Switch cabinet mechanism

By designing the coordinated operation of the linkage mechanism and the start shaft in the switch cabinet mechanism, the operation and high integration of the two workstations are achieved, solving the problem of large space occupancy between the switch cabinet mechanism and reducing manufacturing costs.

CN223230713UActive Publication Date: 2025-08-15NINGBO FENGZHU ELECTROMECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202422131495.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-08-15
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing switch cabinet mechanism occupies a large space and is not very integrated, which leads to the need to customize larger switch cabinets to increase the capacity of accessories and increase manufacturing costs.

Method used

A switch cabinet mechanism is designed, wherein the linkage mechanism is defined between the first connecting plate and the second connecting plate, and the operation of the first, second and third starting shafts is achieved by synergistic operation of the first, second and third starting shafts, and the integration is improved through simple structural and component design.

Benefits of technology

It realizes the local compactness of the switch cabinet mechanism, small space, convenient operation, reduces manufacturing costs, and is easy to promote and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of switch cabinets, in particular to a switch cabinet mechanism which comprises a first connecting plate, a second connecting plate and a third connecting plate. A second connecting plate; the linkage mechanism is arranged between the first connecting plate and the second connecting plate; the first starting shaft is further set to rotate by a preset angle and is matched with the linkage mechanism; the second starting shaft is further set to rotate by a preset angle; the first moving assembly is matched with the second starting shaft, and the first moving assembly comprises a first moving plate; the third starting shaft is further set to rotate by a preset angle; the second moving assembly comprises a second moving plate; and the third moving assembly comprises a third moving plate, and a first baffle is further arranged on the third moving plate. According to the utility model, the advantages of local compactness, reasonability, small occupied space and two stations can be realized by effectively utilizing the self structural configuration.
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Description

Technical Field

[0001] The present application relates to the field of switch cabinets, and more particularly to a switch cabinet mechanism. Background Art

[0002] Due to the limited built-in space of the switch cabinet, the switch cabinet mechanism placed in the switch cabinet box cannot be too large, otherwise the size of the switch cabinet needs to be increased, which greatly improves the finished switch cabinet. The existing switch cabinet mechanism placed in the switch cabinet box is not highly integrated, and most of them use three spaced and parallel plates to layout the accessories of the switch cabinet mechanism, which increases the occupied area of the switch cabinet mechanism. As a result, the existing switch cabinet mechanism will further increase the occupied area when adding accessories, so it is necessary to customize a larger opening cabinet to prevent the existing switch cabinet from being placed in the switch cabinet box. Therefore, it is necessary to improve the existing switch cabinet mechanism to reduce the number of customized switch cabinets, that is, when adding accessories to the switch cabinet mechanism, a conventional-sized switch cabinet can also meet the placement requirements of the switch cabinet mechanism after adding accessories, thereby reducing manufacturing costs. In addition, this product is a two-station mechanism.

[0003] Therefore, there is a need to provide a switch cabinet mechanism that is locally compact, reasonable, occupies a small space, and has two working positions. Summary of the Invention

[0004] The main purpose of the present application is to provide a switch cabinet mechanism, wherein the switch cabinet mechanism can effectively utilize its own structural configuration to achieve the advantages of local compactness and small space occupation.

[0005] Another object of the present application is to provide a switch cabinet mechanism, wherein the switch cabinet mechanism includes a first connecting plate, a second connecting plate, and a linkage mechanism, and the linkage mechanism is placed between the first connecting plate and the second connecting plate; and compared with the existing switch cabinet mechanism, the linkage mechanism of this product has a higher degree of integration, that is, the linkage mechanism is limited between the first connecting plate and the second connecting plate, and a first moving component, a second moving component and a third moving component are also provided on the side of the first connecting plate of this product away from the second connecting plate, and a first starting shaft, a second starting shaft and a third starting shaft are provided, and the first starting shaft, the second starting shaft and the third starting shaft are arranged in a triangle, and the first starting shaft is also coordinated with the linkage mechanism, and the second starting shaft is also coordinated with the linkage mechanism. The linkage mechanism cooperates. Specifically, when the second starting shaft is operating, the first starting shaft rotates synchronously, and the third baffle placed on the second starting shaft will block the third starting shaft. At this time, the user cannot operate the third starting shaft. On the contrary, the user can start the first starting shaft to reset the second starting shaft, so that the third baffle no longer blocks the third starting shaft. In addition, the user can manually operate the third starting shaft to make the second moving plate of the second moving component move upward a predetermined distance. At the same time, the third moving plate of the third moving component will move a predetermined distance in the direction close to the first starting shaft. At this time, the upper first baffle placed on the third moving component will block the first starting shaft, making it impossible to manually operate the first starting shaft, thereby realizing two-station operation.

