A comprehensive wiring auxiliary device for weak current intelligent engineering

By designing installation devices, anti-drag devices and anti-wear devices, the problems of unstable and vulnerable wires in the prior art are solved, and the rapid fixation and firm clamping of wires are achieved, and the efficiency and reliability of wiring operations are improved.

CN119401307BActive Publication Date: 2025-05-06SUZHOU MEIZHI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202510005587.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-05-06
Estimated Expiration
2045-01-03

AI Technical Summary

Technical Problem

The existing integrated wiring and wiring auxiliary device for weak current intelligent engineering is not convenient for fast clamping of fixed wires, and is easily pulled out of the clamp gap due to external dragging after the wire is installed.

Method used

A comprehensive wiring trace assist device including a mounting device, an anti-drag device and an anti-wear device is designed. The installation device achieves rapid fixation of the conductor through the cooperation of the H-shaped plate, the trapezoidal plate, the U-shaped slide plate and the threaded rod. The anti-drag device uses a nip roller, a U-shaped slide rod and a one-way bearing to limit the rotation of the nip roller and prevent the wire from being damaged by external drag. The anti-wear device increases the friction between the nip roller and the wire through the arc block wheel, U-shaped bump rod and the puncture column, ensuring the firm fixation of the wire.

Benefits of technology

It realizes rapid fixing and firm clamping of the wire, avoids damage to the wire due to external drag, and improves the efficiency and reliability of wiring operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an integrated wiring routing auxiliary device for weak current intelligent engineering, and relates to the technical field of weak current engineering. The present invention comprises a mounting plate, a through slot plate is fixed on the top of the mounting plate, a plurality of through slots are fixed on the top of the through slot plate, a mounting device is arranged at the through slot of the through slot plate, and the mounting device comprises a slider, the slider is slidably mounted inside the through slot of the through slot plate, and springs are arranged between the front and rear sides of the slider and the inner wall of the through slot of the through slot plate. The present invention enables the trapezoidal plate to press and fix the wire inside the U-shaped notch of the H-shaped plate through the arrangement of the mounting device, thereby achieving the purpose of quickly fixing the wire, and the U-shaped notch of the H-shaped plate and the two trapezoidal plates form a shield around the wire, so that the wire will not be forcibly pulled out of the clamping plate from the gap between the clamping plates of the traditional routing auxiliary device due to dragging, thereby facilitating the routing operation of the wire.
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Description

Technical Field

[0001] The invention relates to the technical field of weak current engineering, and in particular to a comprehensive wiring routing auxiliary device for weak current intelligent engineering. Background Art

[0002] The integrated wiring auxiliary device is a key device for weak current intelligent engineering, which can effectively manage and optimize the network wiring of communication, data, security, etc. Through intelligent design and efficient functions, it improves the efficiency and reliability of wiring, ensures the smooth access and interconnection of various devices, and thus meets the needs of modern buildings for highly integrated and stable operation of communication and control systems.

[0003] The patent with patent announcement number CN213846131U discloses an integrated wiring routing auxiliary device for weak-current intelligent engineering, including a guide rail and a combing device slidably matched with the guide rail, the combing device includes a frame, a movable block that can move vertically is installed in the middle of the frame, the internal rotation of the movable block is connected to two transmission screws, each transmission screw is threaded with at least two wire clamping mechanisms, the outer ends of the two transmission screws pass through the side wall of the movable block and are connected to a knob, the transmission screw is rotatably connected to the side wall of the movable block, the integrated wiring routing auxiliary device for weak-current intelligent engineering can adjust the height of the wire clamping mechanism by rotating the transmission screw two, and can also adjust the spacing of the wire clamping mechanism by rotating the transmission screw one, has strong adaptability, is convenient for making corresponding adjustments according to the actual situation of the cable, and ensures the cable combing effect.

[0004] However, the current wiring auxiliary device has the following problems: the wiring auxiliary device is not convenient for quickly clamping and fixing the wires, and after the wires are installed and fixed, when the wires are dragged by external force, the wires will be forcibly pulled out of the clamping plates from the gap between the left and right side clamps due to the dragging force, which is not conducive to the wiring and routing of the wires. Therefore, we propose a comprehensive wiring and routing auxiliary device for weak current intelligent engineering. Summary of the invention

[0005] In view of the deficiencies in the prior art, the present invention provides a comprehensive wiring routing auxiliary device for weak current intelligent engineering, which solves the problems raised in the above-mentioned background technology.

