Dry-type transformer structure

By installing anti-vibration modules on dry-type transformers and utilizing the design of support bars and movable platforms, the problem of loosening or falling off parts due to vibration during transportation in existing technologies has been solved, thereby improving transportation efficiency and stability.

CN120149020BActive Publication Date: 2026-01-02JIANGXI DEYI INTELLIGENT POWER CO LTD
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Patent Information

Application Number
CN202510262707.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-01-02
Estimated Expiration
2045-03-06

AI Technical Summary

Technical Problem

During transportation, uneven road conditions can cause parts of existing dry-type transformers to loosen or fall off, increasing the probability of returning them to the factory for repair and increasing transportation costs.

Method used

The device employs a vibration reduction module, which includes a support platform and a vibration reduction unit. Through the design of support bars, movable platforms, and connecting plates, vibration is reduced and the equipment is stabilized.

Benefits of technology

It effectively reduces vibration during transportation, prevents parts from loosening or falling off, lowers transportation costs, and improves transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a dry-type transformer structure, and belongs to the technical field of dry-type transformers. The dry-type transformer structure comprises a dry-type transformer body, an upper clamp arranged at the upper end of the dry-type transformer body, a plurality of lifting blocks arranged at the upper end of the upper clamp, a lower clamp arranged at the lower end of the dry-type transformer body, a support arranged at the lower end of the lower clamp, a supporting cover arranged on the upper clamp, the lifting blocks being located on the inner side of the supporting cover, the longitudinal two sides of the supporting cover being arranged on the longitudinal two sides of the upper clamp, the supporting cover being connected with the lifting blocks through bolts, and the lower end of the support being connected with an anti-shaking module through bolts. The application solves the problem that the existing dry-type transformer shakes in the vehicle during transportation due to uneven road conditions, which easily causes the parts on the dry-type transformer to loosen or fall off, and in serious cases, the dry-type transformer needs to be returned to the factory for re-inspection, thereby greatly increasing the cost.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of dry-type transformers, and particularly relates to a dry-type transformer structure. BACKGROUND

[0002] Dry-type transformers are widely used in places such as local lighting, high-rise buildings, airports, wharfs and CNC mechanical equipment. Simply speaking, a dry-type transformer refers to a transformer whose core and winding are not immersed in insulating oil.

[0003] The prior art CN221812045U discloses a dry-type transformer structure, which comprises a support, a lower clamp fixedly installed on the support, the lower clamp comprising a high-voltage lower clamp and a low-voltage lower clamp, the low-voltage lower clamp being correspondingly arranged on the support relative to the high-voltage lower clamp, a connecting fixed tube fixedly connected to opposite sides of the high-voltage lower clamp and the low-voltage lower clamp, a core, a top end of the core being arranged between the high-voltage lower clamp and the low-voltage lower clamp, an upper clamp corresponding to the top end of the core, the upper clamp comprising a high-voltage upper clamp and a low-voltage upper clamp, the high-voltage upper clamp and the low-voltage upper clamp being connected by the same connecting fixed tube, the top end of the core being clamped by the upper clamp, a low-voltage coil and a high-voltage coil being sleeved on the core, the low-voltage coil and the high-voltage coil being supported between the upper clamp and the lower clamp, a cushion block, the cushion block being circumferentially distributed between the high-voltage coil and the upper clamp and the lower clamp, a hanging block, the hanging block being arranged on the top of the upper clamp, a high-voltage lead, the high-voltage lead being arranged on the outside of the high-voltage coil, and a fan, the fan being arranged on the outside of the lower clamp. After the dry-type transformer is produced, it needs to be transported to a designated place for installation. During transportation, the dry-type transformer will shake in the vehicle due to uneven road conditions, which may cause the parts on the dry-type transformer to loosen or fall off. In serious cases, the dry-type transformer may need to be returned to the factory for re-inspection, which greatly increases the cost. SUMMARY

[0004] The application provides a dry-type transformer structure, which aims to solve the problem that the existing dry-type transformer shakes in the vehicle during transportation due to uneven road conditions, which may cause the parts on the dry-type transformer to loosen or fall off, and in serious cases, the dry-type transformer may need to be returned to the factory for re-inspection, which greatly increases the cost.

