An electrical control cabinet for a high-speed bag-making machine

By introducing sliding frames and flip plates into the electrical control cabinet, the safety and convenience of electrical device detection and replacement in small spaces are solved, and convenient detection and replacement of electrical devices are achieved, increasing the operating space, hiding the lines and improving the heat dissipation effect.

CN119994675BActive Publication Date: 2025-07-08XIAOJIANG TECH (WUXI) CO LTD
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Patent Information

Application Number
CN202510449407.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-07-08
Estimated Expiration
2045-04-11

AI Technical Summary

Technical Problem

The space inside the electrical control cabinet is small, and staff are prone to accidentally touching the electrical devices or lines when detecting and replacing electrical devices, which is inconvenient to operate and poses safety hazards.

Method used

An electrical control cabinet including a control cabinet shell, a fixing frame, a sliding frame and a flip plate are designed. The sliding frame drives the flip plate to move and rotate, and the convenient detection and replacement of electrical devices are achieved. The flip mechanism is used to hide the lines, adjust the position of the corrugated hose, increase the operating space, and improve the heat dissipation effect through the heat sink.

Benefits of technology

It improves the safety and convenience of electrical device detection and replacement, increases the operating space, hides the circuit to make the cabinet more simple and beautiful, and improves the heat dissipation effect of electrical devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention is applicable to the technical field of electrical control cabinets, and provides an electrical control cabinet for a high-speed bag-making machine, including a control cabinet housing, and further including: a plurality of fixed frames fixed inside the control cabinet housing; a guiding groove is horizontally arranged inside the fixed frame, a sliding frame is slidably connected inside the guiding groove, and a turning plate is rotatably connected to the sliding frame; one end of the turning plate is fixed with an electrical installation guide rail, a corrugated hose is arranged on one side of the turning plate, and the end of the corrugated hose is arranged on the fixed frame; a turning mechanism is arranged on the sliding frame, and when the sliding frame moves back and forth, the turning mechanism drives the turning plate to rotate. The sliding frame drives the turning plate to move forward, thereby enabling the turning plate to drive the electrical components on the electrical installation guide rail to approach the cabinet door, and further enabling the electrical components on the electrical installation guide rail to be away from the electrical components above and below. When detecting and replacing electrical components, interference from the electrical components above or below can be avoided, and since the electrical components are close to the cabinet door, the operating space is increased.
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Description

Technical Field

[0001] The present invention belongs to the technical field of electrical control cabinets, and particularly relates to an electrical control cabinet for a high-speed bag-making machine. Background Art

[0002] An electrical control cabinet is a device specifically used for electrical control. Through internal circuit connections and control components, it realizes operations such as starting, stopping, forward and reverse rotation, and speed regulation of devices such as motors, heaters, and lighting systems.

[0003] Generally, an installation plate is fixed at the rear side inside the electrical control cabinet. Multiple rows of electrical installation rails and wire grooves are horizontally fixed on the installation plate. Electrical components are installed on the electrical installation rails by means of buckles, and the wires of the electrical components are stored in the wire grooves. When the electrical control cabinet is in use, it is necessary to regularly inspect and replace the electrical components inside the electrical control cabinet to ensure the normal operation of the electrical control cabinet. When inspecting the electrical components inside the electrical control cabinet, the staff holds a detection tool and reaches into the electrical control cabinet to detect the electrical components. When replacing the electrical components inside the electrical control cabinet, the staff holds disassembly and wiring tools, first disassembles the wires on the electrical components, then disassembles and replaces the electrical components, and then connects the wires to the electrical components.

[0004] The space inside the electrical control cabinet is narrow, and there are many electrical components. When the staff inspects and replaces the electrical components, it is easy to accidentally touch the electrical components or circuits, posing a safety hazard. Moreover, the narrow space is not convenient for the staff to perform the inspection and replacement operations of the electrical components. Summary of the Invention

[0005] The purpose of the embodiment of the present invention is to provide an electrical control cabinet for a high-speed bag-making machine, aiming to solve the problems that the space inside the electrical control cabinet is narrow, and when the staff inspects and replaces the electrical components, it is easy for the staff to accidentally touch the electrical components or circuits, and it is not convenient for the staff to perform the inspection and replacement operations of the electrical components.