[0006] To achieve the above purpose, the present invention is implemented through the following technical solutions: an integrated wiring routing auxiliary device for weak current intelligent engineering, including a mounting plate, a through-slot plate is fixed on the top of the mounting plate, a plurality of through-slots are fixed on the top of the through-slot plate, a mounting device is arranged at the through-slot of the through-slot plate, the mounting device includes a slider, the slider is slidably installed inside the through-slot of the through-slot plate, and springs are arranged between the front and rear sides of the slider and the inner wall of the through-slot of the through-slot plate, an H-shaped plate is fixed on the top of the slider, a bidirectional screw is horizontally penetrated and rotatably installed at the bottom of the H-shaped plate, and a rotating The outer walls of both sides of the bidirectional screw are threadedly connected with L-shaped slides, and the L-shaped slides are slidably installed on the top of the through-slot plate, and elastic retractable plates are fixed to the tops of the two L-shaped slides close to the H-shaped plate, a fixed column is fixed to the top of one L-shaped slide, and a threaded rod is rotatably installed on the top of the other L-shaped slide, a U-shaped slide is slidably installed on the outside of the fixed column, and another U-shaped slide is threadedly connected to the outside of the threaded rod, the bottoms of the two U-shaped slides are respectively fixedly connected to the tops of the two elastic retractable plates, and a trapezoidal plate is slidably installed on the sides of the two U-shaped slides close to each other, and the trapezoidal A spring is provided between the plate and the inner wall of the U-shaped slide plate, and the two U-shaped slide plates are respectively horizontally penetrated and slidably installed on both sides of the upper outer wall of the H-shaped plate, the lower side of the H-shaped plate is in the shape of a square notch, and the upper side of the H-shaped plate is in the shape of a U-shaped notch, the turntable is located inside the square notch of the H-shaped plate, and the trapezoidal plate is located inside the U-shaped notch of the H-shaped plate, and through openings for the U-shaped slide plates to slide are provided on the outer walls on both sides of the upper side of the H-shaped plate, a notch is provided on one side of the trapezoidal plate close to the center of the H-shaped plate, and a convex strip is fixed on the other side of the trapezoidal plate close to the center of the H-shaped plate, and the notch of one trapezoidal plate is adapted to the convex strip of the other trapezoidal plate The wire is moved downward from the top of the H-shaped plate, the wire touches the inclined surface of the trapezoidal plate and pushes the trapezoidal plate to move along the inside of the U-shaped slide plate in a direction away from the center of the H-shaped plate. At this time, the wire can pass through the two trapezoidal plates and enter the U-shaped notch of the H-shaped plate. Then the two trapezoidal plates are reset under the action of the corresponding spring elastic force, and the convex strip of one trapezoidal plate is inserted into the notch of the other trapezoidal plate. The threaded rod is rotated, and the threaded rod drives the trapezoidal plate to move downward along the through-hole of the H-shaped plate through the U-shaped slide plate. The U-shaped slide plate squeezes the telescopic end of the elastic telescopic plate, and the U-shaped slide plate drives the trapezoidal plate to press and fix the wire inside the U-shaped notch of the H-shaped plate.

[0007] The two U-shaped bars are respectively located on either side of the H-shaped plate, and an L-shaped frame is fixed to the top of the two U-shaped bars. The inner wall tops of the two L-shaped frames are rotatably installed with clamping rollers, and a one-way bearing for limiting the unidirectional rotation of the clamping rollers is fixed to the front tops of the two U-shaped slide bars. The wire is placed between the two clamping rollers. Under the action of the spring force corresponding to the U-shaped slide bar, the U-shaped slide bar drives the clamping roller to clamp the wire through the L-shaped frame. When the wire is dragged by external force, the wire has a tendency to drive the clamping roller to rotate. Since the one-way bearing will limit the unidirectional rotation of the clamping roller, the one-way bearing will limit the rotation of the clamping roller.

