A high-voltage box transfer device for power equipment production

By using limiting rods and electromagnetic attraction mechanisms on the base plate and receiving plate, the problem of collision and wear during the transportation of high-pressure boxes is solved, enabling efficient and stable large-volume transportation.

CN121106908BActive Publication Date: 2026-01-23NANTONG WEISEN NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202511656856.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-11-13
Publication Date
2026-01-23
Estimated Expiration
2045-11-13

AI Technical Summary

Technical Problem

High-voltage boxes are prone to collisions and wear during transportation, and are not convenient for large-scale transportation. Existing technologies are difficult to effectively and stably stack and protect high-voltage boxes.

Method used

A high-voltage box transfer device is adopted, which includes a base plate, a receiving plate, a fixing column, a limiting rod, and an electromagnetic coil. The high-voltage box is stably fixed and protected through the contraction of the limiting rod and the electromagnetic attraction mechanism.

Benefits of technology

It improves the transportation efficiency and stability of high-pressure boxes, prevents collision and wear, adapts to high-pressure boxes of different sizes, and facilitates large-volume transportation.

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Abstract

The application discloses a high-voltage box transfer device for power equipment production, which comprises a bottom plate and a receiving plate, a plurality of fixing columns are arranged on the bottom plate, a plurality of notches are formed in the receiving plate, a clamping sleeve is connected to each notch through clamping, the clamping sleeves are connected to the fixing columns through clamping, and a limiting device is arranged on the receiving plate. The application has the advantages that when the high-voltage box is placed, the high-voltage box is pressed by the receiving plate, the limiting rods are retracted into the sealing cavity after contacting the high-voltage box, the current variable fluid forms a solid under the electric field after the wire is electrified, the limiting rods after retraction do not reset to exert pressure on the high-voltage box, the limiting rods that have not retracted limit the high-voltage box, so that the stability of the high-voltage box is ensured, the limiting rods can prevent the high-voltage boxes from colliding and rubbing, the high-voltage boxes can be continuously placed on the receiving plate, and a plurality of high-voltage boxes can be placed on the bottom plate, so that the transfer efficiency of the high-voltage boxes is improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of power equipment processing, in particular to a high-voltage box transfer device for power equipment production. BACKGROUND

[0002] The high-voltage box needs to be transferred to the next process or other places for further processing after production, but the volume of the high-voltage box is large, and if it is randomly stacked in the bearing box, the space of the bearing box cannot be well utilized, resulting in the reduction of the conveying efficiency of the high-voltage box, and the high-voltage boxes are easily damaged and deformed due to mutual extrusion and collision during conveying, thereby reducing the production quality of the high-voltage box. Although the existing technology provides a bearing box capable of neatly stacking high-voltage boxes, the high-voltage boxes are not stable when stacked together, and the high-voltage boxes are easy to scatter after being jolted during conveying, and the bottom high-voltage boxes are easy to be abraded due to bearing more pressure, which is not convenient for conveying the high-voltage boxes, and the mutual friction between the box bodies of the high-voltage boxes also causes damage to the high-voltage boxes. Although the existing technology can set a compartment for each high-voltage box, the number of high-voltage boxes conveyed at a time is small, which is not convenient for large-scale conveying.

[0003] Therefore, the application provides a high-voltage box transfer device for power equipment production to solve the above problems. SUMMARY

[0004] The application aims to solve the problems in the prior art that the high-voltage box is easy to collide and abrade during conveying and is not convenient for large-scale conveying of the high-voltage box, and provides a high-voltage box transfer device for power equipment production.

[0005] In order to achieve the above-mentioned purpose, the application adopts the following technical scheme:

[0006] A high-voltage box transfer device for power equipment production, comprising a bottom plate and a bearing plate, a plurality of fixed columns are arranged on the bottom plate, a plurality of slots are formed in the bearing plate, a clamping sleeve is connected to each slot, a plurality of clamping sleeves are connected to the fixed columns, a limiting device is arranged on the bearing plate, the limiting device comprises a sealed cavity, a wire and a current variable liquid are arranged in the sealed cavity, a plurality of limiting rods are slidably connected in the sealed cavity, one end of each limiting rod is fixedly connected with a fixed disc, the fixed disc is connected with the sealed cavity through a spring, a plurality of sliding grooves matched with the fixed disc are formed in the sealed cavity, a plurality of openings are formed in the fixed disc, the limiting device is arranged on both sides of the bearing plate, the plurality of limiting rods are evenly arranged, and a clamping device is further arranged in the clamping sleeve.

