Auxiliary installation equipment and process for industrial electrical power distribution cabinet

By introducing tightening units, connecting units and upper tightening mechanisms into the auxiliary installation equipment of industrial electrical distribution cabinets, the problems of complex installation and cumbersome disassembly of existing equipment are solved, and the rapid and stable installation of distribution cabinets is achieved, and the use efficiency is improved.

CN119994696AInactive Publication Date: 2025-05-13YANCHENG LINGGUANG INTELLIGENT TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510332882.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing industrial electrical distribution cabinet auxiliary installation equipment is complex in installation and operation and cumbersome in disassembly, resulting in wasting time and energy for workers and low use efficiency.

Method used

An auxiliary installation process and equipment are adopted to achieve stable installation of the main body of the distribution cabinet by setting up a tightening unit, a connecting unit and an upper compression mechanism. The tightening unit drives the reel rod to rotate by rotating the reel rod, causing the clamp column reel belt to wind, and the sliding rod slides in the limit slide chute, and the multiple tightening rings press close to the outer surface of the main body of the distribution cabinet to complete the bottom tightening installation. The connecting unit contacts the wedge surface of the extended wedge block through the tensioning plate, extrudes the moving plate, thereby improving the connection stability between the steel, the connecting stage and the main body of the distribution cabinet. The upper compression mechanism realizes the connection and fixing of the middle and upper part of the distribution cabinet body through the cooperation of the push rod and the anti-slip plate.

Benefits of technology

It simplifies the installation process of the distribution cabinet, reduces the complexity and time consumption of manual operation, improves installation efficiency and stability, and makes the use of auxiliary installation equipment more convenient.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119994696A_ABST
    Figure CN119994696A_ABST
Patent Text Reader

Abstract

The invention discloses auxiliary installation equipment and technology for an industrial electrical power distribution cabinet, and relates to the technical field of power distribution cabinet installation, and the technology comprises the following steps: S1, foundation installation: arranging profile steel on a junction board of the ground of a power distribution room; s2, pre-installation: after the basic profile steel is arranged on the ground of the power distribution room, the power distribution cabinet main body is pre-arranged on the profile steel for pre-installation; s3, base tightening installation: connecting the power distribution cabinet main body to the profile steel and the connecting table through a tightening piece; s4, the cabinet body is reinforced and matched with base tightening installation, stable installation of the power distribution cabinet body is achieved, by arranging a tightening unit, the power distribution cabinet body can be conveniently installed on the profile steel, manual installation and connection of the power distribution cabinet body through a plurality of bolts are not needed, and the installation efficiency is improved. The waste of time and energy of workers due to the tedious installation mode of the power distribution cabinet main body is reduced, the efficiency of installing the industrial electrical power distribution cabinet by using the equipment is improved, and the equipment is more convenient to use.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of power distribution cabinet installation, and in particular to auxiliary installation equipment and technology for industrial electrical power distribution cabinets. Background Art

[0002] The power distribution cabinet is a general term for the motor control center and is also the final equipment of the power distribution system. As an indispensable power distribution auxiliary equipment for automated production, the importance of the power distribution cabinet is self-evident. In some projects, the stably installed power distribution cabinet protects the electrical appliances inside it. At this time, it is necessary to use auxiliary installation equipment to assist in the installation of industrial electrical distribution cabinets.

[0003] When using the existing auxiliary installation equipment for industrial electrical distribution cabinets, generally a plurality of sets of bolts are used to install the basic steel on the ground of the distribution room. The industrial electrical distribution cabinet is installed on the basic steel by a plurality of bolts, so that the industrial electrical distribution cabinet can be stably installed in the distribution room. The method of connecting by a plurality of bolts and screw holes is relatively cumbersome to disassemble and assemble, and it is necessary to connect the auxiliary installation equipment to the distribution room and to connect the auxiliary installation equipment to the industrial electrical distribution cabinet in turn. The installation operation is relatively complicated, which makes it more troublesome to disassemble the industrial electrical distribution cabinet, wastes the time and energy of workers, reduces the efficiency of using the auxiliary installation equipment to assist in the installation of the industrial electrical distribution cabinet, and makes the use of the auxiliary installation equipment inconvenient.

[0004] Combining the above problems, we will find that it is difficult for the existing industrial electrical distribution cabinet auxiliary installation equipment to avoid the above problems at the same time, and even if it can be solved, it needs to be solved through the cooperation of external tools, which cannot achieve the desired effect. Therefore, we propose an industrial electrical distribution cabinet auxiliary installation equipment and process that can avoid the above problems. Summary of the invention

[0005] The purpose of the present invention is to provide an auxiliary installation process for an industrial electrical distribution cabinet to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an auxiliary installation process for industrial electrical distribution cabinets, comprising the following steps: S1: foundation installation, setting the steel section on the connecting platform on the floor of the distribution room; S2: pre-installation, after setting the steel section on the connecting platform on the floor of the distribution room, pre-installing the distribution cabinet body on the steel section; S3: tightening installation of the base, connecting the distribution cabinet body to the steel section and the connecting platform through tightening parts; S4: cabinet body reinforcement, cooperating with the tightening installation of the base to achieve stable installation of the distribution cabinet body.

[0007] Another object of the present invention is to provide an auxiliary installation device compatible with the present process. In S3, a tightening unit is provided to complete the tightening and installation process of the bottom of the distribution cabinet body. The tightening unit is easy to operate and can tighten and connect distribution cabinet bodies of different sizes. By controlling the power supply of the rotating winding motor, the rotating winding motor can be used to drive the winding rod to rotate, so that the winding belt of the clamping column is wound to the outside of the winding rod, and the sliding rod is made to slide in the limiting slide groove. At the same time, multiple tightening rings are squeezed close to the outer surface of the distribution cabinet body, so that the distribution cabinet body is conveniently installed on the steel section, reducing the time and energy wasted on workers due to the cumbersome installation method of the distribution cabinet body. Energy, by setting a connecting unit to complete the installation process of the distribution cabinet body to the steel section and the connecting platform, the connecting unit has the function of stabilizing the auxiliary connection, by utilizing the limiting connecting rod to slide in the tightening groove opened on the connecting platform, the tightening plate movably hinged to the limiting connecting rod will slide along the extended wedge block fixed on the inner wall of the connecting extension groove, because the extended wedge block has an inclined wedge surface, and the tightening plate is pulled along the wedge surface of the extended wedge block to slide, the tightening plate will be rotated along the hinge axis with the limiting connecting rod and extend downward, thereby stretching the tightening spring to accumulate elastic force, and increasing the extrusion force of the movable plate on the steel section, thereby improving the connection stability between the steel section, the connecting platform and the distribution cabinet body.

