Traction equipment for laying communication pipeline
By designing a traction device that includes a frame, a fixing part, shock-absorbing moving wheels, a plug-in socket, a moving vehicle, and a clamping part, the problem of complex operation in the prior art has been solved, and the rapid and automatic laying of optical cables has been realized.
Patent Information
- Application Number
- CN202423197170.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing communication pipeline laying equipment is complex to operate, requiring one end of the fixed line to pass through the pipeline first, which makes the operation cumbersome and time-consuming, affecting the laying efficiency.
A traction device is designed, comprising a frame, a fixing part, a shock-absorbing moving wheel part, a plug-in seat, a moving part, a clamping part, and first and second moving mechanisms. It achieves automatic penetration of optical cables through shock-absorbing movement, fixing, clamping, and traction.
The operation process has been simplified, the speed of fiber optic cable laying has been increased, and rapid and automatic fiber optic cable guidance through the pipeline has been achieved.
Smart Images

Figure CN223897687U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to communication pipeline traction technical field especially relates to a communication pipeline lays and uses traction equipment. BACKGROUND
[0002] Communication pipeline, namely, sending process with character stream form with a large number of data into pipeline, receiving process can receive data from pipeline, both utilize pipeline and communicate.In the communication pipeline routing of urban area, every certain distance constructs a manhole or hand hole, and the manhole or hand hole is composed of manhole mouth ring, well lid, oral cavity, optical cable support, tension ring and other parts.Pipeline commonly has plastic pipeline or cement pipeline, and the communication engineering related technical standard requires that after a optical cable is laid in the communication pipe hole, no other optical cable can be laid to prevent the laid optical cable from being damaged.
[0003] When the cable is laid in the laid pipeline, the traction device is often used to assist to ensure the rapid cable laying in the pipeline, but the operation of the existing traction device is complex, and the one end of the fixed line of the traction device needs to be first penetrated into the pipeline, which leads to complicated and time-consuming operation process, affects the laying efficiency of the communication pipeline and reduces the cable laying speed. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a communication pipeline lays and uses traction equipment, can solve at least one of the above technical problems, and the technical scheme of the utility model is as follows:
[0005] A communication pipeline lays and uses traction equipment, which comprises a vehicle frame, a traction device is arranged on the left side of the vehicle frame, a fixing part capable of fixing the vehicle frame on the ground is arranged in the middle of the vehicle frame, a shock-absorbing moving wheel part is arranged at the corners of the vehicle frame, a plug-in seat is arranged on the right side of the vehicle frame, a moving vehicle part is movably plugged and connected to the plug-in seat, a clamping part is arranged on the moving vehicle part, a first moving mechanism capable of moving the moving vehicle part is arranged on the left side of the moving vehicle part, and a second moving mechanism capable of moving the fixing part downward is arranged below the vehicle frame, and the traction device is connected to the moving vehicle part.
[0006] Further, the fixing part comprises plug-in grooves arranged on the front and back sides of the vehicle frame, moving rods are movably plugged into the plug-in grooves, plug-in knives are fixed to the lower ends of the moving rods, and a connecting plate is fixedly connected between the upper ends of the moving rods.
[0007] Further, the shock-absorbing moving wheel part comprises sleeve grooves arranged at the corners of the vehicle frame, roller frames are movably sleeved on the sleeve grooves, moving wheels are movably sleeved below the roller frames, baffles are symmetrically arranged on the roller frames, and springs are fixedly connected between the baffles and the vehicle frame.
[0008] Further, the mobile car part comprises a mobile car movably inserted on the insertion seat, a rotating shaft is symmetrically sleeved on the left side of the mobile car, a first roller is fixed on the end of each rotating shaft, and a second roller is movably sleeved on the front and rear of the right side of the mobile car.
