A transformer body folding mechanism

By using adsorption magnets and mobile components to fix the mounting seat in the transformer machine folding mechanism, combined with the sliding plate and lifting components to adjust the position, the problem of mount shaking is solved, and the stable insertion and alignment of the instrument body is achieved, and assembly efficiency and safety are improved.

CN119811877BActive Publication Date: 2025-09-02JUNLANG ELECTRICAL CO LTD
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Patent Information

Application Number
CN202510063146.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-09-02
Estimated Expiration
2045-01-15

AI Technical Summary

Technical Problem

In the existing transformer machine folding mechanism, the mounting seat shakes on the placement plate, making it difficult to align the machine body with the mounting seat, which is time-consuming and labor-intensive, and is unstable during transportation.

Method used

The mounting seat is fixed by adsorption magnets and mobile components, and the mounting seat position is adjusted through sliding plates and lifting components, combining rollers and guide slopes to achieve stable insertion and alignment of the instrument body.

Benefits of technology

The stable rotation and alignment of the mount is achieved, manual operation steps are reduced, assembly efficiency and safety are improved, and the instrument body is inserted into the mount successfully.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of transformer bodies, and discloses a transformer body folding mechanism, comprising a base, a rotating plate and a driving member, wherein the rotating plate is rotatably connected to the base, and the driving member drives the rotating plate to rotate, the rotating plate is provided with a placing plate, a mounting seat is placed on the placing plate, and a transport plate is placed on the rotating plate, and a moving component is provided on the placing plate, and the moving component is provided with an adsorption magnet for adsorbing the mounting seat, and the moving component drives the adsorption magnet to adsorb the mounting seat. The present application drives the adsorption magnet to move by the moving component, so that the adsorption magnet can abut the mounting seat, so that the adsorption magnet can adsorb the mounting seat, thereby avoiding the mounting seat from tilting due to the rotation of the placing plate, so that the mounting seat can stably rotate with the placing plate, so that the device body can be smoothly inserted into the mounting seat, thereby realizing mutual fixation of the device body and the mounting seat.
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Description

Technical Field

[0001] The present application relates to the technical field of transformer bodies, and in particular to a transformer body folding mechanism. Background Art

[0002] The body of a transformer is one of the important components of a transformer. The body includes an iron core and a winding. The winding is wound on the iron core. The body is mainly made of magnetic material. The three-dimensional wound iron core is a type of iron core. The three-dimensional wound iron core is irregular in shape, which causes many problems in the assembly and grasping of the body. During transportation, the body needs to be installed from the transport plate to the mounting seat. Since the body is irregular in shape and the body is heavy and difficult to flip and carry manually, a folding mechanism is required to assemble the body.

[0003] In the related technology, the folding mechanism includes a rotating plate, a driving member and a base. The rotating plate is rotatably connected to the base. The driving member drives the rotating plate to rotate. A placement plate is integrally formed on the rotating plate. The placement plate and the rotating plate are vertically arranged. The rotating plate is used to move the transport plate of the device body, and the placement plate is used to move the mounting seat of the device body.

[0004] The mounting seat is placed on the placement plate, and then the driving part drives the rotating plate to rotate. The mounting seat is placed vertically, so that the transport plate carrying the device body is moved to the rotating plate. At this time, the device body can be inserted into the mounting seat. The driving part drives the rotating plate to rotate, so that the device body is located on the mounting seat, thereby realizing the assembly and transportation of the device body.

[0005] When the driving part drives the rotating plate to rotate, the mounting base rotates from horizontal placement to vertical placement. At this time, the mounting base is very likely to shake on the placement plate, making it difficult to align the device body with the mounting base. Therefore, the staff needs to manually align the device body and the mounting base, which is time-consuming and labor-intensive. Summary of the Invention

[0006] In order to improve the problem that the mounting base is very easy to shake on the placement plate, the present application provides a transformer body folding mechanism.

[0007] The present application provides a transformer body folding mechanism, which adopts the following technical solution:

[0008] A transformer body folding mechanism includes a base, a rotating plate and a driving member, wherein the rotating plate is rotatably connected to the base, and the driving member drives the rotating plate to rotate. A placement plate is provided on the rotating plate, a mounting seat is placed on the placement plate, a transport plate is placed on the rotating plate, a moving component is provided on the placement plate, an adsorption magnet for adsorbing the mounting seat is provided on the moving component, and the moving component drives the adsorption magnet to adsorb the mounting seat.