[0008] Preferably, an upper clamping mechanism is provided to complete the stable installation of the distribution cabinet body, and two sets of push rods are fixed on one side of the four tightening rings. Since one end of the push rod is fixed to the support frame, the support frame can slide on the fixed limit strip on the extended connecting plate through the sliding of the support frame, and a pushing cross plate is fixed on one side of the two support frames. The anti-slip plate is driven close to one side of the distribution cabinet body through the movement of the push rod, so that the compression spring between the pushing cross plate and the anti-slip plate is compressed to make the anti-slip surfaces of the two anti-slip plates stably contact the two sides of the distribution cabinet body, thereby being able to connect and fix the upper and middle parts of the distribution cabinet body.

[0009] Preferably, it comprises a mounting mechanism, the mounting mechanism comprises a steel section, the front and back sides of the steel section are fixedly connected with an extended connecting plate, the upper surface of the steel section is provided with a connecting groove, the lower side of the steel section is provided with a connecting platform, the surface of the steel section is provided with a power distribution cabinet body, and the outer side and lower side of the power distribution cabinet body are jointly provided with a tightening connection mechanism;

[0010] The tightening connection mechanism includes a tightening unit, which is located outside the power distribution cabinet body and is used to tighten the lower bottom of the power distribution cabinet body;

[0011] The tightening connection mechanism also includes a connection unit, which is located below the power distribution cabinet body and is used in conjunction with the tightening unit. The connection unit is used to install the power distribution cabinet body onto the steel section and the connection platform.

[0012] The front and back sides of the tightening unit are jointly provided with an upper clamping mechanism, and the upper clamping mechanism is used in conjunction with a tightening connection mechanism, and the upper clamping mechanism is used to perform a clamping connection on the upper part of the power distribution cabinet body.

[0013] Preferably, the tightening unit includes four limit columns, the bottom end of each limit column is fixedly connected to the upper surface of the steel section, four limit holes are opened on the bottom surface of the distribution cabinet body, the four limit columns are respectively clamped in the inside of the four limit holes, the outer surface of the distribution cabinet body is respectively fixedly connected with a lower retaining ring and an upper retaining ring, and the outside of the distribution cabinet body is provided with tightening rings arranged at equal distances, the upper surface and bottom surface of each tightening ring are respectively in contact with the bottom surface of the upper retaining ring and the upper surface of the lower retaining ring, and a tightening band is slidably connected to the inside of several tightening rings, and the inner wall of the tightening band is in contact with the outer surface of the distribution cabinet body, wherein the side surfaces of two tightening rings close to each other are fixedly connected with the limit plates, and the front sides of the two limit plates are in contact with the outer surface of the tightening band.

[0014] Preferably, the bottom surface of each tightening ring is fixedly connected to a sliding rod, the upper surface of the steel section is provided with limit slide grooves arranged at equal distances, and several of the sliding rods are slidably connected to the inside of several limit slide grooves, respectively, the bottom end of each sliding rod is fixedly connected to a limit connecting rod, each of the limit connecting rods is slidably connected to the inside of a connecting platform, the outer surface of each limit connecting rod is fixedly connected to a tension spring, the ends of several tension springs away from each other are fixedly connected to a connecting disk, the outer surface of each connecting disk is fixedly connected to the inner wall of the connecting platform, the outer surface of each tension spring is sleeved with a stabilizing cylinder, and the side surfaces of several stabilizing cylinders close to each other are respectively fixedly connected to the outer surfaces of several limit connecting rods.

[0015] Preferably, the ends of the tightening belts that are close to each other are fixedly connected to the winding belts, and the side surfaces of the two winding belts that are close to each other are provided with equidistantly arranged clamping grooves, the upper surface of one of the extended connecting plates is fixedly connected to a rotating winding motor, the outer surface of the rotating winding motor is fixedly connected to a stabilizing ring, the bottom surface of the stabilizing ring is fixedly connected to the upper surface of the extended connecting plate, the output end of the rotating winding motor is fixedly connected to a winding rod, the two winding belts are both sleeved on the outer surface of the winding rod, the outer surface of the winding rod is fixedly connected to equidistantly arranged clamping columns, several of the clamping columns are respectively clamped in several clamping grooves, the outer surface and the top end of the winding rod are fixedly connected to a limiting baffle, and the side surfaces of the two limiting baffles that are close to each other are in contact with the upper surface and bottom surface of the two winding belts respectively.

[0016] Preferably, the outer surfaces of the two winding belts are jointly sleeved with a limit cylinder, the back sides of the two limit plates are in contact with the front sides of the limit cylinder, the bottom surface of the limit cylinder is fixedly connected with a connecting frame, the upper surface of the steel section is provided with a connecting groove, and the connecting frame is slidably connected to the inside of the connecting groove.

[0017] Preferably, the outer surface of the connecting frame is fixedly connected to a connecting slide, the bottom surface of the connecting slide is in contact with the upper surface of the steel section, the upper surface of the connecting slide is fixedly connected to two threaded barrels, the interiors of the two threaded barrels are threadedly connected with positioning bolts, and the bottom ends of the two positioning bolts pass through the threaded barrel and the connecting slide in sequence and are in contact with the surface of the steel section.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] 1. The present invention can tighten the bottom of the distribution cabinet body by setting a tightening unit, so that the distribution cabinet body can be installed on the steel section conveniently without the need to manually install and connect the distribution cabinet body through multiple bolts, thereby reducing the waste of workers' time and energy due to the cumbersome installation of the distribution cabinet body, thereby improving the efficiency of using auxiliary installation equipment to assist in the installation of the industrial electrical distribution cabinet, and making the use of auxiliary installation equipment more convenient.