[0006] Another object of the present application is to provide a switch cabinet mechanism, wherein the switch cabinet mechanism has a simple structure, is easy to operate, does not involve complex manufacturing processes and expensive materials, has high economy, and is easy to promote and use.

[0007] In order to achieve at least one of the above-mentioned invention objectives, the present application provides a switch cabinet mechanism, wherein the switch cabinet mechanism comprises:

[0008] a first connecting plate;

[0009] a second connecting plate;

[0010] a linkage mechanism disposed between the first connecting plate and the second connecting plate;

[0011] a first actuating shaft, the first actuating shaft sequentially passing through the first connecting plate and the second connecting plate, and the first actuating shaft is further configured to rotate through a predetermined angle and cooperate with the linkage mechanism;

[0012] a second actuating shaft, wherein the first actuating shaft sequentially passes through the first connecting plate and the second connecting plate, the second actuating shaft being further configured to rotate by a predetermined angle, and when the second actuating shaft rotates, the first actuating shaft synchronously rotates by the predetermined angle;

[0013] a first moving assembly, which is mounted on a side of the first connecting plate facing away from the second connecting plate and cooperates with the second starting shaft, and includes a first moving plate;

[0014] a third actuating shaft, the third actuating shaft being arranged opposite to the first actuating shaft and spaced apart by a predetermined distance, the third actuating shaft being further configured to rotate by a predetermined angle;

[0015] a second movable assembly, the second movable assembly being mounted on a side of the first connecting plate facing away from the second connecting plate, and comprising a second movable plate;

[0016] The cam is secured to the second stop by the third actuator, and the cam is secured to the second stop by the fourth actuator, so that the cam can be rotated to move relative to the first actuator, thereby ensuring that the cam is in a state of rotation and that the cam is in a state of rotation relative to the first actuator.

[0017] In one or more embodiments of the present application, the linkage mechanism includes a first rotating component, the first rotating component includes a first rotating member and a second rotating member, the first rotating member and the second rotating member are arranged relative to each other and separated by a predetermined distance, and the first rotating member is close to the first connecting plate, and the second rotating member is close to the second connecting plate. In addition, the first rotating member and the second rotating member are both arranged on the first starting shaft and swing synchronously with the first starting shaft, wherein one end of the second rotating member has a connecting portion and the other end has a pressure portion.

[0018] In one or more embodiments of the present application, the linkage mechanism also includes a telescopic component, which includes a first connecting shaft and a second connecting shaft, the two ends of the second connecting shaft are respectively connected to the side of the first connecting plate and the second connecting plate close to each other, and the first connecting shaft and the second connecting shaft are separated by a predetermined distance, and the two ends of the first connecting shaft are also fixedly connected to the top of the first rotating member and the connecting part of the second rotating member, respectively. The telescopic component also includes a telescopic shaft, one end of the telescopic shaft abuts against the second connecting shaft, and the other end is penetrated by the first connecting shaft. The telescopic component also includes an elastic member and a pressing plate, the elastic member and the pressing plate are both provided on the telescopic shaft, and the pressing plate also contacts the first connecting shaft.

[0019] In one or more embodiments of the present application, the linkage mechanism also includes a connecting rod, which is located between the second connecting plate and the connecting part, and the connecting rod also has a slide groove, which runs through the connecting rod, and the end of the first connecting shaft that cooperates with the connecting part is also placed in the slide groove, wherein the second starting shaft is located on the lower side of the middle section of the first connecting plate, and a first swinging member is also fixed on the second starting shaft, the first swinging member is located between the first connecting plate and the second connecting plate, and close to the second connecting plate, and the bottom of the connecting rod is also hinged to one side of the first swinging member, and a guide column is also provided on the top of the side of the first swinging member facing away from the second connecting plate, and the pressure-bearing portion of the second rotating member contacts the guide column.