[0008] The U-shaped slide bar is connected to the upper and lower parts of the body of the H-shaped slide bar, and the upper and lower parts of the H-shaped slide bar are connected to the upper and lower parts of the H-shaped slide bar. When entanglement occurs and the staff drags the wire, the wire will drive the installation device to slide along the inside of the through slot of the through slot plate. When the staff observes the wire, the staff first releases the lifting plate, and the U-shaped slide bar is reset by the corresponding spring. The U-shaped slide bar drives the clamping roller to clamp the wire through the L-shaped frame again. Then the staff releases and drags the wire. Under the action of the spring force corresponding to the slider in the installation device, the installation device will reset and drive the wire to reset and move to the rear direction. At this time, under the action of the friction between the wire and the clamping roller, the wire drives the clamping roller to rotate.

[0009] According to the above technical solution, an anti-wear device is provided between the two L-shaped frames, and the anti-wear device includes two moving plates, and the tops of the two L-shaped frames are provided with sliding grooves for the moving plates to slide. The two moving plates are respectively slidably installed inside the sliding grooves of the two L-shaped frames, and a spring is provided between the moving plate and the inner wall of the sliding groove of the L-shaped frame, and a plurality of pressing columns are fixed on the side where the two moving plates are close to each other, and U-shaped convex block rods are fixed on the lower outer walls of the two moving plates, and arc block wheels are fixed on the outer walls of the lower rotating shafts of the two clamping rollers. An arc block is fixed on the outside of the arc block wheel, and a semi-arc block is fixed on the inner wall of the U-shaped protrusion rod close to the moving plate. The semi-arc block of the U-shaped protrusion rod is located on the arc block movement trajectory of the arc block wheel. When the clamping roller rotates, the rotating shaft of the clamping roller drives the arc block wheel to rotate, and the arc block of the arc block wheel pushes the semi-arc block of the U-shaped protrusion rod to drive the U-shaped protrusion rod to move in the direction away from the L-shaped frame. The U-shaped protrusion rod drives the moving plate to move along the inside of the slide groove of the L-shaped frame in the direction away from the L-shaped frame, and the moving plate drives the pressing column to approach the clamping roller, and the pressing column punctures the surface of the clamping roller with an indentation.

[0010] According to the above technical solution, a fixed plate is fixed on the rear side of the two movable plates, a bidirectional telescopic column is fixed between the two fixed plates, a lifting roller is fixed on the middle outer wall of the bidirectional telescopic column, and the wire between the two clamping rollers will be placed on top of the lifting roller. The lifting roller provides support for the wire, thereby ensuring that the wire is stably between the two clamping rollers.

[0011] The present invention provides a comprehensive wiring routing auxiliary device for weak current intelligent engineering, which has the following beneficial effects:

[0012] (1) The present invention arranges the installation device so that the H-shaped plate, the trapezoidal plate, the U-shaped slide plate, the threaded rod, and the elastic telescopic plate cooperate to drive the trapezoidal plate to press and fix the wire inside the U-shaped notch of the H-shaped plate, thereby achieving the purpose of quickly fixing the wire. The U-shaped notch of the H-shaped plate and the two trapezoidal plates form a shield around the wire, so that the wire will not be forcibly pulled out of the clamping plate from the gap between the clamping plates of the traditional wiring auxiliary device due to dragging, thereby facilitating the wiring operation of the wire.

[0013] (2) The present invention sets an anti-dragging device so that the clamping roller, U-shaped slide bar, L-shaped frame, clamping roller and one-way bearing cooperate to make the one-way bearing limit the rotation of the clamping roller, so that the clamping roller limits the displacement of the wire caused by the dragging force, thereby avoiding the problem that the wire is easily damaged by external drag; at the same time, the lifting plate, hinged rod, U-shaped slide bar, slot plate and L-shaped frame cooperate to drive the clamping roller away from the wire. At this time, the wire is not clamped by the clamping roller, and the staff can drag the wire in a small range to observe whether the line is entangled.

[0014] (3) The present invention sets an anti-wear device so that the clamping roller, arc block wheel, U-shaped protrusion rod, L-shaped frame and movable plate cooperate to drive the piercing column to lean against the clamping roller. The piercing column pierces an indentation on the surface of the clamping roller. The indentation can provide more contact area and friction for the clamping roller, thereby effectively increasing the friction between the clamping roller and the conductor, so that the clamping roller can fix the conductor more firmly; at the same time, the conductor between the two clamping rollers will be placed on top of the lifting roller, and the lifting roller provides support for the conductor, thereby ensuring that the conductor is stably located between the two clamping rollers. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The present invention is schematically shown as a whole Figure 1 ;

[0016] Figure 2 The present invention is schematically shown as a whole Figure 2 ;

[0017] Figure 3 A schematic diagram of the installation device of the present invention;

[0018] Figure 4 It is a partial structural schematic diagram of the installation device of the present invention;

[0019] Figure 5 is a schematic diagram of the anti-drag device of the present invention;

[0020] Figure 6 Schematic diagram of the anti-wear device of the present invention Figure 1 ;

[0021] Figure 7 Schematic diagram of the anti-wear device of the present invention Figure 2 .

