Cable integration device for electrical engineering
By designing a cable integration device with tensioning, limiting, and cleaning components, the problems of looseness and tangling in cable integration devices are solved, achieving tight integration and cleaning of cables, and improving the stability and safety of electrical equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-03-13
AI Technical Summary
Existing cable consolidation devices lack a tensioning mechanism, which makes the cables prone to loosening during winding, affecting the tightness and aesthetics of the consolidation, and may cause tangling problems, even leading to a decline in electrical performance and safety hazards.
A cable integration device including a tensioning component, a limiting component, and a cleaning component is designed. The tensioning component flips the brush roller to tighten the cable, the limiting component prevents displacement, and the cleaning component cleans the dirt on the cable surface, ensuring tight and clean cable integration.
It effectively prevents cables from becoming loose and tangled, maintains the tightness and aesthetics of cable integration, avoids dirt adhesion, ensures stable electrical performance, and improves safety during use.
Smart Images

Figure CN223990758U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a cable integration device for electrical engineering, belonging to the field of cable integration technology. Background Technology
[0002] Electrical automation relies heavily on cables, which serve multiple functions including control installation, equipment connection, and power transmission. Cable consolidation is a crucial aspect of cable application. Patent application CN217051049U discloses a cable consolidation device for electrical engineering automation. This device utilizes a first rotating rod that rotates together with a second rotating rod. The cavity is adapted to a polygonal rod, facilitating the rotation of the consolidation cylinder. Cables are wound around the circumference of the consolidation cylinder for consolidation. An eccentric wheel rotates with the second rotating rod, and a second spring continuously deforms and returns to its original position, causing the moving rod to drive the guide block to move up and down. This ensures that the cables are wound orderly and evenly around the circumference of the consolidation cylinder during consolidation, effectively preventing the cables from being wound only in one area. However, in practical applications, this device still has some shortcomings, especially when integrating cables. Due to the lack of an effective tensioning mechanism, the cables tend to loosen when wound onto the integrating drum surface. This looseness not only leads to loose cable integration, affecting the overall aesthetics and compactness, but more importantly, it can cause cable tangling, causing significant inconvenience for subsequent cable use and maintenance. Furthermore, cable tangling can also lead to a decline in electrical performance and even pose safety hazards, threatening the stable operation of the power system. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to provide a cable integration device for electrical engineering, which addresses the shortcomings of the existing technology and prevents cables from becoming loose or tangled.
[0004] To solve this technical problem, this utility model provides a cable integration device for electrical engineering, including a base, a first fixing frame, a rotating roller, a support plate, a second fixing frame, an integration cylinder, a cleaning component, a tensioning component, a limiting component, and a motor. The bottom of the first fixing frame is fixed to one end of the base, and the rotating roller is rotatably connected to the upper part of the first fixing frame. A support plate is installed at the other end of the base, and the second fixing frames are fixed to both sides of the inner side of the support plate. An integration cylinder is rotatably connected between the two second fixing frames. A motor is fixed to the outer side of the second fixing frames, and the output shaft of the motor is fixed to the integration cylinder and can drive the integration cylinder to rotate. The cleaning component and the tensioning component are arranged in... On the base, a limiting component is installed inside the tensioning component to prevent deviation. When the cable is being integrated, the cable is wound around the surface of the integration cylinder via a rotating roller. The motor is turned on, and the integration cylinder can wind and integrate the cable. Flipping the connecting plate of the tensioning component will cause the second brush roller to flip and come into contact with the cable surface, thus tightening the cable. Pulling the handle of the cleaning component and rotating the connecting arm will make the surface of the first brush roller fit against the cable, allowing the cable surface to be cleaned during winding and integration. The limiting component can limit the connecting plate and the second brush roller to prevent deviation and affect the tension of the cable.
[0005] A connecting frame is provided on the base near the support plate, and the cleaning component is mounted on the base through the connecting frame; a fixing seat is provided on the base near the support plate, and the tensioning component is fixed to the base through the fixing seat.
