Corrugated pipe sleeving equipment for special equipment cable
By designing automated corrugated pipe assembly equipment, the problems of high labor intensity and safety risks in the process of assembling corrugated pipes for special equipment cables have been solved, achieving efficient and safe corrugated pipe assembly.
Patent Information
- Application Number
- CN202423155402.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The existing corrugated pipe installation process for special equipment cables is labor-intensive, inefficient, and poses safety risks.
A corrugated pipe assembly device is designed, comprising a pipe cutting device, a pipe disassembly device, a pushing component, and a pipeline assembly device. The device automatically controls the assembly of double-layer corrugated pipes onto cables, and uses the pushing component and combined rollers to separate and assemble the inner and outer corrugated pipes. A power unit provides power, and an auxiliary device provides control and power supply.
It improves the efficiency of corrugated pipe assembly, reduces the labor intensity of operators, lowers safety risks, and improves the quality of assembly, enabling a single person to complete the assembly task.
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Figure CN223744257U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cable sleeve technology field, specifically, it is mainly related to a kind of bellows sleeve equipment for special equipment cable. BACKGROUND
[0002] Special equipment such as airplane, railway train, ship, large vehicle, power supply or information transmission can be used by cable, and these cables change sharply in working environment, and need to be protected by adding protective layer.Currently, corrugated pipe is generally used as the protective layer of cable in the assembly of special equipment.
[0003] As shown in the accompanying Figure 1 Due to the need of working scene, the protected cable 100 is generally equipped with connector terminal or terminal block at both ends, and after cable forming, it cannot be sleeved on the cable by full-enclosed corrugated pipe from the end of the cable, but only open single-layer corrugated pipe 200 as shown in the accompanying Figure 2 There is a gap in the open single-layer corrugated pipe 200, and the cable can be inserted into the corrugated pipe from the side through the gap, but due to the existence of the gap, the open single-layer corrugated pipe 200 is not completely sealed, so the protected cable 100 cannot be completely closed and protected. Figure 3 Therefore, the existing special equipment generally uses open double-layer corrugated pipe 300 as shown in the accompanying The open double-layer corrugated pipe 300 adopts the structure of two layers of corrugated pipes wrapping each other, and when sleeving, the openings of the two layers of corrugated pipes are staggered to wrap the cable, which not only avoids the connector terminal and terminal block, but also realizes the omnidirectional wrapping of the cable due to the staggered openings of the corrugated pipes, so the open double-layer corrugated pipe 300 is widely used in the cable protection of special equipment.
[0004] The problem is that the open double-layer corrugated pipe 300 has high strength, and the existing way of sleeving the open double-layer corrugated pipe 300 on the cable is generally manual operation, which requires multiple people to cooperate, and after opening a larger channel with the corrugated pipe, the cable is inserted into it, which has high labor intensity, low sleeving efficiency, and the edge of the corrugated pipe is easy to scratch the operator, which has certain safety risk. UTILITY MODEL CONTENTS
[0005] In view of the deficiencies of the prior art, the utility model provides a kind of bellows sleeve equipment for special equipment cable to solve the problems of high labor intensity, low sleeving efficiency and safety risk in the existing corrugated pipe sleeving process.
[0006] The utility model discloses a kind of bellows sleeve equipment for special equipment cable, including pipe cutting device and the pipe cutting device for splitting double-layer bellows, the pipe cutting device is located in the rear of the pipe cutting device along the feeding direction of double-layer bellows, the pipe cutting device includes guide rod, upper pipe splitting rail and lower pipe splitting rail, the guide rod is oppositely arranged with the pipe cutting device, the upper pipe splitting rail and the lower pipe splitting rail are connected in the one end of the guide rod, so that the inner and outer layers of double-layer bellows sleeved on guide rod can be guided to upper pipe splitting rail and lower pipe splitting rail respectively;The guide rod, the upper pipe splitting rail and the lower pipe splitting rail are located in the same plane;Pushing assembly one for pushing double-layer bellows feeding is oppositely arranged at the pipe cutting device, pipeline combination device is located in the rear of the pipe cutting device along double-layer bellows feeding direction, the upper pipe splitting rail, the lower pipe splitting rail and the pipeline combination device are oppositely arranged, the pipeline combination device includes two combination rollers, combination groove is arranged on the combination roller, passageway for double-layer bellows passing is formed between two combination grooves, the combination roller pushes double-layer bellows passing through the combination groove and is sleeved on cable passing through the combination groove;Pushing assembly one, the combination roller is connected with power device.
