when thick cylinder moves about, the sliding ring can be on thick cylinder vertical slip, sliding ring and transformer frame are whole all can follow thick cylinder and move about, thereby adjust the position about transformer main part of ring bracket upper end, the wind that the fan blew off is cooled down for transformer main part through the ring bracket.
4. The upper ends of the two lower plates are fixedly connected with fixing sleeves, and the two fixing sleeves are connected with fastening screws through threads
Figure 256592DEST_PATH_IMAGE001
The lower ends of the two upper plates are fixedly connected with sliding columns, the two sliding columns are respectively connected to the two fixing sleeves in a sliding mode, and the two fastening screws
Figure 148325DEST_PATH_IMAGE001
The upper plate is supported on the two sliding columns respectively, the lower ends of the two sliding columns are fixedly connected with circular retaining columns which are respectively located at the lower ends of the two fixing sleeves, so that the upper plate can vertically slide on the fixing sleeves through the sliding columns on the upper plate, and the circular retaining platesThe function of the post is to prevent the sliding post from separating from the fixed sleeve and to rotate the fastening screw
Figure 581449DEST_PATH_IMAGE001
The relative position of the upper plate and the lower plate can be fixed by propping against the sliding column. The ring bracket can be raised or lowered by adjusting the overall length of the two sets of upper and lower plates, thereby adjusting the height of the transformer body.
5. A fastening screw seat is fixedly connected to the sliding block, and a fastening screw is connected to the fastening screw seat through threads
Figure 482409DEST_PATH_IMAGE001
Figure 904163DEST_PATH_IMAGE001
Securing screw
Figure 248688DEST_PATH_IMAGE001
Figure 388682DEST_PATH_IMAGE001
The front end of the middle bottom plate is pressed against, so that the sliding block can be fixed on the middle bottom plate by rotating the fastening screw seat against the front end of the middle bottom plate.
Drawings
Fig. 1 is a first schematic structural diagram of a heat dissipation transformer according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a heat dissipation transformer according to an embodiment of the present invention;
FIG. 3 is a schematic view of the structure of the chassis;
fig. 4 is a schematic structural view of the blowing frame;
FIG. 5 is a schematic diagram of a transformer frame;
fig. 6 is a schematic structural diagram of a transformer body.
In the figure: a chassis 1; a middle bottom plate 1-1; a trapezoidal slide rail 1-2; fixing plates 1-3; the hinge convex seat I1-4; 1-5 of a circular retaining column; fastening screw I1-6; 1-7 parts of a fixed sleeve; 1-8 of a sliding column; upper plates 1-9; lower plates 1-10; a blowing frame 2; 2-1 of a slide block; 2-2 of a thick cylinder; 2-3 of a motor; 2-4 of a fan; fastening screw II 2-5; fastening screw seats 2-6; a transformer frame 3; a ring bracket 3-1; a threaded hole 3-2; 3-3 of side plates; the hinge convex seat II 3-4; 3-5 of folding rods; 3-6 of a slip ring; a transformer body 4.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-6, the present invention provides a technical solution: a heat dissipation transformer comprises an underframe 1, a blowing frame 2, a transformer frame 3 and a transformer main body 4, wherein the underframe 1 comprises a middle bottom plate 1-1, trapezoidal sliding rails 1-2, fixing plates 1-3, hinged convex seats I1-4, an upper plate 1-9 and lower plates 1-10, the upper end of the middle bottom plate 1-1 is fixedly connected with the trapezoidal sliding rails 1-2, the left end and the right end of the middle bottom plate 1-1 are fixedly connected with the fixing plates 1-3, the front end and the rear end of each of the two fixing plates 1-3 are fixedly connected with the hinged convex seats I1-4, the number of the lower plates 1-10 is two, the two lower plates 1-10 are respectively hinged between the two hinged convex seats I1-4 at the left end and between the two hinged convex seats I1-4 at the right end, the two upper plates 1-9 are respectively connected to the upper ends of the two lower plates 1-10 in a sliding manner;
the blowing frame 2 comprises a sliding block 2-1, a thick cylinder 2-2, a motor 2-3 and a fan 2-4, the sliding block 2-1 is connected to the trapezoidal sliding rail 1-2 in a sliding mode, the upper end of the sliding block 2-1 is fixedly connected with the thick cylinder 2-2, the upper end of the thick cylinder 2-2 is fixedly connected with the motor 2-3, and an output shaft at the upper end of the motor 2-3 is fixedly connected with the fan 2-4;
the transformer frame 3 comprises a circular ring bracket 3-1, a side plate 3-3, a hinged boss II3-4, a folding rod 3-5 and a sliding ring 3-6, the left end and the right end of the circular ring bracket 3-1 are fixedly connected with the side plates 3-3, the front end and the rear end of each of the two side plates 3-3 are fixedly connected with the hinged convex seats II3-4, the upper ends of the two upper plates 1-9 are respectively hinged between the two hinged convex seats II3-4 at the left end and between the two hinged convex seats II3-4 at the right end, the left end and the right end of the lower end of the circular ring bracket 3-1 are fixedly connected with the folding rods 3-5, the sliding ring 3-6 is fixedly connected between the lower ends of the two folding rods 3-5, and the upper end of the circular ring bracket 3-1 is fixedly connected with the transformer main body 4.