[0006] The tensioning assembly includes a fixed base, a connecting plate, and a second brush roller. The fixed base has a groove on its surface, and the inner wall of the groove has multiple movable slots evenly distributed around its circumference. One end of the connecting plate is provided with a second fixed post. The connecting plate is rotated with the fixed base by being engaged in the groove through the second fixed post. The second brush roller is provided between the other ends of the two sets of connecting plates.
[0007] The fixed column 2 has a cavity 2 inside, and a rotating rod is installed in the cavity 2. A gear is fixed to one end of the rotating rod, and a limit component is installed at the other end and is rotatably connected to the connecting plate. In the cavity 2, there is a rack at the upper and lower parts of the gear and it meshes with the gear. A fixed plate is fixed to the opposite end of the rack. A limit block is fixed to the outside of the fixed plate. The end of the limit block away from the fixed plate passes through the fixed column 2. A spring 2 is fixed to the inside of the fixed plate. The other end of the spring 2 is fixed to another set of racks.
[0008] The limiting assembly includes a fixing block, a fixing cylinder, and a cover. The fixing block is fixed to the end of the rotating rod, and a slot is provided on its surface. One end of the cover is slidably connected to the inner wall of the connecting plate, and the inner wall of the fixing cylinder is slidably connected to the cover. The end of the cover away from the fixing cylinder passes through the fixing cylinder, and an insert plate is fixed to the inside of the cover. The fixing cylinder is fixed to the side wall of the connecting plate. By moving the cover, the insert plate is inserted into the slot, which limits the fixing block and thus limits the rotating rod.
[0009] The inner side of the fixed cylinder is provided with a stabilizing groove. There are two sets of stabilizing grooves, which are linearly arrayed on the inner wall of the fixed cylinder. A connecting block is provided in the stabilizing groove. The surface of the cover is fixed with the connecting block. A sliding groove is provided on the surface of the connecting block. A sliding column is slidably connected to the inner wall of the sliding groove. A spring is fixed on the surface of the sliding column. The end of the spring away from the sliding column is fixed to the inner wall of the sliding groove.
[0010] The cleaning assembly includes a connecting frame, connecting arms, and mounting slots. The mounting slots are located on the surfaces of the two sets of connecting plates away from the second fixed post. The connecting frame is fixed on both sides of the base. The connecting frame abuts against the bottom of the connecting arm. A brush roller is fixed to one end of the inner side of the two connecting arms, and a handle is installed on the outer side of the other end. A fixed post is provided on the inner side of the connecting arm near the handle. A limit groove is formed on the surface of the fixed post.
[0011] The mounting slot includes a cavity 1 formed in the connecting plate. A rotating plate is rotatably connected to the inner wall of the cavity 1. A through hole is formed on the surface of the rotating plate. A short rod is abutted against the inner wall of the through hole. A locking block is fixed to the surface of the short rod. The locking block is slidably connected to the inner wall of the cavity 1. A spring 1 is fixed to the surface of the locking block. The end of the spring 1 away from the locking block is fixed to the inner wall of the cavity 1. The end of the locking block away from the spring 1 penetrates through the cavity 1.
[0012] The cross-section of the end of the limiting block away from the fixing plate is triangular.
[0013] The cross-section of the end of the card block furthest from the spring is triangular.