[0009] Further, the clamping part comprises a sleeve fixed on the mobile car, a clamping plate is movably arranged in the sleeve, a screw is symmetrically fixed above the clamping plate and penetrates the sleeve, and a nut is symmetrically movably sleeved above the sleeve, and the nut and the screw are threadedly matched.
[0010] Further, the first moving mechanism comprises a first motor fixed on the left side of the mobile car, a first spur gear is fixed on the output end of the first motor, a roller shaft is fixed on each rotating shaft, a synchronous belt is sleeved between each roller shaft, a second spur gear is fixed on one of the rotating shafts, and the second spur gear is engaged with the first spur gear.
[0011] Further, the second moving mechanism comprises a second motor fixed below the vehicle frame, a screw rod is fixed on the output end of the second motor and penetrates the vehicle frame, a threaded sleeve is fixed in the middle of the connecting plate, and the screw rod and the threaded sleeve are threadedly matched.
[0012] To sum up, the utility model has the beneficial effects that relative to the prior art:
[0013] The utility model provides a kind of traction equipment for communication pipeline laying, when using, user moves vehicle frame to the position required, when moving, vehicle frame moves by slow shock moving wheel part, while slow shock is carried out to vehicle frame, after vehicle frame stops, by second moving mechanism, fixed part is driven to move downwards, so that fixed part is inserted on ground, while making vehicle frame stable, then user places mobile car part in communication pipeline, when this, by first moving mechanism, mobile car part is driven to move, when mobile car part moves to the other end of communication pipeline, by clamping part, optical cable is fixed, finally, by traction equipment, optical cable is back, compared with prior art, optical cable can be automatically guided to be penetrated pipeline laying, and operation process is simple and fast, improve the speed of cable laying. ACCURACY OF DRAWINGS
[0014] Figure 1 It is a three-dimensional schematic view of the utility model.
[0015] Figure 2 It is one of the exploded schematic views of the utility model.
[0016] Figure 3 It is the second exploded schematic view of the utility model.
[0017] Figure 4 It is the utility modelFigure 2 A-1 is an enlarged schematic view of the A-1.
[0018] The reference numerals are explained as follows: 1, frame; 2, traction device; 3, fixing part; 4, shock-absorbing moving wheel part; 5, plug-in seat; 6, moving vehicle part; 7, clamping part; 100, first moving mechanism; 200, second moving mechanism; 31, plug-in slot; 32, moving rod; 33, plug-in cutter; 34, connecting plate; 41, sleeve slot; 42, roller frame; 43, moving wheel; 44, baffle; 45, spring; 61, moving vehicle; 62, rotating shaft; 63, first roller; 64, second roller; 71, sleeve; 72, clamping plate; 73, screw; 74, nut; 101, first motor; 102, first spur gear; 103, roller shaft; 104, synchronous belt; 105, second spur gear; 201, second motor; 202, screw rod; 203, threaded sleeve. DETAILED DESCRIPTION
[0019] The utility model will be further described in connection with the drawings and specific embodiments as follows:
[0020] As Figures 1 to 4 shown in a kind of communication pipeline laying traction device, it is characterized in that, including: frame 1, traction device 2 is equipped in the left side of the frame 1, fixing part 3 is equipped in the middle of the frame 1, can be fixed on the ground frame 1, shock-absorbing moving wheel part 4 is equipped in the four corners of the frame 1, plug-in seat 5 is equipped in the right side of the frame 1, moving vehicle part 6 is movably plugged in on the plug-in seat 5, clamping part 7 is equipped on the moving vehicle part 6, first moving mechanism 100 is equipped in the left side of the moving vehicle part 6, can drive moving vehicle part 6 to move, second moving mechanism 200 is equipped below the frame 1, can drive fixing part 3 to move downwards, the line end of the traction device 2 and moving vehicle part 6 are connected.
