A power distribution cabinet assembly equipment

By designing load-bearing and auxiliary units and employing technologies such as spray block cleaning and wipe block wiping, the problems of difficult movement and all-round processing of power distribution cabinet assembly equipment have been solved, thereby improving work efficiency and assembly quality.

CN116316232BActive Publication Date: 2026-04-03SHANGHAI JUTAI ELECTRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-06
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The existing power distribution cabinet assembly equipment is difficult to move, making it difficult for workers to assemble from multiple directions on the workbench, and it is impossible to process the cabinet and cabinet doors from all angles, resulting in low work efficiency.

Method used

A power distribution cabinet assembly device was designed, including a support unit and an auxiliary unit. It adopts components such as a support plate, a processing mechanism, and a barrier plate. Through methods such as spray block cleaning, wiping block cleaning, and sliding block limiting, the cabinet door and precision electrical components are stably installed and positioned.

Benefits of technology

This improved the practicality and efficiency of power distribution cabinet assembly, prevented component installation position deviation, cleaned impurities inside the cabinet, removed burrs, and ensured accurate positioning and assembly quality of precision electrical components.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a power distribution cabinet assembly device, belonging to the field of power distribution cabinet processing technology. The cabinet door is tilted against the tilt of the first assembly bracket. An external water pipe passes through the inner cavity of the insertion block, enters the spray block through the connecting pipe, and sprays out from its inner cavity. The sprayed cleaning water washes away the impurities and dust remaining in the inner cavity of the cabinet during processing. The insertion block is replaced with a wiping block. The operator pushes and pulls the cabinet horizontally, and the side end of the wiping block contacts the outer surface of the cabinet. During the contact process, the burrs remaining on the outer surface of the cabinet during processing can be wiped away. Before assembling the heat dissipation plate on the back of the cabinet, a stabilizing frame for some precision electrical components is placed into the cabinet from the rear. The precision electrical components can slide from the outside to the inside of the frame above the sliding block. The placement position of the overall device is limited by the limiting connecting plate, and the precision electrical components can be positioned in the cabinet after the limiting treatment.
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Description

Technical Field

[0001] This invention relates to the field of power distribution cabinet processing technology, and in particular to a power distribution cabinet assembly equipment. Background Technology

[0002] Distribution cabinets (boxes) are divided into power distribution cabinets (boxes), lighting distribution cabinets (boxes), and metering cabinets (boxes), and are the final-level equipment in a power distribution system. Distribution cabinets are a general term for motor control centers. Distribution cabinets are used in situations where the load is relatively dispersed and there are fewer circuits; motor control centers are used in situations where the load is concentrated and there are more circuits. Assembly equipment is an indispensable component in the manufacturing process of distribution cabinets.

[0003] Patent No. CN202120119012.1 discloses a power distribution cabinet assembly device, including an operating table. A circular base is provided on the lower side of the operating table, a fixed plate is provided on the upper right side of the operating table, a telescopic baffle is provided on the upper side of the operating table at the left end of the fixed plate, a set of square bases is provided on the left side of the circular base, a conveyor platform is provided on the upper side of the set of square bases, and an electric telescopic mechanism is provided on the lower side of the telescopic baffle at the inner side of the operating table. As a further embodiment of this utility model, a plurality of conveying rollers are provided on the upper side of the conveying platform, a first rotating disk is provided on the front side of the conveying rollers, and a second rotating disk is provided on the front side of the first rotating disk.

[0004] This patent solves the problem that existing power distribution cabinet assembly equipment often makes it difficult to move the power distribution cabinet, and because the power distribution cabinet is fixed in direction, the staff cannot assemble it from multiple directions on the operating table, which greatly increases the difficulty of the staff's work and results in low work efficiency; however, it cannot perform all-round processing of the cabinet body and cabinet door during the installation process. Summary of the Invention

[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a power distribution cabinet assembly device.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A power distribution cabinet assembly device includes a support unit and an auxiliary unit. The auxiliary unit is disposed through the inner cavity of the support unit. The support unit includes a support plate and a support frame installed on the side end face of the support plate. The auxiliary unit is disposed through the middle of the support frame.

[0008] The auxiliary unit includes two sets of processing mechanisms and a barrier plate connected between the two sets of processing mechanisms. The barrier plate is disposed in the inner cavity of the support frame.

