Electric appliance control cabinet of high-speed bag making machine

By designing an electrical control cabinet with sliding frame, flip plate and corrugated hose, the problem of small space and inconvenient operation in the electrical control cabinet is solved, the safety and convenience of detection and replacement are improved, and the heat dissipation effect is enhanced.

CN119994675AActive Publication Date: 2025-05-13XIAOJIANG TECH (WUXI) CO LTD
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Patent Information

Application Number
CN202510449407.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-05-13
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, and it is inconvenient to operate, which poses safety hazards.

Method used

An electrical control cabinet including a control cabinet housing, a fixing frame, a sliding frame, a flip plate and a corrugated hose is designed. The sliding frame drives the flip plate forward, so that the electrical components on the electrical installation guides are close to the cabinet door, avoiding interference from the electrical components above or below and increasing operating space. The flip mechanism drives the flip plate to rotate to a vertical state, hiding the line, making it simple and beautiful. The corrugated hose is adjusted by means of threaded sleeves and fixing nuts to avoid contact with each other. The heat sink comes into contact with the electrical components to assist in heat dissipation.

Benefits of technology

It improves the safety and convenience of electrical device detection and replacement, increases the operating space, hides the lines, makes the control cabinet look simple and beautiful, and improves the heat dissipation effect of electrical devices.

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Abstract

The invention is suitable for the technical field of electric appliance control cabinets, and provides an electric appliance control cabinet of a high-speed bag making machine, which comprises a control cabinet shell and a plurality of fixing frames fixed in the control cabinet shell, a guide groove is horizontally formed in the inner side of the fixing frame, a sliding frame is slidably connected into the guide groove, and a turnover plate is rotatably connected to the sliding frame. An electrical installation guide rail is fixed to one end of the turnover plate, a corrugated hose is arranged on one side of the turnover plate, and the tail end of the corrugated hose is arranged on a fixing frame; a turnover mechanism is arranged on the sliding frame, and when the sliding frame moves front and back, the turnover mechanism drives the turnover plate to rotate. The sliding frame drives the overturning plate to move forwards, then the overturning plate drives the electric device on the electric installation guide rail to be close to the cabinet door, then the electric device on the electric installation guide rail is made to be far away from the electric device above and below, when the electric device is detected and replaced, interference of the electric device above or below is avoided, the electric device is close to the cabinet door, and the operation space is increased.
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Description

Technical Field

[0001] The invention belongs to the technical field of electrical control cabinets, and in particular 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. It realizes operations such as starting, stopping, forward and reverse rotation, and speed regulation of equipment such as motors, heaters, and lighting systems through internal circuit connections and control elements.

[0003] Generally, a mounting plate is fixed on the rear side of an electrical control cabinet. Multiple rows of electrical mounting rails and wire ducts are fixed horizontally on the mounting plate. Electrical components are mounted on the electrical mounting rails by means of snaps. The wires of the electrical components are stored in the wire ducts. When the electrical control cabinet is in use, the electrical components in the electrical control cabinet need to be regularly inspected and replaced to ensure the normal operation of the electrical control cabinet. When inspecting the electrical components in the electrical control cabinet, the staff holds the detection tool and reaches into the electrical control cabinet to inspect the electrical components. When replacing the electrical components in the electrical control cabinet, the staff holds the 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 small and there are many electrical components. When workers inspect and replace electrical components, they may accidentally touch electrical components or circuits, posing a safety hazard. In addition, the small space makes it inconvenient for workers to inspect and replace 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 problem that the space inside the electrical control cabinet is small, and when workers detect and replace electrical components, they are prone to accidentally touch electrical components or circuits, making it inconvenient for workers to perform electrical component detection and replacement operations.