[0014] Beneficial effects: Compared with the prior art, this utility model, through the setting of the tensioning component, flips the connecting plate, which drives the second fixed column to rotate in the groove, and simultaneously drives the second brush roller to flip, thus tightening the cable and preventing it from becoming loose and tangled; through the setting of the limiting component, when the connecting plate is adjusted to the appropriate position, pressing the cover causes the sliding column to enter the stabilizing groove to stabilize the cover, and at the same time the insert plate is inserted into the slot, which limits the fixed block and the rotating rod, preventing the limiting block from moving further, and thus limiting the connecting plate and the second brush roller, preventing the connecting plate and the second brush roller from shifting; through the setting of the cleaning component, pulling the handle and rotating the connecting arm causes the surface of the first brush roller to come into contact with the cable, which allows the cable surface to be cleaned during the winding and assembly process, preventing dirt from adhering to the cable surface and affecting subsequent use. Attached Figure Description
[0015] Figure 1 This is a schematic front view of the structure of this utility model;
[0016] Figure 2 This is a schematic side view of the structure of this utility model;
[0017] Figure 3 This is a schematic diagram of the partial explosion structure of this utility model;
[0018] Figure 4 This is a partial cross-sectional view of the tensioning component and the limiting component of this utility model;
[0019] Figure 5 This is a schematic diagram of the tensioning assembly of this utility model;
[0020] Figure 6 This is a schematic front view of the limiting component of this utility model;
[0021] Figure 7 This is a cross-sectional view of the connection between the fixed cylinder and the cover of this utility model.
[0022] Figure 8 This is a schematic cross-sectional view of the limiting component of this utility model;
[0023] Figure 9 This is an exploded view of the internal structure of the cleaning component and the tensioning component of this utility model;
[0024] Figure 10 This is a schematic side view of the cleaning component of this utility model;
[0025] Figure 11 This is a schematic diagram of the cleaning component of this utility model;
[0026] Figure 12 This is a schematic diagram of the cleaning component of this utility model;
[0027] Figure 13 This is a schematic side view of the structure of the transfer plate in the cleaning component of this utility model.
[0028] In the diagram: 1. Base; 2. Fixing frame one; 3. Rotating roller; 4. Support plate; 5. Fixing frame two; 6. Integrated cylinder; 10. Motor; 7. Cleaning assembly; 70. Connecting frame; 71. Mounting slot; 72. Fixing column one; 73. Limiting slot; 74. Cavity one; 75. Rotating plate; 76. Through hole; 77. Short rod; 78. Locking block; 79. Spring one; 700. Connecting arm; 701. Brush roller one; 702. Handle; 8. Tensioning assembly; 80. Fixing seat; 81. Groove; 82. Fixed post II; 83. Cavity II; 84. Rotating rod; 85. Gear; 86. Rack; 87. Fixed plate; 88. Limiting block; 89. Spring II; 800. Linking plate; 801. Brush roller II; 802. Movable groove; 9. Limiting assembly; 90. Fixed block; 91. Fixed cylinder; 93. Cover; 94. Insert plate; 95. Slot; 96. Connecting block; 97. Slide groove; 98. Slide column; 99. Spring III; 900. Stabilizing groove. Detailed Implementation
[0029] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0030] like Figures 1-13 As shown, this utility model provides a technical solution: a cable integration device for electrical engineering, including a base 1, a first fixing frame 2, a rotating roller 3, a support plate 4, a second fixing frame 5, an integration cylinder 6, a cleaning component 7, a tensioning component 8, a limiting component 9, and a motor 10.
[0031] The bottom of the fixing frame 2 is fixed to one end of the base 1, and the upper part of the fixing frame 2 is rotatably connected to the rotating roller 3. A support plate 4 is installed at the other end of the base 1. Fixing frames 2 5 are fixed on both sides of the inner side of the support plate 4. An integrated cylinder 6 is rotatably connected between the two fixing frames 2 5. A motor 10 is fixed on the outer side of the fixing frames 2 5. The output shaft of the motor 10 is fixed to the integrated cylinder 6 and can drive the integrated cylinder 6 to rotate. The cleaning component 7 and the tensioning component 8 are set on the base 1. The limiting component 9 is set inside the tensioning component 8 for limiting and preventing displacement.
[0032] A connecting frame 70 is provided on the base 1 near the support plate 4, and the cleaning component 7 is mounted on the base 1 through the connecting frame 70; a fixing seat 80 is provided on the base 1 near the support plate 4, and the tensioning component 8 is fixed on the base 1 through the fixing seat 80.