[0006] The present invention is realized as follows. An electrical control cabinet for a high-speed bag-making machine includes a control cabinet housing, and further includes: a plurality of fixed frames fixed inside the control cabinet housing; a guiding groove is horizontally arranged inside the fixed frame, a sliding frame is slidably connected inside the guiding groove, and a turning plate is rotatably connected to the sliding frame; one end of the turning plate is fixed with an electrical installation rail, a corrugated hose is arranged on one side of the turning plate, and the end of the corrugated hose is arranged on the fixed frame; a turning mechanism is arranged on the sliding frame, and when the sliding frame moves back and forth, the turning mechanism drives the turning plate to rotate.

[0007] Further technical solution, a main wire groove is vertically fixed inside the control cabinet housing, and the other end of the turning plate is fixed with a secondary wire groove.

[0008] Further technical solution: Threaded sleeve one and threaded sleeve two are respectively fixed at both ends of the corrugated hose. A long hole is provided on the fixing frame. Threaded sleeve two penetrates through the long hole. Two fixing nuts two are threadedly connected to threaded sleeve two, and threaded sleeve two is fixed on the fixing frame through the two fixing nuts two. Threaded sleeve one penetrates through the side wall of the turning plate. Two fixing nuts one are threadedly connected to threaded sleeve one, and threaded sleeve one is fixed on the turning plate through the fixing nuts one.

[0009] Further technical solution: A sliding groove is horizontally provided on the sliding frame. A sliding block is slidably connected in the sliding groove. Two limiting holes are provided in the guiding groove. One end of the sliding block is fixed with a limiting rod. One end of the limiting rod penetrates through the sliding frame and cooperates with the limiting hole. The other end of the sliding block is fixed with a first compression spring. The end of the first compression spring is fixed in the sliding groove.

[0010] Further technical solution: The turning mechanism includes an installation groove provided in the sliding frame and a guiding sliding groove vertically provided in the sliding frame. The middle of the guiding sliding groove communicates with the installation groove. A gear is provided in the installation groove. The gear is fixed on the turning plate. A guiding slider is slidably connected in the guiding sliding groove. Multiple teeth meshing with the gear are provided on the side wall of the guiding slider. A transmission component is provided on the sliding frame. When the sliding frame moves back and forth, the transmission component drives the guiding slider to move up and down.

[0011] Further technical solution: The transmission component includes an avoidance groove horizontally provided on the sliding frame. The avoidance groove communicates with the guiding sliding groove. A fixed pushing block one is fixed on the front inner wall of the fixing frame. The fixed pushing block one slidably cooperates with one end of the guiding slider, and the mating surface is an inclined surface. A connecting block is fixed on the side wall of the guiding slider. A second compression spring is fixed on the connecting block. A vertical avoidance groove for avoiding the movement of the connecting block is provided on the sliding frame. The end of the second compression spring is fixed in the vertical avoidance groove.

[0012] Further technical solution: A plurality of heat dissipation fins are horizontally provided on the sliding frame. A plurality of avoidance holes for avoiding the heat dissipation fins are provided on both the turning plate and the electrical installation guide rail.

[0013] Further technical solution: The heat dissipation fins are slidably connected to the fixing frame. A tension spring is fixed on the heat dissipation fins. The end of the tension spring is fixed on the fixing frame. A fixed pushing block two is fixed on the rear inner side of the fixing frame. The fixed pushing block two slidably cooperates with the other end of the guiding slider, and the mating surface is an inclined surface.

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

[0015] 1. When detecting or replacing electrical components in the electrical control cabinet, the sliding frame drives the flipping plate to move forward, and then the flipping plate drives the electrical components on the electrical installation guide rail to approach the cabinet door, further separating the electrical components on the electrical installation guide rail from the upper and lower electrical components. When detecting and replacing electrical components, interference from upper or lower electrical components is avoided, and the electrical components on the electrical installation guide rail are close to the cabinet door, increasing the operating space. Workers do not need to enter the control cabinet housing for operation, facilitating the detection and replacement of electrical components on the electrical installation guide rail and improving the safety during the detection and replacement of electrical components on the electrical installation guide rail;

[0016] 2. When the flipping mechanism drives the flipping plate to rotate to the vertical state, the electrical components on the electrical installation guide rail are located in front of the flipping plate, and the secondary wire trough and the circuit are located behind the flipping plate, thereby hiding the circuit and making the inside of the control cabinet housing look more concise and the inside of the control cabinet housing more beautiful;