[0020] 2. The present invention provides a connecting unit, which can make the tensioning plate contact and squeeze the wedge surface of the extended wedge block. Since the tensioning plate is hinged with the limit connecting rod, the tensioning spring will be stretched and accumulate elastic force as the downward angle between the tensioning plate and the extended wedge block increases, so that the squeezing force between the movable plate and the upper surface of the steel section can be made greater and greater, and the connection between the connecting platform, the distribution cabinet body and the steel section can be made more stable. The distribution cabinet body can be stably connected only by driving the rotating winding motor, further reducing the time and energy of workers wasted due to the complicated installation method of the distribution cabinet body, and thus the auxiliary installation equipment can be conveniently used to assist in the installation of the industrial electrical distribution cabinet.

[0021] 3. The present invention provides an upper clamping mechanism, which can make the connection between the bottom of the distribution cabinet body and the connecting platform and the steel section more stable through the cooperation of the tightening unit and the connecting unit, and the support frame is driven to move by the pushing rod connected to the tightening ring for sliding, so that the anti-skid plate can contact the middle and upper outer surface of the distribution cabinet body, and continue to use the pushing cross plate to squeeze the compression spring, and make the pushing slider slide in the inverted T-shaped slide groove, so that the middle and upper part of the distribution cabinet body can be connected and fixed, thereby improving the connection stability of the distribution cabinet body, thereby further improving the efficiency of using auxiliary installation equipment to assist in the installation of the industrial electrical distribution cabinet, and further facilitating the use of the auxiliary installation equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 It is a structural schematic diagram of the connection platform of the present invention;

[0024] Figure 3 It is a structural schematic diagram of the present invention;

[0025] Figure 4 It is a cross-sectional structural schematic diagram of the connecting platform of the present invention;

[0026] Figure 5 It is a structural schematic diagram of the steel section of the present invention;

[0027] Figure 6 It is a bottom view structural schematic diagram of the steel section of the present invention;

[0028] Figure 7 It is a schematic cross-sectional structure diagram of the limit baffle of the present invention;

[0029] Figure 8 It is a bottom view structural diagram of the power distribution cabinet main body of the present invention;

[0030] Fig. 9 It is a structural schematic diagram of the tightening belt of the present invention;

[0031] Fig.10 It is a schematic diagram of the enlarged structure of A of the present invention;

[0032] Fig.11 It is a structural schematic diagram of the limiting cylinder of the present invention;

[0033] Fig.12 It is a structural schematic diagram of the support frame of the present invention;

[0034] Fig.13 The present invention is a flow chart of an auxiliary installation method for an industrial electrical distribution cabinet.

[0035] In the figure: 1. installation mechanism; 11. steel; 12. connection platform; 13. distribution cabinet body; 14. connecting slot; 15. extension connection plate; 2. tightening connection mechanism; 21. tightening unit; 2101. clamping column; 2102. stabilizing cylinder; 2103. tension spring; 2104. sliding rod; 2105. connection plate; 2106. winding rod; 2107. limit baffle; 2108 , limit slide; 2109, limit column; 2110, limit hole; 2111, lower enclosure ring; 2112, upper enclosure ring; 2113, tightening ring; 2114, tightening belt; 2115, winding belt; 2116, clamping groove; 2117, limit plate; 2118, rotating winding motor; 2119, stabilizing ring; 2120, limit connecting rod; 2121, connecting slide; 2122 , limiting cylinder; 2123, connecting frame; 2124, connecting slide; 2125, threaded cylinder; 2126, positioning bolt; 22, connecting unit; 2201, moving plate; 2202, tensioning spring; 2203, tensioning plate; 2204, connecting extension groove; 2205, extending wedge block; 2206, tensioning groove; 2207, mounting groove; 2208, connecting hole; 2209, auxiliary hole; 2210, connecting column; 2211, auxiliary ring; 2212, moving slide; 3, upper clamping mechanism; 301, limiting strip; 302, positioning strip; 303, inverted T-shaped slide; 304, supporting frame; 305, pushing slide; 306, first reinforcing rod; 307, second reinforcing rod; 308, pushing cross plate; 309, compression spring; 310, anti-slide plate; 311, pushing rod. DETAILED DESCRIPTION

[0036] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0037] Example 1: Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Fig. 9 , Fig.10 , Fig.12 and Fig.13 ,

[0038] The present invention provides a technical solution comprising the following steps:

[0039] S1: Foundation installation, setting the steel 11 on the connection platform 12 on the ground of the power distribution room;

[0040] S2: Pre-installation, after the steel section 11 is set on the connection platform 12 on the floor of the power distribution room, the power distribution cabinet body 13 is pre-installed on the steel section 11;

[0041] S3: tighten the base and install it, connect the power distribution cabinet body 13 to the steel section 11 and the connecting platform 12 through the tightening parts;

[0042] S4: The cabinet body is reinforced, and the base is tightened and installed to achieve stable installation of the distribution cabinet body 13.

[0043] Among them, a tightening unit 21 is set to complete the tightening and installation process of the bottom of the distribution cabinet body 13. The tightening unit 21 is easy to operate and can tighten the connection of distribution cabinet bodies 13 of different sizes. By controlling the power supply of the rotating winding motor 2118, the rotating winding motor 2118 can be used to drive the winding rod 2106 to rotate, so that the clamping column winding belt 2115 is wound to the outside of the winding rod 2106, and the sliding rod 2104 slides in the limiting slide groove 2108. At the same time, multiple tightening rings 2113 are squeezed close to the outer surface of the distribution cabinet body 13, which facilitates the installation of the distribution cabinet body 13 on the steel section 11, reducing the time and energy of workers wasted due to the cumbersome installation method of the distribution cabinet body 13. By setting the connection unit 22, the installation of the distribution cabinet body 13 to During the installation process on the steel section 11 and the connecting platform 12, the connecting unit 22 has the function of stabilizing the auxiliary connection. By using the limit connecting rod 2120 to slide in the tensioning groove 2206 opened on the connecting platform 12, the tensioning plate 2203 that is movably hinged with the limit connecting rod 2120 will slide along the extended wedge block 2205 fixed on the inner wall of the connecting extension groove 2204. Since the extended wedge block 2205 has an inclined wedge surface, the tensioning plate 2203 slides along the wedge surface of the extended wedge block 2205, and the tensioning plate 2203 is rotated along the hinge axis with the limit connecting rod 2120 and extends downward, so that the tensioning spring 2202 is stretched and accumulates elastic force, and the extrusion force of the movable plate 2201 on the steel section 11 is increased, thereby improving the connection stability between the steel section 11, the connecting platform 12 and the distribution cabinet body 13;