[0009] By adopting the above technical solution, the adsorption magnet is driven to move by the moving component, so that the adsorption magnet can abut the mounting seat, so that the adsorption magnet can adsorb the mounting seat, thereby achieving mutual fixation of the mounting seat and the placement plate, thereby avoiding the mounting seat from tilting due to the rotation of the placement plate, and allowing the mounting seat to rotate stably with the placement plate, so that the device body can be smoothly inserted into the mounting seat, thereby achieving mutual fixation of the device body and the mounting seat.

[0010] Optionally, a sliding structure is provided on the base, the sliding structure includes a sliding assembly and a sliding plate, the moving assembly is provided on the sliding plate, and the sliding assembly drives the sliding plate to move along a transport direction perpendicular to the mounting seat.

[0011] By adopting the above technical solution, the moving component is set on the sliding plate, and the sliding component drives the sliding plate to move along the transportation direction perpendicular to the mounting seat, so that the moving component can drive the mounting seat to move, and the mounting seat can be adjusted along the transportation direction perpendicular to the mounting seat, and the horizontal distance between the mounting seat and the device body is adjusted so that the mounting seat can be aligned with the device body, and the device body can be stably inserted into the mounting seat, so that the staff does not need to manually move the mounting seat, thereby speeding up the speed and safety of the mounting seat adjustment.

[0012] Optionally, a plurality of rollers are rotatably connected to the placement plate, a rotating assembly is provided on the placement plate, the rotating assembly drives the rollers to rotate, and the adsorption magnet is located between two adjacent rollers.

[0013] By adopting the above technical solution, the roller is driven to rotate by the rotating component, so that the mounting base can load and unload materials through the roller, reducing the operating steps of the staff and allowing the staff to move better; since the adsorption magnet is located between two adjacent rollers, and the moving component can drive the adsorption magnet to move, the adsorption magnet will not adsorb the mounting base during the loading and unloading process, thereby avoiding the adsorption magnet affecting the loading and unloading of the mounting base.

[0014] Optionally, a lifting assembly is provided on the base, and a lifting bar is provided on the lifting assembly. The lifting bar is located on the side of the mounting seat facing the rotating plate, and the lifting assembly drives the lifting bar to move along the transportation direction of the mounting seat.

[0015] By adopting the above technical solution, the lifting bar is driven to move by the lifting component, and the lifting bar is located on the side of the mounting seat facing the rotating plate. When the rotating plate rotates and the mounting seat is placed in a vertical direction, the lifting component drives the lifting bar to move along the transportation direction of the mounting seat, that is, the lifting component drives the mounting seat to rise through the lifting bar, or the lifting bar falls and the mounting seat falls by its own weight, so as to adjust the distance between the mounting seat and the rotating plate, and adjust the vertical distance between the mounting seat and the device body, so that the mounting seat and the device body can be better aligned so that the device body can be inserted into the mounting seat.

[0016] Optionally, a fixing groove is provided on the lifting bar, a fixing bar for inserting into the fixing groove is provided on the mounting seat, a limiting groove is provided on the fixing bar, and a limiting bar for inserting into the limiting groove is slidably connected to the lifting bar; when the fixing bar is located in the fixing groove, the limiting bar can be located in the limiting groove, and at this time the mounting seat and the lifting bar are fixed to each other.

[0017] By adopting the above technical solution, when the mounting seat moves on the placement plate, the mounting seat abuts the lifting bar. At this time, the fixed bar is inserted into the fixed groove, and the staff drives the limit bar to move so that the limit bar can be inserted into the limit groove, thereby realizing the mutual fixation of the limit bar and the fixed bar, so that the lifting bar can drive the mounting seat to move when it moves, reducing the problem of the mounting seat being difficult to slide due to the suction force of the adsorption magnet when the lifting bar moves, so that the mounting seat and the lifting bar can move better synchronously.

[0018] Optionally, a first magnet is provided on the transport plate, a second magnet is provided on the limiting bar, and the first magnet absorbs the second magnet; when the first magnet absorbs the second magnet, the limiting bar is separated from the limiting groove.

[0019] By adopting the above technical solution, when the transport plate abuts the lifting bar, the first magnet attracts the second magnet, and the first magnet drives the limit bar to move, allowing the limit bar to disengage from the limit groove. At this time, the limit bar does not limit the fixing bar, so that the lifting bar will not be fixed to the mounting seat, which facilitates the subsequent cutting of the mounting seat and the device body.

