Splicing device and splicing method of switch cabinet

The positioning frame and adjustment components of the splicing device enable automated splicing of switchgear, solving the problem of high labor consumption in traditional switchgear production and improving assembly speed and production efficiency.

CN115882351BActive Publication Date: 2026-03-31NINGBO TIANSHUN ELECTRICAL EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-23
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The traditional switchgear manufacturing process consumes a lot of labor costs, has a slow assembly speed, high work intensity, and low manufacturing efficiency.

Method used

The system employs a splicing device, including a positioning frame and adjustment components, to achieve automated splicing of the switchgear through the coordination of positioning space and moving parts. It also utilizes components such as adsorption and transmission parts to ensure stable conversion and splicing of the cabinet panels.

Benefits of technology

It enables automated assembly of switchgear, saving labor costs, increasing assembly speed, reducing workload, and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a splicing device and a splicing method of a switch cabinet, the switch cabinet comprising a first cabinet body spliced by a plurality of cabinet plates; the splicing device comprising: a positioning frame, which is internally provided with a positioning space; a first adjusting assembly, which is movably connected with the positioning frame; and the first adjusting assembly is used for adjusting the first cabinet body into the positioning space, so that the first cabinet body is converted from a conveying state to a splicing state; wherein the first cabinet body is converted from the conveying state to the splicing state, and the switch cabinet is formed; the splicing method adopts the splicing device as described above. The application solves the technical problem that, when the switch cabinet is manufactured, the cabinet body of the switch cabinet is large in size, is not conducive to storage and transportation, and is complex in assembly and splicing, and is not conducive to the production of a foldable switch cabinet, realizes automatic splicing, and achieves the technical effects of saving labor cost, improving assembly speed, reducing work intensity, and improving production efficiency.
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Description

Technical Field

[0001] This invention relates to the field of switchgear technology, and more specifically, to a switchgear splicing device and splicing method. Background Technology

[0002] A switchgear is an electrical device. The switchgear busbar first enters the main control switch inside the cabinet, and then enters the branch control switches. Each branch circuit is equipped with fuses as needed. In order to better protect its internal circuits and the personal safety of operators, it is equipped with an external cabinet to house its components and busbars, so as to better protect personal safety.

[0003] However, the cabinet of the switch cabinet is large, which is not conducive to storage and transportation. Moreover, its assembly and splicing process is also relatively complicated, which is not conducive to the production of folding switch cabinets. Therefore, in the traditional switch cabinet production process, a lot of labor costs are required, the assembly speed is slow, the work intensity is high, and the manufacturing efficiency is greatly reduced. Summary of the Invention

[0004] This invention addresses the technical problem that the traditional switchgear manufacturing process requires a large amount of labor, has a slow assembly speed, and involves high work intensity, which greatly reduces manufacturing efficiency. It achieves automated assembly, thereby saving labor costs, increasing assembly speed, reducing work intensity, and improving production efficiency.

[0005] To address the aforementioned problems, the present invention provides a splicing device for a switch cabinet. The switch cabinet includes a first cabinet body assembled from multiple cabinet panels. The splicing device includes: a positioning frame with a positioning space inside; and a first adjustment component movably connected to the positioning frame. The first adjustment component is used to adjust the first cabinet body into the positioning space so that the first cabinet body is converted from a conveying state to a splicing state. When the first cabinet body is converted from a conveying state to a splicing state, a switch cabinet is formed.

[0006] Compared with existing technologies, the technical effects achieved by this technical solution are as follows: the cabinets of the switch cabinet are connected in a certain order to form the first cabinet. The splicing device includes a positioning frame, which works with the first adjustment component to adjust the first cabinet into the positioning space of the positioning frame. The first cabinet is then spliced ​​together to form a switch cabinet. This splicing device can splice the various cabinet panels into a complete switch cabinet, which greatly saves human effort, speeds up the splicing process, and improves production efficiency.