[0017] 3. By adjusting the positions of the two fixing nuts I on the threaded sleeve I and the position of the threaded sleeve II in the long hole, the position of the corrugated hose in the left-right direction inside the control cabinet housing can be adjusted, thereby preventing multiple drooping corrugated hoses from contacting each other and enabling the corrugated hose to extend or bend smoothly;

[0018] 4. The heat sink is inserted into the avoidance hole and contacts the electrical components on the electrical installation guide rail, and then the heat on the electrical components is quickly dissipated through the heat sink, improving the heat dissipation effect of the electrical components. Furthermore, it has an auxiliary heat dissipation effect on electrical components with large heat generation. The tension spring pulls the heat sink to make the heat sink fit on the electrical components, thereby improving the heat conduction effect of the heat sink. Description of the Drawings

[0019] Figure 1 is a schematic structural diagram of an electrical control cabinet of a high-speed bag-making machine provided by the present invention;

[0020] Figure 2 provided by the present invention Figure 1 is a schematic structural diagram of the inside of the control cabinet housing in;

[0021] Figure 3 provided by the present invention Figure 2 is a schematic structural diagram of the flipping plate in the initial state in;

[0022] Figure 4 provided by the present invention Figure 2 is a schematic structural diagram of the flipping plate in the detection state in;

[0023] Figure 5 provided by the present invention Figure 4 is a schematic structural diagram after removing the fixing frame;

[0024] Figure 6 provided by the present inventionFigure 5 Structural schematic diagram from a top view;

[0025] Figure 7 Provided by the present invention Figure 6 Internal structural schematic diagram of the sliding carriage from the A-A perspective;

[0026] Figure 8 Provided by the present invention Figure 6 Internal structural schematic diagram of the sliding carriage from the B-B perspective;

[0027] Figure 9 Provided by the present invention Figure 7 Magnified structural schematic diagram of C;

[0028] Figure 10 Provided by the present invention Figure 8 Magnified structural schematic diagram of D;

[0029] Figure 11 Provided by the present invention Figure 5 Structural schematic diagram from a bottom-up inclined angle.

[0030] In the drawings: 101, control cabinet housing; 102, main wire groove; 103, fixing bracket; 104, guide groove; 105, sliding carriage; 106, flip plate; 107, electrical installation guide rail; 108, secondary wire groove; 109, corrugated hose; 110, handle; 201, sliding groove; 202, sliding block; 203, compression spring I; 204, limiting rod; 205, limiting hole; 3, flipping mechanism; 301, installation groove; 302, gear; 303, guide sliding groove; 304, guide sliding block; 305, tooth; 4, transmission component; 401, compression spring II; 402, avoidance groove; 403, fixed push block I; 404, fixed push block II; 501, heat sink; 502, avoidance hole; 503, tension spring; 601, thread sleeve I; 602, fixed nut I; 603, long hole; 604, thread sleeve II; 605, fixed nut II. Detailed implementation manners

[0031] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0032] The following describes in detail the specific implementation of the present invention with reference to specific embodiments.

[0033] Such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 ,Figure 8 and Figure 11 As shown in Figure 11 , an electrical control cabinet of a high-speed bag making machine provided by an embodiment of the present invention includes a control cabinet housing 101, and further includes: a plurality of fixed frames 103 fixed inside the control cabinet housing 101. A guiding groove 104 is horizontally arranged inside the fixed frame 103. A sliding frame 105 is slidably connected inside the guiding groove 104. A handle 110 is fixed on the front side of the sliding frame 105. A turnover plate 106 is rotatably connected to the sliding frame 105. One end of the turnover plate 106 is fixed with an electrical installation guide rail 107. A corrugated hose 109 is arranged on one side of the turnover plate 106. The end of the corrugated hose 109 is arranged on the fixed frame 103. A turnover mechanism 3 is arranged on the sliding frame 105. When the sliding frame 105 moves back and forth, the turnover mechanism 3 drives the turnover plate 106 to rotate. A main wire groove 102 is vertically fixed inside the control cabinet housing 101. The other end of the turnover plate 106 is fixed with a secondary wire groove 108.

