A standardized transformer

By calibrating the locking, positioning sensors, and meshing mechanisms, loose bolts are automatically identified and tightened, solving the problem of high maintenance failure rate caused by loose bolts in standardized transformers and ensuring normal operation of the transformer.

CN119361301BActive Publication Date: 2026-01-02YIFA HLDG GRP
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Patent Information

Application Number
CN202411614526.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2026-01-02
Estimated Expiration
2044-11-13

AI Technical Summary

Technical Problem

In the operation of existing standardized transformers, the bolt connections are prone to loosening, resulting in a high failure rate during maintenance. It is difficult to detect and fix these issues in a timely manner, which affects normal operation.

Method used

The system employs a calibration and locking mechanism, a positioning and sensing mechanism, and an engagement and docking mechanism. By driving the screw to rotate via a motor and sensing with a sensor, it automatically identifies and locks loose bolts, ensuring a stable connection.

Benefits of technology

This enables timely identification and tightening of loose bolts, reducing the failure rate during maintenance and ensuring that the transformer operates normally according to standardized operating conditions.

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Abstract

The application discloses a kind of standardization transformers, specifically relates to transformer technical field, including multiple windings, support, support frame and collation locking mechanism;Wherein collation locking mechanism includes screw rod, speed reducer motor, sleeve block, displacement motor, sliding frame, limiting column, linkage block, sleeve joint sliding block and guide frame, and positioning sensing mechanism is equipped at the end of guide frame;And the side of support is equipped with multiple meshing docking mechanism.The application is locked by collation locking mechanism, and locking bolt loosening can be known in time, so that the locking bolt loosening can be locked and fixed in time, to avoid the poor contact of transformer connection, and the transformer can be normally operated according to the standardized operating state, and the maintenance failure rate is greatly reduced, so as to solve the problem that the transformer is difficult to normally operate according to the standardized operating state, and the maintenance failure rate is greatly improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of transformers, and more particularly, to a standardized transformer. BACKGROUND

[0002] The working principle of the standardized transformer is based on Faraday's law of electromagnetic induction, that is, when the magnetic field changes, an electromotive force will be generated in the conductor. In a dry-type transformer, alternating current passes through the primary winding to generate an alternating magnetic field, which induces an electromotive force in the secondary winding, thereby achieving voltage rise or fall.

[0003] After searching the existing public documents, the patent CN106504857A discloses a dry-type transformer. The second support seat is located between the first support seat and the third support seat, and the bottom of the iron core is fixed with a first clamp and a second clamp on both sides. The first clamp and the second clamp are respectively supported and fixed on the first support seat and the third support seat, and the bottom of the iron core is supported on the second support seat. The new transformer is provided with rollers at the bottom, which is convenient to move and install. The iron core is supported and fixed by three support parts, and the installation is stable and not easy to shake. However, the transformer still has the following problems when in use.

[0004] During the use of the transformer, the terminals of the external wire harness need to be connected to the terminals of the transformer by bolts. However, the bolt connection position may become loose during use, which requires maintenance personnel to regularly maintain the bolts according to the standardized maintenance date, then close the transformer, and then tighten the loose bolts. However, the maintenance interval is long, and if the bolts become loose during maintenance, it is difficult to know in time, so it is difficult to fix the loose bolts in time, which makes the transformer prone to poor connection, the transformer is difficult to operate normally according to the standardized operation state, and the maintenance failure rate is greatly improved. Therefore, a standardized transformer is provided. SUMMARY