[0020] Optionally, an elastic member is provided in the fixing groove, an elastic strip is provided on the elastic member, and the elastic member drives the elastic strip to be located on the moving path of the limiting strip; when the elastic strip abuts against the limiting strip, the limiting strip is not in the fixing groove.

[0021] By adopting the above technical solution, the elastic bar is driven by the elastic part to be located on the moving path of the limit bar, so that the elastic bar limits the limit bar from being inserted into the fixed groove. When the fixed bar is not in the fixed groove, the limit bar is restricted by the elastic bar. At this time, the limit bar will not be located in the fixed groove, avoiding the situation where the limit bar is inserted into the fixed groove and it is difficult to insert the limit bar into the limit groove. When the fixing bar is inserted into the fixed groove, the limit bar can be inserted into the limit groove, reducing the situation where the limit bar is inserted into the fixed groove and the limit groove in the fixing bar is difficult to insert the limit bar.

[0022] Optionally, two guide plates are provided on the transport plate, each guide plate is provided with a guide slope, and the distance between the guide slope and the other guide plate gradually decreases in the direction from the guide plate to the transport plate.

[0023] By adopting the above technical solution, the distance between the guiding slope and the other guide plate is gradually reduced in the direction from the guide plate to the transport plate. When the device body is placed between the two guide plates, the device body can slide along the guiding slope, so that the device body can be stably placed on the placement plate, reducing the large-scale deviation when the device body is placed, allowing the mounting base to be stably aligned with the device body, and allowing the mounting base and the device body to be stably installed with each other.

[0024] Optionally, an indicator bar is provided on the limit bar, and an indicator hole for the indicator bar to slide is opened on the transport plate; when the first magnet attracts the second magnet, the indicator bar protrudes from the lifting bar.

[0025] By adopting the above technical solution, when the transport plate abuts the lifting bar, the first magnet attracts the second magnet. At this time, the first magnet drives the limit bar to move, allowing the limit bar to disengage from the limit groove. Since the indicator bar is set on the limit bar, the indicator bar slides in the indicator hole. At this time, the indicator bar can protrude from the lifting bar, so that the staff can observe the protrusion of the indicator bar in time, so that the staff can know that the mounting seat and the device body are fixed to each other, so that the staff can operate the driving part to drive the rotating plate to rotate, thereby realizing the flipping of the device body.

[0026] In summary, this application includes at least one of the following beneficial technical effects:

[0027] 1. The adsorption magnet is driven to move by the moving component so that the adsorption magnet can abut the mounting base, so that the adsorption magnet can adsorb the mounting base, thereby fixing the mounting base and the placement plate to each other, thereby preventing the mounting base from tilting due to the rotation of the placement plate, and allowing the mounting base to stably rotate with the placement plate, so that the device body can be smoothly inserted into the mounting base, thereby fixing the device body and the mounting base to each other.

[0028] 2. The moving component is set on the sliding plate, and the sliding component drives the sliding plate to move along the transportation direction perpendicular to the mounting seat, so that the moving component can drive the mounting seat to move, and the mounting seat can be adjusted along the transportation direction perpendicular to the mounting seat, so that the mounting seat can be aligned with the device body, so that the device body can be stably inserted into the mounting seat. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 is a schematic structural diagram of Example 1;

[0030] Figure 2 is a schematic structural diagram highlighting the lifting assembly in Example 1;

[0031] Figure 3 is an exploded schematic diagram highlighting the roller in Example 1;

[0032] Figure 4 is a structural schematic diagram highlighting the sliding structure in Example 1;

[0033] Figure 5 It is along Figure 4 A magnified schematic diagram of part A;

[0034] Figure 6 is a schematic structural diagram of Example 2;

[0035] Figure 7 It is along Figure 6 Partial cross-sectional view of the midline BB;

[0036] Figure 8 It is a structural schematic diagram highlighting the transport plate in Example 2.