[0007] In one embodiment of the present invention, the first adjustment component includes: a first movable member disposed within a positioning space, and the first movable member being rotatable relative to the positioning frame around a first axis between a first angle and a second angle; and a second movable member movably connected to the end of the positioning frame away from the first movable member, and the second movable member being rotatable around a second axis; wherein, when the first cabinet body is switched from a conveying state to a splicing state, the first movable member rotates from the first angle to the second angle to enter the positioning space, and the second movable member rotates toward the direction closer to the first movable member.

[0008] Compared with existing technologies, the technical effects achieved by this technical solution are as follows: The first adjustment component includes a first movable component that rotates around a first axis within the positioning space and a second movable component that rotates around a second axis outside the positioning space. The two movable components cooperate with each other, allowing the splicing device to switch back and forth between the conveying state and the splicing state. When the splicing device is in the conveying state, the first movable component is in a first angle state, and the second movable component is parallel to the first movable component. When the splicing device is in the splicing state, the first movable component is in a second angle state, and the second movable component rotates toward the direction of the first movable component. This allows the first cabinet to enter the positioning space more flexibly and smoothly.

[0009] In one embodiment of the present invention, the first movable member includes an adsorption member disposed on the side of the first movable member close to the second movable member, and the adsorption member brings the first cabinet into the positioning space so as to change it from the conveying state to the splicing state.

[0010] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: The first movable component is provided with an adsorption component on the side near the second movable component, so as to better fix the cabinet panel on the first movable component. As the first movable component switches from the conveying state to the splicing state, the adsorption component adsorbs the first cabinet and brings it into the positioning space. The adsorption component can prevent the cabinet panel from falling off the first movable component during the state transition, thus better achieving the transition from the conveying state to the splicing state.

[0011] In one embodiment of the present invention, the first movable member further includes a transmission member disposed on the side of the first movable member opposite to the adsorption member, and the transmission member is used to drive the first movable member to rotate between a first angle and a second angle within the positioning space.

[0012] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: A transmission component is provided on the side of the first movable component relative to the adsorption component, which drives the first movable component to rotate between the first angle and the second angle. When the splicing device switches from the conveying state to the splicing state, the conveying component rotates in the direction away from the first movable component, rotating the first movable component from the first angle to the second angle; when the splicing device switches from the splicing state to the conveying state, the conveying component rotates in the direction closer to the first movable component, rotating the first movable component from the second angle to the first angle.

[0013] In one embodiment of the present invention, the splicing device further includes: a positioning cavity having an opening communicating with a positioning space; a positioning member disposed at a position corresponding to the opening of the positioning cavity, and a mating space for inserting a corresponding cabinet panel is formed between the positioning member and the adsorption member; wherein, when the cabinet panel is inserted into the mating space, the positioning member fixes the cabinet panel in place.

[0014] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: a positioning element is provided at the opening of the positioning cavity, and a matching space is formed between the positioning element and the adsorption element for the cabinet panel to enter. When the cabinet panel enters the matching space, the positioning element squeezes the cabinet panel to make its contact with the adsorption element tighter, so that the adsorption element can better adsorb the cabinet panel onto the first moving part.

[0015] In one embodiment of the present invention, the splicing device further includes: a transmission component disposed on the side of the positioning frame near the second movable member, and the transmission component is used to transport the first cabinet toward the positioning frame; a blocking member disposed on the end of the positioning frame away from the transmission component; wherein, when the first cabinet abuts against the blocking member, at least one of the plurality of cabinet panels is positioned at a position corresponding to an opening.

[0016] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: the splicing device is equipped with a transmission component to transport the first cabinet to the positioning frame, and a blocking component is provided at the end of the positioning frame away from the transmission component. When the first cabinet is in contact with the blocking component, at least one cabinet panel is set at the corresponding opening position, and in the transmission state, the cabinet panel is placed on the first movable component.

[0017] In one embodiment of the present invention, the splicing device includes: a sensing element disposed at a position corresponding to the opening of the positioning cavity, and the sensing element having a sensing signal emitted toward the mating space.