[0006] The present invention is implemented as follows: an electrical control cabinet for a high-speed bag-making machine includes a control cabinet shell, and also includes: a plurality of fixed frames fixed in the control cabinet shell; a guide groove is horizontally arranged on the inner side of the fixed frame, a sliding frame is slidably connected in the guide groove, and a flip plate is rotatably connected to the sliding frame; an electrical installation rail is fixed to one end of the flip plate, a corrugated hose is arranged on one side of the flip plate, and the end of the corrugated hose is arranged on the fixed frame; a flip mechanism is arranged on the sliding frame, and when the sliding frame moves back and forth, the flip mechanism drives the flip plate to rotate.

[0007] According to a further technical solution, a main line duct is vertically fixed in the control cabinet shell, and a secondary line duct is fixed at the other end of the flip plate.

[0008] A further technical solution is that a threaded sleeve 1 and a threaded sleeve 2 are respectively fixed at both ends of the corrugated hose, a long hole is provided on the fixing frame, the threaded sleeve 2 passes through the long hole, two fixing nuts 2 are threadedly connected to the threaded sleeve 2, and the threaded sleeve 2 is fixed to the fixing frame through the two fixing nuts 2, the threaded sleeve 1 passes through the side wall of the flip plate, two fixing nuts 1 are threadedly connected to the threaded sleeve 1, and the threaded sleeve 1 is fixed to the flip plate through the fixing nut 1.

[0009] A further technical solution is that a sliding groove is horizontally arranged on the sliding frame, a sliding block is slidably connected in the sliding groove, two limiting holes are arranged in the guide groove, a limiting rod is fixed at one end of the sliding block, one end of the limiting rod passes through the sliding frame and cooperates with the limiting hole, and a compression spring is fixed at the other end of the sliding block, and the end of the compression spring is fixed in the sliding groove.

[0010] A further technical solution is that the flipping mechanism includes a mounting groove arranged in the sliding frame, and a guide groove arranged vertically in the sliding frame, the middle part of the guide groove is connected to the mounting groove, a gear is arranged in the mounting groove, the gear is fixed on the flip plate, a guide slider is slidably connected in the guide groove, a plurality of teeth meshing with the gear are arranged on the side wall of the guide slider, a transmission assembly is arranged on the sliding frame, and when the sliding frame moves forward and backward, the transmission assembly drives the guide slider to move up and down.

[0011] A further technical solution is that the transmission assembly includes an avoidance groove horizontally arranged on the sliding frame, the avoidance groove is connected to the guide sliding groove, a fixed push block 1 is fixed on the front inner wall of the fixed frame, the fixed push block 1 is slidably matched with one end of the guide sliding block, and the matching surface is an inclined surface, a connecting block is fixed on the side wall of the guide sliding block, a compression spring 2 is fixed on the connecting block, and a vertical avoidance groove for avoiding the movement of the connecting block is provided on the sliding frame, and the end of the compression spring 2 is fixed in the vertical avoidance groove.

[0012] According to a further technical solution, a plurality of heat sinks are horizontally arranged on the sliding frame, and a plurality of avoidance holes for avoiding the heat sinks are arranged on the flip plate and the electrical installation rail.

[0013] A further technical solution is that the heat sink is slidably connected to the fixed frame, and a tension spring is fixed on the heat sink, the end of the tension spring is fixed to the fixed frame, and a fixed push block 2 is fixed on the inner rear side of the fixed frame, and the fixed push block 2 is slidably matched with the other end of the guide slider, and the matching surface is an inclined surface.