[0007] Preferably, the upper pipe splitting rail and the lower pipe splitting rail are arc-shaped structure, the upper pipe splitting rail is located above the lower pipe splitting rail, limit sleeve is installed on the upper pipe splitting rail, for preventing bellows from separating from the upper pipe splitting rail, guide groove is located in the rear of the lower pipe splitting rail along feeding direction, for supporting bellows on the lower pipe splitting rail, the guide groove, the end of the upper pipe splitting rail away from the guide rod and the combination groove are oppositely arranged.
[0008] Preferably, the pushing assembly one includes several pushing rollers one, pushing groove one is arranged on the pushing roller one, part of the pushing roller one is located above the upper pipe splitting rail, so that the pushing groove one and the upper pipe splitting rail form gap for bellows passing, part of the pushing roller one is located below the lower pipe splitting rail, so that the pushing groove one and the lower pipe splitting rail form gap for bellows passing.
[0009] Preferably, the pushing assembly one further comprises a support frame one and an adjusting plate one, two support grooves one are formed in the support frame one and arranged in an up-down mode, one adjusting plate one is arranged in each support groove one, the adjusting plate one is slidingly and dampingly arranged in the support groove one and can be adjusted in position in the support groove one, one adjusting bolt one is connected to each adjusting plate one, the adjusting bolt one is threadedly connected to the support frame one, and the end of the adjusting bolt one abuts against the adjusting plate one to lock the position of the adjusting plate one; the pushing roller one above the upper sub-pipe rail is rotatably supported on the upper adjusting plate one, and the pushing roller one below the lower sub-pipe rail is rotatably supported on the lower adjusting plate one.
[0010] Preferably, the pushing assembly one is provided with a pushing assembly two behind in the feeding direction, the pushing assembly two comprises a pushing roller two, the pushing roller two is provided with a pushing groove two, and the pushing roller two is located below the lower sub-pipe rail, so that the pushing groove two and the lower sub-pipe rail form a gap for the bellows to pass through; the pushing assembly two is connected with the power device.
[0011] Preferably, the pushing assembly two further comprises a support frame two and an adjusting plate two, a support groove two is formed in the support frame two, and the adjusting plate two is arranged in the support groove two, the adjusting plate two is slidingly and dampingly arranged in the support groove two and can be adjusted in position in the support groove two, the adjusting plate two is connected with an adjusting bolt two, the adjusting bolt two is threadedly connected to the support frame two, and the end of the adjusting bolt two abuts against the adjusting plate two to lock the position of the adjusting plate two; the pushing roller two is rotatably supported on the adjusting plate two.
[0012] Preferably, the pipe combination device further comprises a mounting seat, a mounting groove is formed in the mounting seat, a mounting plate is arranged in the mounting groove, the mounting plate is slidingly and dampingly arranged in the mounting groove and can be adjusted in position in the mounting groove, and the combination roller is rotatably supported on the mounting plate; a limiting seat is arranged on the mounting seat, a limiting bolt is threadedly connected to the limiting seat, and the end of the limiting bolt acts on the mounting plate to lock the position of the mounting plate.
[0013] Preferably, the power device comprises a driving motor and a driving sprocket, one driving sprocket is connected to the pushing roller one, the pushing roller two and the combination roller, and the driving motor is connected to the driving sprocket through a chain to drive the pushing roller one, the pushing roller two and the combination roller to rotate.
[0014] Preferably, the power device is connected with an auxiliary device, the auxiliary device includes a controller, a power supply and a power distribution cabinet, the controller is used for controlling the operation of the driving motor and the action of the pipe cutting device, and the power supply and the power distribution cabinet are used for power supply.
[0015] The utility model discloses the beneficial effect lies in:
[0016] The corrugated pipe sleeve equipment for special equipment cable of the utility model can efficiently sleeve double-layer corrugated pipes on the cable under the operation of the operator, the sleeve process is automatically controlled, the efficiency of the cable sleeve corrugated pipe is improved, the labor intensity of the operator is reduced, the sleeve work of the corrugated pipe can be completed by a single person, and the operator is not needed to manually push away the corrugated pipe, the safety risk of the operator being injured is reduced, the sleeve quality of the cable sleeve corrugated pipe can be improved, and the problems of large labor intensity, low sleeve efficiency and safety risk in the sleeve process of the existing corrugated pipe are solved. BRIEF DESCRIPTION OF DRAWINGS
[0017] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application, the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute improper limitation on the present application.