[0044] In this embodiment, an upper clamping mechanism 3 is provided to complete the stable installation of the power distribution cabinet body 13, and two sets of push rods 311 are fixed on one side of the four tightening rings 2113. Since one end of the push rod 311 is fixed to the support frame 304, the support frame 304 can slide on the fixed limit strip 301 on the extended connecting plate 15, and the push cross plate 308 is fixed on one side of the two support frames 304. The anti-slip plate 310 is driven to approach one side of the power distribution cabinet body 13 by the movement of the push rod 311, so that the anti-slip surface of the two anti-slip plates 310 is stably in contact with the two sides of the power distribution cabinet body 13 by the compression spring 309 between the push cross plate 308 and the anti-slip plate 310, so that the middle and upper parts of the power distribution cabinet body 13 can be connected and fixed;

[0045] The auxiliary installation device comprises an installation mechanism 1, which comprises a steel section 11, the front and back sides of which are fixedly connected with an extended connection plate 15, the upper surface of the steel section 11 is provided with a connecting groove 14, the lower side of the steel section 11 is provided with a connection platform 12, the surface of the steel section 11 is provided with a power distribution cabinet body 13, and the outer side and lower side of the power distribution cabinet body 13 are provided with a tightening connection mechanism 2;

[0046] The tightening connection mechanism 2 includes a tightening unit 21 . The tightening unit 21 is located outside the power distribution cabinet body 13 . The tightening unit 21 is used to tighten the lower bottom of the power distribution cabinet body 13 .

[0047] As a further limitation of the tightening connection mechanism 2 of the present invention, the tightening unit 21 includes four limit columns 2109, the bottom end of each limit column 2109 is fixedly connected to the upper surface of the steel section 11, and four limit holes 2110 are opened on the bottom surface of the distribution cabinet body 13. The four limit columns 2109 are respectively clamped in the inside of the four limit holes 2110, and the outer surface of the distribution cabinet body 13 is respectively fixedly connected with a lower enclosure ring 2111 and an upper enclosure ring 2112, and the outside of the distribution cabinet body 13 is provided with tightening rings 2113 arranged at equal distances, and the upper surface and bottom surface of each tightening ring 2113 are respectively in contact with the bottom surface of the upper enclosure ring 2112 and the upper surface of the lower enclosure ring 2111, and the interiors of several tightening rings 2113 are slidably connected together. The tightening belt 2114, the inner wall of the tightening belt 2114 is in contact with the outer surface of the distribution cabinet body 13, the bottom surface of each tightening ring 2113 is fixedly connected to the sliding rod 2104, the upper surface of the steel section 11 is provided with equidistantly arranged limiting slide grooves 2108, and several sliding rods 2104 are slidably connected to the inside of several limiting slide grooves 2108, and the bottom end of each sliding rod 2104 is fixedly connected to the limiting connecting rod 2120, and each limiting connecting rod 2120 is slidably connected to the inside of the connecting platform 12, and the outer surface of each limiting connecting rod 2120 is fixedly connected to the tension spring 2103, and the ends of the several tension springs 2103 away from each other are fixedly connected to the connecting disk 2105, and each connecting disk 2105 The outer surfaces are fixedly connected to the inner wall of the connecting platform 12, the outer surface of each tension spring 2103 is sleeved with a stabilizing cylinder 2102, the side surfaces of several stabilizing cylinders 2102 close to each other are respectively fixedly connected to the outer surfaces of several limiting connecting rods 2120, the ends of the tightening belts 2114 close to each other are fixedly connected with a winding belt 2115, and the side surfaces of the two winding belts 2115 close to each other are provided with equidistantly arranged clamping grooves 2116, the upper surface of one of the extended connecting plates 15 is fixedly connected with a rotating winding motor 2118, and the output end of the rotating winding motor 2118 is fixedly connected with the winding rod 2106, the two winding belts 2115 are sleeved on the outer surface of the winding rod 2106, and the outer surface of the winding rod 2106 It is fixedly connected with equidistantly arranged clamping columns 2101, and several clamping columns 2101 are respectively clamped in several clamping grooves 2116. The outer surfaces of the two winding belts 2115 are jointly sleeved with a limiting cylinder 2122. The backs of the two limiting plates 2117 are in contact with the front of the limiting cylinder 2122. The bottom surface of the limiting cylinder 2122 is fixedly connected with a connecting frame 2123. The upper surface of the steel section 11 is provided with a connecting slide 2121. The connecting frame 2123 is slidably connected to the inside of the connecting slide 2121. The outer surface of the connecting frame 2123 is fixedly connected with a connecting slide 2124. The bottom surface of the connecting slide 2124 is in contact with the upper surface of the steel section 11. The upper surface of the connecting slide 2124 is fixedly connected with two threaded cylinders 2125.The interiors of the two threaded barrels 2125 are both threadedly connected with positioning bolts 2126, and the bottom ends of the two positioning bolts 2126 are sequentially penetrated through the threaded barrels 2125 and the connecting slide plate 2124 and contact the surface of the steel section 11. By setting the tightening unit 21, the bottom of the power distribution cabinet body 13 can be tightened and connected, so that the power distribution cabinet body 13 is conveniently installed on the steel section 11, without the need to manually install and connect the power distribution cabinet body 13 with multiple bolts, reducing the time and energy of workers wasted due to the cumbersome installation of the power distribution cabinet body 13, thereby improving the efficiency of using auxiliary installation equipment to assist in the installation of the industrial electrical power distribution cabinet, and making the use of auxiliary installation equipment more convenient;

[0048] See also Fig. 9 , wherein the side surfaces of the two tightening rings 2113 close to each other are fixedly connected to the limiting plates 2117, and the front surfaces of the two limiting plates 2117 are in contact with the outer surface of the tightening belt 2114. The limiting plates 2117 are used to block the tightening position of the tightening belt 2114, so that the tightening belt 2114 can be tightened conveniently;

[0049] See also Figure 7 The outer surface of the rotating winding motor 2118 is fixedly connected with a stabilizing ring 2119, and the bottom surface of the stabilizing ring 2119 is fixedly connected to the upper surface of the extending connecting plate 15. The stabilizing ring 2119 is fixed at the connecting position between the rotating winding motor 2118 and the extending connecting plate 15, thereby improving the connection stability between the rotating winding motor 2118 and the extending connecting plate 15;

[0050] See also Figure 1 The outer surface and the top end of the winding rod 2106 are fixedly connected to the limiting baffle 2107, and the side surfaces of the two limiting baffles 2107 that are close to each other are in contact with the upper surface and the bottom surface of the two winding belts 2115 respectively. Through the limiting baffle 2107, the winding belt 2115 wound outside the winding rod 2106 can be limited, so that the winding belt 2115 can be wound conveniently and stably.

