Power distribution cabinet assembling equipment

By designing assembly components, rotation components and switching components of distribution cabinet assembly equipment, the problems of low assembly efficiency and inconvenient rotation in the prior art are solved, and fast and accurate assembly and fixation of distribution cabinets are achieved, and working efficiency and safety are improved.

CN120109688AInactive Publication Date: 2025-06-06武汉时和利电气科技有限公司
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Patent Information

Application Number
CN202510259628.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The assembly efficiency of existing distribution cabinet assembly equipment is low, and when the assembled cabinet connection is further fixed, it is inconvenient to rotate the cabinet, resulting in complex assembly process and prone to problems such as tilting the cabinet and manual operation errors.

Method used

A distribution cabinet assembly equipment is designed, including assembly components, rotation components and switching components. The assembly assembly realizes rapid assembly and fixation of the cabinet plate through the combination of base, fixed column, rotating block and rotating seat. The rotating assembly drives the rotating seat to rotate through the cooperation of gears and grooves, which facilitates the fixation of different connections of the cabinet. The switching component realizes vertical and horizontal state switching of the rotating block through the coordination of the induction ball and pushing column, driving the rotating component to operate.

Benefits of technology

Through the use of this equipment, the assembly efficiency of the distribution cabinet can be significantly improved, the cabinet body can be avoided, manual operation can be simplified, working efficiency can be improved, and further fixing of the cabinet body connection can be facilitated.

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Abstract

The invention relates to the technical field of power distribution cabinet assembling, and discloses power distribution cabinet assembling equipment which comprises an assembling assembly and a base, a fixed column is fixed to the top of the base, a rotating block is arranged at the top end of the fixed column, a rotating seat is arranged above the rotating block, a tightening piece is arranged on the rotating seat, and the rotating assembly is arranged in the rotating block and used for fixing the tightening piece. Comprising a fixing sleeve which is fixed at the bottom of the rotating seat. The cabinet has the beneficial effects that the four cabinet plates can be assembled at the same time through the arrangement of the assembling assembly, so that a worker can conveniently fix the connecting positions of the cabinet plates, the situation that the cabinet body inclines after being assembled is avoided, meanwhile, the working efficiency is improved, and after the connecting positions of the assembled cabinet body are preliminarily fixed, the connecting positions of the cabinet body can be switched through cooperation of the switching assembly, so that the working efficiency is improved. And the rotating assembly drives the cabinet body to rotate, so that different connecting parts of the cabinet body can be exposed outside, and a worker can conveniently fix the connecting parts.
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Description

Technical Field

[0001] The invention relates to the technical field of power distribution cabinet assembly, in particular to a power distribution cabinet assembly device. Background Art

[0002] The distribution cabinet is the final equipment of the distribution system. It is mainly used to receive, distribute, control and protect electric energy. It is widely used in industry, construction, medical treatment, transportation and other fields. The cabinet body is usually made of cold-rolled steel plate or stainless steel material, which plays a role in physical protection and support of internal components. Its outer shell is generally a closed design, which can effectively prevent dust and moisture from intrusion, and has certain anti-corrosion performance.

[0003] The cabinet body is composed of multiple cabinet panels. After the cabinet bodies are assembled together, their joints need to be fixed. When the cabinet bodies are assembled and fixed, the staff needs to manually support the connected cabinet panels and then fix the joints. During the fixing process, one cabinet panel needs to be fixed before assembling another cabinet panel and then fixing the other cabinet panel to the previously assembled cabinet panel. Support, positioning and other operations are required for each cabinet panel that is fixed. The process is complicated, resulting in a slow overall assembly speed and it is difficult to ensure that the position of each cabinet panel is absolutely accurate. Slight deviations may occur during the fixing process. After multiple cabinet panels are assembled, these deviations accumulate and easily cause the cabinet body to tilt as a whole. At the same time, after all the cabinet panels are assembled, different joints of the cabinet body need to be further fixed, and then the cabinet body needs to be rotated so that the joints at different positions can be exposed. When rotating, it is mostly done manually. When the cabinet body is rotated manually, due to its heavy weight, it may accidentally slip out of the hands, causing the cabinet body to fall and injure the staff's feet or other parts of the body. Summary of the invention

[0004] In view of the above problems existing in the existing distribution cabinet assembly equipment, the present invention is proposed.