[0020] In one or more embodiments of the present application, a second swinging member is also installed on the second starting shaft, and the second swinging member is located on the side of the first connecting plate away from the second connecting plate, and the second swinging member has a first extrusion portion and a second extrusion portion, the first extrusion portion is located on one side of the second swinging member, and the second extrusion portion is located at the bottom of the second swinging member, wherein the first moving component also includes a first fixed plate, the first fixed plate is fixed on the first connecting plate, and the first movable plate is movably arranged on the first fixed plate, and in addition, the first moving component also includes a third swinging member, one end of the third swinging member is rotatably connected to the first connecting plate, and the other end contacts the first movable plate and the second extrusion portion respectively, and in addition, the first moving component is also provided with a first spring, and the first spring is respectively connected to the middle section of the third swinging member and the first movable plate.

[0021] In one or more embodiments of the present application, a power assist component is also provided on the third starting shaft, and the power assist component includes a rotating block, which is eccentrically connected to the third starting shaft, and the rotating block has a first connecting wall and two second connecting walls, the two second connecting walls are arranged opposite to each other and spaced a predetermined distance apart, and the two ends of the first connecting wall are respectively connected to the tops of the two second connecting walls, and the third starting shaft passes through the two second connecting walls in sequence.

[0022] In one or more embodiments of the present application, the power assist assembly further includes a connecting rod, the ends of which are rotatably connected to the sides of the two second connecting walls that are adjacent to each other, and are located below the first connecting wall. Furthermore, the power assist assembly further includes an insertion rod, one end of which is connected to the connecting rod and the other end is connected to a support column, the ends of which are respectively connected to the first connecting plate and the second connecting plate, and are located near the bottom of the first connecting plate.

[0023] In one or more embodiments of the present application, the connecting rod is movably connected to the insertion rod. In addition, the power assist assembly further includes a fourth spring, and the fourth spring is sleeved on the insertion rod.

[0024] In one or more embodiments of the present application, the second movable assembly includes a second fixed plate, the second fixed plate is fixed on the first connecting plate, and the second movable plate is movably disposed on the second fixed plate.

[0025] In one or more embodiments of the present application, the third movable component includes a third fixed plate, the third fixed plate is fixed on the first connecting plate, and the third movable plate is movably arranged on the third fixed plate, and the third movable plate is configured to be able to move laterally. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] These and / or other aspects and advantages of the present application will become more clear and easier to understand from the following detailed description of the embodiments of the present application in conjunction with the accompanying drawings, in which:

[0027] Figure 1 The diagram shows the structure of a switch cabinet mechanism. Figure 1 .

[0028] Figure 2 The diagram shows the structure of a switch cabinet mechanism. Figure 2 .

[0029] Figure 3 The figure shows a schematic structural diagram of the telescopic component.

[0030] Figure 4 The diagram shows a partial structural diagram of a switch cabinet mechanism Figure 1 .

[0031] Figure 5 The diagram shows a partial structural diagram of a switch cabinet mechanism Figure 2 .

[0032] Figure 6 The diagram shows a partial structural diagram of a switch cabinet mechanism Figure 3 .

[0033] Figure 7 The diagram shows a partial structural diagram of a switch cabinet mechanism Figure 4 .

[0034] Figure 8 The diagram shows a partial structural diagram of a switch cabinet mechanism Figure 5 .

[0035] Figure 9 The diagram shows a schematic structural diagram of the power assist component. DETAILED DESCRIPTION

[0036] The terms and words used in the following description and claims are not limited to the literal meanings, but are merely used by the inventor to enable a clear and consistent understanding of the present application. Therefore, it will be apparent to those skilled in the art that the following description of various embodiments of the present application is provided for illustration purposes only and not for the purpose of limiting the present application as defined by the appended claims and their equivalents.

[0037] It is to be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the elements may be multiple, and the term "one" should not be understood as a limitation on the quantity.

[0038] Although ordinal numbers such as "first," "second," and the like will be used to describe various components, these are not intended to limit those components. The terms are used solely to distinguish one component from another. For example, a first component could be referred to as a second component, and similarly, a second component could be referred to as a first component without departing from the teachings of the utility model. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0039] The terms used herein are for the purpose of describing various embodiments only and are not intended to be limiting. As used herein, the singular is intended to include the plural, unless the context clearly indicates otherwise. It will also be understood that the terms "comprising" and / or "having" when used in this specification specify the presence of a stated feature, number, step, operation, component, element, or combination thereof, and do not preclude the presence or addition of one or more other features, numbers, steps, operations, components, elements, or groups thereof.