[0022] In the figure: 1. mounting plate; 2. through-slot plate; 3. mounting device; 31. slider; 32. turntable; 33. H-shaped plate; 34. fixed column; 35. trapezoidal plate; 36. U-shaped slide plate; 37. elastic telescopic plate; 38. threaded rod; 39. bidirectional screw; 310. L-shaped slide plate; 4. anti-drag device; 41. U-shaped slide bar; 42. L-shaped frame; 43. clamping roller; 44. one-way bearing; 45. hinged rod; 46. lifting plate; 5. anti-wear device; 51. moving plate; 52. puncture column; 53. U-shaped protrusion rod; 54. arc block wheel; 55. fixed plate; 56. bidirectional telescopic column; 57. lifting roller. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0024] See also Figure 1-7 An embodiment of the present invention is: a wiring auxiliary device for integrated wiring for weak current intelligent engineering, comprising a mounting plate 1, a through-slot plate 2 is fixed on the top of the mounting plate 1, a plurality of through-slots are fixed on the top of the through-slot plate 2, a mounting device 3 is arranged at the through-slot of the through-slot plate 2, the mounting device 3 comprises a slider 31, the slider 31 is slidably mounted inside the through-slot of the through-slot plate 2, and springs are arranged between the front and rear sides of the slider 31 and the inner wall of the through-slot of the through-slot plate 2, an H-shaped plate 33 is fixed on the top of the slider 31, a bidirectional screw 39 is transversely penetrated and rotatably mounted below the H-shaped plate 33, and a bidirectional screw 39 is fixed in the middle of the bidirectional screw 39 The outer walls of the two sides of the turntable 32 and the bidirectional screw 39 are both threadedly connected with L-shaped slide plates 310, and the L-shaped slide plates 310 are slidably installed on the top of the through-slot plate 2. The tops of the two L-shaped slide plates 310 close to the H-shaped plate 33 are fixed with elastic retractable plates 37. The top of one L-shaped slide plate 310 is fixed with a fixed column 34, and the top of the other L-shaped slide plate 310 is rotatably installed with a threaded rod 38. A U-shaped slide plate 36 is slidably installed on the outside of the fixed column 34, and another U-shaped slide plate 36 is threadedly connected to the outside of the threaded rod 38. The bottoms of the two U-shaped slide plates 36 are respectively fixed to the tops of the two elastic retractable plates 37 The two U-shaped slides 36 are connected, and a trapezoidal plate 35 is slidably installed on one side of each other, and a spring is provided between the inner wall of the trapezoidal plate 35 and the U-shaped slide 36. The two U-shaped slides 36 are respectively horizontally penetrated and slidably installed on both sides of the upper outer wall of the H-shaped plate 33. The lower part of the H-shaped plate 33 is in the shape of a square notch, and the upper part of the H-shaped plate 33 is in the shape of a U-shaped notch. The turntable 32 is located inside the square notch of the H-shaped plate 33, and the trapezoidal plate 35 is located inside the U-shaped notch of the H-shaped plate 33. The outer walls on both sides of the upper side of the H-shaped plate 33 are provided with through openings for the U-shaped slides 36 to slide. One trapezoidal plate 35 is close to the center of the H-shaped plate 33. A notch is opened on the side, and a convex strip is fixed on one side of the other trapezoidal plate 35 close to the center of the H-shaped plate 33, and the notch of one trapezoidal plate 35 is adapted to the convex strip of the other trapezoidal plate 35. Through the arrangement of the above structure, the U-shaped slide plate 36 drives the trapezoidal plate 35 to press and fix the wire inside the U-shaped notch of the H-shaped plate 33, thereby achieving the purpose of quickly fixing the wire. The U-shaped notch of the H-shaped plate 33 and the two trapezoidal plates 35 form a shield around the wire, so that the wire will not be forcibly pulled out of the clamping plate from the gap between the clamping plates of the traditional wiring auxiliary device due to dragging, thereby facilitating the wiring operation of the wire.