[0005] Therefore, the problem to be solved by the present invention is that the assembly efficiency is low, and it is inconvenient to rotate the cabinet when further fixing the connection of the assembled cabinet.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: a distribution cabinet assembly device, comprising an assembly component, including a base, a fixed column is fixed on the top of the base, a rotating block is arranged on the top of the fixed column, a rotating seat is arranged above the rotating block, and a tightening member is arranged on the rotating seat;

[0007] A rotating assembly is arranged in the rotating block, comprising a fixed sleeve, the fixed sleeve is fixed to the bottom of the rotating seat, a connecting sleeve is movably connected in the fixed sleeve, the connecting sleeve is connected to the bottom of the tightening member, a gear is arranged in the connecting sleeve, a tooth groove is provided in both the connecting sleeve and the fixed sleeve, the gear meshes with the tooth groove, and a rotating column is fixed to the bottom of the gear;

[0008] A switching component is arranged in the rotating block, including a support sleeve, a chamber is opened in the rotating block, the support sleeve is fixed to the inner wall of the chamber, a sensing ball is arranged in the support sleeve, a movable plate is arranged on one side of the sensing ball, a push column is fixed on one side of the movable plate, a first spring is fixed to the inner wall of the support sleeve, the other end of the first spring is in contact with the sensing ball, a force plate is fixed to the outer side of the rotating column, the force plate is conical, one end of the push column passes through the outer side of the support sleeve, and the end portion is in contact with the inclined surface of the force plate.

[0009] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, the rotating component also includes a driving member, the driving member includes a motor, the motor output shaft is fixed with a driving shaft, a slot is opened in the driving shaft, the bottom end of the rotating column is rectangular and inserted into the slot, the bottom end of the rotating column is fixed with a second spring, and the top of the second spring is fixed to the inner wall of the slot.

[0010] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, wherein: the rotating component also includes a first locking piece, the first locking piece includes a limit rod, the limit rod is inserted into the connecting sleeve, a limit hole is opened in the fixed sleeve, the limit rod cooperates with the limit hole, a fixing plate is fixed at one end of the limit rod, an extrusion rod is fixed at the top of the gear, the top of the extrusion rod is conical, and a third spring is fixed on one side of the fixing plate.

[0011] As a preferred solution of the power distribution cabinet assembly equipment described in the present invention, wherein: the rotating assembly also includes a second locking piece, the second locking piece includes an insertion rod, the insertion rod is inserted into the fixed sleeve, a fixing ring is movably connected to the outside of the fixed sleeve, the fixing ring is fixed to the inner wall of the chamber through a support rod, a socket is provided on the fixing ring, the insertion rod is engaged with the socket, a mounting block is fixed at one end of the insertion rod, a fourth spring is fixed to one side of the mounting block, an extrusion plate is fixed to the outside of the rotating column, and the extrusion plate is conical.

[0012] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, wherein: the rotating component also includes a limit member, the limit member includes a positioning column, one end of the positioning column is fixed to the rotating block, and the other end passes through the outside of the fixed column, a support block is fixed to one side of the fixed column, the limit column is inserted in the support block, and a limit groove is provided on the positioning column, and the limit column is engaged with the limit groove.

[0013] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, a positioning plate is fixed to the bottom end of the limiting column, a fifth spring is fixed to the top of the positioning plate, and the top end of the fifth spring is fixed to the support block.

[0014] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, the tightening part includes a turntable, the turntable is located in the rotating seat, the bottom of the turntable is fixed to the connecting sleeve, a guide groove is opened on the turntable, a guide shaft slides in the guide groove, a connecting rod is fixed to the top of the guide shaft, and a support seat is fixed to the end of the connecting rod.

[0015] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, wherein: the assembly component also includes a centering piece, the centering piece includes a moving rod, the moving rod is inserted into the support seat, a push block is arranged on the top of the moving rod, a positioning shaft is fixed on one side of the moving rod, the push block is rotatably connected to the outer side of the positioning shaft, a torsion spring is fixed on the outer side of the positioning shaft, and the other end of the torsion spring is fixed to the push block.