[0037] Reference numerals: 1, base; 11, sliding structure; 12, sliding assembly; 121, sliding motor; 122, sliding bar; 123, sliding seat; 13, sliding plate; 14, moving assembly; 141, adsorption magnet; 15, lifting assembly; 151, lifting motor; 152, lifting rod; 153, lifting plate; 154, lifting bar; 155, moving wheel; 16, fixing groove; 161, elastic member; 162, elastic bar; 163, limiting hole; 164, limiting bar; 165, stop hole; 166. Second magnet; 167. Indicator bar; 168. Indicator hole; 2. Rotating plate; 21. Connecting plate; 22. Connecting block; 3. Driving member; 31. Driving hydraulic cylinder; 32. Driving rotating block; 4. Placing plate; 41. Roller; 42. Rotating assembly; 421. Rotating motor; 422. Rotating belt; 423. Gear belt; 5. Mounting seat; 51. Fixing bar; 52. Limiting groove; 6. Transport plate; 61. Stop block; 62. First magnet; 63. Guide plate; 631. Guide slope. DETAILED DESCRIPTION

[0038] The following is combined with Figure 1-8 This application is described in further detail.

[0039] Example 1

[0040] This embodiment discloses a transformer body folding mechanism. Figure 1 A transformer body folding mechanism includes a base 1, a rotating plate 2, and a drive member 3. A placement plate 4 is integrally formed on the rotating plate 2, and the placement plate 4 and the rotating plate 2 are arranged perpendicular to each other. The rotating plate 2 is rotatably connected to the base 1. When the rotating plate 2 is horizontally positioned, the placement plate 4 is vertically positioned; when the placement plate 4 is horizontally positioned, the rotating plate 2 is vertically positioned.

[0041] Reference Figure 2 A mounting base 5 is placed on the placement plate 4, and a transport plate 6 is placed on the rotating plate 2. The mounting base 5 moves along the length of the placement plate 4 to facilitate loading and unloading of the mounting base 5. The transport plate 6 is used to place the device body, while the placement plate 4 is used to secure the device body. The transport plate 6 moves along the length of the rotating plate 2 to facilitate loading and unloading of the transport plate 6.

[0042] Reference Figure 1 The driving member 3 includes two driving hydraulic cylinders 31 and two driving rotating blocks 32. The two driving hydraulic cylinders 31 are rotatably connected to the base 1. The rotation point of the driving hydraulic cylinders 31 and the base 1 is different from the rotation point of the rotating plate 2 and the base 1. That is, the rotation point of the driving hydraulic cylinders 31 and the base 1 is located to one side of the rotation point of the rotating plate 2 and the base 1. The driving rotating block 32 is rotatably connected to the driving hydraulic cylinders 31, and the other end of the driving rotating block 32 is rotatably connected to the surface of the rotating plate 2.

[0043] Reference Figure 1 When the driving hydraulic cylinder 31 is started, the driving hydraulic cylinder 31 drives the driving rotating block 32 to rotate. At this time, the driving hydraulic cylinder 31 can drive the rotating plate 2 to rotate on the base 1, thereby realizing the rotation of the rotating plate 2 from a horizontal state to a vertical state, or from a vertical state to a horizontal state.

[0044] Reference Figure 2 and Figure 3A plurality of rollers 41 are rotatably connected to both the placement plate 4 and the rotating plate 2, and a rotating assembly 42 is provided on the placement plate 4. The rotating assembly 42 is used to drive the rollers 41 to rotate. The rotating assembly 42 includes a rotating motor 421 and a plurality of rotating belts 422. The rotating belts 422 are rotatably connected to the rotating motor 421. Two gear belts 423 are fixedly connected to the end faces of the rollers 41. The rotating belts 422 and the gear belts 423 are engaged with each other, and each rotating belt 422 is rotatably connected to two adjacent rollers 41. The rotating motor 421 can drive all the rotating belts 422 to rotate. When the rotating motor 421 is started, the rotating motor 421 drives the rollers 41 to rotate via the rotating belts 422, thereby moving the mounting base 5 on the placement plate 4 and moving the transport plate 6 on the rotating plate 2.

[0045] Reference Figure 2 The rotating plate 2 is fixedly connected to two connecting plates 21, one on each side of the roller 41. A connecting block 22 is integrally formed on the connecting plates 21 and is located on the side of the transport plate 6 away from the rotating plate 2. When the transport plate 6 is placed on the rotating plate 2, it is located between the connecting block 22 and the rotating plate 2, preventing the transport plate 6 from separating from the rotating plate 2 during rotation.

[0046] Reference Figure 4 A sliding structure 11 is provided on the base 1 , and the sliding structure 11 includes a sliding assembly 12 and a sliding plate 13 .