[0018] Figure 1 It is the structural schematic diagram of the protected cable needing to sleeve corrugated pipe;
[0019] Figure 2 It is the structural schematic diagram of the open single-layer corrugated pipe;
[0020] Figure 3 It is the structural schematic diagram of the open double-layer corrugated pipe;
[0021] Figure 4 It is the overall structural schematic diagram of the utility model;
[0022] Figure 5 It is the structural schematic diagram of the pipe cutting device, pipe dismounting device, pushing assembly, pipe line combination device and power device;
[0023] Figure 6 It is the structural schematic diagram of the pipe dismounting device; Figure 5 It is the schematic diagram of the second orientation view of the structure shown in the figure;
[0024] Figure 7 It is the structural schematic diagram of the pipe dismounting device;
[0025] Figure 8 It is the structural schematic diagram of the pushing assembly one;
[0026] Figure 9 It is the structural schematic diagram of the pushing assembly two;
[0027] Figure 10 Figure 1 is a schematic view of the installation structure of the pipe dismounting device, the pushing assembly one and the pushing assembly two;
[0028] Figure 11 Figure 4 is a schematic view of the structure of the pipeline combination device.
[0029] Figure 1 is a schematic view of the installation structure of the pipe dismounting device, the pushing assembly one and the pushing assembly two; Figure 2 is a schematic view of the structure of the single-layer corrugated pipe; Figure 3 is a schematic view of the structure of the double-layer corrugated pipe; Figure 4 is a schematic view of the structure of the pipeline combination device. Figure 5 is a schematic view of the structure of the single-layer corrugated pipe; Figure 6 is a schematic view of the structure of the double-layer corrugated pipe; Figure 7 is a schematic view of the structure of the pipeline combination device. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application; obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application, and all other embodiments obtained by those skilled in the art based on the embodiments in the present application without creative labor belong to the scope of protection of the present application.
[0031] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer", "top / bottom end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0032] In the description of the utility model, it is necessary to explain, unless another explicit provision and limitation, the term "installation", "set with", "sleeve / interface", "connection" and so on, should do the broad sense understanding, for example "connection", can be fixed connection, also can be detachable connection, or integrally connected, can be mechanical connection, also can be electrical connection, can be direct connection, also can through the intermediate medium indirectly connect, can be two element inside intercommunication. For ordinary skilled person in the art, the specific meaning of the above-mentioned term in the utility model can be understood according to the specific circumstances.
[0033] Please refer to Figures 4-11 The utility model discloses a corrugated pipe sleeve equipment for special equipment cable, including frame 001, pipe cutting device 002, pipe dismounting device 003, push assembly one 004, push assembly two 005, pipeline combination device 006, power device 007, auxiliary device 008 and reel 009, wherein, frame 001 is used to accommodate, install various components and devices and provides working space for it, and pipe cutting device 002, pipe dismounting device 003, push assembly one 004, push assembly two 005, pipeline combination device 006, power device 007 and auxiliary device 008 are all installed on frame 001, frame 001 is equipped with transparent protective cover 011, pipe cutting device 002, pipe dismounting device 003, push assembly one 004, push assembly two 005, pipeline combination device 006 and power device 007 are all located inside protective cover 011, when working, pipe cutting device 002 cuts off double-layer corrugated pipe after double-layer corrugated pipe feeding reaches target length, pipe dismounting device 003 is used to peel and split the inner and outer layers of double-layer corrugated pipe, push assembly one 004 and push assembly two 005 are used to guide and push the movement of corrugated pipe respectively, pipeline combination device 006 is used to sleeve inner tube on cable and wrap the inner and outer layers of corrugated pipe outside cable, power device 007 is used to provide power, and auxiliary device 008 is used for equipment control and power supply, and reel 009 is used to provide accommodation space for cable and corrugated pipe.
[0034] Specifically, referring to Figures 4-6 Frame 001 has a long horizontal surface, pipe cutting device 002 is installed at one end of the horizontal surface of frame 001, and reel 009 is arranged on the ground outside both ends of frame 001, wherein the reel 009 near pipe cutting device 002 is used to place double-layer corrugated pipe, and the reel 009 releases double-layer corrugated pipe and continuously feeds to pipe cutting device 002 when the equipment works, pipe cutting device 002 provides support for double-layer corrugated pipe on one hand and cuts off double-layer corrugated pipe under the control of control signal when double-layer corrugated pipe feeds to target length on the other hand, and the device is conventional technology in the field, and those skilled in the art can select appropriate pipe cutting device 002 according to the specifications of the cut pipe, which will not be repeated here.