[0005] The embodiment of the present application provides a dry-type transformer structure, which contains a dry-type transformer body, a upper clamp arranged at the upper end of the dry-type transformer body, a plurality of hanging blocks arranged at the upper end of the upper clamp, a lower clamp arranged at the lower end of the dry-type transformer body, a support arranged at the lower end of the lower clamp, a support cover arranged on the upper clamp, the hanging blocks being located at the inner side of the support cover, the longitudinal two sides of the support cover being arranged on the longitudinal two sides of the upper clamp, the support cover being connected with the hanging blocks through bolts, and the lower end of the support being connected with an anti-shaking module through bolts.

[0006] Further, the anti-shaking module contains a bearing table and an anti-shaking unit.

[0007] The lower end of the bearing table is fixedly connected with a support base, and the support base is arranged below a supporting table; the anti-shaking unit is mirror-symmetrically arranged at the transverse two ends of the support base, and is arranged between the support base and the supporting table; the anti-shaking unit contains a supporting strip one, a supporting strip two, a movable table and a connecting piece; the supporting strip one is arranged opposite to the supporting strip two; the movable table is arranged on the upper wall surface of the supporting table; one end of each of the supporting strip one and the supporting strip two is rotatably connected with the movable table; one end of the connecting piece is rotatably connected with the supporting strip one, and the other end of the connecting piece is rotatably connected with the supporting strip two; one side of the connecting piece is rotatably connected with a connecting table; the connecting table is connected with the support base; an energy absorber is connected between the supporting strip one and the supporting strip two; the two ends of the support base are respectively fixedly connected with connecting seats; and the connecting seats are fixedly connected with the lower end of the bearing table.

[0008] Further, the upper wall surface of the connecting seat is fixedly connected with a silica gel piece, and the silica gel piece is arranged between the upper wall surface of the connecting seat and the lower wall surface of the bearing table.

[0009] Further, the support base is arranged opposite to the supporting table, and the periphery of the support base and the supporting table is connected through an extension cover.

[0010] Further, the supporting table contains a rectangular frame and a bearing piece, the bearing piece is arranged at the central position of the rectangular frame, and the bearing piece and the rectangular frame are connected through a spiral beryllium copper wire one.

[0011] Further, a through channel is reserved on the bearing piece, a bearing rod is movably arranged in the channel, the two ends of the bearing rod are respectively fixedly connected with the two sides of the inner side of the rectangular frame, and the spiral beryllium copper wire one is clamped to the outer side of the bearing rod.

[0012] Further, screw holes are reserved on the side of the rectangular frame.

[0013] Further, a rectangular strip one is fixedly connected to the support base, a track is reserved on the edge wall of the rectangular strip one, and the connecting table is movably arranged in the track.

[0014] Further, the rectangular strip is arranged longitudinally, the bearing rod is arranged transversely, one end of the spiral beryllium copper wire is fixedly connected with the rectangular frame, and the other end of the spiral beryllium copper wire is connected with the bearing piece.

[0015] Further, the adjacent pair of anti-shaking units are mirror arranged, and the movable table is arranged on the upper wall surface of the bearing piece.

[0016] The application has the following beneficial effects:

[0017] 1、The anti-shaking module is arranged, so that the shaking of the dry-type transformer body during transportation is weakened, and the parts on the dry-type transformer body are prevented from loosening or falling off due to shaking during transportation, thereby reducing the cost.

[0018] 2、The support is arranged to support the bearing table, the supporting table arranged below the support is firmly fastened with the vehicle, the anti-shaking unit arranged between the support and the supporting table is used to weaken the shaking during transportation; one end of the supporting strip and the other end of the supporting strip are rotatably connected with the movable table, the movable table is arranged on the upper wall surface of the supporting table to bear, the connecting table rotatably connected with one side of the connecting piece supports the support, the damper arranged between the supporting strip and the supporting strip weakens the shaking, the supporting strip and the supporting strip arranged opposite to each other assist the damper to ensure the stability of the equipment, and the device has strong shaking weakening function, so that the parts on the dry-type transformer body are prevented from loosening or falling off due to shaking during transportation.