[0018] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: a sensor is set at the position corresponding to the opening of the positioning cavity. The sensor can emit a sensing signal toward the mating space to sense whether an object has entered the mating space. The sensor can cooperate with the positioning component to activate the positioning component more sensitively. When the cabinet panel enters the mating space, the sensor receives the signal and causes the positioning component to press down. When the cabinet panel contacts the blocking component, the positioning component is fixedly set on the first movable component.

[0019] In one embodiment of the invention, the second movable member engages with at least one of a plurality of cabinet panels; wherein, when the first cabinet enters the positioning space, the second movable member rotates toward the first movable member so that the second movable member abuts against the cabinet panel.

[0020] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: when the first cabinet is transitioning from the conveying state to the splicing state, the second movable part rotates towards the first movable part, so that the second movable part abuts against the cabinet panel, preventing the angle between the cabinet panels from being too large and breaking. When the first cabinets have all entered the positioning space, the second movable part continues to rotate towards the first movable part, so that multiple cabinets are spliced ​​into a complete switch cabinet.

[0021] In one embodiment of the present invention, a rolling element is provided at one end of the positioning frame. When multiple cabinet panels are spliced ​​together to form a switch cabinet, the rolling element is used to slide the switch cabinet out of the splicing device.

[0022] Compared with existing technologies, the technical effects achieved by this technical solution are as follows: The bottom of the positioning frame is equipped with a rolling element. When multiple cabinet panels are spliced ​​into a complete switch cabinet, the rolling element is activated to slide the switch cabinet out of the splicing device. The rolling element can automatically remove the switch cabinet from the splicing device, saving manpower and improving work efficiency.

[0023] On the other hand, the present invention also provides a method for splicing switch cabinets, the splicing method employing the splicing device described above; the splicing method includes: placing a first cabinet on a transmission component; the transmission component transporting the first cabinet toward a positioning frame; a sensor located at the opening of a positioning cavity sensing the distance between itself and the first cabinet; when the sensor determines that the distance between itself and the first cabinet meets a first preset distance, the sensor sends an action command to a positioning component located at the opening of the positioning cavity; wherein, a slot for inserting the first cabinet is formed between the positioning component and a first movable component of a first adjustment component; wherein, the direction of movement of the first movable component forms an angle with the direction of movement of the positioning component; when the positioning component receives the action command, the positioning component moves from a second position to a first position. The first movable component is positioned to clamp the first cabinet body; when the positioning component is in the first position, the first movable component moves toward the first cabinet body so that the flip support surface of the first movable component is in contact with the corresponding end face of at least one cabinet panel in the first cabinet body; wherein, the first movable component is provided with an adsorption component located on the flip support surface, and when the adsorption component is squeezed, it applies an adsorption force to the corresponding cabinet panel; when the positioning component is held in the first position for a first preset time, after turning from the first position to the second position, the first movable component brings the first cabinet body into the positioning space; when the first movable component moves to be in contact with the inner wall of the positioning frame, the first cabinet body is converted into a switch cabinet, and the adsorption component is controlled to release the adsorption force on the cabinet panel; the transport component built into the positioning frame is controlled to drive the switch cabinet out of the positioning space.

[0024] Compared with existing technologies, the technical effects achieved by adopting this technical solution are: significantly reducing labor costs, realizing the integrated assembly and splicing of switchgear, thereby improving assembly speed, reducing workload, and increasing production efficiency.

[0025] In summary, by adopting the technical solution of the present invention, the following technical effects can be achieved:

[0026] (1) The structural design of the splicing device can realize the integrated production, manufacturing, assembly and splicing process of switch cabinet, saving a lot of labor costs, increasing assembly speed, reducing labor intensity and improving production efficiency.