[0007] Preferably, the clamping device comprises an inner groove in the clamping sleeve, the inner groove is provided with an electromagnetic coil one, the electromagnetic coil one is electrically connected with the wire, a plurality of grooves are circumferentially arranged in the clamping sleeve, and each two opposite grooves are connected with an electromagnet one through two springs two.

[0008] Preferably, each of the limiting rods is provided with a strip-shaped groove, and each of the strip-shaped grooves is provided with an electromagnetic coil two, and a plurality of the electromagnetic coils two are electrically connected with the wire.

[0009] Preferably, the bottom plate and one end of the fixing column are provided with a threaded groove, and the other end of the fixing column is provided with a threaded rod engaged with the threaded groove.

[0010] Preferably, the threaded rod is provided with an anti-skid layer, and the sidewall of the electromagnet one is provided with an anti-skid pad matched with the anti-skid layer.

[0011] Preferably, the sealing cavity is provided with a plurality of sealing rings, and the plurality of sealing rings are respectively connected with the plurality of limiting rods in a sliding sealing mode.

[0012] Preferably, the bottom plate is provided with a plurality of square grooves, and each of the square grooves is connected with an electromagnet two in a clamping mode.

[0013] Preferably, each of the limiting rods is provided with an elastic pad, and the sidewall of each of the limiting rods is wrapped with a protective sleeve.

[0014] Compared with the prior art, the present application has the following beneficial effects:

[0015] When the high-pressure boxes are placed, the high-pressure boxes are pressed by the receiving plates, the plurality of limiting rods are retracted into the sealing cavity after contacting the high-pressure boxes, and the current variable fluid forms a solid under the electric field after the wire is electrified, so that the limiting rods after retraction no longer reset to exert pressure on the high-pressure boxes, and the limiting rods that have not been retracted limit the high-pressure boxes, thereby ensuring the stability of the high-pressure boxes. The limiting rods can also prevent the collision and friction between the plurality of high-pressure boxes, and the receiving plates can also continue to place the high-pressure boxes, and the bottom plate can also place a plurality of high-pressure boxes, thereby improving the transfer efficiency of the high-pressure boxes, and the limiting effect of the limiting rods can adapt to high-pressure boxes of different sizes, facilitating the transportation of the high-pressure boxes.

[0016] When the wires are electrified, the electromagnetic coil one will form an electromagnetic field, and start multiple electromagnets two, so that the electromagnetic coil one repels multiple electromagnets one, and multiple electromagnets one is attached to the fixed column, so as to fix the receiving plate at the specified position of the fixed column, so as to limit and press the high-voltage box of different heights, and the anti-skid layer on the fixed column and the anti-skid pad on the electromagnet one can increase the friction between the electromagnet one and the fixed column, so as to ensure the fixing effect of the receiving plate, so that when multiple high-voltage boxes are stacked, the high-voltage box will not bear a large pressure, and the bottom high-voltage box will not be damaged;

[0017] Multiple electromagnetic coils two in the limiting rod will also generate a magnetic field after the wires are electrified, and the magnetic field generated by the electromagnetic coil two can attract the high-voltage box, reduce the vibration amplitude of the high-voltage box during transportation, avoid the collision and damage between the high-voltage box and the limiting rod, and protect the high-voltage box by the elastic pad and the protection pad, so as to ensure the quality of the high-voltage box is not damaged; the sealing ring can ensure the sealing property of the sealing cavity, avoid the current variable liquid flowing out, and the threaded groove and threaded rod on the fixed column can be spliced to place more receiving plates, so as to transport a large number of high-voltage boxes. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 A structure schematic view of a high-voltage box transfer device for power equipment production is provided for the present application;

[0019] Figure 2 A structure schematic view of electromagnetic iron two and bottom plate and the like structure in the high-voltage box transfer device for power equipment production is provided for the present application;