[0019] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the application. The objects and other advantages of the application will be realized and attained by the structure particularly pointed out in the description and the appended drawings. BRIEF DESCRIPTION OF DRAWINGS

[0020] The accompanying drawings are included to provide a further understanding of the application, and constitute a part of the specification, illustrate embodiments of the application, and are used to explain the application, and do not constitute a limitation on the application. In the drawings:

[0021] Figure 1 It is a front view of the structure of the embodiment of the application;

[0022] Figure 2 It is a disassembled structure diagram of the support cover and the anti-shaking module of the embodiment of the application;

[0023] Figure 3 A three-dimensional structure schematic diagram of the anti-shake module of the embodiment of the present application;

[0024] Figure 4 A support and support table structure schematic diagram of the embodiment of the present application;

[0025] Figure 5 A support table structure schematic diagram of the embodiment of the present application;

[0026] Figure 6 An anti-shake unit structure schematic diagram of the embodiment of the present application;

[0027] Figure 7 A rectangular frame structure schematic diagram of the embodiment of the present application;

[0028] Figure 8 A bearing sheet structure schematic diagram of the embodiment of the present application;

[0029] Figure 9 A rectangular bar passing through a variable table structure schematic diagram of the embodiment of the present application;

[0030] Figure 10 A connection table cross-section structure schematic diagram of the embodiment of the present application;

[0031] Figure 11 A cast iron cross-section structure schematic diagram of the embodiment of the present application;

[0032] The drawings show that: 1, the main body of the dry-type transformer; 2, the upper clamp; 3, the hanging block; 4, the lower clamp; 5, the support; 6, the support cover; 7, the anti-shake module; 71, the bearing table; 711, the support; 711a, the sensing element; 7111, the connection seat; 7113, the rectangular bar one; 713, the support table; 7131, the rectangular frame; 7131a, the chip; 7133, the bearing sheet; 7134, the variable table; 7135, the spiral beryllium copper wire one; 7136, the rectangular bar two; 7137, the bearing rod; 7138, the cast iron; 73, the anti-shake unit; 731, the support bar one; 732, the support bar two; 733, the movable table; 734, the connection sheet; 735, the connection table; 7351, the rectangular table; 7353, the spiral beryllium copper wire two; 736, the energy absorber; 71331, the constraint port; 71381, the hydraulic rod one; 71383, the cast iron body; 71385, the outer cover. DETAILED DESCRIPTION

[0033] In order to make the purpose, technical solutions and advantages of the technical solutions of the present application clearer, the technical solutions of the embodiments of the present application will be described clearly and completely below in conjunction with the drawings of the specific embodiments of the present application. The same reference signs in the drawings represent the same components. It should be noted that the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0034] With reference to Figure 1 With Figure 2 , the embodiment of the present application proposes a dry-type transformer structure, which comprises a dry-type transformer body 1, an upper clamping piece 2 arranged at the upper end of the dry-type transformer body 1, a plurality of lifting blocks 3 arranged at the upper end of the upper clamping piece 2, a lower clamping piece 4 arranged at the lower end of the dry-type transformer body 1, a support 5 arranged at the lower end of the lower clamping piece 4, a support cover 6 arranged on the upper clamping piece 2, the lifting blocks 3 being located inside the support cover 6, the longitudinal two sides of the support cover 6 being arranged on the longitudinal two sides of the upper clamping piece 2, the support cover 6 being connected to the lifting blocks 3 through bolts, and the lower end of the support 5 being connected to an anti-shaking module 7 through bolts.