[0027] (2) The first adjustment component can better bring the first cabinet into the positioning space. The first movable part is equipped with an adsorption component to adsorb the cabinet panel onto the first movable part, so that the cabinet panel will not fall off the first movable part when the first cabinet is changed from the conveying state to the splicing state. When the first cabinet enters the positioning space, the second movable part rotates towards the direction of the first movable part and abuts against at least one cabinet panel to prevent the cabinet panels from breaking due to excessive angle between them, and splices multiple cabinet panels into a complete switch cabinet.

[0028] (3) The positioning component, blocking component and sensing component cooperate with each other. The sensing component emits a sensing signal towards the cooperation space. When the cabinet enters the cooperation space, the sensing component receives the sensing signal, which causes the positioning component to start pressing the cabinet panel on the first movable component. When the first cabinet comes into contact with the blocking component, the cabinet panel is placed on the first movable component, which increases the degree of cooperation between the positioning component, blocking component and sensing component. Attached Figure Description

[0029] Figure 1 This is a structural schematic diagram of a switch cabinet splicing device provided in Embodiment 1 of the present invention.

[0030] Figure 2 for Figure 1 A structural diagram from another angle.

[0031] Figure 3 for Figure 1 A schematic diagram of the coordination relationship in the middle.

[0032] Figure 4 for Figure 3 A partial structural diagram.

[0033] Figure 5 for Figure 4 A structural diagram from the first angle.

[0034] Figure 6 for Figure 4 A structural diagram from the second angle.

[0035] Figure 7 for Figure 3 A schematic diagram of a local structure.

[0036] Explanation of reference numerals in the attached figures:

[0037] 100. Splicing device; 10. Positioning frame; 11. Positioning space; 12. Positioning component; 13. Blocking component; 14. Fitting space; 15. Opening; 20. First adjustment component; 21. First movable component; 22. Second movable component; 23. Transmission component; 24. Adsorption component; 25. Sensing component; 26. Rolling component; 30. Transmission component; 31. Driving wheel; 32. Driven wheel; 40. First cabinet; 200. Switch cabinet. Detailed Implementation

[0038] To make the above-mentioned objectives, features, and advantages of the present invention more apparent and understandable, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, other embodiments obtained by those skilled in the art without creative effort are all within the scope of protection of the present invention.

[0039] [First Embodiment]

[0040] See Figure 1 This is a structural schematic diagram of a splicing device 100 for a switch cabinet 200 provided in the first embodiment of the present invention. Combined with... Figures 2-7 The switch cabinet 200 includes, for example, a first cabinet 40 composed of multiple cabinet panels; the splicing device 100 includes, for example, a positioning frame 10 and a first adjustment component 20.

[0041] Specifically, the positioning frame 10 is provided with a positioning space 11; the first adjustment component 20 is movably connected to the positioning frame 10; and the first adjustment component 20 is used to adjust the first cabinet 40 into the positioning space 11 so that the first cabinet 40 is converted from the conveying state to the splicing state; wherein, when the first cabinet 40 is converted from the conveying state to the splicing state, a switch cabinet 200 is formed.

[0042] In one specific embodiment, the cabinets of the switch cabinet 200 are connected in a certain order to form a first cabinet 40. The splicing device 100 includes, for example, a positioning frame 10 and a first adjustment component 20. The first adjustment component 20 and the positioning frame 10 work together to adjust the first cabinet 40 into the positioning space 11, and automatically splice the first cabinet 40 into a switch cabinet 200. The splicing device 100 can bring the first cabinet 40 assembled from multiple cabinet panels into the positioning space 11 as a whole, so that the first cabinet 40 can be spliced ​​into a complete switch cabinet 200. In the production process, it greatly saves the consumption of human effort, speeds up the splicing speed, and improves production efficiency.

[0043] Specifically, the first adjustment component 20 includes, for example, a first movable member 21 and a second movable member 22; the first movable member 21 is disposed within the positioning space 11 and is capable of rotating relative to the positioning frame 10 around a first axis between a first angle and a second angle; the second movable member 22 is movably connected to the end of the positioning frame 10 away from the first movable member 21 and is capable of rotating around a second axis; wherein, when the first cabinet 40 is switched from the conveying state to the splicing state, the first movable member 21 rotates from the first angle to the second angle to enter the positioning space 11, and the second movable member 22 rotates toward the direction closer to the first movable member 21.