[0020] Figure 3 A structure schematic view of bottom plate and threaded groove and the like structure in the high-voltage box transfer device for power equipment production is provided for the present application;

[0021] Figure 4 A structure schematic view of receiving plate and limiting device and the like structure in the high-voltage box transfer device for power equipment production is provided for the present application;

[0022] Figure 5 A sectional structure schematic view of the receiving plate in the high-voltage box transfer device for power equipment production is provided for the present application;

[0023] Figure 6 A structure schematic view of clamping sleeve and electromagnetic iron two and the like structure in the high-voltage box transfer device for power equipment production is provided for the present application;

[0024] Figure 7 A sectional structure schematic view of the clamping sleeve in the high-voltage box transfer device for power equipment production is provided for the present application;

[0025] Figure 8 AFigure 7 Structure diagram of the structure at middle A;

[0026] Figure 9 Structure diagram of the structure of the limiting rod and the fixing disc in the high-voltage box transfer device for power equipment production;

[0027] Figure 10 Sectional structure diagram of the limiting rod and the fixing disc in the high-voltage box transfer device for power equipment production;

[0028] Figure 11 Structure diagram of the structure of the fixing column and the threaded rod in the high-voltage box transfer device for power equipment production.

[0029] In the figure: 1 bottom plate, 2 receiving plate, 3 slot, 4 clamping sleeve, 5 fixing column, 6 limiting device, 7 sealing cavity, 8 wire, 9 limiting rod, 10 fixing disc, 11 spring I, 12 sliding groove, 13 inner groove, 14 electromagnetic coil I, 15 groove, 16 spring II, 17 electromagnet I, 18 strip-shaped groove, 19 electromagnetic coil II, 20 threaded groove, 21 non-slip pad, 22 sealing ring, 23 electromagnet II, 24 elastic pad, 25 protective sleeve, 26 threaded rod, 27 opening. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments.

[0031] Reference Figures 1-11 A high-voltage box transfer device for power equipment production, comprising a bottom plate 1 and a receiving plate 2, the bottom plate 1 is provided with a plurality of fixing columns 5, the receiving plate 2 is provided with a plurality of slots 3, each slot 3 is clamped and connected with a clamping sleeve 4, the plurality of clamping sleeves 4 are clamped and connected with the fixing columns 5, the receiving plate 2 is provided with a limiting device 6, the limiting device 6 comprises a sealing cavity 7, the sealing cavity 7 is provided with a wire 8 and a current variable liquid, the sealing cavity 7 is slidably connected with a plurality of limiting rods 9, one end of the limiting rod 9 is fixedly connected with a fixing disc 10, the fixing disc 10 is clamped and connected with the sealing cavity 7 through a spring I 11, the sealing cavity 7 is provided with a plurality of sliding grooves 12 matched with the fixing disc 10, the fixing disc 10 is provided with a plurality of openings 27, the limiting device 6 is arranged on both sides of the receiving plate 2, the plurality of limiting rods 9 are evenly arranged, and the clamping sleeve 4 is further provided with a clamping device;

[0032] When the high-voltage box is placed, the high-voltage box is pressed by the receiving plate 2, and the plurality of limiting rods 9 are retracted into the sealing cavity 7 after contacting the high-voltage box. After the wire 8 is electrified, the current changes the liquid into a solid under the electric field, so that the limiting rod 9 after retraction will not reset to apply pressure to the high-voltage box, and the limiting rod 9 that has not retracted will limit the high-voltage box, thereby ensuring the stability of the high-voltage box. The limiting rod 9 can also prevent collision and friction between multiple high-voltage boxes. Meanwhile, the receiving plate 2 can continue to place high-voltage boxes, and the bottom plate 1 can also place multiple high-voltage boxes, thereby improving the transfer efficiency of the high-voltage box. The limiting effect of the limiting rod 9 can adapt to high-voltage boxes of different sizes, facilitating the transportation of the high-voltage box.