[0035] With reference to Figure 7 , the pipe dismounting device 003 comprises a guide rod 031, an upper pipe separating rail 032 and a lower pipe separating rail 033 which are integrally arranged, and a connecting seat 034, the guide rod 031, the upper pipe separating rail 032 and the lower pipe separating rail 033 are fixed above the horizontal plane of the rack 001 through the connecting seat 034, wherein the guide rod 031 is a horizontally arranged long rod, one end of which corresponds to the pipe cutting device 002, and the other end of which is connected with the upper pipe separating rail 032 and the lower pipe separating rail 033, the upper pipe separating rail 032 and the lower pipe separating rail 033 are both arc-shaped rods, the upper pipe separating rail 032 is located above the lower pipe separating rail 033, the upper pipe separating rail 032 is upwardly bent and downwardly open, and the lower pipe separating rail 033 is downwardly bent and upwardly open, so that the guide rod 031, the upper pipe separating rail 032 and the lower pipe separating rail 033 form a "inverted V" shaped structure and are located in a vertical plane; after the head of the double-layer bellows enters the pipe dismounting device 003 from the pipe cutting device 002, the head of the double-layer bellows is first sleeved on the guide rod 031, the operator needs to separate the inner pipe and the outer pipe of the double-layer bellows at the head of the double-layer bellows, so that the inner pipe and the outer pipe enter one of the upper pipe separating rail 032 and the lower pipe separating rail 033 respectively, then the inner pipe and the outer pipe of the double-layer bellows can be separated by the upper pipe separating rail 032 and the lower pipe separating rail 033 during feeding, and are respectively sleeved on the upper pipe separating rail 032 and the lower pipe separating rail 033.
[0036] With reference to Figure 7 , in order to avoid the bellows in the feeding process from separating from the upper pipe separating rail 032 through the gap in the bellows under the action of the stress in the bellows itself, a limiting sleeve 0321 in a cylindrical structure is arranged on the upper pipe separating rail 032, the limiting sleeve 0321 is arc-shaped and is fixed on the upper pipe separating rail 032 and extends along the curvature direction of the upper pipe separating rail 032, the limiting sleeve 0321 can limit the bellows sleeved on the upper pipe separating rail 032, so that the bellows always maintains the state of being sleeved on the upper pipe separating rail 032, thereby avoiding separation; in addition, the outer side of the end of the lower pipe separating rail 033 away from the guide rod 031 is provided with a guide groove 0331, the guide groove 0331 is an arc-shaped structure, the guide groove 0331 is upwardly open and extends along the curvature direction of the lower pipe separating rail 033, the guide groove 0331 is used for receiving the bellows sleeved on the lower pipe separating rail 033, so as to force the bellows to change the bending direction, thereby avoiding the bellows sleeved on the lower pipe separating rail 033 from separating from the lower pipe separating rail 033 through the gap in the bellows under the action of gravity; the end of the guide groove 0331 and the upper pipe separating rail 032 away from the guide rod 031 are close to each other and correspond to the pipe combination device 006, so that the inner pipe and the outer pipe of the double-layer bellows after mutual separation can re-enter the pipe combination device 006 to be combined with each other.
[0037] With reference to Figure 5 , 6And 8, push assembly one 004 and push assembly two 005 are arranged on both sides of guide rod 031, upper sub-pipe rail 032 and lower sub-pipe rail 033, for providing power for the feeding of double-layer corrugated pipes, wherein push assembly one 004 comprises support frame one 041, adjusting plate one 042 and push roller one 043, support frame one 041 is a plate structure, support frame one 041 is vertically fixed on rack 001, support frame one 041 is provided with two, two support frames one 041 are symmetrically arranged on both sides of guide rod 031, two support grooves one 0411 are formed in each support frame one 041, support grooves one 0411 extend upward and downward in the vertical direction, one adjusting plate one 042 is embedded in each support groove one 0411, adjusting plate one 042 is slidingly fitted in support groove one 0411 with damping, and the position of adjusting plate one 042 can be adjusted in a certain range in the vertical direction, each adjusting plate one 042 is connected with an adjusting bolt one 0421, adjusting bolt one 0421 is threadedly connected with support frame one 041 through a threaded hole provided in support frame one 041, and the end of adjusting bolt one 0421 is abutted against adjusting plate one 042 by rotating adjusting bolt one 0421, so that the position of adjusting plate one 042 can be locked.