[0016] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, a rotating sleeve is rotatably connected in the support seat, a moving column is fixed at one end of the moving rod, a spiral groove is opened on the moving column, a fixed shaft is fixed in the rotating sleeve, and the fixed shaft slides in the spiral groove.

[0017] As a preferred solution of the distribution cabinet assembly equipment described in the present invention, a pull rope is wound around the outside of the rotating sleeve, one end of the pull rope is fixed to the rotating sleeve, and the other end passes through the outside of the support seat and is fixed to the rotating seat.

[0018] The beneficial effects of the present invention are as follows: through the setting of the assembly components, four cabinet panels can be assembled at the same time, which makes it convenient for the staff to fix the cabinet panel connections and avoids the cabinet from tilting after assembly, while improving work efficiency. After the assembled cabinet connections are initially fixed, the rotating component can be used to drive the cabinet to rotate by cooperating with the switching components, so that different connections of the cabinet can be exposed to the outside, which makes it convenient for the staff to fix the connections. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative labor. Among them:

[0020] Figure 1 Overall diagram of the equipment assembled for the distribution cabinet.

[0021] Figure 2 Cross-sectional structural diagram of the support base for assembling equipment in the distribution cabinet.

[0022] Figure 3 Another perspective cross-sectional structural diagram of the support base for assembling equipment in the distribution cabinet.

[0023] Figure 4 Diagram of the internal structure of the rotating base for assembling equipment in the distribution cabinet.

[0024] Figure 5 The structural diagram of the fixed column and rotating block connection for the distribution cabinet assembly equipment.

[0025] Figure 6 Cross-sectional structural diagram of the rotating block for assembling equipment in the distribution cabinet.

[0026] Figure 7 Cross-sectional view of the rotating assembly for assembling equipment in a switchboard.

[0027] Figure 8 Assembling equipment for distribution cabinets Figure 7 A partial enlarged structural diagram in the middle.

[0028] Fig. 9 Assembling equipment for distribution cabinets Figure 7 A partial enlarged structural diagram of point B in the middle. DETAILED DESCRIPTION

[0029] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below in conjunction with the accompanying drawings.

[0030] In the following description, many specific details are set forth to facilitate a full understanding of the present invention, but the present invention may also be implemented in other ways different from those described herein, and those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0031] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The term "in one embodiment" that appears in different places in this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive with other embodiments.

[0032] Example 1

[0033] Reference Figure 1 and Figure 5-Figure 7 , which is the first embodiment of the present invention, and this embodiment provides a distribution cabinet assembly device. The distribution cabinet assembly device includes an assembly component 100, including a base 101, a fixed column 102 is fixed on the top of the base 101, a rotating block 103 is arranged on the top of the fixed column 102, a rotating seat 104 is arranged above the rotating block 103, and a tightening member 105 is arranged on the rotating seat 104.

[0034] A movable groove is provided at the top of the fixed column 102, and the rotating block 103 is rotatably connected to the movable groove through a rotating shaft. A stabilizing sleeve is fixed to the bottom of the rotating seat 104. The top of the rotating block 103 is round, and the stabilizing sleeve is rotatably connected to the top of the rotating block 103 through a bearing, so that the rotating seat 104 can be supported and positioned.

[0035] The rotating seat 104 is used to support the tightening piece 105. When assembling the cabinet, the required cabinet panels are inserted into the tightening piece 105. When the tightening piece 105 rotates, the four cabinet panels can be combined together. At this time, the staff can fix the connection of the cabinet panels by welding or riveting to complete the assembly of the cabinet.

[0036] The fixing sleeve 201 is used to drive the rotating seat 104 to rotate. When the connecting sleeve 202 rotates, it can drive the tightening member 105 to rotate, and the tightening member 105 connects the cabinet panels together. The connecting sleeve 202 is movably connected to the fixing sleeve 201.

[0037] There are two tooth grooves 200 - 1 , which are respectively located in the connecting sleeve 202 and the fixing sleeve 201 . The rotating column 204 is used to drive the gear 203 to rotate and move up and down.