[0034] In the embodiment of the present invention, during use, in the initial state, the sliding frame 105 is located at one end of the guiding groove 104. The sliding frame 105 drives the flipping plate 106 to be located at the rear side inside the control cabinet housing 101. The flipping plate 106 is in a vertical state. Electrical components are installed on the electrical installation guide rail 107 on the front side of the flipping plate 106, and the lines are hidden in the secondary wire groove 108 on the rear side of the flipping plate 106. The lines in the secondary wire groove 108 penetrate into the corrugated hose 109 and then are stored in the main wire groove 102. The corrugated hose 109 protects the lines, and the corrugated hose 109 is in a folded state; when detecting or replacing electrical components in the electrical control cabinet, hold the handle 110 and pull the sliding frame 105 forward. Under the guiding action of the guiding groove 104, the sliding frame 105 drives the flipping plate 106 to move forward, so that the flipping plate 106 drives the electrical components on the electrical installation guide rail 107 to approach the cabinet door, and further makes the electrical components on the electrical installation guide rail 107 away from the upper and lower electrical components. When detecting and replacing electrical components, interference from the upper or lower electrical components is avoided, and the electrical components on the electrical installation guide rail 107 are close to the cabinet door, increasing the operating space. The staff does not need to enter the control cabinet housing 101 for operation, thus facilitating the detection and replacement of electrical components on the electrical installation guide rail 107, improving the safety during the detection and replacement of electrical components on the electrical installation guide rail 107. When the sliding frame 105 moves forward, the flipping mechanism 3 drives the flipping plate 106 to rotate to a horizontal state, making the electrical components on the electrical installation guide rail 107 face upward, further facilitating the detection and replacement of electrical components on the electrical installation guide rail 107; after the detection and replacement of electrical components are completed, push the sliding frame 105 into the control cabinet housing 101 to move and reset. When the sliding frame 105 moves backward, the flipping mechanism 3 drives the flipping plate 106 to rotate to a vertical state, making the electrical components on the electrical installation guide rail 107 located on the front side of the flipping plate 106, and the secondary wire groove 108 and the lines are located on the rear side of the flipping plate 106, thereby hiding the lines and making the inside of the control cabinet housing 101 look more concise and the inside of the control cabinet housing 101 more beautiful.

[0035] As Figures 1 - 7 shown, as a preferred embodiment of the present invention, thread sleeves one 601 and thread sleeves two 604 are respectively fixed at both ends of the corrugated hose 109. A long hole 603 is provided on the fixing frame 103. The thread sleeve two 604 penetrates through the long hole 603. Two fixing nuts two 605 are threadedly connected to the thread sleeve two 604, and the thread sleeve two 604 is fixed on the fixing frame 103 through the two fixing nuts two 605. The thread sleeve one 601 penetrates through the side wall of the flipping plate 106. Two fixing nuts one 602 are threadedly connected to the thread sleeve one 601, and the thread sleeve one 601 is fixed on the flipping plate 106 through the fixing nuts one 602.

[0036] In the embodiment of the present invention, the second threaded sleeve 604 is located within the long hole 603. The two fixing nuts two 605 on the second threaded sleeve 604 are located on the front and rear sides of the fixing frame 103. Thus, the two fixing nuts two 605 clamp the fixing frame 103, fixing the second threaded sleeve 604 on the fixing frame 103. The first threaded sleeve 601 penetrates through the side wall of the flipping plate 106. The two fixing nuts one 602 on the first threaded sleeve 601 are located on the left and right sides of the side wall of the flipping plate 106. The two fixing nuts one 602 clamp the side wall of the flipping plate 106, fixing the first threaded sleeve 601 on the side wall of the flipping plate 106. By adjusting the positions of the two fixing nuts one 602 on the first threaded sleeve 601 and the position of the second threaded sleeve 604 within the long hole 603, the position of the corrugated hose 109 in the left - right direction within the control cabinet housing 101 can be adjusted, thereby preventing multiple drooping corrugated hoses 109 from contacting each other and enabling the corrugated hose 109 to smoothly extend or bend.

[0037] As Figure 4 , Figure 6 , Figure 7 and Figure 9 shown, as a preferred embodiment of the present invention, a sliding groove 201 is horizontally arranged on the sliding frame 105. A sliding block 202 is slidably connected within the sliding groove 201. Two limiting holes 205 are arranged within the guiding groove 104. One end of the sliding block 202 is fixed with a limiting rod 204. One end of the limiting rod 204 penetrates through the sliding frame 105 and cooperates with the limiting hole 205. The other end of the sliding block 202 is fixed with a first compression spring 203. The end of the first compression spring 203 is fixed within the sliding groove 201.