[0005] In order to overcome the above-mentioned defects of the prior art, the present application provides the following technical scheme: a standardized transformer, comprising a plurality of windings, a support and a support frame, the support is located at the top end of the winding, a plurality of windings are fixedly connected between the support, the support frame is fixed at the top end of the support, the inside of the support frame is provided with a correction locking mechanism; the correction locking mechanism comprises a screw rod rotatably arranged in the support frame, one end of the support frame is fixedly connected with a speed reducer motor, the speed reducer motor is used for driving the screw rod to rotate, the outer wall of the screw rod is threadedly connected with a sleeve block, and a displacement motor is fixedly installed on the upper surface of the sleeve block; the output end of the displacement motor is fixedly connected with a sliding frame, the inner wall of the sliding frame is slidably connected with a limiting column, one end of the limiting column is fixedly connected with a linkage block, the bottom end of the linkage block is fixedly connected with a sleeved sliding block, the outer wall of the sleeved sliding block is slidably connected with a guide frame, and the guide frame is fixedly connected between the sleeve block; one end of the guide frame is provided with a positioning sensing mechanism; one side of the support is provided with a plurality of meshing butt joint mechanisms.

[0006] Preferably, the sleeve block is slidably connected between the support frame, and the outer wall of the sleeve block and the inner wall of the support frame are smooth surfaces, the output end of the speed reducer motor is fixedly connected with one end of the screw rod, and the displacement motor is slidably connected with the support frame; the sliding frame is slidably connected with the guide frame, the inner wall of each winding is fixedly installed with an iron core, the bottom end of the iron core is fixedly provided with a base, one side of the winding is fixedly connected with a connecting wire, and the top end of the connecting wire is fixedly connected with a connecting terminal; one end of the connecting terminal is provided with a mounting bracket, a plurality of connecting terminals are fixedly connected between the mounting bracket, the mounting bracket is fixedly connected between a plurality of iron cores, the upper surface of the support frame is provided with a controller, the controller is fixedly connected between the support frame, the inner wall of the sleeved sliding block is slidably connected with a guide column, the guide column is fixedly connected between the guide frame, one side of the sleeved sliding block is fixedly connected with a linkage frame, the linkage frame is slidably connected between the guide frame, and the inner wall of the linkage frame is threadedly connected with an adjusting screw rod; the top end of the linkage frame is fixedly installed with a driving motor, the output end of the driving motor is fixedly connected with the adjusting screw rod, the outer wall of the adjusting screw rod is threadedly connected with a threaded sleeve block, the threaded sleeve block is slidably connected between the linkage frame, and one side of the threaded sleeve block is fixedly connected with a correction rack.

[0007] The technology is used, when the upper induction strip counterclockwise rotation loose, drive motor drive adjusting screw positive rotation, threaded sleeve block driving correction rack up, so that the correction rack and the upper tooth ring meshing butt joint. Controller drive variable position motor to make the slide frame counterclockwise rotation, limit column driving linkage block left, sleeve block along the inner wall of the guide frame left, sleeve block will drive the linkage frame left, adjusting screw driving threaded sleeve block left, correction rack driving the upper tooth ring clockwise rotation locking. When the lower induction strip counterclockwise rotation loose, the controller starts the drive motor drive adjusting screw reverse, threaded sleeve block makes the correction rack down, and then the controller starts the variable position motor driving slide frame clockwise rotation, limit column driving linkage block right, sleeve block along the outer wall of the guide column right slide, sleeve block driving linkage frame right, adjusting screw driving threaded sleeve block right, correction rack driving the lower tooth ring can be clockwise locking rotation.

[0008] Preferably, the positioning sensing mechanism comprises a support block fixedly arranged at one end of the guide frame;

[0009] One end of the support block is fixedly connected with a concave sleeve frame, the inner wall of the concave sleeve frame is fixedly connected with two distance sensors, the upper surface of the concave sleeve frame is fixedly connected with a connecting block, the top end of the connecting block is fixedly connected with a sleeve frame, and a bar code recognition sensor is fixedly installed in the sleeve frame. The vertical section shape of the concave sleeve frame is concave, and the side surface of the concave sleeve frame and the side surface of the connecting block are in the same vertical plane.