[0047] Reference Figure 4 and Figure 5 The sliding assembly 12 includes a sliding motor 121, a sliding bar 122, and a sliding seat 123. The sliding seat 123 is fixedly connected to the base 1 and extends along the length of the placement plate 4, that is, along the transport direction of the mounting base 5. The sliding motor 121 is fixedly connected to the sliding seat 123, and the sliding bar 122 is fixedly connected to the drive shaft of the sliding motor 121. The sliding plate 13 is rotationally connected to the sliding bar 122, and the sliding plate 13 is slidably connected to the sliding seat 123. When the sliding motor 121 drives the sliding bar 122 to rotate, the sliding bar 122 drives the sliding plate 13 to move along the length of the sliding seat 123.

[0048] Reference Figure 5 The sliding plate 13 is provided with a moving assembly 14, which includes multiple moving cylinders, each of which is fixedly connected to the sliding seat 123. An adsorption magnet 141 is fixedly connected to the drive shaft of the moving cylinder, and the adsorption magnet 141 is used to attract the mounting seat 5. The moving cylinder drives the adsorption magnet 141 to abut the mounting seat 5, thereby fixing the mounting seat 5 and the sliding seat 123 to each other.

[0049] Reference Figure 4 and Figure 5 When the mounting seat 5 moves to the placement plate 4, the moving cylinder drives the adsorption magnet 141 to move, so that the adsorption magnet 141 abuts against the mounting seat 5. At this time, the staff drives the sliding seat 123 to move through the sliding motor 121, so that the mounting seat 5 can move horizontally on the placement plate 4, so that the mounting seat 5 can be aligned with the device body.

[0050] Reference Figure 2 The base 1 is provided with a lifting assembly 15, which includes a lifting motor 151, a lifting rod 152, and a lifting plate 153. The lifting motor 151 is fixedly connected to the placement plate 4. The lifting rod 152 is fixedly connected to the drive shaft of the lifting motor 151 and is rotatably connected to the placement plate 4. The lifting plate 153 is rotatably connected to the lifting rod 152 and is slidably connected to the placement plate 4. When the lifting motor 151 is started, the lifting motor 151 drives the lifting rod 152 to rotate, allowing the lifting rod 152 to drive the lifting plate 153 to move along the direction of transportation of the mounting base 5.

[0051] Reference Figure 2 Lifting plates 153 are fixedly connected to lifting bars 154, which extend along the width of the placement plate 4. Lifting bars 154 are located in the movement path of the mounting base 5 and can abut against the mounting base 5. Lifting bars 154 are rotatably connected to a plurality of moving wheels 155 on the surface away from the placement plate 4. The moving wheels 155 abut against the mounting base 5 to facilitate lateral movement of the mounting base 5.

[0052] Reference Figure 2 When the mounting seat 5 is loaded, the mounting seat 5 moves along the length direction of the placement plate 4, and then the rotating plate 2 drives the placement plate 4 to rotate, so that the mounting seat 5 rotates from a horizontal state to a vertical state. At this time, the lifting motor 151 drives the lifting bar 154 to move, and the lifting bar 154 drives the mounting seat 5 to move. If the lifting bar 154 falls, the mounting seat 5 will continue to resist the lifting bar 154 due to its own weight. If the lifting bar 154 is lifted, the lifting bar 154 abuts against the mounting seat 5 and moves up, so that the mounting seat 5 can be aligned with the device body.

[0053] The implementation principle of Example 1 is as follows: first, the mounting seat 5 is moved onto the placement plate 4, and the moving cylinder drives the adsorption magnet 141 to fix the mounting seat 5, and then drives the hydraulic cylinder 31 to drive the rotating plate 2 to rotate, so that the mounting seat 5 is rotated from a horizontal state to a vertical state. At this time, the staff drives the lifting bar 154 to move and the sliding motor 121 to drive the adsorption magnet 141 to move through the lifting assembly 15 to adjust the position of the mounting seat 5, so that the mounting seat 5 is aligned with the device body, and the transport plate 6 carrying the device body is moved to the rotating plate 2, so that the device body is inserted into the mounting seat 5 to fix the device body and the mounting seat 5, and drives the hydraulic cylinder 31 to drive the rotating plate 2 to rotate, so that the mounting seat 5 is rotated from a vertical state to a horizontal state. At this time, the mounting seat 5 moves out from the placement plate 4 to realize the unloading of the device body.