The underframe 1 also comprises circular retaining columns 1-5 and fastening screws I1-6, the fixing device comprises fixing sleeves 1-7 and sliding columns 1-8, the upper ends of two lower plates 1-10 are fixedly connected with the fixing sleeves 1-7, the two fixing sleeves 1-7 are connected with fastening screws I1-6 through threads, the lower ends of two upper plates 1-9 are fixedly connected with the sliding columns 1-8, the two sliding columns 1-8 are respectively connected onto the two fixing sleeves 1-7 in a sliding mode, the two fastening screws I1-6 are respectively abutted against the two sliding columns 1-8, the lower ends of the two sliding columns 1-8 are respectively fixedly connected with circular retaining columns 1-5, and the two circular retaining columns 1-5 are respectively located at the lower ends of the two fixing sleeves 1-7.
The blowing frame 2 further comprises a fastening screw II2-5 and a fastening screw seat 2-6, the fastening screw seat 2-6 is fixedly connected to the sliding block 2-1, the fastening screw seat 2-6 is connected with the fastening screw II2-5 through threads, and the fastening screw II2-5 abuts against the front end of the middle bottom plate 1-1.
The transformer frame 3 further comprises threaded holes 3-2, and a plurality of threaded holes 3-2 are uniformly distributed on the circular ring bracket 3-1 in an annular manner.
The transformer body 4 is fixedly connected to the upper end of the circular ring bracket 3-1 through screws, and the screws for fixing the transformer body 4 are connected to the plurality of threaded holes 3-2 through threads.
The working principle is as follows: the trapezoidal slide rail 1-2 is used for the slide block 2-1 to slide left and right on, the two lower plates 1-10 can rotate at the upper ends of the two fixed plates 1-3 respectively, and the upper plate 1-9 can vertically slide on the lower plates 1-10 to adjust the overall length of the upper plate 1-9 and the lower plates 1-10. The sliding block 2-1 can slide left and right on the trapezoidal sliding rail 1-2, the output shaft of the motor 2-3 can drive the fan 2-4 to rotate when rotating, and air is blown out to cool the transformer main body 4 when the fan 2-4 rotates.When the thick cylinder 2-2 moves left and right, the slip ring 3-6 can vertically slide on the thick cylinder 2-2, the slip ring 3-6 and the transformer frame 3 integrally move left and right along with the thick cylinder 2-2, so that the left and right positions of the transformer main body 4 at the upper end of the circular ring bracket 3-1 are adjusted, and the wind blown by the fan 2-4 cools the transformer main body 4 through the circular ring bracket 3-1. The upper plate 1-9 can vertically slide on the fixed sleeve 1-7 through the sliding column 1-8 on the upper plate, the circular retaining column 1-5 is used for preventing the sliding column 1-8 from separating from the fixed sleeve 1-7, and the fastening screw is screwed
Figure 93333DEST_PATH_IMAGE001
1-6 are pressed against the sliding columns 1-8, so that the relative positions of the upper plate 1-9 and the lower plate 1-10 can be fixed. The ring bracket 3-1 can be raised or lowered by adjusting the overall length of the two sets of upper and lower plates 1-9 and 1-10, thereby adjusting the height of the transformer body 4. The sliding block 2-1 can be fixed on the middle bottom plate 1-1 by rotating the fastening screw seat 2-6 to push against the front end of the middle bottom plate 1-1.