[0025] An anti-drag device 4 is provided on the front side of the mounting device 3, and the anti-drag device 4 includes two U-shaped slide bars 41, and the two U-shaped slide bars 41 are both slidably installed on the top of the through-groove plate 2, and a spring is provided between the U-shaped slide bar 41 and the outer wall of the through-groove plate 2, and the two U-shaped slide bars 41 are respectively located on both sides of the H-shaped plate 33, and an L-shaped frame 42 is fixed on the top of the two U-shaped slide bars 41, and a clamping roller 43 is rotatably installed on the top of the inner wall of the two L-shaped frames 42, and a one-way bearing 44 for limiting the one-way rotation of the clamping roller 43 is fixed on the front top of the two U-shaped slide bars 41. Through the arrangement of the above structure, the one-way bearing 44 will limit the rotation of the clamping roller 43, so that the clamping roller 43 limits the displacement of the conductor caused by the dragging force, thereby avoiding the problem that the conductor is easily damaged by being dragged by external force.

[0026] The front bottom of the two U-shaped slide bars 41 are hinged with a hinged rod 45, and the end of the two hinged rods 45 away from the U-shaped slide bar 41 is hinged with a lifting plate 46. The lifting plate 46 is slidably installed on the front side of the through-groove plate 2. Through the arrangement of the above structure, the U-shaped slide bar 41 drives the clamping roller 43 away from the wire through the L-shaped frame 42. At this time, the wire is not clamped by the clamping roller 43, and the staff can drag the wire in a small range to observe whether the line is entangled.

[0027] The U-shaped slide 36 squeezes the telescopic end of the elastic telescopic plate 37, and the U-shaped slide 36 drives the trapezoidal plate 35 to press and fix the wire inside the U-shaped notch of the H-shaped plate 33, thereby achieving the purpose of quickly fixing the wire. The U-shaped notch 33 and the two trapezoidal plates 35 form a shield around the wire, so that the wire will not be forcibly pulled out of the clamping plate from the gap between the clamping plates of the traditional wiring auxiliary device due to dragging, thereby facilitating the wiring operation of the wire. When the wire needs to be removed, the turntable 32 drives the bidirectional screw 39 to rotate, and the bidirectional screw 39 drives the two L-shaped slides 310 to move away from the H-shaped plate 33. The L-shaped slide 310 drives the U-shaped slide 36 and the trapezoidal plate 35 to move away from the center of the H-shaped plate 33 through the elastic telescopic plate 37. The trapezoidal plate 35 is no longer blocked by the U-shaped notch of the H-shaped plate 33. At this time, the wire can be taken out of the U-shaped notch of the H-shaped plate 33, and then the above operation is reversed to reset the two trapezoidal plates 35, and insert the convex strip of one trapezoidal plate 35 into the concave groove of the other trapezoidal plate 35, and then the next wiring operation can be carried out.

[0028] After the wire is fixed, the wire is placed between the two clamping rollers 43. Under the action of the spring force corresponding to the U-shaped slide bar 41, the U-shaped slide bar 41 drives the clamping roller 43 to clamp the wire through the L-shaped frame 42. When the wire is dragged by an external force, the wire tends to drive the clamping roller 43 to rotate. Since the one-way bearing 44 will limit the one-way rotation of the clamping roller 43, the one-way bearing 44 will limit the rotation of the clamping roller 43, so that the clamping roller 43 limits the displacement of the wire caused by the dragging force, thereby avoiding the problem that the wire is easily damaged by being dragged by external force; when the staff needs to drag and observe the wire in a small range, the lifting plate 46 is lifted upward, and the lifting plate 46 pushes the U-shaped slide bar 41 along the top of the through-groove plate 2 to move away from the H-shaped plate 33 through the hinged rod 45. The U-shaped slide bar 41 drives the clamping roller 43 to clamp the wire through the L-shaped frame 42 again. Then the staff releases and drags the wire. Under the action of the spring force corresponding to the slider 31 in the installation device 3, the installation device 3 will be reset and drive the wire to reset and move in the rear direction. At this time, under the action of the friction between the wire and the clamping roller 43, the wire drives the clamping roller 43 to rotate.