[0021] One kind of communication pipeline laying traction device of the above structure, when using, user moves frame 1 to the position required, when moving, frame 1 moves through shock-absorbing moving wheel part 4, simultaneously, shock-absorbing is carried out to frame 4, frame 4 stops, and fixing part 3 is moved downwards by second moving mechanism 200, so that fixing part 3 is plugged in on the ground, simultaneously, frame 1 is stable, and then user places moving vehicle part 6 in communication pipeline, at this time, moving vehicle part 6 is moved by first moving mechanism 100, when moving vehicle part 6 moves to the other end of communication pipeline, optical cable is fixed by clamping part 7, finally, optical cable is brought back by traction device 2, compared with prior art, can automatically guide optical cable to be penetrated through pipeline to be laid, and the operation process is simple and fast, improves the speed of cable laying.
[0022] As Figure 2 and 3As shown, in some embodiments of this utility model, the fixing part 3 includes insertion slots 31 disposed on the front and rear sides of the frame 1, a movable rod 32 is movably inserted into each insertion slot 31, an insertion blade 33 is fixed at the lower end of each movable rod 32, and a connecting plate 34 is connected and fixed between the upper ends of each movable rod 32.
[0023] The second moving mechanism 200 includes a second motor 201 fixed below the frame 1, a screw 202 fixed at the output end of the second motor 201 and passing through the frame 1, and a threaded sleeve 203 fixed in the middle of the connecting plate 34, wherein the screw 202 and the threaded sleeve 203 are threadedly engaged.
[0024] The above-described traction device for laying communication pipelines uses a second motor 201 to drive a screw 202 to rotate. When the screw 202 rotates, it drives a connecting plate 34 to move downward through a threaded sleeve 203. As the connecting plate 34 moves, it drives each moving rod 32 to move along the insertion slot 31. As the moving rod 32 moves, it drives the insertion knife 33 to move, so that the insertion knife 33 is inserted into the ground.
[0025] like Figure 2 As shown, in some embodiments of this utility model, the shock-absorbing movable wheel part 4 includes a sleeve groove 41 provided at the four corners of the frame 1, a roller frame 42 is movably sleeved on each of the sleeve grooves 41, a movable wheel 43 is movably sleeved below each of the roller frames 42, a baffle 44 is symmetrically provided on each of the roller frames 42, and a spring 45 is fixedly connected between each of the baffles 44 and the frame 1. When the frame 1 moves, it moves through the movable wheels 43 on the roller frames 42. When encountering bumps, the spring 45 fixedly connected between the baffles 44 and the frame 1 will cause the roller frames 42 to reciprocate up and down to dampen the vibration.
[0026] like Figure 3 and 4 As shown, in some embodiments of this utility model, the mobile vehicle part 6 includes a mobile vehicle 61 that is movably connected to the connector 5. A rotating shaft 62 is symmetrically sleeved on the left side of the mobile vehicle 61, and a first roller 63 is fixed at the end of each rotating shaft. A second roller 64 is movably sleeved on the front and rear trains on the right side of the mobile vehicle 61.
[0027] The first moving mechanism 100 includes a first motor 101 fixed to the left side of the moving vehicle 61, a first spur gear 102 fixed at the output end of the first motor 101, rollers 103 fixed on each of the rotating shafts 62, a synchronous belt 104 sleeved and connected between each of the rollers 103, and a second spur gear 105 fixed on one of the rotating shafts 62, the second spur gear 105 meshing with the first spur gear 102.
[0028] The above-described traction device for laying communication pipelines uses a first motor 101 to drive a first spur gear 102 to rotate, which in turn drives a second spur gear 105 to rotate. When the second spur gear 105 rotates, one of the rotating shafts 62 rotates, which in turn drives one of the rollers 103 to rotate. This causes one of the rollers 103 to drive another roller 103 to rotate via a synchronous belt 104. As a result, each rotating shaft 62 drives a first roller 63 to rotate, and the moving vehicle 61 moves within the communication pipeline via the first roller 63 and the second roller 64.