[0038] When the gear 203 meshes with the tooth groove 200 - 1 inside the connecting sleeve 202 , the gear 203 rotates, which drives the connecting sleeve 202 to rotate, thereby driving the tightening member 105 to rotate through the connecting sleeve 202 and allowing the tightening member 105 to assemble the cabinet panels together.

[0039] When the gear 203 meshes with the tooth groove 200-1 inside the fixed sleeve 201, the gear 203 rotates, and the tooth groove 200-1 cooperates to drive the fixed sleeve 201 to rotate, so that the fixed sleeve 201 can drive the rotating seat 104 to rotate, and then the rotating seat 104 can drive the assembled cabinet to rotate.

[0040] The switching assembly 300 is arranged in the rotating block 103, and includes a support sleeve 301. A chamber 103-1 is opened in the rotating block 103. The support sleeve 301 is fixed to the inner wall of the chamber 103-1. A sensing ball 302 is arranged in the support sleeve 301. A movable plate 303 is arranged on one side of the sensing ball 302. A push column 304 is fixed on one side of the movable plate 303. A first spring 305 is fixed to the inner wall of the support sleeve 301. The other end of the first spring 305 contacts the sensing ball 302. A force plate 306 is fixed to the outer side of the rotating column 204. The force plate 306 is conical. One end of the push column 304 passes through the outer side of the support sleeve 301, and the end contacts the inclined surface of the force plate 306.

[0041] When the rotating block 103 is in a vertical state, one side of the support sleeve 301 is tilted downward at a certain angle, so that when the rotating block 103 is in a vertical state, the sensing ball 302 has a force to roll toward the outlet of the support sleeve 301. The sensing ball 302 has a certain weight, one side of the sensing ball 302 is in contact with the movable plate 303, the push column 304 is movably connected with the support sleeve 301, and the force plate 306 is annular and in the shape of a cone that opens upward.

[0042] The rotating assembly 200 also includes a driving member 205, which includes a motor 205a. The output shaft of the motor 205a is fixed with a driving shaft 205b. A slot 205b-1 is opened in the driving shaft 205b. The bottom end of the rotating column 204 is rectangular and inserted into the slot 205b-1. A second spring 205c is fixed to the bottom end of the rotating column 204, and the top of the second spring 205c is fixed to the inner wall of the slot 205b-1.

[0043] The motor 205a is used to drive the driving shaft 205b to rotate. The driving shaft 205b drives the rotating column 204 to rotate through the cooperation of the slot 205b-1. The second spring 205c is used to apply a downward pulling force to the rotating column 204. The elastic force of the first spring 305 is greater than that of the second spring 205c.

[0044] When assembling the cabinet, the rotating block 103 is in a vertical state. At this time, the first spring 305 applies a thrust to the sensing ball 302, and the sensing ball 302 moves to the side of the movable plate 303 under its own weight, and pushes the movable plate 303 and the push column 304 to move, so that the end of the push column 304 presses the inclined surface of the force-bearing plate 306, thereby driving the rotating column 204 to move upward, and the rotating column 204 drives the gear 203 to engage with the tooth groove 200-1 inside the connecting sleeve 202. At this time, multiple cabinet panels are inserted into the tightening member 105.

[0045] The starting motor 205a drives the driving shaft 205b and the rotating column 204 to rotate, and the rotating column 204 drives the gear 203 and the connecting sleeve 202 to rotate, and drives the tightening piece 105 to rotate through the connecting sleeve 202, and then multiple cabinet panels can be assembled together through the tightening piece 105, and the staff can then perform preliminary fixation on the connection.

[0046] When the cabinet connection needs to be further fixed, the rotating block 103 is rotated to a horizontal state. At this time, the sensing ball 302 will compress the first spring 305 under its own weight, thereby releasing the squeezing of the movable plate 303 and the push column 304, and separating the push column 304 from the force-bearing plate 306. At this time, the second spring 205c applies a downward pulling force to the rotating column 204, and the rotating column 204 drives the gear 203 to move downward, so that the gear 203 engages with the tooth groove 200-1 inside the fixed sleeve 201. At this time, when the gear 203 rotates, it can drive the rotating seat 104 to rotate, so that the assembled cabinet can be driven to rotate through the rotating seat 104, and the connections at different positions of the cabinet can be exposed at the top, which can facilitate the staff to fix the connections by welding or riveting.