[0010] When the technology is used, the reduction motor drives the screw to rotate, and the sleeve block drives the guide frame to move right at the same time, the support block drives the concave sleeve frame to move right, the concave sleeve frame drives the two distance sensors to move right synchronously, and the locking bolt is loose. In this way, the connecting block can be driven to move right by the concave sleeve frame, the bar code recognition sensor recognizes the identification bar code on the terminal strip, the upper distance sensor senses the distance of the upper induction strip, and the lower distance sensor can sense the distance of the lower distance sensor. When the upper distance sensor does not feel the specified distance, the upper locking bolt is loose. When the lower distance sensor does not feel the specified distance, the lower locking bolt is loose.

[0011] Preferably, the meshing butt joint mechanism comprises a butt joint terminal arranged on one side of the support;

[0012] The butt joint terminal is fixedly connected with the winding, one side of the butt joint terminal is provided with a terminal strip, the inner wall of the terminal strip is threadedly connected with two locking bolts, both the locking bolts are threadedly connected with the butt joint terminal, one end of each locking bolt is fixedly connected with a pressing cap, the outer wall of the pressing cap is fixedly connected with a tooth ring, one end of the pressing cap is fixedly connected with a rotating block, one side of the rotating block is provided with an induction strip fixedly connected with the pressing cap, the upper side of the tooth ring is provided with an identification barcode, the identification barcode is fixedly connected with the terminal strip, the tooth ring and the pressing cap are rotationally connected with the terminal strip, and the vertical section shape of the pressing cap is circular.

[0013] When the upper tooth ring rotates clockwise, the upper tooth ring can drive the pressing cap to rotate clockwise, the pressing cap drives the locking bolt to rotate clockwise at the same time, so that the locking bolt is engaged and locked with the terminal strip and the butt joint terminal, when the upper induction strip rotates to the horizontal state, the distance sensor on the upper side can sense the distance of the upper induction strip, when the distance value sensed by the distance sensor on the upper side is the same as the distance value set by the controller, the controller is turned off.

[0014] The technical effects and advantages of the present application are as follows:

[0015] 1、The present application adjusts the locking mechanism, the upper induction strip rotates counterclockwise, the controller starts the driving motor, the driving motor drives the adjusting screw to rotate clockwise, the adjusting screw is engaged with the upper tooth ring, the controller drives the displacement motor to rotate the sliding frame counterclockwise, the limiting column drives the linkage block to move left, the linkage block drives the sleeved slider to move left, the sleeved slider moves along the inner wall of the guide frame, the adjusting screw drives the upper tooth ring to rotate clockwise, when the lower induction strip rotates counterclockwise, the driving motor drives the adjusting screw to rotate counterclockwise, the threaded sleeve block moves downward, the adjusting screw drives the lower tooth ring to rotate clockwise, the locking bolt is loosened, so that the loosened locking bolt can be locked and fixed in time, avoiding poor contact of the transformer, the transformer can operate normally according to the standardized operation state, and the troubleshooting rate is greatly reduced.

[0016] 2、The positioning sensing mechanism is adopted, the controller is started to start the speed reducer, the speed reducer drives the screw rod to rotate, the sleeve block drives the guide frame to move right, the guide frame drives the support block to move right, the upper induction strip cannot keep the horizontal state, when the bar code identification sensor identifies the identification bar code on the terminal strip, the controller is closed to close the speed reducer, when the upper induction strip rotates counterclockwise and loosens, the upper distance sensor does not feel the specified distance, when the lower induction strip rotates counterclockwise and loosens, the lower distance sensor does not feel the specified distance, whether the locking bolt is loose can be known in time, so that automatic locking and fixing are realized in time, and the troubleshooting rate is greatly reduced.

[0017] 3、The meshing and docking mechanism is utilized, when the upper gear ring rotates clockwise, the upper gear ring can drive the pressure cap to rotate clockwise, the pressure cap drives the locking bolt to rotate clockwise at the same time, so that the locking bolt can be meshed and locked with the terminal strip and the docking terminal clockwise, when the upper induction strip rotates to the horizontal state, the distance sensor on the upper side can sense the distance of the upper induction strip, the distance value sensed by the distance sensor on the upper side is the same as the distance value set by the controller, and the variable position motor is closed through the controller, so that the loose locking bolt can be automatically locked and fixed in time, the problem of continuous loosening is avoided, the transformer can normally operate in the standardized operating state, and the troubleshooting rate is greatly reduced.