[0033] The tensioning assembly 8 includes a fixed base 80, a connecting plate 800, and a second brush roller 801. The fixed base 80 has a groove 81 on its surface, and multiple movable slots 802 are evenly distributed along the circumference of the inner wall of the groove 81. One end of the connecting plate 800 has a fixed post 82. The connecting plate 800 is rotatably connected to the fixed base 80 by engaging the fixed post 82 into the groove 81. The second brush roller 801 is located between the other ends of the two sets of connecting plates 800. When the connecting plate is flipped, the fixed post 801 rotates within the groove, simultaneously causing the second brush roller to flip. At this time, the surface of the second brush roller contacts the surface of the cable, thus tensioning the cable.
[0034] Preferably, the interior of the second fixed column 82 is provided with a cavity 83, and a rotating rod 84 is provided in the cavity 83. One end of the rotating rod 84 is fixed with a gear 85, and the other end is provided with a limit assembly 9 and is rotatably connected to the connecting plate 800. In the cavity 83, a rack 86 is provided at the upper and lower parts of the gear 85 to mesh with the gear 85. The opposite ends of the racks 86 are fixed with a fixing plate 87. A limit block 88 is fixed on the outside of the fixing plate 87. The end of the limit block 88 away from the fixing plate 87 passes through the second fixed column 82. A second spring 89 is fixed on the inside of the fixing plate 87. The other end of the second spring 89 is fixed to another set of racks 86.
[0035] Preferably, the limiting component 9 includes a fixing block 90, a fixing cylinder 91, and a cover 93; the fixing block 90 is fixed to the end of the rotating rod 84, and a slot 95 is provided on its surface; one end of the cover 93 is slidably connected to the inner wall of the connecting plate 800, and the inner wall of the fixing cylinder 91 is slidably connected to the cover 93, with the end of the cover 93 away from the fixing cylinder 91 penetrating through the fixing cylinder 91, and an insert plate 94 is fixed to the inner side of the cover 93; the fixing cylinder 91 is fixed to the side wall of the connecting plate 800; by moving the cover 93, the insert plate 94 is inserted into the slot 95, thereby limiting the fixing block 90 and thus limiting the rotating rod 84.
[0036] Preferably, the inner side of the fixed cylinder 91 is provided with a stabilizing groove 900. Two sets of stabilizing grooves 900 are arranged linearly on the inner wall of the fixed cylinder 91. A connecting block 96 is provided within the stabilizing groove 900. The surface of the cover 93 is fixed with the connecting block 96. A sliding groove 97 is provided on the surface of the connecting block 96. A sliding column 98 is slidably connected to the inner wall of the sliding groove 97. A spring 99 is fixed to the surface of the sliding column 98, with one end of the spring 99 away from the sliding column 98 fixed to the inner wall of the sliding groove 97. When the connecting plate is adjusted to the appropriate position, pressing the cover causes the sliding column to enter the stabilizing groove and stabilize the cover. Simultaneously, the insert plate is inserted into the slot, thus limiting the movement of the fixed block and the rotating rod, preventing the limiting block from moving further, and thus limiting the movement of the connecting plate and the brush roller.
[0037] Preferably, the cleaning assembly 7 includes a connecting frame 70, a connecting arm 700, and a mounting groove 71. The mounting groove 71 is located on the surface of the two sets of connecting plates 800 away from the fixing post 82. The connecting frame 70 is fixed on both sides of the base 1, and the connecting frame 70 abuts against the bottom of the connecting arm 700. The connecting frame 70 is used to support the connecting arm 700. A brush roller 701 is fixed to one end of the inner side of the two connecting arms 700, and a handle 702 is installed on the outer side of the other end. A fixing post 72 is provided on the inner side of the connecting arm 700 near the handle 702. A limit groove 73 is formed on the surface of the fixing post 72.