[0033] The clamping device comprises an inner groove 13 opened in the clamping sleeve 4, an electromagnetic coil 14 is arranged in the inner groove 13, the electromagnetic coil 14 is electrically connected with the wire 8, a plurality of grooves 15 are circumferentially opened in the clamping sleeve 4, and every two opposite grooves 15 are connected with an electromagnet 17 through two springs 16. The plurality of electromagnets 17 repel the electromagnetic coil 14. The threaded rod 26 is provided with an anti-skid layer, and the sidewall of the electromagnet 17 is provided with an anti-skid pad 21 matched with the anti-skid layer.

[0034] When the wire 8 is electrified, the electromagnetic coil 14 forms an electromagnetic field, and the plurality of electromagnets 23 are started. Therefore, the electromagnetic coil 14 repels the plurality of electromagnets 17, and the plurality of electromagnets 17 are attached to the fixed column 5, thereby fixing the receiving plate 2 at a specified position of the fixed column 5. In this way, high-voltage boxes of different heights can be limited and pressed. The anti-skid layer on the fixed column 5 and the anti-skid pad 21 on the electromagnet 17 can increase the friction between the electromagnet 17 and the fixed column 5, thereby ensuring the fixing effect of the receiving plate 2. Therefore, when multiple high-voltage boxes are stacked, the high-voltage boxes will not bear a large pressure, thereby ensuring that the bottom high-voltage box will not be damaged.

[0035] A strip-shaped groove 18 is opened in each limiting rod 9, an electromagnetic coil 19 is arranged in each strip-shaped groove 18, a plurality of electromagnetic coils 19 are electrically connected with the wire 8, a threaded groove 20 is opened at one end of the bottom plate 1 and the fixed column 5, a threaded rod 26 is arranged at the other end of the fixed column 5 and engaged with the threaded groove 20, a plurality of sealing rings 22 are arranged on the sealing cavity 7 and respectively connected with the plurality of limiting rods 9 in a sliding sealing manner, a plurality of square grooves are opened at the bottom of the bottom plate 1, and an electromagnet 23 is clamped and connected in each square groove. The electromagnet 23 can attract the contact surface of the bottom plate 1, thereby ensuring the stability of the bottom plate 1. One end of each limiting rod 9 is provided with an elastic pad 24, and the sidewall of each limiting rod 9 is wrapped with a protective sleeve 25.

[0036] The multiple electromagnetic coils two 19 in the limiting rod 9 can also generate a magnetic field after the wire 8 is electrified, the magnetic field generated by the electromagnetic coil two 19 can attract the high-voltage box, reduce the vibration amplitude generated by the high-voltage box during transportation, avoid the mutual collision and damage of the high-voltage box and the limiting rod 9, and the elastic pad 24 and the protective pad can protect the high-voltage box, so that the quality of the high-voltage box is not damaged; the sealing ring 22 can ensure the sealing property of the sealed cavity 7, avoid the current variable fluid from flowing out, and the threaded groove 20 and the threaded rod 26 on the fixed column 5 can splice the fixed column 5, so that more supporting plates 2 can be placed, so as to transport the high-voltage box in large quantities.

[0037] When the high-voltage box is placed, the high-voltage box is placed on the bottom plate 1, the supporting plate 2 is used to press the high-voltage box, the multiple limiting rods 9 are in contact with the high-voltage box and then shrink into the sealed cavity 7, the current variable fluid forms a solid under an electric field after the wire 8 is electrified, so that the limiting rods 9 after shrinking do not reset to apply pressure to the high-voltage box, the limiting rods 9 that have not shrunk limit the high-voltage box, and the limiting device 6 on the bottom plate 1 also limits the bottom of the high-voltage box, so as to ensure the stability of the high-voltage box, and the electric field intensity applied by the wire 8 can be reduced, so that the current variable fluid forms a viscous liquid, so as to buffer the high-voltage box, reduce the vibration of the high-voltage box during transportation, the limiting rods 9 can also prevent the collision and friction between multiple high-voltage boxes, the supporting plate 2 can also continue to place the high-voltage box, and multiple high-voltage boxes can also be placed on the bottom plate 1, so as to improve the transfer efficiency of the high-voltage box, and the limiting effect of the limiting rods 9 can adapt to high-voltage boxes of different sizes, so as to facilitate the transportation of the high-voltage box;