[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. When inspecting or replacing electrical components in the electrical control cabinet, the sliding frame drives the flip plate to move forward, and then the flip plate drives the electrical components on the electrical installation rail to approach the cabinet door, so that the electrical components on the electrical installation rail are away from the electrical components above and below. When inspecting and replacing electrical components, interference from the electrical components above or below is avoided. In addition, the electrical components on the electrical installation rail are close to the cabinet door, and the operating space is increased. The staff does not need to enter the control cabinet shell to operate, which facilitates the inspection and replacement of electrical components on the electrical installation rail, and improves the safety of the inspection and replacement of electrical components on the electrical installation rail. 2. When the flip mechanism drives the flip plate to rotate to a vertical state, the electrical components on the electrical installation rail are located in front of the flip plate, and the auxiliary line duct and line are located behind the flip plate, thereby hiding the line, making the control cabinet shell look more concise and the interior of the control cabinet shell more beautiful; 3. By adjusting the positions of the two fixing nuts 1 on the threaded sleeve 1 and the position of the threaded sleeve 2 in the long hole, the position of the corrugated hose in the left and right directions in the control cabinet housing can be adjusted, thereby avoiding contact between multiple sagging corrugated hoses and allowing the corrugated hose to extend or bend smoothly; 4. The heat sink is inserted into the avoidance hole and contacts the electrical components on the electrical installation rail, so that the heat on the electrical components can be quickly dissipated through the heat sink, thereby improving the heat dissipation effect of the electrical components, and thus playing an auxiliary heat dissipation effect on electrical components with high heat generation. The tension spring pulls the heat sink to fit the heat sink on the electrical components, thereby improving the thermal conductivity of the heat sink. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 A schematic diagram of the structure of an electrical control cabinet of a high-speed bag making machine provided by the present invention; Figure 2 The present invention provides Figure 1 Schematic diagram of the structure inside the shell of the middle control cabinet; Figure 3 The present invention provides Figure 2 The structural schematic diagram of the middle flip plate in the initial state; Figure 4 The present invention provides Figure 2 A schematic diagram of the structure of the middle flip board in the detection state; Figure 5 The present invention provides Figure 4 Schematic diagram of the structure after removing the fixing frame; Figure 6 The present invention provides Figure 5 Schematic diagram of the structure from a top-down perspective; Figure 7 The present invention provides Figure 6 Schematic diagram of the internal structure of the sliding frame from a medium AA perspective; Figure 8 The present invention provides Figure 6 Schematic diagram of the internal structure of the sliding frame from the perspective of the middle BB; Fig. 9 The present invention provides Figure 7 Schematic diagram of the enlarged structure of C in the middle; Fig.10 The present invention provides Figure 8 Schematic diagram of the enlarged structure of D in the middle; Fig.11 The present invention provides Figure 5 Schematic diagram of the structure when looking up at the tilt angle.

[0016] In the attached figure: 101, control cabinet housing; 102, main line trough; 103, fixed frame; 104, guide groove; 105, sliding frame; 106, flip plate; 107, electrical installation rail; 108, auxiliary line trough; 109, corrugated hose; 110, handle; 201, sliding groove; 202, sliding block; 203, compression spring 1; 204, limit rod; 205, limit hole; 3, flip mechanism; 301, installation groove ; 302, gear; 303, guide slot; 304, guide slider; 305, tooth; 4, transmission assembly; 401, compression spring two; 402, avoidance groove; 403, fixed push block one; 404, fixed push block two; 501, heat sink; 502, avoidance hole; 503, tension spring; 601, threaded sleeve one; 602, fixed nut one; 603, long hole; 604, threaded sleeve two; 605, fixed nut two. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0018] The specific implementation of the present invention is described in detail below in conjunction with specific embodiments.

[0019] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 8 and Fig.11As shown, an electrical control cabinet for a high-speed bag-making machine provided by an embodiment of the present invention includes a control cabinet housing 101, and also includes: a plurality of fixed frames 103 fixed in the control cabinet housing 101, a guide groove 104 is horizontally arranged on the inner side of the fixed frame 103, a sliding frame 105 is slidably connected in the guide groove 104, a handle 110 is fixed on the front side of the sliding frame 105, a flip plate 106 is rotatably connected to the sliding frame 105, an electrical installation guide rail 107 is fixed to one end of the flip plate 106, a corrugated hose 109 is arranged on one side of the flip plate 106, the end of the corrugated hose 109 is arranged on the fixed frame 103, a flip mechanism 3 is arranged on the sliding frame 105, when the sliding frame 105 moves back and forth, the flip mechanism 3 drives the flip plate 106 to rotate, a main line slot 102 is vertically fixed in the control cabinet housing 101, and a secondary line slot 108 is fixed to the other end of the flip plate 106.