[0044] In one specific embodiment, the first adjustment component 20 includes, for example, a first movable member 21 that rotates around a first axis within the positioning space 11 and a second movable member 22 that rotates around a second axis outside the positioning space 11. The first axis is the rotation center of the first movable member 21, and the second axis is the rotation center of the second movable member 22. Preferably, the first movable member 21 is a flip support plate, and the second movable member 22 is a folding mechanism. The two movable members cooperate with each other, so that the splicing device 100 can switch back and forth between the conveying state and the splicing state. Typically, when the first cabinet 40 is in the conveying state, multiple cabinet panels connected end to end are supported by a flip support plate. At this time, the flip support plate is in a first angle state, which can be, for example, the supporting plane of the flip support plate is roughly parallel to the ground on which the splicing device 100 is placed, and the folding mechanism is in a position parallel to the flip support plate. When the first cabinet 40 is in the splicing state, the flip support plate rotates from the first angle to a second angle state, which can be, for example, the supporting plane of the flip support plate is roughly perpendicular to the ground on which the splicing device 100 is placed. The flip support plate needs to rotate toward the second angle state to bring the first cabinet 40 into the positioning space 11. The folding mechanism also rotates toward the flip support plate to assist the flip support plate in bringing the first cabinet 40 into the positioning space 11. The cooperation of the two moving parts allows the first cabinet 40 to enter the positioning space 11 more flexibly.

[0045] Specifically, the first movable component 21 includes, for example, an adsorption component 24. The adsorption component 24 is located on the side of the first movable component 21 near the second movable component 22, and the adsorption component 24 brings the first cabinet 40 into the positioning space 11 so that it changes from the conveying state to the splicing state.

[0046] In one specific embodiment, the first movable member 21 is provided with an adsorption member 24 on the side near the second movable member 22. In order to better fix the cabinet panel on the first movable member 21, because if the cabinet panel is not adsorbed on the first movable member 21 during the state transition of the splicing device 100, the cabinet panel may shift during the process of bringing it into the positioning space 11, thereby increasing the difficulty for the first cabinet 40 to enter the positioning space 11 as a whole; therefore, when the first movable member 21 switches from the conveying state to the splicing state, the adsorption member 24 adsorbs the cabinet panel and brings it into the positioning space 11. The adsorption member 24 can prevent the cabinet panel from falling off the first movable member 21 during the state transition, thus better achieving the transition from the conveying state to the splicing state.

[0047] Specifically, the first movable member 21 also includes, for example, a transmission member 23. The transmission member 23 is located on the side of the first movable member 21 opposite to the adsorption member 24, and the transmission member 23 is used to drive the first movable member 21 to rotate between a first angle and a second angle within the positioning space 11.

[0048] In one specific embodiment, a transmission member 23 is further provided on the side of the first movable member 21 opposite to the adsorption member 24. The transmission member 23 is used to drive the first movable member 21 to rotate between a first angle and a second angle within the positioning space 11. Commonly, the transmission member 23 is a rotatable and telescopic component. When the first movable member 21 changes from the conveying state to the splicing state, the transmission member 23 rotates in a direction away from the first movable member 21, the transmission member 23 extends, and the first movable member 21 rotates from the first angle to the second angle; when the first movable member 21 changes from the splicing state to the conveying state, the transmission member 23 rotates in a direction closer to the first movable member 21, the transmission member 23 shortens, and the first movable member 21 rotates from the second angle to the first angle.

[0049] Specifically, the splicing device 100 further includes: a positioning cavity and a positioning element 12. The positioning cavity has an opening 15 communicating with the positioning space 11. The positioning element 12 is located at the position corresponding to the opening 15 of the positioning cavity, and a mating space 14 is formed between the positioning element 12 and the adsorption element 24 for inserting the corresponding cabinet panel. When the cabinet panel is inserted into the mating space 14, the positioning element 12 fixes the cabinet panel in place.