[0035] Through the arrangement of the anti-shaking module 7, the shaking of the dry-type transformer body 1 during transportation can be weakened, so as to prevent the parts on the dry-type transformer body 1 from loosening or falling off due to shaking during transportation, thereby reducing the cost. Furthermore, through the arrangement of the support cover 6, the upper part of the dry-type transformer body 1 can be protected, thereby ensuring that the dry-type transformer body 1 can also be placed on the upper part of the dry-type transformer body 1, realizing the stacked placement of the dry-type transformer body 1, and thereby improving the transportation efficiency of the dry-type transformer.

[0036] With reference to Figures 3-11 , the anti-shaking module 7 comprises a bearing table 71 and an anti-shaking unit 73;

[0037] The lower end of the bearing table 71 is fixedly connected to a support 711, and a supporting table 713 is arranged below the support 711; the anti-shaking unit 73 is mirror-symmetrically arranged at the transverse two ends of the support 711, the anti-shaking unit 73 is arranged between the support 711 and the supporting table 713, the anti-shaking unit 73 comprises a supporting strip one 731, a supporting strip two 732, a movable table 733 and a connecting piece 734, the supporting strip one 731 is arranged opposite to the supporting strip two 732, the movable table 733 is arranged on the upper wall surface of the supporting table 713, one end of each of the supporting strip one 731 and the supporting strip two 732 is rotatably connected to the movable table 733, one end of the connecting piece 734 is rotatably connected to the supporting strip one 731, the other end of the connecting piece 734 is rotatably connected to the supporting strip two 732, one side of the connecting piece 734 is rotatably connected to a connecting table 735, the connecting table 735 is connected to the support 711, and an energy absorber 736 is connected between the supporting strip one 731 and the supporting strip two 732.

[0038] The support 711 is arranged to support the carrier 71, and the support 711 is arranged below the supporting table 713 and is firmly fastened with the vehicle. The anti-vibration unit 73 is arranged between the support 711 and the supporting table 713 to weaken the vibration during transportation. The supporting bar one 731 and the supporting bar two 732 are arranged opposite to each other, and one end of the supporting bar one 731 and the supporting bar two 732 is screwed with the movable table 733. The movable table 733 is arranged on the upper wall of the supporting table 713 to support the carrier 71. The connecting table 735 is screwed with one side of the connecting piece 734 to support the support 711. The damper 736 is arranged between the supporting bar one 731 and the supporting bar two 732 to weaken the vibration. The supporting bar one 731 and the supporting bar two 732 are arranged opposite to each other to assist the damper 736 to ensure the stability of the device and have strong vibration weakening function to avoid the loosening or falling of the components on the dry-type transformer body 1 during transportation.

[0039] Referring to Figure 4 , the support 711 is arranged to support the carrier 71, and the support 711 is arranged below the supporting table 713 and is firmly fastened with the vehicle. The anti-vibration unit 73 is arranged between the support 711 and the supporting table 713 to weaken the vibration during transportation. The supporting bar one 731 and the supporting bar two 732 are arranged opposite to each other, and one end of the supporting bar one 731 and the supporting bar two 732 is screwed with the movable table 733. The movable table 733 is arranged on the upper wall of the supporting table 713 to support the carrier 71. The connecting table 735 is screwed with one side of the connecting piece 734 to support the support 711. The damper 736 is arranged between the supporting bar one 731 and the supporting bar two 732 to weaken the vibration. The supporting bar one 731 and the supporting bar two 732 are arranged opposite to each other to assist the damper 736 to ensure the stability of the device and have strong vibration weakening function to avoid the loosening or falling of the components on the dry-type transformer body 1 during transportation.

[0040] The upper wall of the connecting seat 7111 is fixedly connected with the silica gel sheet. The silica gel sheet is arranged between the upper wall of the connecting seat 7111 and the lower wall of the carrier 71. The silica gel sheet not only strengthens the firmness of the connecting position, but also assists in weakening the vibration.

[0041] The support 711 is arranged opposite to the supporting table 713. The support 711 and the surrounding of the supporting table 713 are connected through the telescopic cover. The gap between the support 711 and the supporting table 713 is covered by the telescopic cover. The telescopic cover not only prevents the leakage of components, but also intercepts garbage to ensure the normal operation of the anti-vibration unit 73.