[0054] Example 2

[0055] Reference Figure 6 and Figure 7 This embodiment differs from Embodiment 1 in that a fixing bar 51 is fixedly connected to the surface of the mounting base 5, extending along the length of the mounting base 5. A fixing groove 16 is formed on the surface of the lifting bar 154 for inserting the fixing bar 51, and an elastic member 161 is disposed within the fixing groove 16. The elastic member 161 comprises an elastic spring, one end of which is fixedly connected to the bottom wall of the fixing groove 16, and the other end of which is fixedly connected to an elastic bar 162. The elastic spring drives the elastic bar 162 within the fixing groove 16.

[0056] Reference Figure 7 A limiting hole 163 connected to the fixing groove 16 is provided on the side of the lifting bar 154, and the limiting hole 163 is inclined between the side of the lifting bar 154 and the surface of the lifting bar 154 facing the mounting base 5. A limiting bar 164 is slidably connected in the limiting hole 163, and the limiting bar 164 can be inserted into the fixing groove 16. A limiting groove 52 for inserting the limiting bar 164 is provided on the surface of the fixing bar 51. When the limiting bar 164 is inserted into the limiting groove 52, the fixing bar 51 is fixed in the fixing groove 16. When the mounting base 5 is in a horizontal state, the limiting bar 164 is located in the limiting hole 163; when the mounting base 5 is in a vertical state, the limiting bar 164 moves from the limiting hole 163 to the fixing groove 16 due to its own weight, so that the limiting bar 164 is inserted into the limiting groove 52.

[0057] Reference Figure 7 The elastic spring drives the elastic strip 162 to block the opening of the limiting hole 163, that is, when the elastic spring is in a non-stressed state, the elastic strip 162 blocks the opening of the limiting hole 163, and when the elastic spring is in a compressed state, the elastic strip 162 does not block the opening of the limiting hole 163.

[0058] Reference Figure 6 、 Figure 7 and Figure 8 A stopper 61 is fixedly connected to the surface of the transport plate 6 facing the placement plate 4. A stopper hole 165 is formed on the surface of the lifting bar 154 and communicates with the limiting hole 163. The stopper 61 passes through the stopper hole 165. When the stopper 61 is inserted into the stopper hole 165, the stopper 61 is inserted into the limiting hole 163.

[0059] Reference Figure 7 and Figure 8 A first magnet 62 is fixedly connected to the surface of the stop block 61 away from the transport plate 6, and a second magnet 166 is fixedly connected to the end surface of the limiting bar 164. The first magnet 62 attracts the second magnet 166. When the stop block 61 is inserted into the limiting hole 163, the first magnet 62 attracts the second magnet 166, and the limiting bar 164 disengages from the limiting groove 52. At this time, the fixing bar 51 can be separated from the fixing groove 16.

[0060] Reference Figure 7 An indicator bar 167 is fixedly connected to the surface of the limiting bar 164, and an indicator hole 168 is formed in the wall of the limiting hole 163, through which the indicator bar 167 slides. When the limiting bar 164 is not inserted into the fixing slot 16, the indicator bar 167 protrudes from the indicator hole 168, lifting the lifting bar 154. When the limiting bar 164 is inserted into the fixing slot 16, the indicator bar 167 is located within the indicator hole 168 and the limiting hole 163.

[0061] Reference Figure 6 Two guide plates 63 are fixedly attached to the surface of the transport plate 6, one on each side of the device body. A guide slope 631 is defined on the surface of each guide plate 63 facing the other. The distance between the guide slope 631 and the other guide plate 63 gradually decreases along the direction from the guide plate 63 to the transport plate 6. The guide slope 631 stabilizes the device body on the transport plate 6, limiting its position on the transport plate 6.

[0062] The implementation principle of Example 2 is as follows: when the mounting seat 5 is moved onto the placement plate 4, the fixing bar 51 is inserted into the fixing groove 16. At this time, since the mounting seat 5 is in a horizontal state, the limiting bar 164 does not move. Then, the placement plate 4 rotates, allowing the mounting seat 5 to rotate from a horizontal state to a vertical state. At this time, the limiting bar 164 moves due to its own weight, allowing the limiting bar 164 to be inserted into the limiting groove 52, so that the fixing bar 51 is fixed in the fixing groove 16, so as to facilitate the mutual fixation of the lifting bar 154 and the mounting seat 5.