[0038] In the embodiment of the present invention, the first compression spring 203 pushes the sliding block 202. The sliding block 202 drives the limiting rod 204 to insert into the limiting hole 205, thereby restricting the forward - backward movement of the sliding frame 105. Two limiting holes 205 are arranged on the fixing frame 103. When the limiting rods 204 are respectively inserted into the two limiting holes 205, the sliding frame 105 can be fixed at the front or rear of the fixing frame 103. When moving the sliding frame 105, the sliding block 202 is pushed. The sliding block 202 overcomes the elastic force of the first compression spring 203 and drives the limiting rod 204 to move, thereby enabling the limiting rod 204 to disengage from one of the limiting holes 205, thus releasing the movement restriction of the sliding frame 105.

[0039] As Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 8 and Figure 10As shown, as a preferred embodiment of the present invention, the flipping mechanism 3 includes an installation groove 301 provided in the sliding frame 105, and a guiding chute 303 vertically provided in the sliding frame 105. The middle of the guiding chute 303 communicates with the installation groove 301. A gear 302 is provided in the installation groove 301, and the gear 302 is fixed on the flipping plate 106. A guiding slider 304 is slidably connected in the guiding chute 303. A plurality of teeth 305 meshing with the gear 302 are provided on the side wall of the guiding slider 304. A transmission assembly 4 is provided on the sliding frame 105. When the sliding frame 105 moves forward and backward, the transmission assembly 4 drives the guiding slider 304 to move up and down. The transmission assembly 4 includes an avoidance groove 402 horizontally provided on the sliding frame 105. The avoidance groove 402 communicates with the guiding chute 303. A fixed pushing block one 403 is fixed on the front inner wall of the fixed frame 103. The fixed pushing block one 403 is slidably matched with one end of the guiding slider 304, and the mating surface is an inclined surface. A connecting block is fixed on the side wall of the guiding slider 304. A second compression spring 401 is fixed on the connecting block. A vertical avoidance groove for avoiding the movement of the connecting block is provided on the sliding frame 105. The end of the second compression spring 401 is fixed in the vertical avoidance groove.

[0040] In the embodiment of the present invention, when the sliding frame 105 drives the flipping plate 106 to move forward, the fixed pushing block one 403 is inserted into the avoidance groove 402. The fixed pushing block one 403 overcomes the elastic force of the second compression spring 401 and pushes the guiding slider 304 downward. The downward moving guiding slider 304 drives the gear 302 to rotate through a plurality of teeth 305. The gear 302 drives the flipping plate 106 to rotate until the flipping plate 106 rotates to a horizontal state. When the sliding frame 105 drives the flipping plate 106 to move backward, the fixed pushing block one 403 disengages from the avoidance groove 402. The second compression spring 401 pushes the guiding slider 304 upward. The upward moving guiding slider 304 drives the gear 302 to reverse through a plurality of teeth 305. The gear 302 drives the flipping plate 106 to reverse until the flipping plate 106 rotates to a vertical state.

[0041] As Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 8 and Figure 10As shown in the figure, as a preferred embodiment of the present invention, a plurality of heat sinks 501 are horizontally arranged on the sliding frame 105, and a plurality of avoidance holes 502 for avoiding the heat sinks 501 are arranged on both the turning plate 106 and the electrical installation guide rail 107; the heat sinks 501 are slidably connected to the fixed frame 103, and a tension spring 503 is fixed on the heat sink 501, and the end of the tension spring 503 is fixed on the fixed frame 103. A second fixed push block 404 is fixed on the inner rear side of the fixed frame 103, and the second fixed push block 404 is slidably matched with the other end of the guiding slider 304, and the mating surface is an inclined surface.