[0051] The specific implementation of this embodiment is as follows: when auxiliary installation equipment is needed to assist in the installation of an industrial electrical distribution cabinet, the steel section 11 is first placed manually on the connecting platform 12. Due to the multiple limiting slide grooves 2108 opened on the steel section 11, multiple sliding rods 2104 can slide inside it, and tightening rings 2113 are fixed on the sliding rods 2104, which can facilitate the tightening of the tightening belts 2114 to pass through the multiple tightening rings 2113 in sequence. By manually moving the distribution cabinet body 13 to the steel section 11 at the corresponding position, the limiting column 2109 fixed on the steel section 11 is clamped into the limiting hole 2110 opened under the distribution cabinet body 13, which can facilitate the horizontal adjustment of the distribution cabinet body 13 installed on the steel section 11. The winding rod 2106 is limited in position by controlling the power supply of the rotating winding motor 2118, and the rotating winding motor 2118 can be used to drive the winding rod 2106 to rotate, and a plurality of clamping posts 2101 are fixed outside the winding rod 2106 to clamp into a plurality of clamping grooves 2116 opened in the winding belt 2115 connected to the two ends of the tightening belt 2114, and the winding rod 2106 can be rotated to make the clamping post winding belt 2115 reel it to the outside of the winding rod 2106, and the winding belt 2115 reeled to the outside of the winding rod 2106 is limited by two limiting baffles 2107, so that the winding belt 2115 can be stably reeled, and then the connecting frame 2123 in the connecting slide groove 2121 opened on the steel section 11 can be made to connect the connecting frame 2 The limiting cylinder 2122 on 123 approaches and contacts the limiting plate 2117 fixed between the two tightening rings 2113, so that the winding direction of the tightening belt 2114 that needs to be wound up can be limited, and by manually twisting the positioning bolt 2126 in the threaded cylinder 2125, the positioning bolt 2126 can be used to squeeze the steel section 11 under the connecting slide plate 2124. Since the connecting frame 2123 slides in the connecting groove 2121 opened on the steel section 11 and cannot be pulled out, the limiting cylinder 2122 and the connecting frame 2123 are positioned by squeezing the steel section 11 by the positioning bolt 2126, so that the tightening belt 2114 can be close to the winding when the winding belt 2115 is wound up, and at the same time, multiple tightening rings 2113 can be moved toward the main body of the distribution cabinet. When the outer surface of the body 13 is close to each other, the sliding rod 2104 slides in the limiting slide groove 2108, and the limiting connecting rod 2120 also slides in the connecting platform 12. When the limiting connecting rod 2120 slides in the connecting platform 12, the tension spring 2103 fixed to the inner wall of the connecting platform 12 through the connecting plate 2105 is stretched, and the movement of the tension spring 2103 is limited by the stabilizing cylinder 2102, so that the elastic force can be accumulated in the tension spring 2103. When the main body 13 of the power distribution cabinet is disassembled, the elastic force accumulated in the tension spring 2103 is used to move the sliding rod 2104 to the outermost part of the limiting slide groove 2108, so that the tightening belt 2114 is stretched to the maximum, and the winding rod 2106 winds up the winding belt 2115 to the minimum.This facilitates the auxiliary installation of the distribution cabinet body 13 of different sizes. The tightening unit 21 can be used to tighten the bottom of the distribution cabinet body 13, so that the distribution cabinet body 13 can be installed on the steel section 11 without the need to manually install and connect the distribution cabinet body 13 with multiple bolts, thereby reducing the time and energy of workers wasted due to the cumbersome installation of the distribution cabinet body 13, thereby improving the efficiency of using auxiliary installation equipment to assist in the installation of the industrial electrical distribution cabinet, and making the use of auxiliary installation equipment more convenient.

[0052] Embodiment 2:

[0053] See also Figure 1 , Figure 2 , Figure 3 , Figure 4 , Fig. 9 and Fig.10 The present invention provides a technical solution: an auxiliary installation device and process for an industrial electrical distribution cabinet. The present invention makes corresponding improvements to the technical problems mentioned in the background technology. The tightening connection mechanism 2 also includes a connecting unit 22, which is located below the distribution cabinet body 13. The connecting unit 22 is used in conjunction with the tightening unit 21. The connecting unit 22 is used to install the distribution cabinet body 13 on the steel section 11 and the connecting platform 12.

[0054] As a further limitation of the tightening connection mechanism 2 of the present invention, the connection unit 22 includes movable plates 2201 arranged at equal distances, the inner walls of several movable plates 2201 are respectively fixedly connected to the outer surfaces of several sliding rods 2104, the bottom surface of each movable plate 2201 is in contact with the upper surface of the steel section 11, the bottom surface of each movable plate 2201 is fixedly connected with a tension spring 2202, the outer surface of each limit connecting rod 2120 is movably hinged with a tension plate 2203, the bottom ends of several tension springs 2202 are respectively fixedly connected to the upper surfaces of several tension plates 2203, and the connection platform 1 2 is provided with tensioning grooves 2206 arranged at equal distances, and a plurality of tensioning grooves 2206 are respectively connected to a plurality of limiting sliding grooves 2108, and a plurality of limiting connecting rods 2120 are respectively slidably connected to the interior of a plurality of tensioning grooves 2206, and a connecting extension groove 2204 is provided on the inner bottom wall of each tensioning groove 2206, and a bottom end of each limiting connecting rod 2120 is fixedly connected to a moving slide plate 2212, and a plurality of moving slide plates 2212 are respectively slidably connected to the interior of a plurality of connecting extension grooves 2204, and the inner wall of each connecting extension groove 2204 is fixedly connected to two extending wedge-shaped The side surfaces of the plurality of tensioning plates 2203 close to each other are in contact with the wedge surfaces of the plurality of extended wedge blocks 2205 respectively. The inner wall of each tensioning groove 2206 is provided with a mounting groove 2207. The outer surfaces of the plurality of tension springs 2103 and the outer surfaces of the plurality of connecting plates 2105 are fixedly connected with the inner walls of the plurality of mounting grooves 2207 respectively. By setting the connecting unit 22, the tensioning plate 2203 can contact and squeeze the wedge surface of the extended wedge block 2205. Since the tensioning plate 2203 is hinged with the limiting connecting rod 2120, as the tensioning plate 2203 is The greater the downward angle between the movable plate 2201 and the extended wedge block 2205, the longer the tension spring 2202 will be, and the greater the pressure between the movable plate 2201 and the upper surface of the steel 11, the more stable the connection between the connecting platform 12, the power distribution cabinet body 13 and the steel 11. The power distribution cabinet body 13 can be stably connected only by driving the winding motor 2118, further reducing the time and energy wasted by the workers due to the complicated installation of the power distribution cabinet body 13, and thus the auxiliary installation equipment can be conveniently used to assist the installation of the industrial electrical power distribution cabinet.