[0009] Preferably, the processing mechanism includes an assembly plate and a first carrier mounted on the side end face of the assembly plate. A connecting block is provided at the other edge of the first carrier. Two sets of connecting blocks are connected by connecting plates. An auxiliary plate is installed between the opposing connecting plates. The connecting block on the side away from the assembly plate is connected to the second carrier. The assembly plate is inserted transversely from the outside to the inside into the inner cavity of the bottom slot, so that the outer end wall of the assembly plate fits against both sides of the inner cavity wall of the bottom slot, making the bearing unit and the auxiliary unit a whole. The opening of the spray block provided in the connecting block is placed opposite to the first carrier.

[0010] Preferably, the first carrier includes a first assembly bracket and an insert block disposed on the side end face of the first assembly bracket. The outer end face of the insert block has an edge groove in the middle. The inner wall of the edge groove is provided with a connecting pipe in the horizontal direction. The other end of the connecting pipe is equipped with a spray block. The spray block is located in the edge groove. The whole device is placed on the workbench with the support plate as the bottom and the support frame as the top. The assembled cabinet door is inserted horizontally into the inner cavity of the inner cavity with the cabinet door in the open state. At this time, the cabinet door is tilted against the inclined part of the first assembly bracket. The external water pipe passes through the inner cavity of the insert block, enters the spray block through the connecting pipe, and sprays out from its inner cavity. The sprayed cleaning water washes away the impurities and dust remaining in the inner cavity of the cabinet during processing, improving the practicality of the whole device.

[0011] Preferably, the second carrier includes a second assembly bracket, the side end face of which is provided with a series cavity, a sliding strip is connected through the middle of the series cavity, and a limit connecting plate is vertically provided at the bottom of the other end of the sliding strip. One end of the first assembly bracket and the second assembly bracket are inclinedly inserted into the inner cavity of the inner cavity, the connecting block and the connecting plate are inserted into the inner cavity of the frame, and the auxiliary plate is inserted laterally into the inner cavity of the frame, so that the first carrier and the plate are kept parallel. The interpenetrating block is replaced with an erasing block. The second carrier also includes an erasing block that is laterally installed on the side end face of the second assembly bracket. The erasing blocks that are arranged opposite each other do not contact each other. The block is replaced with an erasing block. The staff pushes and pulls the cabinet horizontally, and the side end of the erasing block contacts the outer surface of the cabinet. During the contact process, the burrs left on the outer surface of the cabinet during processing can be wiped off. The heat sink is then assembled on the back of the cabinet. Before the heat sink is installed, the stabilizing frame of some precision electrical components is placed into the cabinet from the rear. The precision electrical components can slide from the outside to the inside of the frame above the sliding block. The placement position of the overall device is limited by the limiting connecting plate. After the limiting treatment, the precision electrical components can be positioned in the cabinet, increasing the functional versatility of the overall device.

[0012] Preferably, the auxiliary plate includes a plate body and auxiliary base blocks arranged on both sides of the plate body. The auxiliary base blocks are components made of synthetic rubber. During the assembly of the distribution cabinet, the operator inserts the cabinet body into the inner cavity from top to bottom, so that the cabinet door mounting part fits against the side end face of the plate body. The cabinet body is slowly placed downward with the side end face of the auxiliary base block as the contact surface, so that the cabinet door mounting part moves along the surface of the barrier plate, so that the two ends of the cabinet body protrude from the outside of the barrier plate. The cabinet door to be installed is inserted into the inner cavity of the inner cavity from top to bottom with the other side of the auxiliary plate, so that the cabinet door fits against the other surface of the barrier plate and slides downward. A movable hinge is installed between the cabinet door and the cabinet body. This installation method can avoid the occurrence of misalignment between the installation positions of the components. The whole device is placed in reverse, and some small components are suspended on the upper end face of the auxiliary base block. The auxiliary base block supports the small components, and the supported small components can be dried in the whole device.