[0050] In one specific embodiment, a positioning member 12 is provided at the opening 15 of the positioning cavity, and a mating space 14 is formed between the positioning member 12 and the adsorption member 24 for the cabinet panel to enter. When the cabinet panel enters the mating space 14, the positioning member 12 presses the cabinet panel onto the first movable member 21, making the contact between the cabinet panel and the first movable member 21 more compact, and the adsorption member 24 can more easily adsorb the cabinet panel onto the first movable member 21.

[0051] Specifically, the splicing device 100 also includes, for example, a transmission component 30 and a blocking component 13. The transmission component 30 is located on the side of the positioning frame 10 near the second movable component 22, and the transmission component 30 is used to transport the first cabinet 40 toward the positioning frame 10. The blocking component 13 is located at the end of the positioning frame 10 away from the transmission component 30. When the first cabinet 40 abuts against the blocking component 13, at least one of the multiple cabinet panels is positioned corresponding to the opening 15.

[0052] In one specific embodiment, the transmission component 30 is located on the side of the positioning frame 10 near the second movable member 22, and the transmission component 30 is used to transport the first cabinet 40 toward the positioning frame 10; the blocking member 13 is located at the end of the positioning frame 10 away from the transmission component 30. Commonly, the first cabinet 40 is formed by splicing four cabinet panels. When the first cabinet 40 abuts against the blocking member 13, the first cabinet panel of the first cabinet is positioned corresponding to the opening 15. After the adsorption member 24 adsorbs the cabinet panel, it brings the first cabinet 40 into the positioning space 11. Preferably, the transmission component 30 is provided with a driving wheel 31 and a driven wheel 32. Compared with the conveyor belt, the contact between the driving wheel 31 and the driven wheel 32 and the first cabinet 40 is a point-to-surface contact, which has less friction than a surface-to-surface contact. Therefore, when the cabinet panel abuts against the blocking member 13, the use of the driving wheel 31 and the driven wheel 32 in cooperation can reduce the wear of the cabinet panel.

[0053] Specifically, the splicing device 100 includes, for example, a sensor 25, which is located at the position corresponding to the opening 15 of the positioning cavity, and the sensor 25 has a sensing signal emitted toward the mating space 14.

[0054] In one specific embodiment, the sensing element 25 emits a sensing signal to the mating space 14. The sensing element 25, the positioning element 12, and the first cabinet 40 form a mating relationship. When the first cabinet 40 enters the mating space 14, the sensing signal emitted by the sensing element 25 comes into contact with the first cabinet 40. After receiving the sensing signal, the sensing element 25 sends a working instruction to the positioning element 12. The positioning element 12 presses down to press and fix the first cabinet 40 onto the first movable element 21.

[0055] Specifically, the second movable member 22 engages with at least one of the multiple cabinet panels; wherein, when the first cabinet 40 enters the positioning space 11, the second movable member 22 rotates toward the first movable member 21 so that the second movable member 22 abuts against the cabinet panel.

[0056] In one specific embodiment, when the first cabinet 40 transitions from the conveying state to the splicing state, the second movable member 22 rotates toward the first movable member 21, causing the second movable member 22 to abut against the cabinet panel, preventing the included angle between multiple adjacent cabinet panels from becoming too large and breaking. When all the first cabinets 40 have entered the positioning space 11, the second movable member 22 continues to rotate toward the first movable member 21, so that multiple cabinets are spliced ​​into a complete switch cabinet 200.

[0057] Specifically, one end of the positioning frame 10 is provided with a rolling element 26. When multiple cabinet panels are spliced ​​together to form a switch cabinet 200, the rolling element 26 is used to slide the switch cabinet 200 out of the splicing device 100.