[0020] In the embodiment of the present invention, when in use, in the initial state, the sliding frame 105 is located at one end of the guide groove 104, the sliding frame 105 drives the flip plate 106 to be located at the rear side of the control cabinet housing 101, the flip plate 106 is in a vertical state, the electrical components are installed on the electrical installation rail 107 on the front side of the flip plate 106, the line is hidden in the secondary line groove 108 on the rear side of the flip plate 106, the line in the secondary line groove 108 is inserted into the corrugated hose 109, and then stored in the main line groove 102, the corrugated hose 109 is used to connect the line Protection, the corrugated hose 109 is in a folded state; when inspecting or replacing electrical components in the electrical control cabinet, hold the handle 110 and pull the sliding frame 105 forward. Under the guidance of the guide groove 104, the sliding frame 105 drives the flip plate 106 to move forward, and then the flip plate 106 drives the electrical components on the electrical installation rail 107 to approach the cabinet door, so that the electrical components on the electrical installation rail 107 are kept away from the electrical components above and below, avoiding interference from the electrical components above or below when inspecting and replacing electrical components. Moreover, the electrical components on the electrical installation rail 107 are close to the cabinet door, and the operating space is increased. The staff does not need to enter the control cabinet housing 101 for operation, which is convenient for the detection and replacement of the electrical components on the electrical installation rail 107, and improves the safety during the detection and replacement of the electrical components on the electrical installation rail 107. When the sliding frame 105 moves forward, the flip mechanism 3 drives the flip plate 106 to rotate to a horizontal state, so that the electrical components on the electrical installation rail 107 are placed upward, which is further convenient for the detection and replacement of the electrical components on the electrical installation rail 107; after the detection and replacement of the electrical components are completed, the sliding frame 105 is pushed into the control cabinet housing 101 to move and reset, and when the sliding frame 105 moves backward, the flip mechanism 3 drives the flip plate 106 to rotate to a vertical state, so that the electrical components on the electrical installation rail 107 are located on the front side of the flip plate 106, and the secondary line slot 108 and the line are located on the rear side of the flip plate 106, thereby hiding the line, making the control cabinet housing 101 look more concise, and making the interior of the control cabinet housing 101 more beautiful.

[0021] like Figure 1-Figure 7 As shown, as a preferred embodiment of the present invention, a threaded sleeve 1 601 and a threaded sleeve 2 604 are respectively fixed at both ends of the corrugated hose 109, a long hole 603 is provided on the fixing frame 103, the threaded sleeve 2 604 passes through the long hole 603, two fixing nuts 2 605 are threadedly connected to the threaded sleeve 2 604, and the threaded sleeve 2 604 is fixed to the fixing frame 103 through two fixing nuts 2 605, the threaded sleeve 1 601 passes through the side wall of the flip plate 106, two fixing nuts 1 602 are threadedly connected to the threaded sleeve 1 601, and the threaded sleeve 1 601 is fixed to the flip plate 106 through the fixing nuts 1 602.

[0022] In the embodiment of the present invention, the second threaded sleeve 604 is located in the long hole 603, and the two fixing nuts 605 on the second threaded sleeve 604 are located on the front and rear sides of the fixing frame 103, so that the two fixing nuts 605 clamp the fixing frame 103 to fix the second threaded sleeve 604 on the fixing frame 103, and the first threaded sleeve 601 passes through the side wall of the flip plate 106, and the two fixing nuts 602 on the first threaded sleeve 601 are located on the left and right sides of the side wall of the flip plate 106. Nut 1 602 clamps the side wall of the flip plate 106 and fixes the threaded sleeve 1 601 on the side wall of the flip plate 106. By adjusting the positions of the two fixing nuts 1 602 on the threaded sleeve 1 601 and the position of the threaded sleeve 2 604 in the long hole 603, the position of the corrugated hose 109 in the left and right directions in the control cabinet housing 101 can be adjusted, thereby avoiding contact between multiple drooping corrugated hoses 109 and allowing the corrugated hose 109 to extend or bend smoothly.