[0063] When the transport plate 6 moves to the rotating plate 2, the transport plate 6 abuts the lifting bar 154, allowing the stop block 61 to be inserted into the limiting hole 163, and the first magnet 62 absorbs the second magnet 166, allowing the limiting bar 164 to disengage from the limiting groove 52, thereby separating the lifting bar 154 and the mounting seat 5 from each other, so that the subsequent mounting seat 5 can be unloaded from the placement plate 4.

[0064] Unless otherwise defined, the technical or scientific terms used in this application shall have the usual meanings understood by persons of ordinary skill in the field to which this application belongs. The words "first", "second", "third" and similar terms used in the specification and claims of this application do not indicate any order, quantity or importance, but are only used to distinguish different components. Words such as "one" or "a" do not indicate a quantity limitation, but rather indicate the existence of at least one. Words such as "include" or "comprise" mean that the elements or objects appearing before "include" or "comprises" cover the elements or objects listed after "include" or "comprises" and their equivalents, and do not exclude other elements or objects. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0065] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the design concept of the present application should be included in the scope of protection of the present application.

Claims

1. A transformer body folding mechanism, comprising a base (1), a rotating plate (2) and a driving member (3), wherein the rotating plate (2) is rotatably connected to the base (1), the driving member (3) drives the rotating plate (2) to rotate, a placement plate (4) is provided on the rotating plate (2), a mounting seat (5) is placed on the placement plate (4), and a transport plate (6) is placed on the rotating plate (2), characterized in that: The placement plate (4) is provided with a moving component (14), and the moving component (14) is provided with an adsorption magnet (141) for adsorbing the mounting seat (5), and the moving component (14) drives the adsorption magnet (141) to adsorb the mounting seat (5); The base (1) is provided with a lifting assembly (15), and the lifting assembly (15) is provided with a lifting bar (154), the lifting bar (154) is located on the side of the mounting seat (5) facing the rotating plate (2), and the lifting assembly (15) drives the lifting bar (154) to move along the transportation direction of the mounting seat (5); The lifting bar (154) is provided with a fixing groove (16), the mounting seat (5) is provided with a fixing bar (51) for inserting into the fixing groove (16), the fixing bar (51) is provided with a limiting groove (52), and the lifting bar (154) is slidably connected with a limiting bar (164) for inserting into the limiting groove (52); when the fixing bar (51) is located in the fixing groove (16), the limiting bar (164) can be located in the limiting groove (52), and at this time, the mounting seat (5) and the lifting bar (154) are fixed to each other; The transport plate (6) is provided with a first magnet (62), the limiting strip (164) is provided with a second magnet (166), and the first magnet (62) attracts the second magnet (166); when the first magnet (62) attracts the second magnet (166), the limiting strip (164) is separated from the limiting groove (52); An elastic member (161) is provided in the fixing groove (16), and an elastic strip (162) is provided on the elastic member (161). The elastic member (161) drives the elastic strip (162) to be located on the moving path of the limiting strip (164); when the elastic strip (162) abuts against the limiting strip (164), the limiting strip (164) is not located in the fixing groove (16).

2. The transformer body folding mechanism according to claim 1, characterized in that: The base (1) is provided with a sliding structure (11), the sliding structure (11) comprising a sliding assembly (12) and a sliding plate (13), the moving assembly (14) being arranged on the sliding plate (13), and the sliding assembly (12) driving the sliding plate (13) to move along a transport direction perpendicular to the mounting seat (5).

3. The transformer body folding mechanism according to claim 1, characterized in that: A plurality of rollers (41) are rotatably connected to the placement plate (4), a rotating assembly (42) is provided on the placement plate (4), and the rotating assembly (42) drives the rollers (41) to rotate, and the adsorption magnet (141) is located between two adjacent rollers (41).

4. The transformer body folding mechanism according to claim 1, characterized in that: Two guide plates (63) are provided on the transport plate (6), and each guide plate (63) is provided with a guide slope (631). The distance between the guide slope (631) and the other guide plate (63) gradually decreases in the direction from the guide plate (63) to the transport plate (6).

5. The transformer body folding mechanism according to claim 1, characterized in that: The limiting strip (164) is provided with an indicator strip (167), and the transport plate (6) is provided with an indicator hole (168) for the indicator strip (167) to slide; when the first magnet (62) attracts the second magnet (166), the indicator strip (167) protrudes from the lifting strip (154).

Citation Information

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