[0055] See also Figure 3 and Figure 6 The upper surface of the connecting platform 12 is provided with connecting holes 2208 arranged at equal distances, and the bottom surface of the steel section 11 is fixedly connected with connecting columns 2210 arranged at equal distances, and a plurality of connecting columns 2210 are respectively snapped into the interior of a plurality of connecting holes 2208. By using the cooperation between the connecting columns 2210 and the connecting holes 2208, the steel section 11 can be installed on the connecting platform 12 for positioning and pre-connection, so that the industrial electrical distribution cabinet can be conveniently and stably auxiliary installed;

[0056] See also Figure 3 and Figure 6 An auxiliary hole 2209 is formed on the inner wall of each connecting hole 2208, and an auxiliary ring 2211 is fixedly connected to the outer surface of each connecting column 2210. The upper surface of each auxiliary ring 2211 is fixedly connected to the bottom surface of the steel section 11. Several auxiliary rings 2211 are respectively clamped in the inside of several auxiliary holes 2209. The auxiliary rings 2211 are clamped in the inside of the auxiliary holes 2209 to further position and pre-connect the steel section 11 on the connecting platform 12, so as to further facilitate and stably assist the installation of the industrial electrical distribution cabinet.

[0057] The specific implementation of this embodiment is as follows: when installing the steel section 11 on the connecting platform 12, it is necessary to use the connecting column 2210 fixed under the steel section 11 to be stuck in the connecting hole 2208 opened on the connecting platform 12, and make the auxiliary ring 2211 fixed outside the connecting column 2210 stuck in the auxiliary hole 2209 opened on the inner wall of the connecting hole 2208, so as to install the steel section 11 on the connecting platform 12 for pre-installation connection, and at the same time make the tension spring 2202 and the tension plate 2203 slide and be stuck in the connecting The extension groove 2204 is formed in the connecting platform 12, and the tightening belt 2114 is tightened to tighten the lower bottom of the power distribution cabinet body 13. At the same time, the limit connecting rod 2120 can be used to slide in the tightening groove 2206 opened on the connecting platform 12, so that the movable slide plate 2212 under the limit connecting rod 2120 slides in the connecting extension groove 2204 opened on the inner wall of the tightening groove 2206. The limit connecting rod 2120 moves in the tightening groove 2206, which makes the movable slide plate 2212 of the limit connecting rod 2120 move. The hinged tensioning plate 2203 slides along the extended wedge block 2205 fixed on the inner wall of the connecting extension groove 2204. Since the extended wedge block 2205 has an inclined wedge surface, the tensioning plate 2203 is softly connected to the movable plate 2201 sliding on the steel section 11 through the tensioning spring 2202. When the tensioning plate 2203 slides along the wedge surface of the extended wedge block 2205, the tensioning plate 2203 is rotated along the hinge axis with the limit connecting rod 2120 and extends downward, thereby making the tensioning plate 2203 The spring 2202 is stretched to accumulate elastic force, which increases the squeezing strength of the movable plate 2201 on the steel section 11, thereby improving the connection stability between the steel section 11, the connecting platform 12 and the distribution cabinet body 13. The distribution cabinet body 13 can be stably connected simply by driving the rotating winding motor 2118, further reducing the waste of workers' time and energy due to the cumbersome installation of the distribution cabinet body 13, and thus auxiliary installation equipment can be conveniently used to assist in the installation of the industrial electrical distribution cabinet.

[0058] Embodiment 3:

[0059] See also Figure 1 , Figure 2 , Figure 5 , Figure 6 , Figure 7 and Fig.12 The present invention provides a technical solution: an auxiliary installation device and process for an industrial electrical distribution cabinet. The present invention makes corresponding improvements to the technical problems mentioned in the background technology. The front and back of the tightening unit 21 are jointly provided with an upper clamping mechanism 3, and the upper clamping mechanism 3 is used in conjunction with the tightening connection mechanism 2. The upper clamping mechanism 3 is used to clamp and connect the upper part of the distribution cabinet body 13.

[0060] As a further limitation of the soaking and tightening connection mechanism 2 of the present invention, the upper clamping mechanism 3 includes four limit bars 301, the bottom surfaces of the four limit bars 301 are fixedly connected to the upper surfaces of the two extended connecting plates 15, and the upper surface of each limit bar 301 is fixedly connected to a positioning bar 302, and the upper surface of each positioning bar 302 is provided with an inverted T-shaped slide groove 303, wherein the side surfaces of the four tightening rings 2113 away from each other are fixedly connected to a push rod 311, and the ends of the four push rods 311 away from each other are A support frame 304 is fixedly connected, and the four support frames 304 are respectively slidably connected to the inside of the four inverted T-shaped slide grooves 303. The bottom surface of each support frame 304 is fixedly connected to a push slider 305, and the four push sliders 305 are respectively slidably connected to the inside of the four inverted T-shaped slide grooves 303. The bottom surfaces of the four push sliders 305 are respectively in contact with the upper surfaces of the four limit bars 301. The side surfaces of the four support frames 304 that are close to each other are fixedly connected to a push horizontal plate 308, and the two push horizontal plates 308 are close to each other. Four compression springs 309 are fixedly connected to one side of the eight compression springs 309, and the ends of the eight compression springs 309 close to each other are fixedly connected to an anti-skid plate 310. The sides of the two anti-skid plates 310 close to each other are in contact with the front and back of the distribution cabinet body 13 respectively. By setting the upper clamping mechanism 3, the connection between the bottom of the distribution cabinet body 13 and the connecting platform 12 and the steel section 11 can be made more stable through the cooperation of the tightening unit 21 and the connecting unit 22, and the push rod 311 connected and slidable with the tightening ring 2113 drives the support frame 304 to move, so that the anti-skid plate 310 can be in contact with the outer surface of the middle and upper part of the distribution cabinet body 13, and the compression spring 309 is continuously squeezed by the push cross plate 308, and the push slider 305 is made to slide in the inverted T-shaped slide groove 303, so that the middle and upper part of the distribution cabinet body 13 can be connected and fixed, and the connection stability of the distribution cabinet body 13 is improved, thereby further improving the efficiency of using the auxiliary installation equipment to assist in the installation of the industrial electrical distribution cabinet, and further facilitating the use of the auxiliary installation equipment;