[0038] After the supporting plate 2 presses the high-voltage box, the electromagnetic coil one 14 forms an electromagnetic field when the wire 8 is electrified, multiple electromagnets two 23 are started at this time, so that the electromagnetic coil one 14 repels the multiple electromagnets one 17, the multiple electromagnets one 17 are attached to the fixed column 5, so as to fix the supporting plate 2 at a specified position of the fixed column 5, so as to limit and press the high-voltage box of different heights, the anti-skid layer on the fixed column 5 and the anti-skid pad 21 on the electromagnet one 17 can increase the friction between the electromagnet one 17 and the fixed column 5, so as to ensure the fixing effect of the supporting plate 2, the multiple electromagnetic coils two 19 in the limiting rod 9 can also generate a magnetic field after the wire 8 is electrified, the magnetic field generated by the electromagnetic coil two 19 can attract the high-voltage box, reduce the vibration amplitude generated by the high-voltage box during transportation, the threaded groove 20 and the threaded rod 26 on the fixed column 5 can splice the fixed column 5, so that the length of the fixed column 5 can be lengthened, so as to place more supporting plates 2, and then transport the high-voltage box in large quantities.

[0039] The above merely describes preferred specific embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical solution and inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A high-voltage box transfer device for power equipment production, comprising a base plate (1) and a receiving plate (2), wherein the base plate (1) is provided with a plurality of fixed columns (5), and the receiving plate (2) is provided with a plurality of slots (3), wherein each slot (3) is fitted with a snap-fit ​​sleeve (4), and the plurality of snap-fit ​​sleeves (4) are snap-fitted to the fixed columns (5), and the receiving plate (2) is provided with a limiting device (6), characterized in that, The limiting device (6) includes a sealing cavity (7), in which a wire (8) and an electrorheological fluid are provided. Multiple limiting rods (9) are slidably connected in the sealing cavity (7). One end of the limiting rod (9) is fixedly connected to a fixed plate (10). The fixed plate (10) is snapped into the sealing cavity (7) by a spring (11). Multiple sliding grooves (12) matching the fixed plate (10) are opened in the sealing cavity (7). Multiple openings (27) are opened on the fixed plate (10). The limiting device (6) is placed on both sides of the receiving plate (2). Multiple limiting rods (9) are evenly arranged. A snapping device is also provided in the snapping sleeve (4). The snap-fit ​​device includes an inner groove (13) opened in the snap-fit ​​sleeve (4), an electromagnetic coil (14) is provided in the inner groove (13), the electromagnetic coil (14) is electrically connected to the wire (8), and a plurality of grooves (15) are opened in the inner circumferential direction of the snap-fit ​​sleeve (4). An electromagnet (17) is snap-fitted in each pair of opposite grooves (15) by two springs (16), and the plurality of electromagnets (17) repel the electromagnetic coil (14). Each of the limiting rods (9) has a strip groove (18) inside, and each of the strip grooves (18) has an electromagnetic coil (19) inside. The multiple electromagnetic coils (19) are electrically connected to the wires (8).

2. The high-voltage box transfer device for power equipment production according to claim 1, characterized in that, The base plate (1) and the fixing column (5) are provided with threaded grooves (20) at one end, and the fixing column (5) is provided with a threaded rod (26) that meshes with the threaded groove (20) at the other end.

3. The high-voltage box transfer device for power equipment production according to claim 2, characterized in that, The threaded rod (26) is provided with an anti-slip layer, and the side wall of the electromagnet (17) is provided with an anti-slip pad (21) that matches the anti-slip layer.

4. A high-voltage box transfer device for power equipment production according to claim 1, characterized in that, The sealing cavity (7) is provided with multiple sealing rings (22), and the multiple sealing rings (22) are respectively slidably sealed to multiple limiting rods (9).

5. A high-voltage box transfer device for power equipment production according to claim 1, characterized in that, The bottom of the base plate (1) is provided with a plurality of square slots, and an electromagnet (23) is snapped into each square slot.

6. A high-voltage box transfer device for power equipment production according to claim 1, characterized in that, Each of the limiting rods (9) has an elastic pad (24) at one end, and the sidewall of each of the limiting rods (9) is covered with a protective sleeve (25).

Citation Information

Patent Citations

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