[0013] Preferably, the support frame includes a frame and bottom slots on both sides of the side end face of the frame. Both sides of the frame have through cavities, and an inner cavity is formed between the through cavities. An insertion slot is formed on the side end face of the frame. When assembling the partitions placed inside the cabinet, the operator removes the auxiliary unit from the support unit and arranges the partitions interlaced into the inner cavity of the frame. The inner cavity wall of the inner cavity clamps and positions the partitions, preventing connection deviations in precision electrical components during assembly. After placement, the precision electrical components on the partitions are directly moved into the assembled distribution cabinet, improving the overall practicality of the device.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] 1. Insert the cabinet door to be installed from top to bottom into the inner cavity of the inner opening with the other side of the auxiliary plate, so that the cabinet door slides down against the other surface of the partition plate. A movable hinge is installed between the cabinet door and the cabinet body. This installation method can avoid the occurrence of misalignment between the installation positions of the components.

[0016] 2. The cabinet door is tilted against the tilt of the first assembly bracket. The external water pipe passes through the inner cavity of the insertion block, enters the spray block through the connecting pipe, and is sprayed out from its inner cavity. The sprayed cleaning water washes away the impurities and dust left in the inner cavity of the cabinet during processing, improving the practicality of the overall device.

[0017] 3. Replace the interlocking block with the erasing block. When the staff pushes and pulls the cabinet horizontally, the side end of the erasing block contacts the outer surface of the cabinet. During the contact process, the burrs left on the outer surface of the cabinet during the processing can be wiped away.

[0018] 4. Assemble the heat dissipation plate on the back of the cabinet. Before installing the heat dissipation plate, place the stabilizing frame of some precision electrical components into the cabinet from the rear. The precision electrical components can slide from the outside to the inside of the frame above the sliding block. The placement position of the overall device is limited by the limiting connecting plate. After the limiting treatment, the precision electrical components can be positioned in the cabinet, which increases the functional diversity of the overall device.

[0019] 5. Reverse the entire device and suspend some small components on the upper surface of the auxiliary base block. The auxiliary base block supports the small components, which can then be dried within the entire device.

[0020] 6. When assembling the partitions placed inside the cabinet, the staff takes out the auxiliary unit from the supporting unit and arranges the partitions in an interlaced manner into the inner cavity of the frame. The partitions are clamped and positioned by the inner cavity wall with its opening, which can avoid connection deviations of precision electrical components during assembly. After the precision electrical components on the partitions are placed, they can be directly moved to the assembled distribution cabinet, improving the practicality of the overall device. Attached Figure Description

[0021] Figure 1 This is a three-dimensional structural diagram of a power distribution cabinet assembly device proposed in this invention;

[0022] Figure 2 This is a schematic diagram of the load-bearing frame structure of a power distribution cabinet assembly device proposed in this invention;

[0023] Figure 3 This is a schematic diagram of the auxiliary unit structure of a power distribution cabinet assembly equipment proposed in this invention;

[0024] Figure 4 This is a schematic diagram of the processing mechanism structure of a power distribution cabinet assembly equipment proposed in this invention;

[0025] Figure 5 This is a schematic diagram of the first carrier structure of a power distribution cabinet assembly device proposed in this invention;

[0026] Figure 6 This is a schematic diagram of the second carrier structure of a power distribution cabinet assembly device proposed in this invention;

[0027] Figure 7This is a schematic diagram of the auxiliary plate structure of a power distribution cabinet assembly device proposed in this invention. In the figure: 1. Bearing unit; 11. Bearing plate; 12. Bearing frame; 121. Frame; 122. Bottom slot; 123. Penetrating cavity; 124. Internal cavity; 125. Insertion slot; 2. Auxiliary unit; 21. Processing mechanism; 211. Assembly plate; 212. First carrier; 2121. First assembly bracket; 2122. Insertion block; 2123. Edge slot; 2124. Connecting pipe; 2125. Spraying block; 213. Connecting block; 214. Connecting plate; 215. Auxiliary plate; 2151. Plate body; 2152. Auxiliary base block; 216. Second carrier; 2161. Second assembly bracket; 2162. Erasing block; 2163. Series cavity; 2164. Sliding strip; 2165. Limiting connection plate; 22. Barrier plate. Detailed Implementation

[0028] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0029] Reference Figures 1-7 A power distribution cabinet assembly device includes a support unit 1 and an auxiliary unit 2. The auxiliary unit 2 is disposed through the inner cavity of the support unit 1. The support unit 1 includes a support plate 11 and a support frame 12 installed on the side end face of the support plate 11. The auxiliary unit 2 is disposed through the middle of the support frame 12.