[0061] See also Fig.12The outer surface of each push rod 311 is fixedly connected to a second reinforcement rod 307, the top ends of the four second reinforcement rods 307 are fixedly connected to the bottom surfaces of the four support frames 304 respectively, and the side surfaces of the four support frames 304 close to each other are commonly fixedly connected to two first reinforcement rods 306. The second reinforcement rod 307 is used to improve the connection stability between the push rod 311 and the support frame 304, while the first reinforcement rod 306 can improve the connection stability between the two support frames 304.

[0062] The specific implementation of this embodiment is as follows: while using the tightening tightening belt 2114 to tighten the lower bottom of the distribution cabinet body 13, multiple tightening rings 2113 can be close to the outer surface of the distribution cabinet body 13 under the tightening action of the tightening belt 2114, and two sets of push rods 311 are fixed on one side of the four tightening rings 2113. Since one end of the push rod 311 is fixed to the support frame 304, the support frame 304 can slide on the fixed limiting strip 301 on the extended connecting plate 15 through the sliding of the support frame 304, and at the same time, the support frame 304 can slide in the inverted T-shaped slide groove 303 opened on the positioning strip 302. Since a pushing slider 305 is arranged on the bottom surface of the support frame 304 to slide in the inverted T-shaped slide groove 303 and on the limiting strip 301, the horizontal movement of the support frame 304 can be limited, and the first reinforcement rod 306 and the second reinforcement rod 307 connect the pushing rod 311 and the support frame 304 into a movable whole, and the pushing cross plate 308 is fixed on one side of the two support frames 304, and the anti-slip plate 310 can be fixed on one side of the pushing cross plate 308 by multiple compression springs 309. The anti-slip plate 310 is driven close to one side of the distribution cabinet body 13 by the movement of the pushing rod 311, so that the compression springs 309 between the pushing cross plate 308 and the anti-slip plate 310 are compressed, so that the anti-slip surfaces of the two anti-slip plates 310 can stably contact the two sides of the distribution cabinet body 13, and then the middle and upper parts of the distribution cabinet body 13 can be connected and fixed, thereby improving the connection stability of the distribution cabinet body 13, thereby further improving the efficiency of using auxiliary installation equipment to assist in the installation of the industrial electrical distribution cabinet, and further facilitating the use of the auxiliary installation equipment.

[0063] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An auxiliary installation process for industrial electrical distribution cabinets, characterized in that: The steps include: S1: Foundation installation, setting the steel section on the connection platform on the ground of the power distribution room; S2: Pre-installation: After the steel is set on the connection platform on the floor of the power distribution room, the main body of the power distribution cabinet is pre-installed on the steel; S3: The base is tightened and installed, and the main body of the power distribution cabinet is connected to the steel section and the connecting platform through the tightening parts; S4: The cabinet body is reinforced, which cooperates with the tightening installation of the base to achieve stable installation of the main body of the distribution cabinet.

2. An auxiliary installation device for industrial electrical distribution cabinets, characterized in that: In S3, a tightening unit (21) is provided to complete the tightening and installation process of the bottom of the distribution cabinet body (13). The tightening unit (21) is easy to operate and can tighten and connect distribution cabinet bodies (13) of different sizes. By controlling the power supply of the rotating winding motor (2118), the rotating winding motor (2118) can be used to drive the winding rod (2106) to rotate, so that the clamping column winding belt (2115) is wound to the outside of the winding rod (2106), and the sliding rod (2104) slides in the limiting slide groove (2108). At the same time, multiple tightening rings (2113) are squeezed close to the outer surface of the distribution cabinet body (13), so that the distribution cabinet body (13) can be installed on the steel section (11) conveniently, reducing the time and energy of workers wasted due to the complicated installation method of the distribution cabinet body (13).

3. The auxiliary installation device for industrial electrical distribution cabinet according to claim 2 is characterized in that: In S3, a connection unit (22) is provided to complete the installation process of installing the power distribution cabinet body (13) on the steel section (11) and the connection platform (12). The connection unit (22) has the function of stabilizing the auxiliary connection. By using the limit connecting rod (2120) to slide in the tensioning groove (2206) provided on the connection platform (12), the tensioning plate (2203) movably hinged to the limit connecting rod (2120) slides along the extension wedge block (2205) fixed on the inner wall of the connection extension groove (2204). Since the extended wedge block (2205) has an inclined wedge surface, the tensioning plate (2203) slides along the wedge surface of the extended wedge block (2205), which will cause the tensioning plate (2203) to rotate along the hinge axis with the limit connecting rod (2120) and extend downward, thereby stretching the tensioning spring (2202) to accumulate elastic force, and increasing the squeezing force of the movable plate (2201) on the steel section (11), thereby improving the connection stability between the steel section (11), the connecting platform (12) and the distribution cabinet body (13).

4. The auxiliary installation device for industrial electrical distribution cabinet according to claim 3 is characterized in that: In S4, an upper clamping mechanism (3) is provided to complete the stable installation of the distribution cabinet body (13), and two sets of push rods (311) are fixed on one side of four tightening rings (2113). Since one end of the push rod (311) is fixed to the support frame (304), the support frame (304) can slide on the fixed limit strip (301) on the extended connecting plate (15), and a push cross plate (308) is fixed on one side of the two support frames (304). The anti-slip plate (310) is driven to approach one side of the distribution cabinet body (13) by the movement of the push rod (311), so that the compression spring (309) between the push cross plate (308) and the anti-slip plate (310) is compressed, so that the anti-slip surfaces of the two anti-slip plates (310) are stably in contact with the two sides of the distribution cabinet body (13), thereby being able to connect and fix the middle and upper part of the distribution cabinet body (13).