[0042] In the embodiment of the present invention, two avoidance grooves 402 are provided, which are respectively used to avoid the movement of the first fixed push block 403 and the second fixed push block 404. When the turning plate 106 moves backward, the second fixed push block 404 enters the other avoidance groove 402, and the second fixed push block 404 pushes the guiding slider 304 upward, so that the guiding slider 304 is fully reset upward, and the turning plate 106 is stably in the vertical state. When the turning plate 106 continues to move backward, the heat sink 501 is inserted into the avoidance hole 502 and contacts the electrical components on the electrical installation guide rail 107. Thus, the heat on the electrical components is quickly dissipated through the heat sink 501, improving the heat dissipation effect of the electrical components, and thus playing an auxiliary heat dissipation effect on the electrical components with large heat generation. The tension spring 503 pulls the heat sink 501 to make the heat sink 501 fit on the electrical components, thereby improving the heat conduction effect of the heat sink 501. The sliding fit between the second fixed push block 404 and the guiding slider 304 can prevent the second compression spring 401 from failing after long-term use, and the second compression spring 401 cannot fully reset the turning plate 106 due to insufficient elastic force. It can avoid that when the inclined turning plate 106 moves backward, the heat sink 501 cannot be inserted into the avoidance hole 502 and is damaged.

[0043] In the above embodiment of the present invention, an electrical control cabinet of a high-speed bag making machine is provided. During use, in the initial state, the sliding frame 105 is located at one end of the guiding groove 104, and the sliding frame 105 drives the turning plate 106 to be located at the inner rear side of the control cabinet housing 101. The turning plate 106 is in the vertical state. The electrical components are installed on the electrical installation guide rail 107 in front of the turning plate 106, and the lines are hidden in the secondary wire groove 108 behind the turning plate 106. The lines in the secondary wire groove 108 pass through the corrugated hose 109 and are then stored in the main wire groove 102. The corrugated hose 109 protects the lines, and the corrugated hose 109 is in a folded state;

[0044] When detecting or replacing electrical components in the electrical control cabinet, push the sliding block 202. The sliding block 202 overcomes the elastic force of the first compression spring 203 and drives the limit rod 204 to move, so that the limit rod 204 disengages from one of the limit holes 205, thereby releasing the movement restriction of the sliding frame 105. Hold the handle 110 and pull the sliding frame 105 forward. Under the guiding action of the guiding groove 104, the sliding frame 105 drives the turning plate 106 to move forward, so that the turning plate 106 drives the electrical components on the electrical installation guide rail 107 to approach the cabinet door, and further makes the electrical components on the electrical installation guide rail 107 away from the upper and lower electrical components. When detecting and replacing electrical components, the interference of the upper or lower electrical components is avoided, and the electrical components on the electrical installation guide rail 107 are close to the cabinet door, increasing the operating space. The staff does not need to enter the control cabinet housing 101 for operation, thus facilitating the detection and replacement of the electrical components on the electrical installation guide rail 107 and improving the safety during the detection and replacement of the electrical components on the electrical installation guide rail 107. When the sliding frame 105 moves forward, the fixed push block 403 is inserted into the avoidance groove 402. The fixed push block 403 overcomes the elastic force of the second compression spring 401 and pushes the guiding slider 304 downward. The downward moving guiding slider 304 drives the gear 302 to rotate through a plurality of teeth 305. The gear 302 drives the turning plate 106 to rotate until the turning plate 106 rotates to the horizontal state. Subsequently, the first compression spring 203 pushes the sliding block 202, and the sliding block 202 drives the limit rod 204 to insert into the limit hole 205, thereby restricting the front-back movement of the sliding frame 105. The electrical components on the electrical installation guide rail 107 are placed upward, which further facilitates the detection and replacement of the electrical components on the electrical installation guide rail 107. After the detection and replacement of the electrical components are completed, push the sliding block 202. The sliding block 202 overcomes the elastic force of the first compression spring 203 and drives the limit rod 204 to move, so that the limit rod 204 disengages from one of the limit holes 205, thereby releasing the movement restriction of the sliding frame 105. Push the sliding frame 105 into the control cabinet housing 101 to move and reset. When the sliding frame 105 moves backward, the fixed push block 403 disengages from the avoidance groove 402. The second compression spring 401 pushes the guiding slider 304 to move upward. The upward moving guiding slider 304 drives the gear 302 to reverse through a plurality of teeth 305. The gear 302 drives the turning plate 106 to reverse until the turning plate 106 rotates to the vertical state, so that the electrical components on the electrical installation guide rail 107 are located on the front side of the turning plate 106, and the auxiliary wire groove 108 and the circuit are located on the rear side of the turning plate 106, thereby hiding the circuit and making the inside of the control cabinet housing 101 look more concise and the inside of the control cabinet housing 101 more beautiful.