[0018] According to the mutual influence of the above-mentioned multiple effects, firstly, the bar code identification sensor identifies the identification bar code on the terminal strip, the distance sensor on the upper side does not feel the specified distance, or the distance sensor on the lower side does not feel the specified distance, secondly, the checking rack is meshed and docked with the upper gear ring, the checking rack drives the upper gear ring to rotate clockwise and lock, or the checking rack drives the lower gear ring to rotate clockwise and lock, and finally, the upper gear ring can drive the pressure cap to rotate clockwise, so that the locking bolt can be meshed and locked with the terminal strip and the docking terminal clockwise, and the distance value sensed by the distance sensor on the upper side is the same as the distance value set by the controller. In summary, the loose locking bolt can be known in time, and the loose locking bolt can be locked and fixed in time, the problem of poor contact at the connection of the transformer is avoided, the transformer can normally operate in the standardized operating state, and the troubleshooting rate is greatly reduced. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a front view structural schematic diagram of the standardized transformer.

[0020] Figure 2 It is a truncated local structure schematic diagram of the winding and support connection.

[0021] Figure 3It is the truncated partial structure schematic view of the connection between the sleeve block and the guide frame of the application.

[0022] Figure 4 It is the vertical section structure schematic view of the standardized transformer of the application.

[0023] Figure 5 It is the vertical section truncated partial structure schematic view of the connection between the winding and the butt joint terminal of the application.

[0024] Figure 6 It is the front view partial structure schematic view of the proofreading locking mechanism of the application.

[0025] Figure 7 It is the side view structure schematic view of the standardized transformer of the application.

[0026] Figure 8 It is the rear view partial structure schematic view of the proofreading locking mechanism of the application.

[0027] Figure 9 It is the front view structure schematic view of the positioning sensing mechanism of the application.

[0028] Figure 10 It is the Figure 5 It is the enlarged structure schematic view of A in the above figure.

[0029] Figure 11 It is the front view truncated partial structure schematic view of the meshing butt joint mechanism of the application.

[0030] The reference signs are as follows: 1, winding; 2, support; 3, support frame; 4, screw rod; 5, speed reducer motor; 6, sleeve block; 7, displacement motor; 8, sliding frame; 9, limiting column; 10, linkage block; 11, sleeved sliding block; 12, guide frame; 13, iron core; 14, base; 15, connecting wire; 16, connecting terminal; 17, mounting frame; 18, controller; 19, guide column; 20, linkage frame; 21, adjusting screw rod; 22, driving motor; 23, threaded sleeve block; 24, proofreading rack; 25, support block; 26, concave sleeve frame; 27, distance sensor; 28, connecting block; 29, sleeved frame; 30, bar code recognition sensor; 31, butt joint terminal; 32, terminal strip; 33, locking bolt; 34, pressing cap; 35, gear ring; 36, rotating block; 37, induction strip; 38, identification bar code. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0032] As attached Figures 1-11 The diagram shows a standardized transformer equipped with a calibration and locking mechanism, a positioning and sensing mechanism, and a meshing and docking mechanism. The arrangement of each mechanism enables timely detection of loose locking bolts 33 and timely tightening and fixing of loose locking bolts 33, preventing poor contact at the transformer connection points. The transformer can operate normally according to standardized operating conditions, significantly reducing the maintenance failure rate. The specific structural settings of each mechanism are as follows.