[0038] With reference to Figure 8 A plurality of push rollers one 043 are rotatably supported between the two adjusting plates one 042 opposite to each other at the same height, push roller one 043 is a cylindrical structure, an arc-shaped recessed structure push groove one 0431 is formed in the middle of each push roller one 043, for pressing and pushing the corrugated pipe to feed by friction, specifically, the push roller one 043 between the two adjusting plates one 042 at the upper part is located above upper sub-pipe rail 032 and is provided with a certain gap between upper sub-pipe rail 032, the push roller one 043 between the two adjusting plates one 042 at the lower part is located below lower sub-pipe rail 033 and is provided with a certain gap between lower sub-pipe rail 033, when working, the corrugated pipe is clamped in the above-mentioned gap, the push roller one 043 can drive the corrugated pipe to feed by rotating, the width of the above-mentioned gap can be adjusted by adjusting the up-down position of adjusting plate one 042, so as to adapt to corrugated pipes of different specifications, so as to avoid the phenomenon of slipping, clamping and the like of the corrugated pipe during feeding.
[0039] With reference to Figure 9 And 10The pushing assembly two 005 is arranged in parallel with the pushing assembly one 004 and is located at the rear of the corrugated pipe feeding direction relative to the pushing assembly one 004, and comprises a support frame two 051, an adjusting plate two 052 and a pushing roller two 053. The support frame two 051 is a plate structure, and the support frame two 051 is vertically fixed on the rack 001. The support frame two 051 is provided with two, and the two support frames two 051 are symmetrically arranged on the two sides of the lower divided pipe rail 033. Each support frame two 051 is provided with a support groove two 0511 extending vertically, and each support groove two 0511 is embedded with an adjusting plate two 052. The adjusting plate two 052 is slidably connected in the support groove two 0511 and can be adjusted in position within a certain range in the vertical direction. Each adjusting plate two 052 is connected with an adjusting bolt two 0521, and the adjusting bolt two 0521 is screwed with the support frame two 051 through a threaded hole. By rotating the adjusting bolt two 0521, the end of the adjusting bolt two 0521 is pressed against the adjusting plate two 052, and the position of the adjusting plate two 052 can be locked.
[0040] With reference to Figure 9 The pushing roller two 053 is arranged below the lower divided pipe rail 033 and has a certain gap with the lower divided pipe rail 033. During work, the corrugated pipe is clamped in the gap, and the pushing roller two 053 can drive the corrugated pipe to feed by rotating, and support the corrugated pipe on the lower divided pipe rail 033, so that the corrugated pipe is prevented from being separated from the lower divided pipe rail 033 due to its own gap under the action of gravity. By adjusting the up-down position of the adjusting plate two 052, the width of the gap can be adjusted to adapt to corrugated pipes of different specifications, so that the corrugated pipe is prevented from slipping or being stuck during feeding.
[0041] With reference to Figure 5 , 6And 11, pipeline combination device 006 is installed behind pipe dismounting device 003 in the corrugated pipe feeding direction, pipeline combination device 006 includes mounting seat 061, mounting plate 062, combination roller 063 and limiting seat 064, wherein mounting seat 061 is plate structure, two mounting seats 061 are divided on both sides in the corrugated pipe feeding direction, mounting seat 061 is provided with installation slot 0611 along the vertical direction, each installation slot 0611 is provided with the mounting plate 062, the mounting plate 062 is slidably connected in the installation slot 0611, and the mounting plate 062 can be adjusted in position within a certain range along the vertical direction, the combination roller 063 is rotatably supported between two mounting plates 062, the combination roller 063 is also rotatably supported between mounting seat 061 below installation slot 0611, the combination roller 063 is cylindrical structure, the combination groove 0631 with arc-shaped recess structure is formed on the combination roller 063, the channel for the corrugated pipe to pass through is formed between two combination grooves 0631, the combination groove 0631 is arranged opposite to the guide groove 0331 and the end of the upper pipe rail 032, when the cable sleeve is set, first, the end of the cable is passed through the above-mentioned channel, the combination roller 063 is rotated, under the compression and pushing action of the combination roller 063, the inner and outer corrugated pipes can be set on the cable in sequence, the cable with double-layer corrugated pipe set is continuously stretched out from the other side of the combination roller 063, and the cable with double-layer corrugated pipe set can be wound through the take-up reel 009;In addition, the limiting seat 064 is installed on the upper portion of the mounting seat 061, the limiting bolt 0641 is threadedly connected on the limiting seat 064 through the preset threaded hole, the end of the limiting bolt 0641 acts on the mounting plate 062, and the position of the mounting plate 062 is limited after the mounting plate 062 is adjusted in place, and the width of the channel formed by the combination groove 0631 can be adjusted by adjusting the up-down position of the mounting plate 062, so that different specifications of corrugated pipes are adapted, and the phenomena such as slipping and clamping of the corrugated pipe in the feeding process are avoided.