[0042] Referring to Figure 7 and Figure 8 , the supporting table 713 includes a rectangular frame 7131 and a carrier sheet 7133. The carrier sheet 7133 is arranged at the center of the rectangular frame 7131. The carrier sheet 7133 and the rectangular frame 7131 are connected through the spiral beryllium copper wire one 7135. The spiral beryllium copper wire one 7135 is arranged again to strengthen the vibration weakening function.

[0043] The carrier sheet 7133 is provided with a through channel. The carrier rod 7137 is movably arranged in the channel. The two ends of the carrier rod 7137 are respectively fixedly connected with the two sides of the inner side of the rectangular frame 7131. The spiral beryllium copper wire one 7135 is clamped on the outer side of the carrier rod 7137.

[0044] The side of the rectangular frame 7131 is provided with a screw hole. The screw hole is arranged to be fastened with the vehicle through the bolt.

[0045] The rectangular strip one 7113 is longitudinally arranged, the bearing rod 7137 is transversely arranged, one end of the helical beryllium copper wire one 7135 is fixedly connected with the rectangular frame 7131, and the other end of the helical beryllium copper wire one 7135 is connected with the bearing piece 7133. The helical beryllium copper wire one 7135 is used to reduce the shaking between the rectangular frame 7131 and the bearing piece 7133, and the function of reducing the shaking is enhanced.

[0046] The adjacent pair of anti-shaking units 73 are mirror arranged, the movable table 733 is arranged on the upper wall surface of the bearing piece 7133, and the anti-shaking units 73 are arranged together to support the support 711, so that the bearing is stable.

[0047] The rectangular strip one 7113 is fixedly connected to the support 711, the edge wall of the rectangular strip one 7113 is reserved with a track, and the connecting table 735 is movably arranged in the track.

[0048] Reference Figures 4-10 The bearing piece 7133 is reserved with a constraint opening 71331 in the middle, the changeable table 7134 is movably arranged in the constraint opening 71331, the rectangular strip two 7136 is arranged on the changeable table 7134, and the top of the rectangular strip two 7136 is screwed with the lower end of the bearing table 71.

[0049] The constraint opening 71331 is arranged along the transverse center line of the bearing rod 7137, the changeable table 7134 is in a column shape, the constraint opening 71331 and the changeable table 7134 are matched with each other, the changeable table 7134 is rotatably arranged in the constraint opening 71331, and can move along the transverse center line of the constraint opening 71331.

[0050] The circumferential wall of the changeable table 7134 is reserved with a through opening, the rectangular strip two 7136 can move through the through opening, and the bottom of the rectangular strip two 7136 is fixedly connected with the cast iron 7138.

[0051] The bearing piece 7133 is reserved in the middle of the constraint port 71331, and the variable table 7134 is movably arranged in the constraint port 71331. The variable table 7134 is connected to the rectangular bar 7136, and the top of the rectangular bar 7136 is rotatably connected to the lower end of the bearing table 71. The constraint port 71331 is arranged along the axial direction of the bearing rod 7137, and the variable table 7134 is in the shape of a column. The constraint port 71331 and the variable table 7134 are matched, so that the variable table 7134 is rotatably connected to the constraint port 71331 and can also move along the transverse center line of the constraint port 71331. When the bearing table 71 moves transversely, the rectangular bar 7136 is pulled to move the variable table 7134 in the constraint port 71331. The rectangular bar 7136 moves through the through port on the wall of the variable table 7134, and the cast iron 7138 is fixedly connected to the bottom of the rectangular bar 7136. The connecting table 735 moves along the reserved groove of the longitudinal center line of the rectangular bar 7113, and is used to reduce the longitudinal shaking. The purpose of reducing the shaking in the longitudinal direction is achieved. During the longitudinal movement, the rectangular bar 7136 rotates around the variable table 7134, and the vertical ends of the rectangular bar 7136 move in opposite directions. Because the bottom of the rectangular bar 7136 is provided with the cast iron 7138, the movement is constrained, the energy generated by the movement is eliminated, the purpose of rapid stabilization is achieved, and the purpose of reducing the shaking is strengthened.