[0033] In this embodiment, as shown in the appendix Figures 1-6 As shown, the calibration locking mechanism includes a screw 4 rotatably disposed inside the support frame 3, and a reduction motor 5 is fixedly connected to one end of the support frame 3. The reduction motor 5 drives the screw 4 to rotate. A sleeve block 6 is threadedly connected to the outer wall of the screw 4, and a displacement motor 7 is fixedly installed on the upper surface of the sleeve block 6. A sliding frame 8 is fixedly connected to the output end of the displacement motor 7, and a limit post 9 is slidably connected to the inner wall of the sliding frame 8. A linkage block 10 is fixedly connected to one end of the limit post 9, and a sleeve slider 11 is fixedly connected to the bottom end of the linkage block 10. A guide frame 12 is slidably connected to the outer wall of the sleeve slider 11, and the guide frame 12 is fixedly connected to the sleeve block 6. A positioning sensing mechanism is provided at one end of the guide frame 12. Multiple meshing and docking mechanisms are provided on one side of the bracket 2.

[0034] In this embodiment, as shown in the appendix Figures 1-7 As shown, each winding 1 has an iron core 13 fixedly installed on its inner wall, and a base 14 is fixedly installed at the bottom end of the iron core 13. A connecting wire 15 is fixedly connected to one side of the winding 1, and a connecting terminal 16 is fixedly connected to the top end of the connecting wire 15. A mounting bracket 17 is provided at one end of the connecting terminal 16, and multiple connecting terminals 16 are fixedly connected to the mounting bracket 17. The mounting bracket 17 is fixedly connected to multiple iron cores 13, so that the winding 1 can be supported and magnetically guided by the iron core 13, and the winding 1 can perform energy conversion operation to realize the transformation. In the voltage transformation operation, the voltage and current after transformation are guided along the connecting line 15 to the connecting terminal 16, and the connecting terminal 16 is connected to another wire harness of the transformer to realize the voltage transformation operation. The base 14 can provide support for the iron core 13. The mounting bracket 17 supports multiple connecting terminals 16, which greatly improves the stability of multiple connecting terminals 16. The upper surface of the support frame 3 is equipped with a controller 18, and the controller 18 is fixedly connected to the support frame 3 so that the geared motor 5 can be started through the controller 18. The geared motor 5 drives the screw 4 to rotate stably.

[0035] In this embodiment, as shown in the appendix Figures 6-8As shown, the inner wall of the sleeved sliding block 11 is slidably connected with a guide column 19, and the guide column 19 is fixedly connected with the guide frame 12, one side of the sleeved sliding block 11 is fixedly connected with a linkage frame 20, and the linkage frame 20 is slidably connected with the guide frame 12, and the inner wall of the linkage frame 20 is threadedly connected with an adjusting screw 21; the top end of the linkage frame 20 is fixedly installed with a driving motor 22, the output end of the driving motor 22 is fixedly connected with the adjusting screw 21, the outer wall of the adjusting screw 21 is threadedly connected with a threaded sleeve block 23, and the threaded sleeve block 23 is slidably connected with the linkage frame 20, and one side of the threaded sleeve block 23 is fixedly connected with a correction rack 24. In order to make the sleeved sliding block 11 move left along the outer wall of the guide column 19, the sleeved sliding block 11 drives the linkage frame 20 to move left, the linkage frame 20 drives the adjusting screw 21 to move left, the threaded sleeve block 23 drives the correction rack 24 to move left, and the correction rack 24 drives the upper tooth ring 35 to rotate clockwise and lock.

[0036] In the embodiment, as shown in the accompanying drawings, Figures 5-9 As shown, the positioning sensing mechanism comprises a supporting block 25 fixedly arranged at one end of the guide frame 12; one end of the supporting block 25 is fixedly connected with a concave sleeve frame 26, the inner wall of the concave sleeve frame 26 is fixedly connected with two distance sensors 27, the upper surface of the concave sleeve frame 26 is fixedly connected with a connecting block 28, and the top end of the connecting block 28 is fixedly connected with a sleeved frame 29, and the inside of the sleeved frame 29 is fixedly installed with a bar code recognition sensor 30. The vertical sectional shape of the concave sleeve frame 26 is concave, and one side surface of the concave sleeve frame 26 is in the same vertical plane as one side surface of the connecting block 28.