[0047] Example 2

[0048] Reference Figure 5-Figure 9 , which is the second embodiment of the present invention, and this embodiment is based on the previous embodiment.

[0049] Specifically, the rotating assembly 200 also includes a first locking member 206, which includes a limiting rod 206a. The limiting rod 206a is inserted into the connecting sleeve 202, and a limiting hole 201-1 is opened in the fixed sleeve 201. The limiting rod 206a cooperates with the limiting hole 201-1. A fixing plate 206c is fixed at one end of the limiting rod 206a, and an extrusion rod 206e is fixed on the top of the gear 203. The top of the extrusion rod 206e is conical, and a third spring 206d is fixed on one side of the fixing plate 206c.

[0050] The limiting rod 206a is movably connected to the connecting sleeve 202. There are multiple limiting holes 201-1, which are evenly distributed in a ring shape in the connecting sleeve 202. The fixing plate 206c is used to fix the third spring 206d. The top of the extrusion rod 206e is a downward-inclined cone, and the inclined surface is in contact with the fixing plate 206c. The third spring 206d is used to apply a thrust to the fixing plate 206c, so that the fixing plate 206c drives the extrusion rod 206e and the limiting hole 201-1 to be in a separated state.

[0051] Specifically, the rotating assembly 200 also includes a second locking member 207, which includes an insertion rod 207a, which is inserted into the fixed sleeve 201, and a fixed ring 207b is movably connected to the outside of the fixed sleeve 201, and the fixed ring 207b is fixed to the inner wall of the chamber 103-1 through a support rod, and a socket 207b-1 is provided on the fixed ring 207b, and the insertion rod 207a is engaged with the socket 207b-1, and a mounting block 207c is fixed to one end of the insertion rod 207a, and a fourth spring 207d is fixed to one side of the mounting block 207c, and an extrusion plate 207e is fixed to the outside of the rotating column 204, and the extrusion plate 207e is conical.

[0052] The insertion rod 207a is movably connected to the fixing sleeve 201, and there are multiple insertion holes 207b-1, which are evenly distributed in the fixing ring 207b in a ring shape, and the squeezing plate 207e is in a cone shape that opens downward.

[0053] When the gear 203 meshes with the tooth groove 200-1 inside the connecting sleeve 202, the rotating column 204 will drive the extrusion plate 207e to squeeze the mounting block 207c, so that the mounting block 207c drives the insertion rod 207a to engage with the socket 207b-1. Through the cooperation of the two, the fixing sleeve 201 can be locked, so that the rotating seat 104 cannot rotate, thereby preventing the rotating seat 104 from being accidentally rotated by external force during the assembly of the cabinet, thereby affecting the assembly of the cabinet.

[0054] When the gear 203 moves downward and engages with the tooth groove 200-1 inside the connecting sleeve 202, the extrusion plate 207e will separate from the mounting block 207c. At this time, the fourth spring 207d pushes the mounting block 207c and the insertion rod 207a to move, so that the insertion rod 207a is separated from the socket 207b-1, thereby releasing the restriction on the fixed sleeve 201.

[0055] At the same time, the gear 203 will drive the extrusion rod 206e to squeeze the fixed plate 206c at an inclined surface, so that the fixed plate 206c drives the limiting rod 206a to engage with the limiting hole 201-1. Through the cooperation of the two, the connecting sleeve 202 can be connected with the fixing sleeve 201, so that the connecting sleeve 202 can rotate synchronously with the fixing sleeve 201 instead of rotating independently, thereby preventing the tightening member 105 from rotating during the rotation of the rotating seat 104, thereby causing the assembly of the cabinet to loosen.

[0056] Specifically, the rotating assembly 200 also includes a limit member 208, and the limit member 208 includes a positioning column 208a, one end of the positioning column 208a is fixed to the rotating block 103, and the other end passes through the outside of the fixed column 102, a support block 208b is fixed to one side of the fixed column 102, and a limit column 208c is inserted into the support block 208b, and a limit groove 208a-1 is provided on the positioning column 208a, and the limit column 208c is engaged with the limit groove 208a-1.