[0030] The auxiliary unit 2 includes two sets of processing mechanisms 21 and a barrier plate 22 connected between the two sets of processing mechanisms 21. The barrier plate 22 is disposed in the inner cavity of the support frame 12.

[0031] Example 1

[0032] The processing mechanism 21 includes an assembly plate 211 and a first carrier 212 installed on the side end face of the assembly plate 211. A connecting block 213 is provided at the other edge of the first carrier 212. Two sets of connecting blocks 213 are connected by connecting plates 214. An auxiliary plate 215 is installed between the opposite connecting plates 214. The connecting block 213 on the side away from the assembly plate 211 is connected to the second carrier 216. The assembly plate 211 is inserted transversely from the outside to the inside into the inner cavity of the bottom slot 122, so that the outer end wall of the assembly plate 211 is attached to both sides of the inner cavity wall of the bottom slot 122, so that the bearing unit 1 and the auxiliary unit 2 become a whole. The first carrier 212 is placed opposite to the opening of the spray block 2125 provided in the connecting block 213.

[0033] Example 2

[0034] The first carrier 212 includes a first assembly bracket 2121 and an insert block 2122 disposed on the side end face of the first assembly bracket 2121. An edge groove 2123 is provided in the middle of the outer end face of the insert block 2122. A connecting pipe 2124 is arranged horizontally on the inner wall of the edge groove 2123. A spray block 2125 is installed at the other end of the connecting pipe 2124. The spray block 2125 is located in the edge groove 2123. The entire device is placed on the workbench with the support plate 11 as the bottom and the support frame 12 as the top. The cabinet door of the assembled cabinet is inserted horizontally into the inner cavity of the inner cavity 124 in the open state. At this time, the cabinet door is tilted against the inclined part of the first assembly bracket 2121. An external water pipe passes through the inner cavity of the insert block 2122, enters the spray block 2125 through the connecting pipe 2124, and sprays out from its inner cavity. The sprayed cleaning water washes away the impurities and dust remaining in the inner cavity of the cabinet during processing, improving the practicality of the entire device.

[0035] Example 3

[0036] The second carrier 216 includes a second assembly bracket 2161. A series cavity 2163 is provided on the side end face of the second assembly bracket 2161. A sliding block 2164 is connected through the middle of the series cavity 2163. A limit connecting plate 2165 is vertically provided at the bottom of the other end of the sliding block 2164. One end of the first assembly bracket 2121 and the second assembly bracket 2161 are inclinedly inserted into the inner cavity of the inner cavity 124. The connecting block 213 and the connecting plate 214 are inserted into the inner cavity of the frame 121. The auxiliary plate 215 is inserted laterally into the inner cavity of the frame 121, keeping the first carrier 212 and the plate 2151 parallel.

[0037] Example 4

[0038] Unlike embodiment 3, the insertion block 2122 is replaced with the erasing block 2162. The second carrier 216 also includes the erasing block 2162 horizontally installed on the side end face of the second assembly bracket 2161. The erasing blocks 2162 arranged opposite each other do not contact each other. When the insertion block 2122 is replaced with the erasing block 2162, the staff pushes and pulls the cabinet horizontally. The side end face of the erasing block 2162 contacts the outer surface of the cabinet. During the contact process, the burrs left on the outer surface of the cabinet during the processing can be wiped off. The heat sink is assembled on the back of the cabinet. Before the heat sink is installed, the stabilizer of some precision electrical components is placed into the cabinet from the rear. The precision electrical components can slide from the outside to the inside of the frame 121 above the sliding bar 2164. The placement position of the overall device is limited by the limiting connecting plate 2165. After the limiting treatment, the precision electrical components can be positioned in the cabinet, which increases the functional diversity of the overall device.

[0039] Example 5

[0040] The auxiliary plate 215 includes a plate body 2151 and auxiliary base blocks 2152 arranged on both sides of the plate body 2151. The auxiliary base blocks 2152 are components made of synthetic rubber. During the assembly of the distribution cabinet, the operator inserts the cabinet body into the inner cavity 124 from top to bottom, so that the cabinet door mounting part is attached to the side end face of the plate body 2151. The cabinet body is then slowly placed downward with the side end face of the auxiliary base blocks 2152 as the contact surface, so that the cabinet door mounting part moves along the surface of the barrier plate 22, making both ends of the cabinet protrude. On the outside of the partition plate 22, the cabinet door to be installed is inserted from top to bottom into the inner cavity of the inner cavity 124 on the other side of the auxiliary plate 215, so that the cabinet door slides down against the other surface of the partition plate 22. A movable hinge is installed between the cabinet door and the cabinet body. This installation method can avoid the occurrence of misalignment between the installation positions of the components. The whole device is placed in reverse, and some small components are suspended on the upper surface of the auxiliary base block 2152. The auxiliary base block 2152 supports the small components, and the supported small components can be dried in the whole device.