[0052] Referring to Figures 4-11 , the connecting table 735 is provided with a U-shaped port, and the rectangular table 7351 is inserted into the U-shaped port. The rectangular table 7351 is made of silica gel material, and is tightly arranged at one end of the outside of the connecting table 735 and the reserved groove of the rectangular bar 7113. The other end of the rectangular table 7351 is provided with the spiral beryllium copper wire 7353.

[0053] The cast iron 7138 includes a hydraulic rod 71381 and a cast iron body 71383. The lower wall surface of the rectangular bar 7136 is fixedly connected to the outer cover 71385. The hydraulic rod 71381 and the outer cover 71385 are fixedly connected. The cast iron body 71383 is movably arranged in the outer cover 71385. The output end of the hydraulic rod 71381 is connected to the cast iron body 71383.

[0054] In the U-shaped mouth of the adapter table 735, a replaceable rectangular table 7351 is inserted, which is tightly attached to the groove reserved on the rectangular bar 1 7113 to increase the resistance between them. The helical beryllium copper wire 2 7353 installed on the other side of the rectangular table 7351 is used to compress the rectangular table 7351, so that the rectangular table 7351 is always maintained and tightly attached to the groove reserved on the rectangular bar 1 7113, ensuring the resistance between them, and eliminating the energy generated during movement through the resistance; The cast iron body 71383 is installed in the cover 71385 fixed to the lower wall of the rectangular bar 2 7136, and the output end of the hydraulic rod 1 71381 is pulled to move the cast iron body 71383 towards the side away from the shaking direction through the induction element 711a to monitor the shaking direction of the dry-type transformer body 1, so as to eliminate the imbalance and make the dry-type transformer body 1 stable quickly. The cast iron body 71383 starts at the center of the cover 71385, and the rapid extension and contraction of the hydraulic rod 1 71381 pulls the cast iron body 71383 to move quickly towards either side of the cover 71385 to coordinate the entire device to be stable.

[0055] Through the installed induction element 711a, chip 7131a and hydraulic rod 1 71381, the induction element 711a is installed on the support 711, and the chip 7131a is installed on the rectangular frame 7131. The model of the induction element 711a is YD9700MS, and the model of the chip 7131a is AT89C51, which is used to monitor the shaking condition during transportation. The chip 7131a controls the action of the hydraulic rod 1 71381 through the signal transmitted by the induction element 711a to reduce shaking. Through the cooperation of the deformation assembly and the energy dissipation assembly, the shaking received can be weakened to ensure the stable transfer of the dry-type transformer body 1.

[0056] The rectangular bar 2 7136 is an adjusting bar, which includes a top end and a bottom end. The cast iron 7138 is fixed to the lower wall of the bottom end. The top end and the bottom end are movably connected along the vertical direction, and the hydraulic rod 2 is installed between the top end and the bottom end.

[0057] The top end can move through the through hole, and the bottom end is embedded at the bottom of the top end; by changing the distance of the extension of the bottom end, the rectangular bar 2 7136 swings around the variable table 7134. When the distance of the extension of the bottom end increases, the role of the cast iron 7138 in restricting and maintaining balance also increases. According to the needs during use, the distance of the extension of the bottom end is changed to ensure the role of stable restriction and balance maintenance;

[0058] The top end is fixed with a hydraulic rod II, the output end of the hydraulic rod II is connected with the bottom end, the bottom end is moved at the bottom of the top end via the extension of the hydraulic rod II to adjust, in which the hydraulic rod II is electrically connected with the chip 7131a, the sensing element 711a collects the data of the shaking and transmits to the chip 7131a, the chip 7131a controls the action of the hydraulic rod II, and the function of weakening the shaking is strengthened again.