[0040] refer to Figures 1 to 9 According to a preferred embodiment of the switch cabinet mechanism of the present invention, it should be noted that the structure of the switch cabinet mechanism is as follows Figure 1 As shown, it includes a first connecting plate 10, a second connecting plate 20 and a linkage mechanism 30, wherein the linkage mechanism 30 is placed between the first connecting plate 10 and the second connecting plate 20, and the switch cabinet mechanism also includes a first starting shaft 40, one end of the first starting shaft 40 passes through the first connecting plate 10 and is connected to the linkage mechanism 30 placed between the first connecting plate 10 and the second connecting plate 20, and the second connecting plate has a third connecting plate at one end away from the first connecting plate, and the third connecting plate is spaced a predetermined distance from the second connecting plate.

[0041] Specifically, the first connecting plate 10 further has a locking mechanism 100 on one side facing away from the second connecting plate 20. The locking mechanism 100 has a telescopic rod, which is configured to extend to a predetermined length to contact the first first starting shaft 40, thereby preventing the user from operating the first first starting shaft 40. Figure 1 As shown, the locking mechanism 100 is located on the upper side of the first starting shaft 40, and the first connecting plate 10 is further provided with a detection lock on the side facing away from the second connecting plate 20, and the detection lock has a telescopic rod, that is, Figure 1 shown.

[0042] Specifically, the linkage mechanism 30 includes a first rotating assembly, which includes a first rotating member 31 and a second rotating member 32. The first rotating member 31 and the second rotating member 32 are arranged opposite to each other and separated by a predetermined distance. The first rotating member 31 is close to the first connecting plate 10, and the second rotating member 32 is close to the second connecting plate 20. It is worth mentioning that the cross-section of the first starting shaft 40 is hexagonal, and the end of the first starting shaft 40 that passes through the first connecting plate 10 is also rotatably connected to the second connecting plate 20. At the same time, the first rotating member 31 and the second rotating member 32 are both provided on the first starting shaft 40 and swing synchronously with the first starting shaft 40. It should be understood by those skilled in the art that a sleeve with a hexagonal hole is installed on the first connecting plate 10 that cooperates with the first starting shaft 40 to facilitate the rotation of the first starting shaft 40.

[0043] It is worth mentioning that one end of the second rotating member 32 has a connecting portion 321, and the other end has a pressure-bearing portion 322. In addition, the linkage mechanism 30 further includes a telescopic assembly 33, which includes a first connecting shaft 331 and a second connecting shaft 332. The two ends of the second connecting shaft 332 are respectively connected to the side of the first connecting plate 10 and the second connecting plate that are close to each other, and the first connecting shaft 331 and the second connecting shaft 332 are separated by a predetermined distance. The two ends of the first connecting shaft 331 are also fixedly connected to the top of the first rotating member 31 and the connecting portion 321 of the second rotating member 32, respectively. That is, when the first starting shaft 40 rotates counterclockwise, the first rotating member 31 and the second rotating member 32 swing synchronously, so that the first connecting shaft 331 moves a predetermined distance in a direction closer to the second connecting shaft 332.

[0044] Specifically, the telescopic assembly 33 further includes a telescopic shaft 333, one end of which abuts against the second connecting shaft 332 and the other end is penetrated by the first connecting shaft 331. Specifically, when the first connecting shaft 331 approaches the second connecting shaft 332, the length of the telescopic shaft 333 shortens, and vice versa. The telescopic shaft 333 can be implemented using two shafts of different diameters. Furthermore, the telescopic assembly 33 further includes an elastic member 334 and a pressing plate 335. Both the elastic member 334 and the pressing plate 335 are disposed on the telescopic shaft 333, and the pressing plate 335 also contacts the first connecting shaft 331. Specifically, the pressing plate 335 can be subjected to a force from the first connecting shaft 331, causing the pressing plate 335 to squeeze the elastic member 334, thereby compressing the elastic member 334. Conversely, the first connecting shaft 331 can be reset by the elastic member 334.

[0045] Furthermore, the linkage mechanism 30 also includes a connecting rod 34, which is located between the second connecting plate 20 and the connecting portion 321, and the connecting rod 34 also has a slide groove 3401, which runs through the connecting rod 34, and the end of the first connecting shaft 331 that cooperates with the connecting portion 321 is also placed in the slide groove 3401. At the same time, in order to limit the distance between the connecting rod 34 and the connecting portion 321, a limit sleeve 35 is also provided on the first connecting shaft 331, and the limit sleeve 35 is located between the connecting portion 321 and the connecting rod 34. When the first connecting shaft 331 moves toward the direction close to the second connecting shaft 332, the connecting rod 34 synchronously swings a predetermined angle, and at the same time, the end of the first connecting shaft 331 also moves in the slide groove 3401.