[0042] Referring to Figure 5 , 6And 11, the lead slot 065 is an arc-shaped groove structure long plate, the lead slot 065 is provided with two mutually symmetrical on both sides in the corrugated pipe feeding direction, and the lead slot 065 is arranged in front of the combined roller 063 along the double-layer corrugated pipe feeding direction, behind the lower pipe rail 033, two lead slots 065 are spliced to form a tubular passage for the cable to pass through, which is arranged above the guide groove 0331 and corresponds to the front and rear of the combined groove 0631, when the cable sleeve is sleeved, the cable head is pulled out from the passage of the lead slot 065, that is, the cable is guided into the combined groove 0631, so as to be implanted into the corrugated pipe under the action of the combined roller 063; preferably, the lower part of each lead slot 065 is further integrally fixed with a pipe expander 0651, the pipe expander 0651 is an arc-shaped structure, two pipe expanders 0651 are mutually symmetrical on both sides in the corrugated pipe feeding direction, and are spliced to form a long strip-shaped convex structure, the pipe expander 0651 is arranged above the guide groove 0331 and corresponds to the front and rear of the lower pipe rail 033 and the combined groove 0631, during the corrugated pipe feeding process, the pipe expander 0651 can temporarily sleeve the corrugated pipe conveyed by the lower pipe rail 033 on the pipe expander 0651, and the corrugated pipe can open a larger width of its own gap under the support of the pipe expander 0651, so that the cable is more easily implanted into the corrugated pipe when passing through the combined groove 0631.
[0043] Referring to Figure 5 , 6 And 11, each lead slot 065 is fixedly connected to one of the above-mentioned connecting plates 066, and a long strip-shaped connecting groove 0661 is formed in each connecting plate 066, the connecting groove 0661 penetrates the surface of the connecting plate 066 and is perpendicular to the feeding direction of the corrugated pipe, and the connecting plate 066 is fixedly connected to the mounting seat 061 through the connecting bolt 0662 penetrating the connecting groove 0661, by sliding the connecting plate 066 on both sides in the corrugated pipe feeding direction and changing the relative position of the connecting bolt 0662 in the connecting groove 0661, the two lead slots 065 can be brought close to or away from each other, so as to change the size of the tubular passage formed by the lead slot 065 and the thickness of the pipe expander 0651, and then the connecting plate 066 is fixed on the mounting seat 061 through the connecting bolt 0662, so that the lead slot 065 can adapt to different diameters of the cable to pass through to sleeve the corrugated pipe.
[0044] Referring to Figure 6The power device 007 comprises a driving motor 071 and driving sprocket wheels 072, and a driving sprocket wheel 072 is coaxially arranged on the shaft of each of the pushing roller one 043, the pushing roller two 053 and the combined roller 063, each of the driving sprocket wheels 072 is connected with the driving motor 071 through a chain (not shown in the figure), and the driving motor 071 can drive the driving sprocket wheel 072 to rotate through the chain after being started, thereby driving the pushing roller one 043, the pushing roller two 053 and the combined roller 063 to rotate, and the position of the corrugated pipe can be limited and power for feeding of the corrugated pipe can be provided.
[0045] With reference to Figure 4 The auxiliary device 008 comprises a controller 081, a power supply 082 and a power distribution cabinet 083, and the auxiliary device 008 is all arranged on the rack 001, wherein the controller 081 is used for controlling the operation of the driving motor 071 and the action of the pipe cutting device 002, so as to control the cutting length of the corrugated pipe, and the power supply 082 and the power distribution cabinet 083 are used for supplying power to the equipment and ensuring the normal operation of the equipment.
[0046] The working principle of the corrugated pipe sleeving equipment for special equipment cable of the utility model is as follows:
[0047] Before sleeving the corrugated pipe, the head of the double-layer corrugated pipe which has not been separated is sent from the winding and unwinding frame 009 to the pipe disassembling device 003 through the pipe cutting device 002, under the pushing of the pushing assembly one 004 and the pushing assembly two 005, the double-layer corrugated pipe is fed forward, the double-layer corrugated pipe is disassembled into an inner pipe and an outer pipe through the pipe disassembling device 003, the inner pipe and the outer pipe are fed along the upper pipe disassembling rail 032 and the lower pipe disassembling rail 033 respectively and are converged at the combined roller 063 of the pipe combining device 006, before the convergence, the end of the cable to be sleeved is passed through the gap composed of two combined grooves 0631, under the action of the combined roller 063, the inner and outer corrugated pipes can be continuously wrapped on the cable, the sleeving operation of the cable is realized, and the cable sleeved with the corrugated pipe can be wound on the winding and unwinding frame 009; when the cable sleeved with the corrugated pipe reaches the target length, the controller 081 can control the pipe cutting device 002 to cut the corrugated pipe according to the preset corrugated pipe length, and control the driving motor 071 to stop rotating.