[0029] See also Figure 1-7 On the basis of the above embodiment, in another embodiment of the present invention, an anti-wear device 5 is provided between the two L-shaped frames 42 .

[0030] The anti-wear device 5 includes two moving plates 51. The tops of the two L-shaped frames 42 are provided with sliding grooves for the moving plates 51 to slide. The two moving plates 51 are slidably installed in the inside of the sliding grooves of the two L-shaped frames 42, and springs are provided between the moving plates 51 and the inner walls of the sliding grooves of the L-shaped frames 42. A plurality of pressing columns 52 are fixed on the sides of the two moving plates 51 close to each other. U-shaped protruding block rods 53 are fixed on the lower outer walls of the two moving plates 51. Arc block wheels 54 are fixed on the outer walls of the rotating shafts below the two clamping rollers 43. The outer wall of the arc block wheel 54 An arc block is fixed on the part, and a semi-arc block is fixed on the inner wall of one side of the U-shaped protrusion rod 53 close to the movable plate 51. The semi-arc block of the U-shaped protrusion rod 53 is located on the arc block movement trajectory of the arc block wheel 54. Through the arrangement of the above structure, the movable plate 51 drives the piercing column 52 to approach the clamping roller 43, and the piercing column 52 pierces an indentation on the surface of the clamping roller 43. The indentation can provide more contact area and friction for the clamping roller 43, thereby effectively increasing the friction between the clamping roller 43 and the conductor, so that the clamping roller 43 can fix the conductor more firmly.

[0031] A fixed plate 55 is fixed to the rear side of the two movable plates 51, a bidirectional telescopic column 56 is fixed between the two fixed plates 55, and a lifting roller 57 is fixed to the middle outer wall of the bidirectional telescopic column 56. Through the arrangement of the above structure, the wire between the two clamping rollers 43 will be placed above the lifting roller 57, and the lifting roller 57 provides support for the wire, thereby ensuring that the wire is stably located between the two clamping rollers 43.

[0032] When in use, when the clamping roller 43 rotates, the rotating shaft of the clamping roller 43 drives the arc block wheel 54 to rotate, and the arc block of the arc block wheel 54 pushes the semi-arc block of the U-shaped protrusion rod 53 to drive the U-shaped protrusion rod 53 to move in the direction away from the L-shaped frame 42, and the U-shaped protrusion rod 53 drives the movable plate 51 to move along the inside of the slide groove of the L-shaped frame 42 in the direction away from the L-shaped frame 42, and the movable plate 51 drives the pressing column 52 to approach the clamping roller 43, and the pressing column 52 punctures an indentation on the surface of the clamping roller 43, and the indentation can provide more contact area and friction for the clamping roller 43, thereby effectively increasing the friction between the clamping roller 43 and the conductor, so that the clamping roller 43 can fix the conductor more firmly; at the same time, the conductor between the two clamping rollers 43 will be placed on top of the lifting roller 57, and the lifting roller 57 provides support for the conductor, thereby ensuring that the conductor is stably located between the two clamping rollers 43.