[0046] Specifically, the switch cabinet mechanism also includes a second starting shaft 50, which is located on the lower side of the middle section of the first connecting plate 10, and the two ends of the second starting shaft 50 pass through the first connecting plate 10 and the second connecting plate 20 respectively, wherein the end of the second starting shaft 50 passing through the second connecting plate 20 is opposite to the circular hole of the third connecting plate. Specifically, a first swinging member 51 is also fixed on the second starting shaft 50, and the first swinging member 51 is located between the first connecting plate 10 and the second connecting plate 20, and is close to the second connecting plate 20. At the same time, the bottom of the connecting rod 34 is also hinged to one side of the first swinging member 51, that is, the connecting rod 34 is located between the first swinging member 51 and the second connecting plate 20, and a guide column 511 is also provided on the top of the side of the first swinging member 51 facing away from the second connecting plate 20, and the pressure portion 322 of the second rotating member 32 contacts the guide column 511. It should be understood by those skilled in the art that when the above-mentioned second starting shaft 50 (such as Figure 2 When the guide post 511 rotates clockwise (in the direction shown in the figure), the guide post 511 presses the pressing plate, thereby causing the second rotating member 32 to rotate counterclockwise by a predetermined angle.

[0047] It should be noted that two connecting posts 200 are provided between the first connecting plate 10 and the second connecting plate 20, and one of the connecting posts 200 is close to the second rotating member 32. At the same time, a limiting stud is provided on the connecting post 200, that is, the limiting stud close to the second rotating member 32 is against the connecting portion 321 of the second rotating member 32, that is, the second rotating member 32 (such as Figure 2 The direction shown in the figure cannot be turned clockwise, only counterclockwise.

[0048] It should also be noted that a second swinging member 52 is also mounted on the second starting shaft 50. The second swinging member 52 has a first extrusion portion and a second extrusion portion. The first extrusion portion is located on one side of the second swinging member 52, and the second extrusion portion is located at the bottom of the second swinging member 52. It should also be noted that the second swinging member 52 is located on the side of the first connecting plate 10 facing away from the second connecting plate 20. It is worth mentioning that a plurality of first travel switches 300 are also arranged in parallel on the side of the first connecting plate 10 facing away from the second connecting plate 20. The first extrusion portion directly faces the plurality of first travel switches 300. That is, when the second starting shaft 50 rotates clockwise, the first extrusion portion squeezes the first travel switches 300, thereby detecting whether the rotation angle of the second swinging member 52 is in place through the first travel switches 300.

[0049] Specifically, the switch cabinet mechanism also includes a first moving component 60, which is arranged on the side of the first connecting plate 10 away from the second connecting plate 20 and facing the second extrusion portion. Specifically, the first moving component 60 includes a first fixed plate 61 and a first moving plate 62, the first fixed plate 61 is fixed on the first connecting plate 10, and the first moving plate 62 is spaced a predetermined distance from the first fixed plate 61, and the position is limited by a plurality of connecting studs, and the first moving plate 62 is configured to move up and down a predetermined distance. In addition, the first moving component 60 also includes a third swinging member 63, one end of the third swinging member 63 is rotatably connected to the first connecting plate 10, and the other end contacts the first moving plate 62 and the second extrusion portion respectively. In addition, the first moving component 60 is also provided with a first spring, the first spring is respectively connected to the middle section of the third swinging member 63 and the first moving plate 62. Specifically, the first moving plate 62 has a protruding cylinder on the side close to the first fixed plate 61, and the end of the elastic member can be arranged on the protruding cylinder. Specifically, as Figure 7 In the state shown, the second extrusion portion squeezes the end of the third swinging member 63, so that the first movable plate 62 moves downward by a predetermined distance, and the elastic member is stretched. At this time, the first extrusion portion does not contact the first limit switch 300. Therefore, when the second starting shaft 50 rotates clockwise, the second extrusion portion no longer squeezes the third swinging member 63, so the first movable plate 62 can be reset by the elastic member (that is, move upward by a predetermined distance).