[0059] When the anti-shaking module 7 is in action, the support 711 is used to support the bearing table 71, the supporting table 713 at the low position of the support 711 is fixed with the vehicle, the anti-shaking unit 73 is arranged between the support 711 and the supporting table 713 to weaken the shaking generated during the driving of the vehicle; the head of the supporting strip one 731 and the supporting strip two 732 is screwed with the movable table 733, in which the movable table 733 is arranged at the upper end of the supporting table 713 to support, the connection piece 734 is screwed with the connection table 735 to support the support 711, the damper 736 is connected between the supporting strip one 731 and the supporting strip two 732 to weaken the shaking, the supporting strip one 731 and the supporting strip two 732 are arranged opposite to assist the damper 736, better stability is achieved, and the stronger anti-shaking function is achieved, so that the loosening or falling of the parts on the dry-type transformer body 1 during the transportation is avoided.

[0060] The basic principles and main features of the present application and the advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above-mentioned embodiments, the above-mentioned embodiments and the description in the specification are only to illustrate the principles of the present application, various changes and improvements can be made to the present application without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A dry-type transformer structure, comprising a dry-type transformer body, an upper clamping member installed at the upper end of the dry-type transformer body, a plurality of lifting blocks installed at the upper end of the upper clamping member, a lower clamping member installed at the lower end of the dry-type transformer body, and a support bracket installed at the lower end of the lower clamping member, characterized in that, A support cover is installed on the upper clamp, the lifting block is located inside the support cover, the longitudinal sides of the support cover are laid on the longitudinal sides of the upper clamp, the support cover and the lifting block are connected by bolts, and the lower end of the bracket is connected to the anti-vibration module by bolts. The anti-vibration module includes a support platform and an anti-vibration unit; The lower end of the support platform is fixedly connected to a support, and a support platform is installed below the support. The anti-vibration unit is mirror-installed at both ends of the support and is located between the support and the support platform. The anti-vibration unit includes a first support bar, a second support bar, a movable platform, and a connecting piece. The first support bar is positioned opposite the second support bar. The movable platform is installed on the upper wall of the support platform. One end of the first support bar and the second support bar are each screwed to the movable platform. One end of the connecting piece is screwed to the first support bar, and the other end of the connecting piece is screwed to the second support bar. One side of the connecting piece is screwed to the connecting platform. The connecting platform is connected to the support. An energy dissipator is connected between the first support bar and the second support bar. Connecting seats are fixedly connected to both ends of the support, and the connecting seats are fixedly connected to the lower end of the support platform. The support platform includes a rectangular frame and a support plate. The support plate is installed in the center of the rectangular frame, and the support plate and the rectangular frame are connected by a spiral beryllium copper wire. The support plate has a through channel, in which a support rod is movably installed. The two ends of the support rod are fixed to the two sides of the inner side of the rectangular frame, and the spiral beryllium copper wire is attached to the outside of the support rod. A rectangular strip is fixedly connected to the support, and a track is reserved on the side wall of the rectangular strip. The connecting platform is movably installed in the track.

2. The dry-type transformer structure according to claim 1, characterized in that: A silicone sheet is fixed to the upper wall of the connector, and the silicone sheet is installed between the upper wall of the connector and the lower wall of the support platform.

3. The dry-type transformer structure according to claim 1, characterized in that: The support is positioned directly opposite the support platform, and the support and the support platform are connected by a telescopic cover around their perimeters.

4. The dry-type transformer structure according to claim 1, characterized in that: The rectangular frame has pre-drilled screw holes on its sides.

5. The dry-type transformer structure according to claim 1, characterized in that: The rectangular strip is arranged longitudinally, the bearing rod is arranged laterally, one end of the spiral beryllium copper wire is fixedly connected to the rectangular frame, and the other end of the spiral beryllium copper wire is connected to the bearing plate.

6. The dry-type transformer structure according to claim 5, characterized in that: The pair of adjacent anti-shake units are arranged in a mirror image, and the movable platform is mounted on the upper wall of the carrier plate.

Citation Information

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