[0037] In the embodiment, as shown in the accompanying drawings, Figures 2-11 As shown, the meshing and docking mechanism comprises a docking terminal 31 arranged at one side of the support 2; the docking terminal 31 is fixedly connected with the winding 1, and one side of the docking terminal 31 is provided with a terminal strip 32, and the inner wall of the terminal strip 32 is threadedly connected with two locking bolts 33, and the two locking bolts 33 are threadedly connected with the docking terminal 31; one end of each locking bolt 33 is fixedly connected with a pressing cap 34, and the outer wall of the pressing cap 34 is fixedly connected with a tooth ring 35.

[0038] One end of the pressing cap 34 is fixedly connected with a rotating block 36, one side of the rotating block 36 is provided with an induction strip 37 fixedly connected with the pressing cap 34, and the upper side of the tooth ring 35 is provided with an identification bar code 38; the identification bar code 38 is fixedly connected with the terminal strip 32. The tooth ring 35 and the pressing cap 34 are rotatably connected with the terminal strip 32, and the vertical sectional shape of the pressing cap 34 is circular.

[0039] The working principle of the standardized transformer is as follows:

[0040] Firstly, the application carries out voltage transformation, firstly rotates the rotating block 36 through the tool, the rotating block 36 drives the compression cap 34 to rotate, the compression cap 34 drives the locking bolt 33 to rotate, so that the terminal strip 32 and the butt joint terminal 31 are connected firmly under the action of the thread engagement force of the locking bolt 33, and the sensing strip 37 remains in a horizontal state. Then the terminal strip 32 is butt jointed on the voltage transformation end, and the connecting terminal 16 is butt jointed on the other wire harness of voltage transformation. The high-voltage current is transmitted to the butt joint terminal 31 position through the terminal strip 32, the butt joint terminal 31 guides the current to the winding 1 position, the winding 1 plays a supporting and magnetic guiding role through the iron core 13, the winding 1 carries out energy conversion operation, realizes voltage transformation operation, and the voltage and current after voltage transformation guide the current to the connecting terminal 16 along the connecting wire 15, and the connecting terminal 16 is butt jointed on the other wire harness of voltage transformation, and the base 14 can provide a supporting role for the iron core 13, and the mounting frame 17 supports a plurality of connecting terminals 16, and the stability of the plurality of connecting terminals 16 is increased.

[0041] Secondly, the application carries out positioning sensing, the controller 18 starts the speed reducer motor 5, the speed reducer motor 5 drives the screw rod 4 to rotate, the screw rod 4 drives the sleeve block 6 to move right under the action of the thread, and the sleeve block 6 drives the guide frame 12 to move right, the guide frame 12 drives the supporting block 25 to move right, the supporting block 25 makes the concave sleeve frame 26 move right, the concave sleeve frame 26 drives the two distance sensors 27 to move right synchronously, when the terminal strip 32 and the butt joint terminal 31 connection appear loose, the locking bolt 33 will appear rotating loose, so that the sensing strip 37 above will not remain in a horizontal state. Thus the concave sleeve frame 26 can drive the connecting block 28 to move right, the connecting block 28 drives the sleeve joint frame 29 to move right, the sleeve joint frame 29 makes the bar code identification sensor 30 move right, when the bar code identification sensor 30 identifies the identification bar code 38 on the terminal strip 32, the controller 18 is closed.

[0042] At the same time, the distance sensor 27 above carries out distance sensing on the sensing strip 37 above, and the distance sensor 27 below can realize distance sensing on the distance sensor 27 below. When the sensing strip 37 above rotates counterclockwise loose, the distance sensor 27 above does not feel the specified distance, then the locking bolt 33 above appears loose. When the sensing strip 37 below rotates counterclockwise loose, the distance sensor 27 below does not feel the specified distance, then the locking bolt 33 below appears loose.