[0058] In one specific embodiment, a rolling element 26 is provided at the bottom of the positioning frame 10. When multiple cabinet panels are assembled into a complete switch cabinet 200 within the positioning space 11, the rolling element 26 is activated, sliding the switch cabinet 200 out of the splicing device 100. Typically, the rolling element 26 is a roller, and its rolling direction is perpendicular to the rolling direction of the transmission component 30 and parallel to the direction of the ground where the splicing device 100 is placed. Installing the rolling element 26 on one side of the positioning frame 10 automatically removes the assembled switch cabinet 200 from the splicing device 100, saving significant manual labor and automating the unloading operation of the switch cabinet 200, thus improving work efficiency.

[0059] [Second Embodiment]

[0060] See Figure 1-7 This is a splicing method for a switch cabinet 200 provided in Embodiment 2 of the present invention. The splicing method, for example, uses the splicing device 100 provided in the first embodiment above.

[0061] Specifically, the first cabinet 40 is placed on the transmission assembly 30; the transmission assembly 30 transports the first cabinet 40 toward the positioning frame 10; the sensor 25 located at the opening 15 of the positioning cavity senses the distance between itself and the first cabinet 40; when the sensor 25 determines that the distance between itself and the first cabinet 40 meets the first preset distance, the sensor 25 sends an action command to the positioning member 12 located at the opening 15 of the positioning cavity; wherein, a slot for inserting the first cabinet 40 is formed between the positioning member 12 and the first movable member 21 of the first adjustment assembly 20; wherein, the direction of movement of the first movable member 21 forms an angle with the direction of movement of the positioning member 12; when the positioning member 12 receives the action command, the positioning member 12 rotates from the second position to the first position so as to clamp the first cabinet 40 with the first movable member 21 ... When the positioning member 12 is in the first position, the first movable member 21 moves toward the direction close to the first cabinet 40 so that the flip support surface of the first movable member 21 is in contact with the corresponding end face of at least one cabinet panel in the first cabinet 40; wherein, the first movable member 40 is provided with an adsorption member 24 located on the flip support surface, and when the adsorption member 24 is squeezed, it applies an adsorption force to the corresponding cabinet panel; when the positioning member 12 is held in the first position for a first preset time, after turning from the first position to the second position, the first movable member 40 brings the first cabinet 40 into the positioning space 11; when the first movable member 40 moves to be in contact with the inner wall of the positioning frame 10, the first cabinet 40 is converted into a switch cabinet 200, and the adsorption member 24 is controlled to release the adsorption force on the cabinet panel; the transport component inside the positioning frame 10 is controlled to drive the switch cabinet 200 out of the positioning space 11.

[0062] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A splicing device of a switchgear cabinet, the switchgear cabinet comprising a first cabinet body (40) spliced by a plurality of cabinet plates; characterized in that, The splicing device comprises: A positioning frame (10) with a positioning space (11) inside; A first adjusting assembly (20) movably connected with the positioning frame (10); and the first adjusting assembly (20) is used for adjusting a first cabinet body (40) into the positioning space (11), so that the first cabinet body (40) is converted from a conveying state to a splicing state; Wherein, the first cabinet body (40) is converted from the conveying state to the splicing state to form the switch cabinet (200); The first adjusting assembly (20) comprises: A first movable part (21) arranged in the positioning space (11), and the first movable part (21) can rotate around a first axis between a first angle and a second angle relative to the positioning frame (10); A second movable part (22) movably connected to one end of the positioning frame (10) away from the first movable part (21), and the second movable part (22) can rotate around a second axis; Wherein, when the first cabinet body (40) is converted from the conveying state to the splicing state, the first movable part (21) is rotated from the first angle to the second angle to enter the positioning space (11), and the second movable part (22) is rotated towards the first movable part (21).

2. The splicing device of claim 1, wherein The first movable part (21) comprises: An absorbing accessory (24) arranged on one side of the first movable part (21) close to the second movable part (22), and the absorbing accessory (24) brings the first cabinet body (40) into the positioning space (11), so that it is converted from the conveying state to the splicing state.