[0041] Example 6

[0042] The support frame 12 includes a frame 121 and bottom slots 122 located on both sides of the side end face of the frame 121. Both sides of the frame 121 have through cavities 123, and an inner cavity 124 is formed between the through cavities 123. An insertion slot 125 is formed on the side end face of the frame 121. When the staff needs to assemble the partitions placed into the cabinet, after taking out the auxiliary unit 2 from the support unit 1, the partitions are arranged and inserted into the inner cavity of the frame 121. The partitions are clamped and positioned by the inner cavity wall of the inner cavity 124, which can avoid the connection deviation of precision electrical components during the assembly process. After the precision electrical components on the partitions are placed, they can be directly moved into the assembled distribution cabinet, which improves the practicality of the overall device.

[0043] In summary: A distribution cabinet assembly device includes a support unit 1 and an auxiliary unit 2. The auxiliary unit 2 is provided through the inner cavity of the support unit 1. The support unit 1 includes a support plate 11 and a support frame 12 installed on the side end face of the support plate 11. The auxiliary unit 2 is inserted through the middle of the support frame 12. During the assembly of the distribution cabinet, the operator inserts the cabinet body into the inner cavity 124 from top to bottom, so that the cabinet door mounting part is attached to the side end face of the plate 2151. The cabinet body is slowly placed downward with the side end face of the auxiliary base block 2152 as the contact surface, so that the cabinet door mounting part moves along the surface of the barrier plate 22, so that the two ends of the cabinet body protrude from the outside of the barrier plate 22. The cabinet door to be installed is inserted into the inner cavity 124 from top to bottom with the other side of the auxiliary plate 215, so that the cabinet door is attached to the other surface of the barrier plate 22 and slides downward. A movable hinge is installed between the cabinet door and the cabinet body. This installation method can avoid the occurrence of misalignment between the installation positions of the components.

[0044] The entire device is placed on the workbench with the support plate 11 as the bottom and the support frame 12 as the top. The cabinet door of the assembled cabinet is inserted horizontally into the inner cavity of the inner cavity 124 with the cabinet door in the open state. At this time, the cabinet door is tilted against the inclined part of the first assembly bracket 2121. The external water pipe passes through the inner cavity of the insertion block 2122, enters the spray block 2125 through the connecting pipe 2124, and is sprayed out from its inner cavity. The sprayed cleaning water washes away the impurities and dust left in the inner cavity of the cabinet during processing, which improves the practicality of the entire device.

[0045] Replace the interlocking block 2122 with the erasing block 2162. When the staff pushes and pulls the cabinet horizontally, the side end of the erasing block 2162 contacts the outer surface of the cabinet. During the contact process, the burrs left on the outer surface of the cabinet during the processing can be wiped away.

[0046] Assemble a heat dissipation plate on the back of the cabinet. Before installing the heat dissipation plate, place the stabilizer of some precision electrical components into the cabinet from the back. The precision electrical components can slide from the outside to the inside of the frame 121 above the sliding bar 2164. The placement position of the overall device is limited by the limiting connection plate 2165. After the limiting treatment, the precision electrical components can be positioned in the cabinet, which increases the functional diversity of the overall device.

[0047] The whole device is placed upside down, and some small components are suspended on the upper surface of the auxiliary base block 2152. The auxiliary base block 2152 supports the small components, and the supported small components can be dried in the whole device.

[0048] When assembling the partitions placed inside the cabinet, the staff takes out the auxiliary unit 2 from the bearing unit 1 and arranges the partitions in an interlaced manner into the inner cavity of the frame 121. The partitions are clamped and positioned by the inner cavity wall of the inner cavity 124, which can avoid connection deviations of precision electrical components during the assembly process. After the precision electrical components on the partitions are placed, they can be directly moved to the assembled distribution cabinet, improving the practicality of the overall device.