[0057] There are two limiting grooves 208a-1, which are arranged at 90 degrees on the positioning column 208a. When the positioning column 208a is engaged with the limiting grooves 208a-1, the angle of the positioning column 208a and the rotating block 103 can be locked through the cooperation of the two.

[0058] Specifically, a positioning plate 208d is fixed to the bottom end of the limiting column 208c, a fifth spring 208e is fixed to the top of the positioning plate 208d, and a top end of the fifth spring 208e is fixed to the supporting block 208b.

[0059] The fifth spring 208e is used to apply a pulling force to the positioning plate 208d, so that the positioning plate 208d can drive the limiting column 208c to engage with the limiting groove 208a-1 more tightly.

[0060] Example 3

[0061] Reference Figure 1-Figure 9 , which is the third embodiment of the present invention, and is based on the first two embodiments.

[0062] Specifically, the tightening member 105 includes a turntable 105a, which is located in the rotating seat 104. The bottom of the turntable 105a is fixed to the connecting sleeve 202. A guide groove 105a-1 is provided on the turntable 105a. A guide shaft 105b slides in the guide groove 105a-1. A connecting rod 105c is fixed to the top of the guide shaft 105b. A support seat 105d is fixed to the end of the connecting rod 105c. There are four guide shafts 105b, connecting rods 105c and support seats 105d, which are evenly distributed in a ring above the turntable 105a. The guide groove 105a-1 is arc-shaped, and a groove is provided on the support seat 105d for inserting the cabinet panel to be assembled into the groove.

[0063] Specifically, the assembly component 100 also includes a centering piece 106, which includes a moving rod 106a, which is inserted into the support seat 105d, and a push block 106b is arranged on the top of the moving rod 106a, a positioning shaft 106c is fixed on one side of the moving rod 106a, the push block 106b is rotatably connected to the outer side of the positioning shaft 106c, a torsion spring 106d is fixed on the outer side of the positioning shaft 106c, and the other end of the torsion spring 106d is fixed to the push block 106b.

[0064] The number of centering members 106 corresponds to the number of support seats 105d. There are two moving rods 106a and two push blocks 106b, which are respectively located on both sides of the support seats 105d. The torsion spring 106d is used to apply a torsional force to the positioning shaft 106c and the push block 106b so that the push block 106b can be in a vertical state.

[0065] Specifically, a rotating sleeve 106e is rotatably connected in the support seat 105d, a moving column 106f is fixed to one end of the moving rod 106a, a spiral groove 106f-1 is opened on the moving column 106f, and a fixed shaft 106g is fixed in the rotating sleeve 106e, and the fixed shaft 106g slides in the spiral groove 106f-1.

[0066] A sixth spring is arranged inside the rotating sleeve 106e, and both ends of the sixth spring are respectively fixed to the two moving columns 106f for applying tension to the two moving columns 106f. When the rotating sleeve 106e rotates, the moving columns 106f can be driven to move through the cooperation of the fixed shaft 106g and the spiral groove 106f-1.

[0067] Specifically, a pull rope 106 h is wound around the outside of the rotating sleeve 106 e , one end of the pull rope 106 h is fixed to the rotating sleeve 106 e , and the other end of the pull rope 106 h passes through the outside of the support seat 105 d and is fixed to the rotating seat 104 .

[0068] When the support base 105d moves in a direction away from the rotating base 104, the pull rope 106h drives the rotating sleeve 106e to rotate, and drives the moving column 106f to move outside the rotating sleeve 106e through the rotating sleeve 106e.

[0069] When the support base 105d moves toward the direction of the rotating base 104, the pull rope 106h loses the pulling force on the rotating sleeve 106e, so that the moving column 106f can be driven to move into the rotating sleeve 106e through the sixth spring.

[0070] During use, when assembling the cabinet body, make the rotating block 103 in a vertical state, at this time the gear 203 will engage with the tooth groove 200-1 inside the connecting sleeve 202, and then insert multiple cabinet panels into the groove on the support seat 105d, and then start the motor 205a to drive the drive shaft 205b and the rotating column 204 to rotate, the rotating column 204 drives the gear 203 and the connecting sleeve 202 to rotate, and drives the turntable 105a to rotate through the connecting sleeve 202, at this time the guide shaft 105b will slide in the guide groove 105a-1, and through the cooperation of the two, drive the connecting rod 105c and the support seat 105d to move, so that the cabinet panels can be driven close through the support seat 105d, and multiple cabinet panels can be assembled together.