[0050] Specifically, the switch cabinet mechanism also includes a third starting shaft 70, which is located on one side of the first starting shaft 40, that is, the second starting shaft 50 is located between the third starting shaft 70 and the first starting shaft 40. One end of the third starting shaft 70 is rotatably connected to the second connecting plate 20, and the other end passes through the first connecting plate 10 and is placed on the outside. It should also be noted that a power assist component 80 is also provided on the third starting shaft 70, that is, the power assist component 80 is configured to always be able to apply a clockwise force to the third starting shaft 70 (such as Figure 8 shown).

[0051] It should also be noted that a fourth swinging member 71 is also provided on the third starting shaft 70. The fourth swinging member 71 is located on the side of the first connecting plate 10 away from the second connecting plate 20. In addition, the fourth swinging member 71 is eccentrically connected to the third starting shaft 70. Specifically, the switch cabinet mechanism also includes a second moving assembly 91. The second moving assembly 91 is provided on the first connecting plate 10 and is located on the same side as the first moving assembly 60. That is, the initial state of the fourth swinging member 71 is as follows: Figure 8 As shown, the bottom of the fourth swing member 71 presses the second moving assembly 91 .

[0052] The second moving assembly 91 includes a second fixed plate and a second moving plate 911. The second fixed plate is fixed to the first connecting plate 10, and the second moving plate 911 is movably arranged on the second fixed plate. Specifically, the user can define the position of the second moving plate 911 through a plurality of connecting studs. Figure 7 and 8 In addition, at least two connecting bolts are provided with second springs, and the other ends of the two second springs are also fixed to the bottom of the movable plate, that is, the second movable plate 911 in the initial state is moved downward by a predetermined distance, at which time the two second springs are stretched, that is, the second springs are arranged vertically.

[0053] In addition, a third movable component 92 is provided between the third starting shaft 70 and the first starting shaft 40. The third movable component 92 is arranged on the side of the first connecting plate 10 away from the second connecting plate 20, and the third movable component 92 includes a third fixed plate and a third movable plate 921. The third fixed plate is fixed on the first connecting plate 10, and the third movable plate 921 is movably provided on the third fixed plate, wherein the third movable plate 921 can be moved laterally a predetermined distance, that is, moved toward the direction of the first starting shaft 40. In addition, the movement method of the third movable plate 921 is consistent with the above-mentioned second movable component 91, that is, the position of the movable plate is limited by multiple connecting studs, and at least two third springs are respectively connected to the two connecting studs, and the other end is fixed on the side of the third movable plate 921 close to the first starting shaft 40. In addition, a first baffle 9211 is provided on the side of the third movable plate 921 away from the third fixed plate, that is, when the third movable plate 921 moves toward the direction close to the first starting shaft 40, the first baffle 9211 can block the end of the first starting shaft 40.

[0054] It should be understood by those skilled in the art that the user can drive the third starting shaft 70 to rotate counterclockwise (eg, Figure 8The angle shown in the figure) is shown in the figure), at this time, the fourth swinging member 71 no longer squeezes the second movable plate 911, and the second movable plate 911 moves upward a predetermined distance, and at the same time, the fourth swinging member 71 squeezes the third movable plate 921, so that the first baffle 9211 can block the first starting shaft 40. At this time, since the fourth swinging member 71 is arranged horizontally and squeezes the third movable plate 921, and the top of the second movable plate 911 contacts the fourth swinging member 71, the force of the above-mentioned power-assisting component 80 will not cause the third starting shaft 70 to rotate. If the user needs to rotate the fourth swinging member 71, due to the existence of the above-mentioned power-assisting component 80, it will be more convenient for the user to rotate the third starting shaft 70 counterclockwise.

[0055] It should also be noted that a second baffle 53 is further provided at the end of the second starting shaft 50 away from the second connecting plate 20 . When the third starting shaft 70 rotates counterclockwise, the second baffle 53 blocks the third starting shaft 70 .

[0056] Specific as Figure 8 As shown, a third baffle 9212 is further provided on the third movable plate 921, wherein when the third movable plate 921 moves toward the direction close to the first starting shaft 40, the third baffle 9212 moves synchronously. Figure 7 As shown, a plurality of second travel switches 400 are arranged in parallel at the second fixed plate, that is, when the second movable plate 911 moves upward, the second travel switch 400 will be triggered to confirm whether the second movable plate 911 is moved into place.