[0048] The specific use method of the corrugated pipe sleeving equipment for special equipment cable is that: firstly, marking the position of the cable that needs to be sleeved with the corrugated pipe; then, setting the split and sleeving length of the corrugated pipe on the controller 081, so that the controller 081 controls the pipe cutting device 002 to cut the corrugated pipe after the corrugated pipe is sleeved on the cable to the target length, and controls the driving motor 071 to stop; subsequently, the double-layer corrugated pipe is sent into the pipe cutting device 002; the head of the double-layer corrugated pipe in the feeding direction is then disassembled, so that the double-layer corrugated pipe can be automatically split into an inner pipe and an outer pipe after the pipe disassembling device 003; the driving motor 071 is started again through the controller 081, and the double-layer corrugated pipe is fed; when the heads of the inner pipe and the outer pipe reach the pipeline combination device 006, the starting end of the cable that needs to be sleeved with the corrugated pipe is threaded through the tubular passage formed by the two lead grooves 065, and is guided to the gap composed of the two combination grooves 0631, so that the inner pipe and the outer pipe of the double-layer corrugated pipe are automatically sleeved on the cable; finally, when the corrugated pipe feeding reaches the target length, the pipe cutting device 002 cuts the corrugated pipe, and the cable sleeved with the corrugated pipe is taken out from the winding and unwinding frame 009. Thus, the cable can be sleeved with the corrugated pipe by one person through the above-mentioned equipment.
[0049] The corrugated pipe sleeving equipment for special equipment cable has the advantages that:
[0050] The corrugated pipe sleeving equipment for special equipment cable can efficiently sleeve the double-layer corrugated pipe on the cable under the operation of the operator, the sleeving process is automatically controlled, the efficiency of sleeving the corrugated pipe on the cable is improved, the labor intensity of the operator is reduced, the sleeving work of the corrugated pipe can be completed by one person, the safety risk of the operator is reduced, the sleeving quality of the cable sleeved with the corrugated pipe is improved, and the problems of high labor intensity, low sleeving efficiency and safety risk in the existing corrugated pipe sleeving process are solved.
[0051] The above is only an embodiment of the utility model, and is not used for limiting the utility model. The utility model can have various changes and changes for those skilled in the art. Any modification, equivalent replacement, improvement and the like made in the spirit and principle of the utility model should be included in the claim range of the utility model.
Claims
1. A bellows sleeve assembly for special equipment cables, characterized by, The cutting device (002) and the pipe splitting device (003) for splitting double-layer corrugated pipes are provided, the pipe splitting device (003) is arranged behind the cutting device (002) along the feeding direction of the double-layer corrugated pipe, the pipe splitting device (003) comprises a guide rod (031), an upper pipe splitting rail (032) and a lower pipe splitting rail (033), the guide rod (031) is arranged opposite to the cutting device (002), the upper pipe splitting rail (032) and the lower pipe splitting rail (033) are connected at one end of the guide rod (031), so that the inner and outer layers of the double-layer corrugated pipe sleeved on the guide rod (031) can be guided to the upper pipe splitting rail (032) and the lower pipe splitting rail (033) respectively; the guide rod (031), the upper pipe splitting rail (032) and the lower pipe splitting rail (033) are arranged in the same plane; The pipe splitting device (003) is provided with a pushing assembly one (004) for pushing the double-layer corrugated pipe to feed, the pipe splitting device (003) is provided with a pipe line combination device (006) behind along the feeding direction of the double-layer corrugated pipe, the upper pipe splitting rail (032), the lower pipe splitting rail (033) and the pipe line combination device (006) are arranged opposite to each other, the pipe line combination device (006) comprises two combination rollers (063), the combination rollers (063) are provided with combination grooves (0631), the combination grooves (0631) form a channel for the double-layer corrugated pipe to pass through, the combination rollers (063) push the double-layer corrugated pipe sleeved on the cable passing through the combination grooves (0631) to the cable passing through the combination grooves (0631); The pushing assembly one (004) and the combination rollers (063) are connected with a power device (007).
2. The bellows sleeve assembly for special service electrical cables of claim 1, wherein, The upper pipe splitting rail (032) and the lower pipe splitting rail (033) are in arc-shaped structures, the upper pipe splitting rail (032) is arranged above the lower pipe splitting rail (033), a limiting sleeve (0321) is mounted on the upper pipe splitting rail (032) to prevent the corrugated pipe from separating from the upper pipe splitting rail (032), a guide groove (0331) is arranged behind the lower pipe splitting rail (033) along the feeding direction to support the corrugated pipe on the lower pipe splitting rail (033), the guide groove (0331), the end of the upper pipe splitting rail (032) away from the guide rod (031) and the combination groove (0631) are arranged opposite to each other.