5. The auxiliary installation device for industrial electrical distribution cabinet according to claim 4 is characterized in that: The invention comprises a mounting mechanism (1), wherein the mounting mechanism (1) comprises a steel section (11), the front and back sides of the steel section (11) are fixedly connected with an extended connecting plate (15), the upper surface of the steel section (11) is provided with a connecting groove (14), a connecting platform (12) is provided below the steel section (11), a power distribution cabinet body (13) is provided on the surface of the steel section (11), and a tightening connection mechanism (2) is provided on the outside and below of the power distribution cabinet body (13); The tightening connection mechanism (2) comprises a tightening unit (21), the tightening unit (21) is located outside the power distribution cabinet body (13), and the tightening unit (21) is used to tighten the lower bottom of the power distribution cabinet body (13); The tightening connection mechanism (2) further comprises a connection unit (22), the connection unit (22) being located below the power distribution cabinet body (13), the connection unit (22) being used in conjunction with the tightening unit (21), and the connection unit (22) being used to mount the power distribution cabinet body (13) onto the steel section (11) and the connection platform (12); The front and back sides of the tightening unit (21) are jointly provided with an upper clamping mechanism (3), and the upper clamping mechanism (3) is used in conjunction with the tightening connection mechanism (2), and the upper clamping mechanism (3) is used to perform a clamping connection on the upper part of the power distribution cabinet body (13).

6. The auxiliary installation device for industrial electrical distribution cabinet according to claim 5, characterized in that: The tightening unit (21) comprises four limiting posts (2109), the bottom end of each limiting post (2109) is fixedly connected to the upper surface of the steel section (11), the bottom surface of the power distribution cabinet body (13) is provided with four limiting holes (2110), the four limiting posts (2109) are respectively clamped in the inside of the four limiting holes (2110), the outer surface of the power distribution cabinet body (13) is respectively fixedly connected with a lower enclosure ring (2111) and an upper enclosure ring (2112), and the outside of the power distribution cabinet body (13) is provided with tightening rings (2113) arranged at equal distances. The upper surface and the bottom surface of each tightening ring (2113) are in contact with the bottom surface of the upper retaining ring (2112) and the upper surface of the lower retaining ring (2111) respectively, and the interiors of several tightening rings (2113) are slidably connected with a tightening belt (2114), and the inner wall of the tightening belt (2114) is in contact with the outer surface of the distribution cabinet body (13), and the side surfaces of the two tightening rings (2113) close to each other are fixedly connected with a limiting plate (2117), and the front surfaces of the two limiting plates (2117) are in contact with the outer surface of the tightening belt (2114).

7. The auxiliary installation device for industrial electrical distribution cabinet according to claim 6, characterized in that: The bottom surface of each tightening ring (2113) is fixedly connected to a sliding rod (2104), the upper surface of the steel section (11) is provided with equally spaced limiting slide grooves (2108), a plurality of the sliding rods (2104) are respectively slidably connected to the inside of a plurality of limiting slide grooves (2108), the bottom end of each sliding rod (2104) is fixedly connected to a limiting connecting rod (2120), each limiting connecting rod (2120) is slidably connected to the inside of the connecting platform (12), and each limiting connecting rod ( The outer surfaces of the plurality of tension springs (2103) are fixedly connected to tension springs (2103), and the ends of the plurality of tension springs (2103) that are away from each other are fixedly connected to connection disks (2105), and the outer surface of each connection disk (2105) is fixedly connected to the inner wall of the connection platform (12), and the outer surface of each tension spring (2103) is sleeved with a stabilizing cylinder (2102), and the side surfaces of the plurality of stabilizing cylinders (2102) that are close to each other are fixedly connected to the outer surfaces of the plurality of limiting connection rods (2120).

8. The auxiliary installation device for industrial electrical distribution cabinet according to claim 7, characterized in that: The ends of the tightening belts (2114) that are close to each other are fixedly connected to the winding belts (2115), and the sides of the two winding belts (2115) that are close to each other are provided with equidistantly arranged clamping grooves (2116), the upper surface of one of the extending connecting plates (15) is fixedly connected to a rotating winding motor (2118), the outer surface of the rotating winding motor (2118) is fixedly connected to a stabilizing ring (2119), the bottom surface of the stabilizing ring (2119) is fixedly connected to the upper surface of the extending connecting plate (15), and the output end of the rotating winding motor (2118) is fixedly connected to the outer surface of the rotating winding motor (2118). The reel (2106) is fixedly connected to the reel-up rod (2106), and the two reel-up belts (2115) are both sleeved on the outer surface of the reel-up rod (2106). The outer surface of the reel-up rod (2106) is fixedly connected to equidistantly arranged clamping posts (2101), and a plurality of the clamping posts (2101) are respectively clamped in a plurality of clamping grooves (2116). The outer surface and the top end of the reel-up rod (2106) are fixedly connected to a limiting baffle (2107), and the side surfaces of the two limiting baffles (2107) that are close to each other are respectively in contact with the upper surface and the bottom surface of the two reel-up belts (2115).

9. The auxiliary installation device for industrial electrical distribution cabinet according to claim 8, characterized in that: The outer surfaces of the two winding belts (2115) are jointly sleeved with a limiting cylinder (2122), the back surfaces of the two limiting plates (2117) are in contact with the front surfaces of the limiting cylinder (2122), the bottom surface of the limiting cylinder (2122) is fixedly connected with a connecting frame (2123), the upper surface of the steel section (11) is provided with a connecting groove (2121), and the connecting frame (2123) is slidably connected to the inside of the connecting groove (2121).

10. The auxiliary installation device for industrial electrical distribution cabinet according to claim 9, characterized in that: The outer surface of the connecting frame (2123) is fixedly connected to a connecting slide plate (2124), the bottom surface of the connecting slide plate (2124) is in contact with the upper surface of the steel section (11), and the upper surface of the connecting slide plate (2124) is fixedly connected to two threaded cylinders (2125), the interiors of the two threaded cylinders (2125) are both threadedly connected to positioning bolts (2126), and the bottom ends of the two positioning bolts (2126) are sequentially passed through the threaded cylinder (2125) and the connecting slide plate (2124) and are in contact with the surface of the steel section (11).