[0043] Then, when the upper induction strip 37 is loosened by counterclockwise rotation, the controller 18 starts the driving motor 22, the driving motor 22 drives the adjusting screw 21 to rotate clockwise, the adjusting screw 21 drives the threaded sleeve block 23 to move up under the action of threaded transmission force, and the threaded sleeve block 23 drives the calibration rack 24 to move up, the calibration rack 24 is pressed on the outer wall of the upper gear ring 35, so that the calibration rack 24 is engaged with the upper gear ring 35. Then the controller 18 closes the driving motor 22, and the controller 18 drives the displacement motor 7 to rotate the sliding frame 8 counterclockwise, the sliding frame 8 drives the limiting column 9 to rotate counterclockwise, the limiting column 9 drives the linkage block 10 to move left, the linkage block 10 drives the sleeved sliding block 11 to move left, the sleeved sliding block 11 moves along the inner wall of the guide frame 12 and the outer wall of the guide column 19, and the sleeved sliding block 11 drives the linkage frame 20 to move left, and the linkage frame 20 drives the adjusting screw 21 to move left. The adjusting screw 21 drives the threaded sleeve block 23 to move left, the threaded sleeve block 23 drives the calibration rack 24 to move left, and the calibration rack 24 drives the upper gear ring 35 to rotate clockwise and lock.

[0044] When the lower induction strip 37 is loosened by counterclockwise rotation, the controller 18 starts the driving motor 22 to drive the adjusting screw 21 to reverse, the adjusting screw 21 drives the threaded sleeve block 23 to move down under the action of threaded transmission force, the threaded sleeve block 23 drives the calibration rack 24 to move down, and the calibration rack 24 is engaged with the lower gear ring 35. Then the controller 18 starts the displacement motor 7 to drive the sliding frame 8 to rotate clockwise, the sliding frame 8 drives the limiting column 9 to move right, the limiting column 9 drives the linkage block 10 to move right, the linkage block 10 drives the sleeved sliding block 11 to move right, and the sleeved sliding block 11 moves along the outer wall of the guide column 19. At the same time, the sleeved sliding block 11 moves along the inner wall of the guide frame 12, and the sleeved sliding block 11 drives the linkage frame 20 to move right, the linkage frame 20 drives the adjusting screw 21 to move right, the adjusting screw 21 drives the threaded sleeve block 23 to move right, the threaded sleeve block 23 drives the calibration rack 24, and the calibration rack 24 drives the lower gear ring 35 to rotate clockwise and lock.

[0045] Finally, when the upper tooth ring 35 rotates clockwise during the meshing docking, the upper tooth ring 35 can drive the pressure cap 34 to rotate clockwise, the pressure cap 34 drives the rotating block 36 to rotate clockwise, and the pressure cap 34 drives the locking bolt 33 to rotate clockwise. That is, the locking bolt 33 can be meshed and locked with the terminal strip 32 and the docking terminal 31 clockwise, and the pressure cap 34 can drive the upper induction strip 37 to rotate, when the upper induction strip 37 rotates to the horizontal state, the upper distance sensor 27 can sense the distance of the upper induction strip 37, when the distance value sensed by the upper distance sensor 27 is the same as the distance value set by the controller 18, the controller 18 is closed. The displacement motor 7 can be turned off. The loosening problem of the plurality of locking bolts 33 can be known in time, the loosening locking bolt 33 can be accurately locked to the standard position, and the problem of poor contact between the terminal strip 32 and the docking terminal 31 can be avoided, so that the transformer can maintain the standard normal operating state.

[0046] The contents not described in detail in the specification all belong to the prior art known to those skilled in the art, and the model parameters of each electric appliance are not specifically limited, and conventional equipment can be used. In the technical solution, the electric appliance control elements not mentioned belong to the prior art, and therefore are not shown in the drawings, and will not be described here.