[0023] like Figure 4 , Figure 6 , Figure 7 and Fig. 9 As 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 in the sliding groove 201, two limiting holes 205 are arranged in the guide 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, and the other end of the sliding block 202 is fixed with a compression spring 203, and the end of the compression spring 203 is fixed in the sliding groove 201.

[0024] In the embodiment of the present invention, the compression spring 203 pushes the sliding block 202, and the sliding block 202 drives the limiting rod 204 to be inserted into the limiting hole 205, thereby limiting the forward and backward movement of the sliding frame 105. Two limiting holes 205 are provided on the fixed frame 103. When the limiting rod 204 is respectively inserted into the two limiting holes 205, the sliding frame 105 can be fixed at the front or rear of the fixed frame 103. When the sliding frame 105 is moved, the sliding block 202 is pushed, and the sliding block 202 overcomes the elastic force of the compression spring 203 and drives the limiting rod 204 to move, thereby causing the limiting rod 204 to disengage from one of the limiting holes 205, thereby releasing the movement restriction of the sliding frame 105.

[0025] like Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 8 and Fig.10As shown, as a preferred embodiment of the present invention, the flip mechanism 3 includes a mounting groove 301 provided in the sliding frame 105, and a guide groove 303 vertically provided in the sliding frame 105, the middle of the guide groove 303 is connected with the mounting groove 301, a gear 302 is provided in the mounting groove 301, the gear 302 is fixed on the flip plate 106, a guide slider 304 is slidably connected in the guide groove 303, a plurality of teeth 305 meshing with the gear 302 are provided on the side wall of the guide slider 304, and a transmission component 4 is provided on the sliding frame 105. When the sliding frame 105 moves forward and backward, The transmission component 4 drives the guide slider 304 to move up and down; the transmission component 4 includes a horizontal avoidance groove 402 on the sliding frame 105, the avoidance groove 402 is connected with the guide slide groove 303, a fixed push block 403 is fixed on the front inner wall of the fixed frame 103, the fixed push block 403 is slidably matched with one end of the guide slider 304, and the matching surface is an inclined surface, a connecting block is fixed on the side wall of the guide slider 304, a compression spring 2 401 is fixed on the connecting block, and a vertical avoidance groove for avoiding the movement of the connecting block is provided on the sliding frame 105, and the end of the compression spring 2 401 is fixed in the vertical avoidance groove.

[0026] In the embodiment of the present invention, when the sliding frame 105 drives the flip plate 106 to move forward, the fixed push block 403 is inserted into the avoidance groove 402, the fixed push block 403 overcomes the elastic force of the compression spring 401 and pushes the guide slider 304 downward, and the guide slider 304 moving downward pushes the gear 302 to rotate through a plurality of teeth 305, and the gear 302 drives the flip plate 106 to rotate until the flip plate 106 rotates to a horizontal state; when the sliding frame 105 drives the flip plate 106 to move backward, the fixed push block 403 disengages from the avoidance groove 402, the compression spring 401 pushes the guide slider 304 to move upward, and the guide slider 304 moving upward pushes the gear 302 to reverse through a plurality of teeth 305, and the gear 302 drives the flip plate 106 to reverse until the flip plate 106 rotates to a vertical state.

[0027] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 8 and Fig.10As shown, 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 the flip plate 106 and the electrical installation rail 107; the heat sink 501 is 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, and a fixed push block 2 404 is fixed on the inner rear side of the fixed frame 103, and the fixed push block 2 404 is slidably matched with the other end of the guide slider 304, and the matching surface is an inclined surface.