[0071] When the support seat 105d is moving, the sixth spring drives the moving column 106f and the moving rod 106a to move toward the inside of the rotating sleeve 106e. When the moving rod 106a moves, it drives the push block 106b to squeeze the two sides of the cabinet panel, so that the cabinet panel moves in the center. When the cabinet panel is centered and cannot move, as the moving rod 106a continues to move, the push block 106b will rotate downward due to the reverse thrust of the cabinet panel and separate from the side of the cabinet panel. In this way, the cabinet panels will not be misaligned when connected, and the push block 106b will not hinder the connection of the cabinet panels. At this time, the staff can preliminarily fix the connection of the cabinet panels.

[0072] When the cabinet connection needs to be further fixed, the rotating block 103 is rotated to a horizontal state. At this time, the sensing ball 302 will compress the first spring 305 under its own weight, thereby releasing the squeezing of the movable plate 303 and the push column 304, and separating the push column 304 from the force-bearing plate 306. At this time, the second spring 205c applies a downward pulling force to the rotating column 204, and the rotating column 204 drives the gear 203 to move downward, so that the gear 203 engages with the tooth groove 200-1 inside the fixed sleeve 201. At this time, when the gear 203 rotates, it can drive the rotating seat 104 to rotate, so that the assembled cabinet can be driven to rotate through the rotating seat 104, and the connections at different positions of the cabinet can be exposed at the top, so that the staff can fix the connections by welding or riveting.

[0073] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.

Claims

1. A distribution cabinet assembly device, characterized in that: include, An assembly component (100) comprises a base (101), a fixed column (102) is fixed on the top of the base (101), a rotating block (103) is arranged on the top of the fixed column (102), a rotating seat (104) is arranged above the rotating block (103), and a tightening member (105) is arranged on the rotating seat (104); A rotating assembly (200) is arranged in the rotating block (103), comprising a fixed sleeve (201), the fixed sleeve (201) being fixed to the bottom of the rotating seat (104), a connecting sleeve (202) being movably connected in the fixed sleeve (201), the connecting sleeve (202) being connected to the bottom of the tightening member (105), a gear (203) being arranged in the connecting sleeve (202), a tooth groove (200-1) being provided in both the connecting sleeve (202) and the fixed sleeve (201), the gear (203) being meshed with the tooth groove (200-1), and a rotating column (204) being fixed at the bottom of the gear (203); The switching assembly (300) is arranged in the rotating block (103), and comprises a support sleeve (301). A chamber (103-1) is provided in the rotating block (103). The support sleeve (301) is fixed to the inner wall of the chamber (103-1). A sensing ball (302) is arranged in the support sleeve (301). A movable plate (303) is arranged on one side of the sensing ball (302). A push column (304) is fixed on one side of the movable plate (303). A first spring (305) is fixed to the inner wall of the support sleeve (301). The other end of the first spring (305) contacts the sensing ball (302). A force plate (306) is fixed to the outer side of the rotating column (204). The force plate (306) is conical. One end of the push column (304) passes through the outer side of the support sleeve (301), and the end portion contacts the inclined surface of the force plate (306).

2. The power distribution cabinet assembly equipment according to claim 1, characterized in that: The rotating assembly (200) further comprises a driving member (205), wherein the driving member (205) comprises a motor (205a), wherein a driving shaft (205b) is fixed to an output shaft of the motor (205a), wherein a slot (205b-1) is provided in the driving shaft (205b), wherein the bottom end of the rotating column (204) is rectangular and inserted into the slot (205b-1), wherein a second spring (205c) is fixed to the bottom end of the rotating column (204), and wherein the top end of the second spring (205c) is fixed to an inner wall of the slot (205b-1).