[0033] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A comprehensive wiring auxiliary device for weak current intelligent engineering, comprising a mounting plate (1), characterized in that: A through-slot plate (2) is fixed on the top of the mounting plate (1), a plurality of through-slots are fixed on the top of the through-slot plate (2), a mounting device (3) is arranged at the through-slot of the through-slot plate (2), the mounting device (3) comprises a slider (31), the slider (31) is slidably mounted inside the through-slot of the through-slot plate (2), and springs are arranged between the front and rear sides of the slider (31) and the inner wall of the through-slot of the through-slot plate (2), an H-shaped plate (33) is fixed on the top of the slider (31), a bidirectional screw (39) is transversely passed through and rotatably mounted below the H-shaped plate (33), a rotating disk (32) is fixed in the middle of the bidirectional screw (39), both side outer walls of the bidirectional screw (39) are threadedly connected with L-shaped slide plates (310), and the L-shaped slide plates (310) are slidably mounted on the top of the through-slot plate (2), and two L-shaped slide plates (33) are arranged on the top of the through-slot plate (2). An elastic retractable plate (37) is fixed to the top of one side of the H-shaped plate (310) close to the H-shaped plate (33), a fixed column (34) is fixed to the top of one of the L-shaped slide plates (310), a threaded rod (38) is rotatably installed on the top of the other L-shaped slide plate (310), a U-shaped slide plate (36) is slidably installed on the outside of the fixed column (34), and another U-shaped slide plate (36) is threadedly connected to the outside of the threaded rod (38), the bottoms of the two U-shaped slide plates (36) are respectively fixedly connected to the tops of the two elastic retractable plates (37), a trapezoidal plate (35) is slidably installed on the side of the two U-shaped slide plates (36) close to each other, and a spring is provided between the trapezoidal plate (35) and the inner wall of the U-shaped slide plate (36), and the two U-shaped slide plates (36) are respectively transversely penetrated and slidably installed on both sides of the upper outer wall of the H-shaped plate (33); An anti-drag device (4) is provided on the front side of the mounting device (3), and the anti-drag device (4) comprises two U-shaped slide bars (41), the two U-shaped slide bars (41) are both slidably mounted on the top of the through-groove plate (2), and a spring is provided between the U-shaped slide bars (41) and the outer wall of the through-groove plate (2), the two U-shaped slide bars (41) are respectively located on both sides of the H-shaped plate (33), an L-shaped frame (42) is fixed on the top of the two U-shaped slide bars (41), a clamping roller (43) is rotatably mounted on the top of the inner wall of the two L-shaped frames (42), and a one-way bearing (44) for limiting the one-way rotation of the clamping roller (43) is fixed on the front top of the two U-shaped slide bars (41); The front bottoms of the two U-shaped sliding bars (41) are both hingedly connected to a hinged rod (45), and one end of the two hinged rods (45) away from the U-shaped sliding bars (41) is hingedly connected to a lifting plate (46), and the lifting plate (46) is slidably mounted on the front side of the through-groove plate (2).

2. According to claim 1, a comprehensive wiring routing auxiliary device for weak current intelligent engineering, characterized in that: The lower part of the H-shaped plate (33) is in the shape of a square notch, the upper part of the H-shaped plate (33) is in the shape of a U-shaped notch, the turntable (32) is located inside the square notch of the H-shaped plate (33), the trapezoidal plate (35) is located inside the U-shaped notch of the H-shaped plate (33), and openings for sliding of the U-shaped slide plate (36) are provided on the outer walls on both sides of the upper part of the H-shaped plate (33).

3. According to claim 2, a comprehensive wiring routing auxiliary device for weak current intelligent engineering, characterized in that: A notch is provided on one side of the trapezoidal plate (35) close to the center of the H-shaped plate (33), and a convex strip is fixed on the other side of the trapezoidal plate (35) close to the center of the H-shaped plate (33), and the notch of one trapezoidal plate (35) is matched with the convex strip of the other trapezoidal plate (35).

4. According to claim 3, a comprehensive wiring routing auxiliary device for weak current intelligent engineering is characterized by: An anti-wear device (5) is provided between the two L-shaped frames (42), and the anti-wear device (5) comprises two movable plates (51). The tops of the two L-shaped frames (42) are provided with sliding grooves for the movable plates (51) to slide. The two movable plates (51) are respectively slidably mounted inside the sliding grooves of the two L-shaped frames (42), and a spring is provided between the movable plates (51) and the inner wall of the sliding groove of the L-shaped frames (42). A plurality of pressing columns (52) are fixed on the sides of the two movable plates (51) close to each other, a U-shaped protrusion rod (53) is fixed on the lower outer wall of the two movable plates (51), and an arc block wheel (54) is fixed on the lower outer wall of the rotating shaft of the two clamping rollers (43).

5. According to claim 4, a comprehensive wiring routing auxiliary device for weak current intelligent engineering, characterized in that: An arc block is fixed on the outside of the arc block wheel (54), a semi-arc block is fixed on the inner wall of one side of the U-shaped protrusion rod (53) close to the moving plate (51), and the semi-arc block of the U-shaped protrusion rod (53) is located on the arc block motion track of the arc block wheel (54).

6. The integrated wiring auxiliary device for weak current intelligent engineering according to claim 5 is characterized by: A fixed plate (55) is fixed to the rear side of the two movable plates (51), a bidirectional telescopic column (56) is fixed between the two fixed plates (55), and a lifting roller (57) is fixed to the middle outer wall of the bidirectional telescopic column (56).

Citation Information

Patent Citations

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