[0029] like Figure 4 As shown, the clamping part 7 includes a sleeve 71 that is sleeved and fixed on the moving vehicle 61. In some embodiments of this utility model, a clamping plate 72 is movably provided inside the sleeve 71. Screws 73 are symmetrically fixed above the clamping plate 72 and through the sleeve 71. Nuts 74 are symmetrically movably sleeved above the sleeve 71. The nuts 74 and screws 73 are threadedly engaged. The user inserts the optical cable into the sleeve 71, and then the user moves each nut 74, so that the nuts 74 drive the clamping plate 72 to move downward through the screws 73. At this time, the clamping plate 72 clamps the optical cable inside the sleeve 71.
[0030] The foregoing has shown and described the basic principles and main features of this utility model, as well as its advantages. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A traction device for laying communication pipelines, characterized in that, include: A frame (1) is provided, a traction device (2) is provided on the left side of the frame (1), a fixing part (3) is provided in the middle of the frame (1) to fix the frame (1) to the ground, shock-absorbing moving wheels (4) are provided at the four corners of the frame (1), a plug-in seat (5) is provided on the right side of the frame (1), a moving part (6) is movably plugged into the plug-in seat (5), a clamping part (7) is provided on the moving part (6), and a first moving machine is provided on the left side of the moving part (6) to drive the moving part (6) to move. The structure (100) includes a second moving mechanism (200) below the frame (1) that can drive the fixed part (3) to move downward. The traction device (2) is connected to the moving vehicle part (6). The fixed part (3) includes insertion slots (31) on the front and rear sides of the frame (1). A moving rod (32) is movably inserted into each insertion slot (31). An insertion knife (33) is fixed at the lower end of each moving rod (32). A connecting plate (34) is connected and fixed between the upper ends of each moving rod (32).
2. The traction device for laying communication pipelines according to claim 1, characterized in that... The shock-absorbing moving wheel part (4) includes a sleeve groove (41) provided at the four corners of the frame (1), a roller frame (42) is movably sleeved on each of the sleeve grooves (41), a moving wheel (43) is movably sleeved below each of the roller frames (42), a baffle (44) is symmetrically provided on each of the roller frames (42), and a spring (45) is fixedly connected between each of the baffles (44) and the frame (1).
3. The traction device for laying communication pipelines according to claim 1, characterized in that... The mobile vehicle unit (6) includes a mobile vehicle (61) that is movably connected to the connector (5). A rotating shaft (62) is symmetrically fitted on the left side of the mobile vehicle (61). A first roller (63) is fixed at the end of each rotating shaft. A second roller (64) is movably fitted on the front and rear trains on the right side of the mobile vehicle (61).
4. A traction device for laying communication pipelines according to claim 3, characterized in that... The clamping part (7) includes a sleeve (71) that is sleeved and fixed on the moving vehicle (61). A clamping plate (72) is movably provided inside the sleeve (71). Screws (73) are symmetrically fixed above the clamping plate (72) and through the sleeve (71). Nuts (74) are symmetrically movably sleeved above the sleeve (71). The nuts (74) and screws (73) are threaded together.
5. A traction device for laying communication pipelines according to claim 3, characterized in that... The first moving mechanism (100) includes a first motor (101) fixed on the left side of the moving vehicle (61), a first spur gear (102) fixed at the output end of the first motor (101), rollers (103) fixed on each of the rotating shafts (62), a synchronous belt (104) sleeved and connected between each of the rollers (103), and a second spur gear (105) fixed on one of the rotating shafts (62), the second spur gear (105) meshing with the first spur gear (102).
6. A traction device for laying communication pipelines according to claim 1, characterized in that... The second moving mechanism (200) includes a second motor (201) fixed below the frame (1), a screw (202) fixed at the output end of the second motor (201) and passing through the frame (1), and a threaded sleeve (203) fixed in the middle of the connecting plate (34), wherein the screw (202) and the threaded sleeve (203) are threadedly engaged.