[0057] Specifically, the power assist assembly 80 includes a rotating block 81, which is eccentrically connected to the third starting shaft 70. Specifically, the rotating block 81 has a first connecting wall and two second connecting walls, the two second connecting walls are arranged opposite to each other and spaced a predetermined distance apart, and the two ends of the first connecting wall are respectively connected to the tops of the two second connecting walls, that is, the two second connecting walls are integrally formed with the first connecting wall. The third starting shaft 70 passes through the two second connecting walls in sequence. In addition, Figure 6 and Figure 9 As shown, the other connecting column 200 is opposite to the top surface of the first connecting wall, and a limiting stud is also provided on the connecting column 200, which abuts against the first connecting wall to limit the rotation direction of the rotating block 81, that is, Figure 8 In the direction shown, the rotating block 81 rotates counterclockwise, and a plurality of third travel switches 500 arranged in parallel are also provided on the second connecting plate 20, that is, when the rotating block 81 rotates counterclockwise, the third travel switch 500 will be triggered, thereby confirming whether the rotating block 81 is swung into place.

[0058] Specifically, the power assist assembly 80 further includes a connecting rod 82, the two ends of which are rotatably connected to the sides of the two second connecting walls that are close to each other, and are located on the lower side of the first connecting wall. In addition, the power assist assembly 80 further includes an insertion rod 83, one end of which is connected to the connecting rod 82, and the other end is connected to the connecting rod 82. Figure 8 On the support column shown, specifically, the two ends of the above-mentioned support column are rotatably connected to the first connecting plate 10 and the second connecting plate 20 respectively, that is, when the rotating block 81 rotates, the connecting rod 82 will swing toward the direction close to the second starting shaft 50, and at the same time, the above-mentioned connecting rod 82 is movably connected to the insertion rod 83. In addition, the power assist assembly 80 also includes a fourth spring 84, and the fourth spring 84 is mounted on the insertion rod 83. Specifically, when the rotating block 81 rotates counterclockwise, the connecting rod 82 will squeeze the fourth spring 84, and at the same time, the insertion rod 83 swings a predetermined angle to cooperate with the rotation of the rotating part, that is, the fourth swinging part 71 on the third starting shaft 70 at this time or squeezes the third movable plate 921 of the third movable assembly 92.

[0059] In summary, the switch cabinet mechanism according to the embodiment of the present application is explained, which provides the switch cabinet mechanism with advantages such as local compactness, rationality, small space occupation, and two workstations.

[0060] It is worth mentioning that in the embodiments of the present application, the switch cabinet mechanism has a simple structure, does not involve complex manufacturing processes and expensive materials, and is highly economical. Furthermore, for manufacturers, the switch cabinet mechanism provided in the present application is easy to produce and low in cost, which is more conducive to controlling production costs and further facilitating product promotion and use.

[0061] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are provided for illustrative purposes only and are not intended to limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from these principles.

Claims

1. A switch cabinet mechanism, characterized in that: The switch cabinet mechanism includes: a first connecting plate; a second connecting plate; a linkage mechanism disposed between the first connecting plate and the second connecting plate; a first actuating shaft, the first actuating shaft sequentially passing through the first connecting plate and the second connecting plate, and the first actuating shaft is further configured to rotate through a predetermined angle and cooperate with the linkage mechanism; a second actuating shaft, wherein the first actuating shaft sequentially passes through the first connecting plate and the second connecting plate, the second actuating shaft being further configured to rotate by a predetermined angle, and when the second actuating shaft rotates, the first actuating shaft synchronously rotates by the predetermined angle; a first moving assembly, which is mounted on a side of the first connecting plate facing away from the second connecting plate and cooperates with the second starting shaft, and includes a first moving plate; a third actuating shaft, the third actuating shaft being arranged opposite to the first actuating shaft and spaced apart by a predetermined distance, the third actuating shaft being further configured to rotate by a predetermined angle; a second moving assembly, the second moving assembly being mounted on a side of the first connecting plate facing away from the second connecting plate, and the second moving assembly comprising a second moving plate; and The cam is secured to the second stop by the third actuator, and the cam is secured to the second stop by the fourth actuator, so that the cam can be rotated to move relative to the first actuator, thereby ensuring that the cam is in a state of rotation and that the cam is in a state of rotation relative to the first actuator.