3. The power distribution cabinet assembly equipment according to claim 2, characterized in that: The rotating assembly (200) further comprises a first locking member (206), wherein the first locking member (206) comprises a limiting rod (206a), wherein the limiting rod (206a) is inserted into the connecting sleeve (202), wherein a limiting hole (201-1) is provided in the fixing sleeve (201), wherein the limiting rod (206a) matches the limiting hole (201-1), wherein a fixing plate (206c) is fixed to one end of the limiting rod (206a), wherein an extrusion rod (206e) is fixed to the top of the gear (203), wherein the top end of the extrusion rod (206e) is conical, and wherein a third spring (206d) is fixed to one side of the fixing plate (206c).

4. The power distribution cabinet assembly equipment according to claim 2 or 3, characterized in that: The rotating assembly (200) further comprises a second locking member (207), wherein the second locking member (207) comprises an insert rod (207a), wherein the insert rod (207a) is inserted into the fixing sleeve (201), wherein a fixing ring (207b) is movably connected to the outer side of the fixing sleeve (201), wherein the fixing ring (207b) is fixed to the inner wall of the chamber (103-1) via a supporting rod, wherein a plug hole (207b-1) is provided on the fixing ring (207b), wherein the insert rod (207a) is engaged with the plug hole (207b-1), wherein a mounting block (207c) is fixed to one end of the insert rod (207a), wherein a fourth spring (207d) is fixed to one side of the mounting block (207c), and wherein an extrusion plate (207e) is fixed to the outer side of the rotating column (204), wherein the extrusion plate (207e) is conical.

5. The power distribution cabinet assembly equipment according to claim 4, characterized in that: The rotating assembly (200) further comprises a limiting member (208), wherein the limiting member (208) comprises a positioning column (208a), one end of the positioning column (208a) is fixed to the rotating block (103), and the other end thereof passes through the outside of the fixed column (102), a supporting block (208b) is fixed to one side of the fixed column (102), a limiting column (208c) is inserted into the supporting block (208b), a limiting groove (208a-1) is provided on the positioning column (208a), and the limiting column (208c) is engaged with the limiting groove (208a-1).

6. The power distribution cabinet assembly equipment according to claim 5, characterized in that: A positioning plate (208d) is fixed to the bottom end of the limiting column (208c), a fifth spring (208e) is fixed to the top of the positioning plate (208d), and the top end of the fifth spring (208e) is fixed to the supporting block (208b).

7. The power distribution cabinet assembly equipment according to claim 5 or 6, characterized in that: The tightening member (105) comprises a rotating disk (105a), the rotating disk (105a) is located in the rotating seat (104), the bottom of the rotating disk (105a) is fixed to the connecting sleeve (202), a guide groove (105a-1) is provided on the rotating disk (105a), a guide shaft (105b) slides in the guide groove (105a-1), a connecting rod (105c) is fixed on the top of the guide shaft (105b), and a supporting seat (105d) is fixed at the end of the connecting rod (105c).

8. The power distribution cabinet assembly equipment according to claim 7, characterized in that: The assembly component (100) also includes a centering piece (106), and the centering piece (106) includes a moving rod (106a), and the moving rod (106a) is inserted into the support seat (105d). A push block (106b) is arranged on the top of the moving rod (106a), and a positioning shaft (106c) is fixed on one side of the moving rod (106a). The push block (106b) is rotatably connected to the outer side of the positioning shaft (106c), and a torsion spring (106d) is fixed on the outer side of the positioning shaft (106c), and the other end of the torsion spring (106d) is fixed to the push block (106b).

9. The power distribution cabinet assembly equipment according to claim 8, characterized in that: A rotating sleeve (106e) is rotatably connected inside the support seat (105d), a moving column (106f) is fixed to one end of the moving rod (106a), a spiral groove (106f-1) is provided on the moving column (106f), a fixed shaft (106g) is fixed inside the rotating sleeve (106e), and the fixed shaft (106g) slides in the spiral groove (106f-1).

10. The power distribution cabinet assembly equipment according to claim 9, characterized in that: A pull rope (106h) is wound around the outside of the rotating sleeve (106e), one end of the pull rope (106h) is fixed to the rotating sleeve (106e), and the other end passes through the outside of the support seat (105d) and is fixed to the rotating seat (104).