[0038] Preferably, the mounting groove 71 includes a cavity 74 formed in the connecting plate 800. A rotating plate 75 is rotatably connected to the inner wall of the cavity 74. A through hole 76 is formed on the surface of the rotating plate 75. A short rod 77 abuts against the inner wall of the through hole 76. A locking block 78 is fixed to the surface of the short rod 77 and is slidably connected to the inner wall of the cavity 74. A spring 79 is fixed to the surface of the locking block 78. The end of the spring 79 away from the locking block 78 is fixed to the inner wall of the cavity 74, and the end of the locking block 78 away from the spring 79 passes through the cavity 74. Pulling the handle rotates the connecting arm, and the surface of the brush roller comes into contact with the cable. This allows the cable surface to be cleaned during cable winding and assembly, preventing dirt from adhering to the cable surface and affecting subsequent use.
[0039] Preferably, the end of the limiting block 88 away from the fixing plate 87 has a triangular cross-section, which allows the limiting block to move when its surface is in contact with the fixing plate 87.
[0040] Preferably, the end of the locking block 78 away from the spring 79 has a triangular cross-section, which can drive the locking block to move when the surface is in contact with it.
[0041] The working process and working principle of this utility model:
[0042] When cable consolidation is required, the cable is wound around the surface of the consolidation cylinder 6 via the surface of the rotating roller 3. The motor 10 is then activated, causing the consolidation cylinder 6 to wind and consolidate the cable. Simultaneously, the operator flips the connecting plate 800, causing the second fixing column 82 to rotate within the groove 81, which in turn rotates the second brush roller 801. At this point, the surface of the second brush roller 801 contacts the cable surface, tautning the cable and preventing it from becoming loose or tangled. Simultaneously, as the connecting plate 800 rotates, the connecting arm 700 rotates synchronously, its surface contacting the top of the connecting frame 70, preventing the connecting arm 700 from causing the first brush roller 701 to move downwards. Meanwhile, as the second fixing column 82 rotates, the limit block 8... When the surface of the 8th pinion 88 contacts the inner wall of the movable groove 802, the limiting block 88 moves away from the movable groove 802, simultaneously driving the rack 86 to move, thus rotating the gear 85. At this time, the rack 86, the fixed plate 87, and the limiting block 88 move synchronously, and the second spring 89 is compressed. When the position of the limiting block 88 is parallel to the movable groove 802, the second spring 89 is released, allowing the limiting block 88 to enter the movable groove 802. When the connecting plate 800 is adjusted to the appropriate position, the cover 93 is pressed. At this time, the surface of the sliding column 98 contacts the inner wall of the stabilizing groove 900, and the sliding column 98 enters the sliding groove 97. The third spring 99 is compressed. When the position of the sliding column 98 is parallel to another set of stabilizing grooves 900, the third spring 99 is released, and the sliding column 98 enters the stabilizing groove 900. The stabilizing cover 93, along with the insertion plate 94 into the slot 95, limits the fixing block 90, thereby limiting the rotating rod 84. This prevents the limiting block 88 from moving further, and also limits the connecting plate 800 and the second brush roller 801, preventing them from shifting and affecting cable tension. When the connecting plate 800 needs to be flipped again, pull the cover 93, causing the sliding column 98 to enter another set of stabilizing grooves 900. Simultaneously, the insertion plate 94 disengages from the slot 95, releasing the limit and allowing the connecting plate 800 to flip normally again. Furthermore, when the cable is being integrated, pull the handle 702 and rotate the connecting arm 700, causing the surface of the first brush roller 701 to contact the cable, thus ensuring proper cable tension. During winding and integration, the cable surface can be cleaned to prevent dirt from adhering to the cable surface and affecting subsequent use. At the same time, when the connecting arm 700 rotates, it drives the fixed column 72 to rotate synchronously. At this time, the inner wall of the limiting groove 73 is in contact with the surface of the locking block 78, and the locking block 78 enters the cavity 74. The spring 79 is compressed. When the locking block 78 moves, it drives the short rod 77 to move. At this time, the short rod 77 drives the rotating plate 75 to rotate, so that each short rod 77 and locking block 78 can move radially synchronously. When the position of the locking block 78 is parallel to the limiting groove 73, the spring 79 is released, so that the locking block 78 enters the limiting groove 73. This prevents the connecting arm 700 and the brush roller 701 from flipping under the action of external force.