2. The switch cabinet mechanism according to claim 1, wherein the linkage mechanism includes a first rotating assembly, the first rotating assembly includes a first rotating member and a second rotating member, the first rotating member and the second rotating member are arranged opposite to each other and are separated by a predetermined distance, and the first rotating member is close to the first connecting plate, and the second rotating member is close to the second connecting plate. In addition, the first rotating member and the second rotating member are both arranged on the first starting shaft and swing synchronously with the first starting shaft, wherein one end of the second rotating member has a connecting portion and the other end has a pressure-bearing portion.

3. The switch cabinet mechanism according to claim 2, wherein the linkage mechanism further includes a telescopic assembly, the telescopic assembly including a first connecting shaft and a second connecting shaft, the two ends of the second connecting shaft are respectively connected to the side of the first connecting plate and the second connecting plate close to each other, and the first connecting shaft and the second connecting shaft are spaced a predetermined distance apart, the two ends of the first connecting shaft are also respectively fixedly connected to the top of the first rotating member and the connecting part of the second rotating member, the telescopic assembly further includes a telescopic shaft, one end of the telescopic shaft rests on the second connecting shaft, and the other end is penetrated by the first connecting shaft, the telescopic assembly further includes an elastic member and a pressing plate, the elastic member and the pressing plate are both provided on the telescopic shaft, and the pressing plate also contacts the first connecting shaft.

4. The switch cabinet mechanism according to claim 3, wherein the linkage mechanism further includes a connecting rod, the connecting rod is located between the second connecting plate and the connecting part, and the connecting rod also has a slide groove, the slide groove passes through the connecting rod, and the end of the first connecting shaft that cooperates with the connecting part is also placed in the slide groove, wherein the second starting shaft is located at the lower side of the middle section of the first connecting plate, and a first swinging member is also fixed on the second starting shaft, the first swinging member is located between the first connecting plate and the second connecting plate, and is close to the second connecting plate, and at the same time, the bottom of the connecting rod is also hinged to one side of the first swinging member, and a guide column is also provided on the top of the side of the first swinging member facing away from the second connecting plate, and at the same time, the pressure-bearing portion of the second rotating member contacts the guide column.

5. The switch cabinet mechanism according to claim 4, wherein a second swinging member is further installed on the second starting shaft, the second swinging member is located on the side of the first connecting plate away from the second connecting plate, the second swinging member has a first extrusion portion and a second extrusion portion, the first extrusion portion is located on one side of the second swinging member, and the second extrusion portion is located at the bottom of the second swinging member, wherein the first moving component also includes a first fixed plate, the first fixed plate is fixed on the first connecting plate, and the first movable plate is movably arranged on the first fixed plate, and in addition, the first moving component also includes a third swinging member, one end of the third swinging member is rotatably connected to the first connecting plate, and the other end contacts the first movable plate and the second extrusion portion respectively, and the first moving component is also provided with a first spring, the first spring is respectively connected to the middle section of the third swinging member and the first movable plate.

6. The switch cabinet mechanism according to claim 5, wherein a power assist component is further provided on the third starting shaft, the power assist component includes a rotating block, the rotating block is eccentrically connected to the third starting shaft, the rotating block has a first connecting wall and two second connecting walls, the two second connecting walls are arranged opposite to each other and spaced a predetermined distance apart, and the two ends of the first connecting wall are respectively connected to the tops of the two second connecting walls, and the third starting shaft passes through the two second connecting walls in sequence.

7. The switch cabinet mechanism according to claim 6, wherein the power assist assembly further includes a connecting rod, the two ends of the connecting rod are rotatably connected to the side of the two second connecting walls close to each other, and are located on the lower side of the first connecting wall. In addition, the power assist assembly further includes an insertion rod, one end of the insertion rod is connected to the connecting rod, and the other end is connected to the support column, the two ends of the support column are respectively connected to the first connecting plate and the second connecting plate, and are close to the bottom of the first connecting plate.

8. The switch cabinet mechanism according to claim 7, wherein the connecting rod is movably connected to the insertion rod, and the assist assembly further comprises a fourth spring, and the fourth spring is sleeved on the insertion rod. 9 . The switch cabinet mechanism according to claim 1 , wherein the second movable assembly comprises a second fixed plate, the second fixed plate is fixed on the first connecting plate, and the second movable plate is movably disposed on the second fixed plate.

10. The switch cabinet mechanism according to claim 1, wherein the third movable component includes a third fixed plate, the third fixed plate is fixed on the first connecting plate, and the third movable plate is movably arranged on the third fixed plate, and the third movable plate is configured to be able to move laterally.