[0045] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An electrical control cabinet for a high-speed bag-making machine, comprising a control cabinet housing (101), characterized in that, Further included are: a plurality of fixing frames (103) fixed inside the control cabinet housing (101); a guiding groove (104) is horizontally arranged on the inner side of the fixing frame (103), a sliding frame (105) is slidably connected in the guiding groove (104), and a turnover plate (106) is rotatably connected to the sliding frame (105); one end of the turnover plate (106) is fixed with an electrical installation guide rail (107), a corrugated hose (109) is arranged on one side of the turnover plate (106), and the end of the corrugated hose (109) is arranged on the fixing frame (103); a turnover mechanism (3) is arranged on the sliding frame (105), and when the sliding frame (105) moves back and forth, the turnover mechanism (3) drives the turnover plate (106) to rotate; the turnover mechanism (3) includes an installation groove (301) arranged inside the sliding frame (105) and a guiding sliding groove (303) vertically arranged inside the sliding frame (105). The middle of the guiding sliding groove (303) is communicated with the installation groove (301). A gear (302) is arranged in the installation groove (301), the gear (302) is fixed on the turnover plate (106), a guiding slider (304) is slidably connected in the guiding sliding groove (303), a plurality of teeth (305) meshing with the gear (302) are arranged on the side wall of the guiding slider (304), and a transmission component (4) is arranged on the sliding frame (105). When the sliding frame (105) moves back and forth, the transmission component (4) drives the guiding slider (304) to move up and down; the transmission component (4) includes an avoidance groove (402) horizontally arranged on the sliding frame (105), the avoidance groove (402) is communicated with the guiding sliding groove (303), a first fixed pushing block (403) is fixed on the front inner wall of the fixing frame (103), the first fixed pushing block (403) is slidably matched with one end of the guiding slider (304), and the mating surface is an inclined surface. A connecting block is fixed on the side wall of the guiding slider (304), a second compression spring (401) is fixed on the connecting block, a vertical avoidance groove for avoiding the movement of the connecting block is arranged on the sliding frame (105), and the end of the second compression spring (401) is fixed in the vertical avoidance groove; a plurality of heat dissipation fins (501) are horizontally arranged on the sliding frame (105), and a plurality of avoidance holes (502) for avoiding the heat dissipation fins (501) are arranged on both the turnover plate (106) and the electrical installation guide rail (107); the heat dissipation fins (501) are slidably connected to the fixing frame (103), a pulling spring (503) is fixed on the heat dissipation fins (501), the end of the pulling spring (503) is fixed on the fixing frame (103), and a second fixed pushing block (404) is fixed on the rear inner side of the fixing frame (103), the second fixed pushing block (404) is slidably matched with the other end of the guiding slider (304), and the mating surface is an inclined surface.

2. The electrical control cabinet of the high-speed bag-making machine according to claim 1, characterized in that, a main wire groove (102) is vertically fixed inside the control cabinet housing (101), and a secondary wire groove (108) is fixed at the other end of the turnover plate (106).

3. The electrical control cabinet of the high-speed bag-making machine according to claim 2, characterized in that, Both ends of the corrugated hose (109) are respectively fixed with a first threaded sleeve (601) and a second threaded sleeve (604). A long hole (603) is provided on the fixing frame (103). The second threaded sleeve (604) passes through the long hole (603). Two second fixing nuts (605) are threadedly connected to the second threaded sleeve (604), and the second threaded sleeve (604) is fixed on the fixing frame (103) by the two second fixing nuts (605). The first threaded sleeve (601) passes through the side wall of the flip plate (106). Two first fixing nuts (602) are threadedly connected to the first threaded sleeve (601), and the first threaded sleeve (601) is fixed on the flip plate (106) by the first fixing nuts (602).

4. The electrical control cabinet of the high-speed bag making machine according to claim 1, characterized in that, A sliding groove (201) is horizontally provided on the sliding frame (105). A sliding block (202) is slidably connected in the sliding groove (201). Two limiting holes (205) are provided in the guiding groove (104). One end of the sliding block (202) is fixed with a limiting rod (204). One end of the limiting rod (204) passes through the sliding frame (105) and cooperates with the limiting hole (205). The other end of the sliding block (202) is fixed with a first compression spring (203). The end of the first compression spring (203) is fixed in the sliding groove (201).

Citation Information

Patent Citations

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