[0049] The above describes the entire working principle of this invention.

[0050] In this invention, the installation, connection, or setting methods of all the above components are common mechanical methods, and the specific structure, model, and coefficient indicators of all components are their own technologies. As long as they can achieve their beneficial effects, they can be implemented, so they will not be described in detail.

[0051] The above embodiments are preferred embodiments of the present invention, but the embodiments of the present invention are not limited to the above embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of the present invention shall be considered equivalent substitutions and shall be included within the protection scope of the present invention.

[0052] In this invention, unless otherwise stated, directional terms such as "up, down, left, right, front, back, inside, outside, and vertical and horizontal" in the terminology only represent the orientation of the term in its conventional use or are common terms understood by those skilled in the art, and should not be regarded as limitations on the term. At the same time, numerals such as "first," "second," and "third" do not represent specific quantities or orders, but are merely used to distinguish names. Moreover, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

Claims

1. A distribution cabinet assembly device, comprising a support unit (1) and an auxiliary unit (2), wherein the auxiliary unit (2) is disposed through the inner cavity of the support unit (1), characterized in that, The bearing unit (1) includes a bearing plate (11) and a bearing frame (12) installed on the side end face of the bearing plate (11). An auxiliary unit (2) is interspersed in the middle of the bearing frame (12). The auxiliary unit (2) includes two sets of processing mechanisms (21) and a barrier plate (22) connected between the two sets of processing mechanisms (21). The barrier plate (22) is disposed in the inner cavity of the support frame (12). The processing mechanism (21) includes an assembly plate (211) and a first carrier (212) installed on the side end face of the assembly plate (211). A connecting block (213) is provided at the other edge of the first carrier (212). Two sets of connecting blocks (213) are connected by connecting plates (214). An auxiliary plate (215) is installed between the opposite connecting plates (214). The connecting block (213) on the side away from the assembly plate (211) is connected to the second carrier (216). The first carrier (212) includes a first assembly bracket (2121) and an insert block (2122) disposed on the side end face of the first assembly bracket (2121). An edge slot (2123) is provided in the middle of the outer end face of the insert block (2122). A connecting pipe (2124) is provided laterally on the inner wall of the edge slot (2123). A spray block (2125) is installed at the other end of the connecting pipe (2124). The spray block (2125) is located in the middle of the edge slot (2123). The second carrier (216) includes a second assembly bracket (2161), and a series cavity (2163) is provided on the side end face of the second assembly bracket (2161). A sliding strip (2164) is connected through the middle of the series cavity (2163), and a limit connecting plate (2165) is vertically provided at the bottom of the other end of the sliding strip (2164). The auxiliary plate (215) includes a plate body (2151) and auxiliary base blocks (2152) arranged and laid on both sides of the plate body (2151). The auxiliary base blocks (2152) are components made of synthetic rubber. The support frame (12) includes a frame (121) and bottom slots (122) provided on both sides of the side end face of the frame (121). Both sides of the frame (121) are provided with through cavities (123), and an inner cavity (124) is provided between the through cavities (123). An insertion slot (125) is provided on the side end face of the frame (121). The second carrier (216) also includes an erasing block (2162) that is horizontally mounted on the side end face of the second assembly bracket (2161), and the erasing blocks (2162) arranged opposite each other do not contact each other; One end of the first assembly bracket (2121) and the second assembly bracket (2161) are inserted obliquely into the inner cavity of the inner cavity (124), the connecting block (213) and the connecting plate (214) are inserted into the inner cavity of the frame (121), and the auxiliary plate (215) is inserted laterally into the inner cavity of the frame (121), so that the first carrier (212) and the plate (2151) remain parallel.

2. The distribution cabinet assembly equipment according to claim 1, characterized in that, The assembly plate (211) is inserted transversely from the outside to the inside into the inner cavity of the bottom slot (122), so that the outer end wall of the assembly plate (211) fits against both sides of the inner cavity wall of the bottom slot (122), making the bearing unit (1) and the auxiliary unit (2) a whole.

3. The distribution cabinet assembly equipment according to claim 1, characterized in that, The first carrier (212) is placed opposite to the opening of the spray block (2125) provided in the connecting block (213).

Citation Information

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