[0043] Compared with existing technologies, this utility model, through its tensioning component, flips the connecting plate, causing the second fixed column to rotate within the groove, simultaneously causing the second brush roller to flip, thus tensioning the cable and preventing it from becoming loose or tangled. Through its limiting component, when the connecting plate is adjusted to the appropriate position, pressing the cover causes the sliding column to enter the stabilizing groove and stabilize the cover. Simultaneously, the insert plate inserts into the slot, limiting the fixed block and rotating rod, preventing further movement of the limiting block and limiting the connecting plate and the second brush roller to prevent misalignment. Through its cleaning component, pulling the handle and rotating the connecting arm allows the surface of the first brush roller to contact the cable, enabling cleaning of the cable surface during winding and assembly, preventing dirt from adhering to the cable surface and affecting subsequent use.
[0044] The above-described embodiments of this utility model are merely illustrative examples and are not the only ones. All modifications within the scope of this utility model or equivalent to this utility model are encompassed by this utility model.
Claims
1. An electrical engineering cable integration device, characterized by: The utility model relates to a cable winding and cleaning device, including base (1), fixed frame one (2), rotating roller (3), support plate (4), fixed frame two (5), integration cylinder (6), cleaning assembly (7), tighten assembly (8), limiting assembly (9) and motor (10), the bottom fixed frame one (2) is fixed in one end of base (1), and the upper portion rotationally connected of fixed frame one (2) has rotating roller (3);The other end of base (1) is installed with support plate (4), and the inboard surface of support plate (4) is fixed with fixed frame two (5) respectively on both sides, and rotatingly connected with integration cylinder (6) between two fixed frame two (5), and the outside of fixed frame two (5) is fixed with motor (10), and the output shaft of motor (10) is fixed with integration cylinder (6) and can drive integration cylinder (6) rotation;The cleaning assembly (7) and tighten assembly (8) are set up on base (1), and limiting assembly (9) is set up inside tighten assembly (8) and is used for preventing the deviation, when the cable is integrated, the cable is wound on the surface of integration cylinder (6) through rotating roller (3), and the motor (10) is started, and integration cylinder (6) can be rolled up and integrated to the cable, the linkage plate (800) of turning over tighten assembly (8) can drive brush roller two (801) to turn over and be in contact with the surface of cable, and the cable is tightened, the handle (702) of cleaning assembly (7) is pulled, and the rotary connecting arm (700) is rotated, so that the surface of brush roller one (701) is attached to the cable, and the surface of the cable is cleaned when the cable is rolled up and integrated, limiting assembly (9) can limit linkage plate (800), brush roller two (801) and linkage plate (800), brush roller two (801) are limited, avoid the deviation and influence the tightening of the cable.
2. The cable integration device for electrical engineering of claim 1, wherein: The base (1) is provided with a connecting frame (70) near the support plate (4), and the cleaning assembly (7) is arranged on the base (1) through the connecting frame (70); the base (1) is provided with a fixing seat (80) near the support plate (4), and the tightening assembly (8) is fixed on the base (1) through the fixing seat (80).
3. The cable integration device for electrical engineering of claim 1, wherein: The tightening assembly (8) comprises a fixing seat (80), a linkage plate (800) and a brush roller two (801), the surface of the fixing seat (80) is provided with a groove (81), and a plurality of movable grooves (802) are uniformly arranged on the inner wall of the groove (81); one end of the linkage plate (800) is provided with a fixed column two (82); the linkage plate (800) is clamped into the groove (81) through the fixed column two (82), so as to realize the rotary connection with the fixing seat (80), and the other end between the two groups of linkage plates (800) is provided with the brush roller two (801).