[0028] In the embodiment of the present invention, two avoidance grooves 402 are provided, which are used to avoid the movement of the fixed push block 1 403 and the fixed push block 2 404 respectively. When the flip plate 106 moves backward, the fixed push block 2 404 enters another avoidance groove 402, and the fixed push block 2 404 pushes the guide slider 304 upward, so that the guide slider 304 is fully reset upward, so that the flip plate 106 is stably in a vertical state. When the flip 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 rail 107, so that the heat on the electrical components The heat is quickly dissipated through the heat sink 501, thereby improving the heat dissipation effect of the electrical components, thereby 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 thermal conductivity of the heat sink 501. The sliding cooperation between the fixed push block 404 and the guide slider 304 can prevent the compression spring 401 from failing after long-term use, and the compression spring 401 cannot completely reset the flip plate 106 due to insufficient elastic force, thereby preventing the heat sink 501 from being damaged when the tilted flip plate 106 moves backward and cannot be inserted into the avoidance hole 502.

[0029] The above embodiment of the present invention provides an electrical control cabinet for a high-speed bag making machine. When in use, in the initial state, the sliding frame 105 is located at one end of the guide groove 104, the sliding frame 105 drives the flip plate 106 to be located at the rear side of the control cabinet housing 101, the flip plate 106 is in a vertical state, the electrical components are installed on the electrical installation rail 107 on the front side of the flip plate 106, the circuit is hidden in the secondary line groove 108 on the rear side of the flip plate 106, the circuit in the secondary line groove 108 passes through the corrugated hose 109, and then is stored in the main line groove 102, the corrugated hose 109 protects the circuit, and the corrugated hose 109 is in a folded state; When inspecting or replacing electrical components in the electrical control cabinet, push the sliding block 202, the sliding block 202 overcomes the elastic force of the compression spring 203 and drives the limit rod 204 to move, so that the limit rod 204 is disengaged 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 guidance of the guide groove 104, the sliding frame 105 drives the flip plate 106 to move forward, and then the flip plate 106 drives the electrical components on the electrical installation rail 107 to approach the cabinet door, so that the electrical components on the electrical installation rail 107 are away from the electrical components above and below, avoiding The interference of electrical components above or below is eliminated, and the electrical components on the electrical installation rail 107 are close to the cabinet door, the operating space is increased, and the staff does not need to enter the control cabinet housing 101 for operation, thereby facilitating the detection and replacement of electrical components on the electrical installation rail 107, and improving the safety during the detection and replacement of electrical components on the electrical installation rail 107. When the sliding frame 105 moves forward, the fixed push block 1 403 is inserted into the avoidance groove 402, the fixed push block 1 403 overcomes the elastic force of the compression spring 2 401 and pushes the guide slider 304 downward, and the guide slider 304 moving downward pushes the gear 302 to rotate through a plurality of teeth 305, and the gear 302 drives the flip plate 106 to rotate , until the flip plate 106 rotates to a horizontal state, then the compression spring 1 203 pushes the sliding block 202, and the sliding block 202 drives the limiting rod 204 to be inserted into the limiting hole 205, thereby limiting the forward and backward movement of the sliding frame 105, and the electrical components on the electrical installation rail 107 are placed upward, which further facilitates the inspection and replacement of the electrical components on the electrical installation rail 107; after the inspection and replacement of the electrical components are completed, the sliding block 202 is pushed, and the sliding block 202 overcomes the elastic force of the compression spring 1 203 and drives the limiting rod 204 to move, thereby causing the limiting rod 204 to disengage from one of the limiting holes 205, thereby releasing the movement restriction of the sliding frame 105, and pushing it into the control cabinet housing 101. The movable sliding frame 105 moves and resets. When the sliding frame 105 moves backward, the fixed push block 1 403 disengages from the avoidance groove 402, and the compression spring 2 401 pushes the guide slider 304 to move upward. The upward moving guide slider 304 pushes the gear 302 to reverse through a plurality of teeth 305, and the gear 302 drives the flip plate 106 to reverse until the flip plate 106 rotates to a vertical state, so that the electrical components on the electrical installation guide rail 107 are located on the front side of the flip plate 106, and the secondary line slot 108 and the line are located on the rear side of the flip plate 106, thereby hiding the line, making the control cabinet housing 101 look more concise, and making the interior of the control cabinet housing 101 more beautiful.