3. The bellows sleeve set apparatus for special equipment cables of claim 1, wherein, The pushing assembly one (004) comprises a plurality of pushing rollers one (043), the pushing rollers one (043) are provided with pushing grooves one (0431), part of the pushing rollers one (043) are arranged above the upper pipe splitting rail (032), so that the pushing grooves one (0431) and the upper pipe splitting rail (032) form a gap for the corrugated pipe to pass through, part of the pushing rollers one (043) are arranged below the lower pipe splitting rail (033), so that the pushing grooves one (0431) and the lower pipe splitting rail (033) form a gap for the corrugated pipe to pass through.
4. The bellows sleeve assembly for special service electrical cables of claim 3, wherein, The pushing assembly one (004) further comprises a support frame one (041) and an adjusting plate one (042), two support grooves one (0411) are formed in the support frame one (041), the two support grooves one (0411) are arranged above and below, one adjusting plate one (042) is installed in each of the support grooves one (0411), the adjusting plate one (042) is slidingly and dampingly fitted in the support groove one (0411) and can be adjusted in position up and down in the support groove one (0411), each adjusting plate one (042) is connected with an adjusting bolt one (0421), the adjusting bolt one (0421) is threadedly connected with the support frame one (041), and the end of the adjusting bolt one (0421) abuts against the adjusting plate one (042) to lock the position of the adjusting plate one (042); The pushing roller one (043) located above the upper sub-pipe rail (032) is rotatably supported on the upper adjusting plate one (042), and the pushing roller one (043) located below the lower sub-pipe rail (033) is rotatably supported on the lower adjusting plate one (042).
5. The bellows sleeve assembly for special service electrical cables of claim 3, wherein, The pushing assembly one (004) is provided with a pushing assembly two (005) rearward along the feeding direction, the pushing assembly two (005) comprises a pushing roller two (053), the pushing roller two (053) is provided with a pushing groove two (0531), and the pushing roller two (053) is located below the lower sub-pipe rail (033), so that the pushing groove two (0531) and the lower sub-pipe rail (033) form a gap for the bellows to pass through; and the pushing assembly two (005) is connected with the power device (007).
6. The bellows sleeve assembly for special service electrical cables of claim 5, wherein, The pushing assembly two (005) further comprises a support frame two (051) and an adjusting plate two (052), a support groove two (0511) is formed in the support frame two (051), the adjusting plate two (052) is installed in the support groove two (0511), the adjusting plate two (052) is slidingly and dampingly fitted in the support groove two (0511) and can be adjusted in position up and down in the support groove two (0511), the adjusting plate two (052) is connected with an adjusting bolt two (0521), the adjusting bolt two (0521) is threadedly connected with the support frame two (051), and the end of the adjusting bolt two (0521) abuts against the adjusting plate two (052) to lock the position of the adjusting plate two (052); The pushing roller two (053) is rotatably supported on the adjusting plate two (052).
7. A bellows sleeve assembly for special equipment cables as claimed in any one of claims 1 to 6, characterised in that, The pipeline combination device (006) further comprises a mounting seat (061), a mounting groove (0611) is formed in the mounting seat (061), a mounting plate (062) is installed in the mounting groove (0611), the mounting plate (062) is slidingly and dampingly fitted in the mounting groove (0611) and can be adjusted in position up and down in the mounting groove (0611), and the combination roller (063) is rotatably supported on the mounting plate (062); The mounting base (061) is provided with a limiting seat (064), the limiting seat (064) is threadedly connected with a limiting bolt (0641), and the end of the limiting bolt (0641) acts on the mounting plate (062) to lock the position of the mounting plate (062).
8. A bellows sleeve assembly for special equipment cables according to claim 5 or 6, characterized in that The power device (007) comprises a driving motor (071) and a driving chain wheel (072), the driving motor (071) is connected with the driving chain wheel (072) through a chain, and the driving chain wheel (072) is connected with the pushing roller one (043), the pushing roller two (053) and the combined roller (063), so that the pushing roller one (043), the pushing roller two (053) and the combined roller (063) are driven to rotate.
9. The bellows sleeve assembly for special service electrical cables of claim 8, wherein, The power device (007) is connected with an auxiliary device (008), the auxiliary device (008) comprises a controller (081), a power supply (082) and a power distribution cabinet (083), the controller (081) is used for controlling the operation of the driving motor (071) and the action of the pipe cutting device (002), and the power supply (082) and the power distribution cabinet (083) are used for power supply.