The upper end of the middle bottom plate 1-1 is fixedly connected with a trapezoidal sliding rail 1-2, the left end and the right end of the middle bottom plate 1-1 are fixedly connected with a fixed plate 1-3, and the front end and the rear end of the two fixed plates 1-3 are fixedly connected with a hinged convex seat
Figure 635173DEST_PATH_IMAGE001
1-4, two lower plates 1-10 are arranged, and the two lower plates 1-10 are respectively hinged with two hinged convex seats at the left end
Figure 398203DEST_PATH_IMAGE001
1-4 and two hinged convex seats at the right end
Figure 25494DEST_PATH_IMAGE001
1-4, two upper plates 1-9 are respectively connected with the upper ends of two lower plates 1-10 in a sliding manner, so that the trapezoidal slide rail 1-2 is used for the slide block 2-1 to slide left and right on the trapezoidal slide rail, the two lower plates 1-10 can respectively rotate at the upper ends of two fixed plates 1-3, and the upper plates 1-9 can vertically slide on the lower plates 1-10 to adjust the overall length of the upper plates 1-9 and the lower plates 1-10.
The sliding block 2-1 is connected to the trapezoidal sliding rail 1-2 in a sliding mode, the upper end of the sliding block 2-1 is fixedly connected with the thick cylinder 2-2, the upper end of the thick cylinder 2-2 is fixedly connected with the motor 2-3, and the upper end output shaft of the motor 2-3 is fixedly connected with the fan 2-4, so that the sliding block 2-1 can slide left and right on the trapezoidal sliding rail 1-2, the output shaft of the motor 2-3 can drive the fan 2-4 to rotate when rotating, and air is blown out to cool the transformer main body 4 when the fan 2-4 rotates.
The left end and the right end of the circular ring bracket 3-1 are fixedly connected with the side plates 3-3, and the front end and the rear end of the two side plates 3-3 are fixedly connected with the hinged convex seats
Figure 268256DEST_PATH_IMAGE001
Figure 664603DEST_PATH_IMAGE001
3-4, the upper ends of the two upper plates 1-9 are respectively hinged with two hinged convex seats at the left end
Figure 85351DEST_PATH_IMAGE001
Figure 199937DEST_PATH_IMAGE001
3-4 and two hinged convex seats at the right end
Figure 980812DEST_PATH_IMAGE001
Figure 762823DEST_PATH_IMAGE001
3-4, folding rods 3-5 are fixedly connected to the left end and the right end of the lower end of the circular bracket 3-1, a sliding ring 3-6 is fixedly connected between the lower ends of the two folding rods 3-5, and a transformer main body 4 is fixedly connected to the upper end of the circular bracket 3-1, so that when the thick cylinder 2-2 moves left and right, the sliding ring 3-6 can vertically slide on the thick cylinder 2-2, the sliding ring 3-6 and the transformer frame 3 integrally move left and right along with the thick cylinder 2-2, the left and right positions of the transformer main body 4 at the upper end of the circular bracket 3-1 are adjusted, and the air blown out by the fan 2-4 cools the transformer main body 4 through the circular bracket 3-1.
The upper ends of the two lower plates 1-10 are fixedly connected with fixing sleeves 1-7, and the two fixing sleeves 1-7 are connected with fastening screws through threads
Figure 853007DEST_PATH_IMAGE001
1-6, the lower ends of the two upper plates 1-9 are fixedly connected with sliding columns 1-8, the two sliding columns 1-8 are respectively connected on the two fixed sleeves 1-7 in a sliding way, and two fastening screws
Figure 454890DEST_PATH_IMAGE001
1-6 are respectively supported on two sliding columns 1-8, the lower ends of the two sliding columns 1-8 are fixedly connected with circular retaining columns 1-5, the two circular retaining columns 1-5 are respectively positioned at the lower ends of two fixed sleeves 1-7, so that an upper plate 1-9 can vertically slide on the fixed sleeves 1-7 through the sliding columns 1-8 on the upper plate, the circular retaining columns 1-5 are used for preventing the sliding columns 1-8 from being separated from the fixed sleeves 1-7, and fastening screws are screwed
Figure 39455DEST_PATH_IMAGE001
1-6 are pressed against the sliding columns 1-8, so that the relative positions of the upper plate 1-9 and the lower plate 1-10 can be fixed. The ring bracket 3-1 can be raised or lowered by adjusting the overall length of the two sets of upper and lower plates 1-9 and 1-10, thereby adjusting the height of the transformer body 4.