[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should 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: Also includes: A plurality of fixing frames (103) fixed in the control cabinet housing (101); A guide groove (104) is horizontally arranged on the inner side of the fixed frame (103), a sliding frame (105) is slidably connected in the guide groove (104), and a flip plate (106) is rotatably connected to the sliding frame (105); An electrical installation rail (107) is fixed to one end of the flip plate (106), a corrugated hose (109) is arranged on one side of the flip plate (106), and the end of the corrugated hose (109) is arranged on a fixing frame (103); The sliding frame (105) is provided with a flipping mechanism (3), and when the sliding frame (105) moves forward and backward, the flipping mechanism (3) drives the flipping plate (106) to rotate; The flip mechanism (3) comprises a mounting groove (301) arranged in the sliding frame (105), and a guide groove (303) arranged vertically in the sliding frame (105); the middle part of the guide groove (303) is connected to the mounting groove (301); a gear (302) is arranged in the mounting groove (301); the gear (302) is fixed on the flip plate (106); a guide slider (304) is slidably connected in the guide groove (303); a plurality of teeth (305) meshing with the gear (302) are arranged on the side wall of the guide slider (304); a transmission assembly (4) is arranged on the sliding frame (105); when the sliding frame (105) moves forward and backward, the transmission assembly (4) drives the guide slider (304) to move up and down.

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

3. The electrical control cabinet of the high-speed bag making machine according to claim 2 is characterized in that: A threaded sleeve 1 (601) and a threaded sleeve 2 (604) are fixed to both ends of the corrugated hose (109), respectively; a long hole (603) is provided on the fixing frame (103); the threaded sleeve 2 (604) passes through the long hole (603); two fixing nuts 2 (605) are threadedly connected to the threaded sleeve 2 (604); the threaded sleeve 2 (604) is fixed to the fixing frame (103) via the two fixing nuts 2 (605); the threaded sleeve 1 (601) passes through the side wall of the flip plate (106); two fixing nuts 1 (602) are threadedly connected to the threaded sleeve 1 (601); the threaded sleeve 1 (601) is fixed to the flip plate (106) via the fixing nuts 1 (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 arranged on the sliding frame (105), a sliding block (202) is slidably connected in the sliding groove (201), two limiting holes (205) are arranged in the guide groove (104), a limiting rod (204) is fixed at one end of the sliding block (202), one end of the limiting rod (204) passes through the sliding frame (105) and cooperates with the limiting hole (205), and a compression spring (203) is fixed at the other end of the sliding block (202), and the end of the compression spring (203) is fixed in the sliding groove (201).

5. The electrical control cabinet of the high-speed bag making machine according to claim 1 is characterized in that: The transmission assembly (4) comprises an avoidance groove (402) horizontally arranged on the sliding frame (105), the avoidance groove (402) being communicated with the guide sliding groove (303), a fixed push block (403) being fixed on the front inner wall of the fixed frame (103), the fixed push block (403) being slidably matched with one end of the guide sliding block (304), and the matching surface is an inclined surface, a connecting block is fixed on the side wall of the guide sliding block (304), a compression spring (401) is fixed on the connecting block, and a vertical avoidance groove for avoiding movement of the connecting block is provided on the sliding frame (105), and the end of the compression spring (401) is fixed in the vertical avoidance groove.

6. The electrical control cabinet of the high-speed bag making machine according to claim 5, characterized in that: 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 the flip plate (106) and the electrical installation guide rail (107).

7. The electrical control cabinet of the high-speed bag making machine according to claim 6, characterized in that: The heat sink (501) is slidably connected to the fixing frame (103), and a tension spring (503) is fixed to the heat sink (501), the end of the tension spring (503) is fixed to the fixing frame (103), and a second fixed push block (404) is fixed to the inner rear side of the fixing frame (103), and the second fixed push block (404) is slidably matched with the other end of the guide slider (304), and the matching surface is an inclined surface.

Citation Information

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