[0047] The above only describes the preferred embodiments of the present application and is not used to limit the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A standardized transformer comprising a plurality of windings, a support and a support frame, the support being located at the top end of the windings, the plurality of windings each being fixedly connected to the support, the support frame being fixed at the top end of the support, characterized in that: The inside of the support frame is provided with a proofreading locking mechanism; The proofreading locking mechanism comprises a screw rod rotatably arranged in the inside of the support frame, one end of the support frame is fixedly connected with a speed reducer motor, the speed reducer motor is used for driving the screw rod to rotate, the outer wall of the screw rod is threadedly connected with a sleeve block, the upper surface of the sleeve block is fixedly installed with a displacement motor, the output end of the displacement motor is fixedly connected with a sliding frame, the inner wall of the sliding frame is slidably connected with a limiting column, one end of the limiting column is fixedly connected with a linkage block, the bottom end of the linkage block is fixedly connected with a sleeving sliding block, the outer wall of the sleeving sliding block is slidably connected with a guide frame, and the guide frame and the sleeve block are fixedly connected; one end of the guide frame is provided with a positioning sensing mechanism; one side of the support frame is provided with a plurality of meshing butt joint mechanisms, the butt joint mechanism comprises a butt joint terminal arranged on one side of the support frame; the butt joint terminal is fixedly connected with the winding, one side of the butt joint terminal is provided with a terminal strip, the inner wall of the terminal strip is threadedly connected with two locking bolts, and the two locking bolts are threadedly connected with the butt joint terminal; one end of each locking bolt is fixedly connected with a pressing cap, the outer wall of the pressing cap is fixedly connected with a gear ring, one end of the pressing cap is fixedly connected with a rotating block, one side of the rotating block is provided with an induction strip fixedly connected with the pressing cap, the upper side of the gear ring is provided with an identification bar code, and the identification bar code is fixedly connected with the terminal strip.

2. The standardized transformer of claim 1, wherein: The sleeve block and the support frame are slidably connected, and the outer wall of the sleeve block and the inner wall of the support frame are smooth surfaces.

3. The standardized transformer of claim 1, wherein: The output end of the speed reducer motor is fixedly connected with one end of the screw rod, and the displacement motor is slidably connected with the support frame; The sliding frame and the guide frame are slidably connected.

4. The standardized transformer of claim 1, wherein: The inner wall of each winding is fixedly installed with an iron core, the bottom end of the iron core is fixedly provided with a base, one side of the winding is fixedly connected with a connecting wire, and the top end of the connecting wire is fixedly connected with a connecting terminal; One end of the connecting terminal is provided with a mounting bracket, a plurality of connecting terminals are fixedly connected with the mounting bracket, and the mounting bracket is fixedly connected with a plurality of iron cores.

5. The standardized transformer of claim 1, wherein: The upper surface of the support frame is provided with a controller, and the controller is fixedly connected with the support frame.

6. The standardized transformer of claim 1, wherein: The inner wall of the sleeving sliding block is slidably connected with a guide column, the guide column is fixedly connected with the guide frame, one side of the sleeving sliding block is fixedly connected with a linkage frame, the linkage frame is slidably connected with the guide frame, and the inner wall of the linkage frame is threadedly connected with an adjusting screw rod; The top end of the linkage frame is fixedly installed with a driving motor, the output end of the driving motor is fixedly connected with the adjusting screw rod, the outer wall of the adjusting screw rod is threadedly connected with a threaded sleeve block, the threaded sleeve block is slidably connected with the linkage frame, and one side of the threaded sleeve block is fixedly connected with a proofreading rack.

7. The standardized transformer of claim 1, wherein: The positioning sensing mechanism comprises a support block fixedly arranged at one end of the guide frame; One end of the support block is fixedly connected with a concave sleeve frame, the inner wall of the concave sleeve frame is fixedly connected with two distance sensors, the upper surface of the concave sleeve frame is fixedly connected with a connecting block, the top end of the connecting block is fixedly connected with a sleeving frame, and the inside of the sleeving frame is fixedly installed with a bar code recognition sensor.

8. The standardized transformer of claim 7, wherein: The vertical sectional shape of the concave sleeve frame is concave, and one side surface of the concave sleeve frame and one side surface of the connecting block are in the same vertical plane.

9. The standardized transformer of claim 1, wherein: The tooth ring and the pressing cap are rotationally connected with the terminal strip, and the vertical section shape of the pressing cap is circular.

Citation Information

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