A fastening screw seat 2-6 is fixedly connected with the sliding block 2-1, and a fastening screw is connected with the fastening screw seat 2-6 through threads
Figure 410394DEST_PATH_IMAGE001
Figure 172944DEST_PATH_IMAGE001
2-5, fastening screw
Figure 996544DEST_PATH_IMAGE001
Figure 384800DEST_PATH_IMAGE001
2-5 is pressed against the front end of the middle bottom plate 1-1, so that the sliding block 2-1 can be fixed on the middle bottom plate 1-1 by rotating the fastening screw seat 2-6 against the front end of the middle bottom plate 1-1.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (4)

1. The utility model provides a heat dissipation transformer, includes chassis (1), frame (2), transformer frame (3) and transformer main part (4) of blowing, its characterized in that: the chassis (1) comprises a middle bottom plate (1-1), trapezoidal sliding rails (1-2), fixing plates (1-3), hinged convex seats I (1-4), an upper plate (1-9) and lower plates (1-10), the upper ends of the middle bottom plate (1-1) are fixedly connected with the trapezoidal sliding rails (1-2), the left and right ends of the middle bottom plate (1-1) are fixedly connected with the fixing plates (1-3), the front and rear ends of the two fixing plates (1-3) are fixedly connected with the hinged convex seats I (1-4), the number of the lower plates (1-10) is two, the two lower plates (1-10) are respectively hinged between the two hinged convex seats I (1-4) at the left end and between the two hinged convex seats I (1-4) at the right end, the two upper plates (1-9) are respectively connected to the upper ends of the two lower plates (1-10) in a sliding manner;
the blowing frame (2) comprises a sliding block (2-1), a thick cylinder (2-2), a motor (2-3) and a fan (2-4), the sliding block (2-1) is connected to the trapezoidal sliding rail (1-2) in a sliding mode, the upper end of the sliding block (2-1) is fixedly connected with the thick cylinder (2-2), the upper end of the thick cylinder (2-2) is fixedly connected with the motor (2-3), and an output shaft at the upper end of the motor (2-3) is fixedly connected with the fan (2-4);
the transformer frame (3) comprises a circular ring bracket (3-1), side plates (3-3), hinged convex seats II (3-4), folding rods (3-5) and sliding rings (3-6), the left end and the right end of the circular ring bracket (3-1) are fixedly connected with the side plates (3-3), the front end and the rear end of each of the two side plates (3-3) are fixedly connected with the hinged convex seats II (3-4), the upper ends of the two upper plates (1-9) are respectively hinged between the two hinged convex seats II (3-4) at the left end and between the two hinged convex seats II (3-4) at the right end, the left end and the right end of the lower end of the circular ring bracket (3-1) are fixedly connected with the folding rods (3-5), and the sliding rings (3-6) are fixedly connected between the lower ends of the two folding rods (3-5), the upper end of the circular ring bracket (3-1) is fixedly connected with the transformer main body (4);
the chassis (1) further comprises circular retaining columns (1-5), fastening screws I (1-6), fixing sleeves (1-7) and sliding columns (1-8), the upper ends of the two lower plates (1-10) are fixedly connected with the fixing sleeves (1-7), the two fixing sleeves (1-7) are connected with the fastening screws I (1-6) through threads, the lower ends of the two upper plates (1-9) are fixedly connected with the sliding columns (1-8), the two sliding columns (1-8) are respectively connected onto the two fixing sleeves (1-7) in a sliding mode, the two fastening screws I (1-6) are respectively abutted against the two sliding columns (1-8), the lower ends of the two sliding columns (1-8) are respectively fixedly connected with the circular retaining columns (1-5), the two circular retaining columns (1-5) are respectively positioned at the lower ends of the two fixed sleeves (1-7), the sliding rings (3-6) vertically slide on the thick circular columns (2-2), and the sliding rings (3-6) and the transformer frame (3) integrally move left and right along with the thick circular columns (2-2).
2. The heat-dissipating transformer of claim 1, wherein: the blowing frame (2) further comprises a fastening screw II (2-5) and a fastening screw seat (2-6), the fastening screw seat (2-6) is fixedly connected to the sliding block (2-1), the fastening screw II (2-5) is connected to the fastening screw seat (2-6) through threads, and the fastening screw II (2-5) abuts against the front end of the middle base plate (1-1).
3. The heat-dissipating transformer of claim 1, wherein: the transformer frame (3) further comprises threaded holes (3-2), and the plurality of threaded holes (3-2) are uniformly distributed on the circular ring bracket (3-1) in an annular manner.
4. The heat-dissipating transformer of claim 3, wherein: the transformer main body (4) is fixedly connected to the upper end of the circular ring bracket (3-1) through screws, and the screws used for fixing the transformer main body (4) are connected to the threaded holes (3-2) through threads.
CN201811426102.4A 2018-11-27 2018-11-27 Heat dissipation transformer Active CN109273208B (en)

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