Belt guiding device for cable processing

By improving the structure and component design of the conveyor belt device, the problems of cable specification adaptability and straightening were solved, achieving stable transmission and cost savings.

CN223632804UActive Publication Date: 2025-12-05JIANGSU ZHONGTIAN TECH CO LTD +3
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522260493.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2025-12-05
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

Existing conveyor belt devices have problems when conveying cables of different specifications, such as the cables not being able to fully contact the friction rollers, the need for manual alignment, and the lack of straightening function, resulting in low practicality and increased costs.

Method used

The structure includes a base, rotating assembly, bottom plate, cylinder, frame, mounting base, and guide belt assembly. The distance between the conveying roller and the support roller is adjusted by the cooperation of the first electric push rod, mounting plate, vertical plate, conveying roller, and support roller. The cylinder is rotated by the cooperation of the first motor, main gear, driven gear, and bearings. Combined with the movement functions of hydraulic cylinder, casters, and outriggers, the cable is ensured to contact the conveying roller and be straightened.

Benefits of technology

It enables stable delivery of cables of different specifications, reduces manual intervention, saves the cost of straightening devices, and improves the stability and applicability of delivery.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223632804U_ABST
    Figure CN223632804U_ABST
Patent Text Reader

Abstract

The utility model discloses a conduction band device for cable processing. The conduction band device comprises a base, a rotating assembly, a bottom plate, a cylinder body, a frame body, a mounting seat and a conduction band assembly, the bottom plate is horizontally arranged on the upper surface of the base in parallel at intervals and is horizontally and rotationally connected with the base through the rotating assembly. The cylinder bodies are horizontally and transversely arranged over the bottom plate at intervals, and the left end and the right end of each cylinder body are open. The positions, close to the left end and the right end, of the cylinder body are coaxially sleeved with frame bodies correspondingly, the left end and the right end of each frame body are open and rotationally connected with the cylinder body through bearings correspondingly, and the two frame bodies are symmetrically arranged in a left-right spaced mode and fixedly connected with the upper surface of the bottom plate through mounting bases correspondingly; the guide belt assembly is arranged in the barrel, the cable horizontally penetrating through the barrel is conveyed through the guide belt assembly, in the process, the guide belt assembly is driven by the barrel to rotate, and then the cable is straightened in the cable conveying process. The cable conveying device facilitates stable conveying of cables of different specifications and is wide in application range.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to cable production technical field, concretely relates to a cable processing is with leading band device. BACKGROUND

[0002] Cable is the general term of optical cable, cable and other articles. The cable has many purposes, mainly used for control installation, connecting equipment, transmitting power and other multiple functions, which is a common and indispensable thing in daily life. In the processing and production process of the cable, the cable needs to be guided and conveyed through the leading band device. However, the existing leading band device has the following problems in the process of use: 1) when the outer diameter of the cable is small, the cable is easy to not completely contact the friction roller, so that the cable of different specifications cannot be conveyed, and the practicality is not high; 2) the leading band device needs to be manually aligned with the cable in order to convey the cable, which is time-consuming and laborious; 3) it does not have a straightening function, and a separate straightening device needs to be provided, which increases the cost. Therefore, the above problems need to be solved. SUMMARY

[0003] The utility model solves the technical problem to provide a kind of leading band device for cable processing, by the cooperation of first electric push rod, mounting plate, vertical plate, conveying roller and support roller, it is convenient to adjust the interval between conveying roller and support roller according to the specification of cable, to ensure that cable is always in contact with conveying roller and support roller, it is convenient to stably convey the cable of different specifications, and the scope of application is wide.

[0004] To solve the above technical problems, the utility model takes the following technical scheme: a kind of leading band device for cable processing of the utility model, its innovation point is that: including base, rotating assembly, bottom plate, cylinder, frame, mounting seat and leading band assembly;The bottom plate is horizontally arranged circular structure, and is horizontally and spaced apart arranged on the upper surface of the horizontally arranged base, and is connected with the base by rotating assembly Horizontal rotation;The cylinder is horizontally and laterally spaced apart arranged above the middle position of the bottom plate, and the left and right ends thereof are open type;In the cylinder, hollow cylindrical frame is coaxially sleeved on the left and right end positions, and the left and right ends of each frame are open type, and are connected with the cylinder by bearing respectively, two frame left and right interval symmetrical arrangement, and are fixedly connected with the upper surface of the bottom plate by mounting seat respectively;Leading band assembly is arranged in the cylinder, and the cable is conveyed through the leading band assembly, and in the process, the cylinder drives the leading band assembly to rotate synchronously, to straighten the cable in the conveying process.

[0005] Preferably, neither of the two mounting seats exceeds the coverage of the corresponding frame body, and neither of the two frame bodies exceeds the coverage of the barrel; the two bearings are coaxially and sleevedly arranged between the corresponding frame body and the barrel, and the barrel is connected with the two frame bodies through bearings for rotation around the axis, and it is ensured that neither of the two bearings exceeds the coverage of the corresponding frame body.

[0006] Preferably, the left side surface of the barrel extends perpendicularly beyond the left side surface of the left-side frame body, and a slave gear is coaxially and fixedly arranged on the left side surface of the barrel, and a through hole is coaxially and perpendicularly arranged on the left side surface of the slave gear, the diameter of the through hole is greater than the inner diameter of the barrel, and the outer diameter of the slave gear is smaller than the outer diameter of the frame body; a first motor is horizontally and transversely arranged on the upper surface of the left-side frame body, the output end of the first motor is arranged to the left, and the first motor is connected with the slave gear through a main gear, so that the barrel is driven to rotate around the axis under the drive of the first motor through the meshing of the main gear and the slave gear.