4. The cable integration device for electrical engineering of claim 3, wherein: The inside of the fixed column two (82) is provided with a cavity two (83), the rotating rod (84) is arranged in the cavity two (83), one end of the rotating rod (84) is fixedly provided with a gear (85), the other end is provided with a limiting assembly (9) and is rotationally connected with the linkage plate (800); the upper and lower parts of the gear (85) in the cavity two (83) are each provided with a rack (86) engaged with the gear (85), the reverse end of the rack (86) is fixedly provided with a fixed plate (87), the outer side of the fixed plate (87) is fixedly provided with a limiting block (88), one end of the limiting block (88) away from the fixed plate (87) penetrates the fixed column two (82); the inner side of the fixed plate (87) is fixedly provided with a spring two (89), the other end of the spring two (89) is fixed with the other group of racks (86).
5. The cable integration device for electrical engineering of claim 1, wherein: The limiting assembly (9) comprises a fixed block (90), a fixed cylinder (91) and a cover body (93); the fixed block (90) is fixed at the end of the rotating rod (84), and the surface thereof is provided with a slot (95); one end of the cover body (93) is slidingly connected to the inner wall of the linkage plate (800), the inner wall of the fixed cylinder (91) is slidingly connected with the cover body (93), one end of the cover body (93) away from the fixed cylinder (91) penetrates the fixed cylinder (91), and the inner side of the cover body (93) is fixedly provided with a plug plate (94); the fixed cylinder (91) is fixed to the side wall of the linkage plate (800); the plug plate (94) is inserted into the slot (95) by moving the cover body (93), so that the fixed block (90) is limited, and the rotating rod (84) is limited.
6. The cable integration device for electrical engineering of claim 5, wherein: The inner side of the fixed cylinder (91) is provided with a stabilizing groove (900), the stabilizing groove (900) is provided with two groups, the two groups of stabilizing grooves (900) are linearly arranged on the inner wall of the fixed cylinder (91), the stabilizing groove (900) is provided with a connecting block (96), and the surface of the cover body (93) is fixedly provided with the connecting block (96); a sliding groove (97) is formed in the surface of the connecting block (96), a sliding column (98) is slidingly connected to the inner wall of the sliding groove (97), a spring three (99) is fixedly arranged on the surface of the sliding column (98), and one end of the spring three (99) away from the sliding column (98) is fixed to the inner wall of the sliding groove (97).
7. The cable integration device for electrical engineering of claim 1, wherein: The cleaning assembly (7) comprises a connecting frame (70), a connecting arm (700) and a mounting groove (71), and the mounting groove (71) is arranged on the surface of the two groups of linkage plates (800) away from the fixed column two (82); the connecting frame (70) is fixed on both sides of the base (1), the connecting frame (70) abuts against the bottom of the connecting arm (700), one end of the inner side of the two connecting arms (700) is fixedly provided with a brush roller one (701), the other end of the outer side is provided with a handle (702), and the inner side of one end of the connecting arm (700) close to the handle (702) is provided with a fixed column one (72), and the surface of the fixed column one (72) is provided with a limiting groove (73).
8. The cable integration device for electrical engineering of claim 7, wherein: The installation slot (71) comprises a cavity I (74) formed on the linkage plate (800), the inner wall of the cavity I (74) is rotationally connected with a rotating plate (75), the surface of the rotating plate (75) is formed with a through hole (76), the inner wall of the through hole (76) is abutted with a short rod (77), the surface of the short rod (77) is fixedly connected with a clamping block (78), and the clamping block (78) is slidingly connected with the inner wall of the cavity I (74).
9. The cable integration device for electrical engineering of claim 4, wherein: The end, away from the fixed plate (87), of the limiting block (88) is triangular in cross section.
10. The cable integration device for electrical engineering of claim 8, wherein: The end, away from the spring I (79), of the clamping block (78) is triangular in cross section.
Citation Information
Patent Citations
Cable integration device for electrical engineering automation
CN217051049U