3. The splicing device of claim 2, wherein The first movable part (21) further comprises: A transmission part (23) arranged on one side of the first movable part (21) relative to the absorbing accessory (24), and the transmission part (23) is used to drive the first movable part (21) to rotate between the first angle and the second angle in the positioning space (11).

4. The splicing apparatus of claim 2, wherein The splicing device further comprises: A positioning cavity with an opening (15) communicating with the positioning space (11); A positioning part (12) arranged at a position of the positioning cavity corresponding to the opening (15), and the positioning part (12) and the absorbing accessory (24) form a matching space (14) for inserting the corresponding cabinet plate; Wherein, when the cabinet plate is inserted into the matching space (14), the positioning part (12) fixes the cabinet plate.

5. The splicing device of claim 4, wherein The splicing device further comprises: A transmission assembly (30) arranged on one side of the positioning frame (10) close to the second movable part (22), and the transmission assembly (30) is used to transport the first cabinet body (40) towards the positioning frame (10); A blocking part (13) arranged at one end of the positioning frame (10) away from the transmission assembly (30); Wherein, when the first cabinet body (40) abuts against the blocking part (13), at least one of the plurality of cabinet plates is arranged at a position corresponding to the opening (15).

6. The splicing device of claim 5, wherein Comprise: An inductive element (25) is arranged at a position corresponding to the opening (15) of the positioning cavity, and the inductive element (25) emits an inductive signal towards the fitting space (14).

7. The splicing device according to claim 5, characterized in that, the second movable element (22) cooperates with at least one of the cabinet plates; wherein, when the first cabinet body (40) enters the positioning space (11), the second movable element (22) rotates towards the first movable element (21) to make the second movable element (22) abut against the cabinet plate.

8. The splicing device according to claim 1, characterized in that, one end of the positioning frame (10) is provided with a rolling element (26), and when the cabinet plates are spliced into the switch cabinet (200), the rolling element (26) is used to slide the switch cabinet (200) out of the splicing device (100).

9. A method of splicing switchgear cabinets, characterized in that The splicing method adopts the splicing device according to any one of claims 1-8; the splicing method comprises: placing the first cabinet body (40) on the transmission assembly (30); the transmission assembly (30) transports the first cabinet body (40) towards the positioning frame (10); the inductive element (25) arranged at the opening (15) of the positioning cavity senses the distance between the inductive element (25) and the first cabinet body (40); when the inductive element (25) determines that the distance between the inductive element (25) and the first cabinet body (40) satisfies a first preset distance, the inductive element (25) sends an action instruction to the positioning element (12) arranged at the opening (15) of the positioning cavity; wherein, the positioning element (12) and the first movable element (21) of the first adjusting assembly (20) form a slot for inserting the first cabinet body (40); wherein, the activity direction of the first movable element (21) and the activity direction of the positioning element (12) form an included angle; when the positioning element (12) obtains the action instruction, the positioning element (12) is turned from a second position to a first position to make the first movable element (21) clamp the first cabinet body (40); when the positioning element (12) is in the first position, the first movable element (21) moves towards the first cabinet body (40) to make the overturning support surface of the first movable element (21) abut against the corresponding end surface of at least one cabinet plate in the first cabinet body (40); wherein, the first movable element (21) is provided with a suction element (24) located on the overturning support surface, and the suction element (24) applies a suction force to the corresponding cabinet plate when being pressed; when the positioning element (12) remains in the first position for a first preset time, after turning from the first position to the second position, the first movable element (21) brings the first cabinet body (40) into the positioning space (11). When the first movable element (21) is moved to adhere to the inner wall corresponding to the positioning frame (10), the first cabinet (40) is converted into the switch cabinet (200), and the suction accessory (24) is controlled to cancel the suction force on the cabinet plate; The transportation assembly arranged in the positioning frame (10) is controlled to drive the switch cabinet (200) to move out of the positioning space (11).

Citation Information

Patent Citations

  • Switch cabinet body assembling mechanism

    CN202737358U