[0007] Preferably, the guide belt assembly comprises a first electric push rod, a mounting plate, a vertical plate, a second motor, a shaft coupling, a conveying roller and a supporting roller; the supporting roller is horizontally and longitudinally arranged in the middle lower position of the inner part of the barrel, the two ends of the supporting roller are connected with the corresponding positions of the inner circumferential wall of the barrel for rotation around the axis, and the upper end surface of the supporting roller is arranged in the same plane as the center line of the barrel; the first electric push rod is vertically arranged between the two frame bodies relative to the position of the supporting roller; the pushing end of the first electric push rod vertically extends into the inner part of the barrel and is fixedly screwed with the upper surface of the horizontally arranged mounting plate, so that the mounting plate moves vertically up and down above the supporting roller in the inner part of the barrel; the vertical plate is vertically and transversely arranged on the lower surface of the mounting plate, and the conveying roller matched with the supporting roller is horizontally and longitudally arranged between the two vertical plates relative to the position of the supporting roller; the lower surface of the conveying roller is arranged below the horizontal plane of the lower end surface of the vertical plate, and the conveying roller and the supporting roller are vertically aligned and arranged in the same plane; the rear end of the conveying roller is connected with the corresponding vertical plate for rotation around the axis, and the second motor is coaxially arranged horizontally and longitudinally on the front surface of the front-side vertical plate relative to the position of the conveying roller; the output end of the second motor vertically extends out of the corresponding vertical plate and is connected with the front end of the conveying roller through the shaft coupling, so that the conveying roller rotates around the axis under the drive of the second motor after the vertical downward movement of the conveying roller and the cooperation of the supporting roller and the cable, and the cable is conveyed.

[0008] Preferably, the spacing between the two frame bodies ensures that the first electric push rod does not interfere with the rotation of the cylinder body, and the height of each mounting seat ensures that the bottom plate does not interfere with the rotation of the cylinder body.

[0009] Preferably, it further comprises hydraulic cylinders, universal wheels and legs; the base is a horizontally arranged hollow cuboid structure, and hydraulic cylinders are vertically and symmetrically arranged at the four right angles of the inner bottom surface of the base, the actions of the four hydraulic cylinders are synchronous, the piston rods of each hydraulic cylinder extend vertically downward out of the lower surface of the base, and are respectively connected with the corresponding universal wheels; legs are vertically and symmetrically arranged at the four right angles of the lower surface of the base, and each leg is arranged within the square area surrounded by the four universal wheels; the lower end surface of each universal wheel is arranged above the horizontal plane where the lower end of the corresponding leg is located when it is in the upper limit position, and under the drive of the hydraulic cylinders, the switching between the moving state and the cable conveying state is realized through the cooperation of the universal wheels and the legs.

[0010] Preferably, the rotating assembly is arranged without interfering with the four hydraulic cylinders, and the rotating assembly comprises a side plate, a gear shaft, a main bevel gear, a slave bevel gear and a third motor; a gear shaft is vertically arranged at the middle position of the inside of the base, the lower end of the gear shaft is rotationally connected with the inner bottom surface of the base, the upper end of the gear shaft extends vertically upward out of the upper surface of the base, and is coaxially fixedly connected with the middle position of the lower surface of the bottom plate; a slave bevel gear is coaxially and fixedly arranged on the gear shaft relative to the inside of the base, and the slave bevel gear is arranged without interfering with the base; a side plate matching the slave bevel gear is vertically and longitudinally arranged relative to the inside of the base on the right side of the slave bevel gear, and a third motor is horizontally and transversely arranged relative to the inside of the base between the slave bevel gear and the side plate, the fixed end of the third motor is screw-fixedly connected with the left side surface of the side plate, the output end of the third motor is horizontally arranged towards the slave bevel gear, and is meshingly connected with the slave bevel gear through the main bevel gear, so that under the drive of the third motor, the gear shaft rotates around its own axis through the meshing cooperation of the main bevel gear and the slave bevel gear, and drives the bottom plate to rotate horizontally.

[0011] Preferably, it further comprises roller groups; a plurality of roller groups abutting against the lower surface of the bottom plate are connected to the upper surface of the base, the plurality of roller groups are coaxially arranged with the bottom plate, and are arranged without interfering with the gear shaft; each roller group is conical, the end close to the gear shaft is the small end, and the other end is the large end, so as to adapt to the smaller linear velocity close to the gear shaft when the bottom plate rotates.

[0012] Preferably, a deviation preventing mechanism is further arranged on the upper surface of the bottom plate relative to the right side of the barrel, and the deviation preventing mechanism comprises a second electric push rod, a U-shaped frame and a limiting roller; a U-shaped frame is further arranged on the upper surface of the bottom plate relative to the right side of the barrel and horizontally transversely in front of and behind the barrel in a symmetrical manner, and the open ends of the two U-shaped frames are arranged in alignment and are arranged on the front and back sides of the cable in a spaced manner; a second electric push rod is further arranged on the upper surface of the bottom plate relative to the outer side of each U-shaped frame and horizontally longitudinally, and the tail of each second electric push rod is fixedly connected to the corresponding position of the upper surface of the bottom plate through a rib plate; the pushing end of each second electric push rod is screw-connected and fixed to the outer bottom surface of the corresponding U-shaped frame at the bottom end position, and drives the corresponding U-shaped frame to move horizontally and longitudinally; a limiting roller is further arranged vertically in each U-shaped frame, and the two limiting rollers are arranged symmetrically relative to the front and back of the cable; the two ends of each limiting roller are rotatably connected to the two inner side surfaces of the corresponding U-shaped frame around the axis thereof, and the side of each limiting roller extending out of the corresponding U-shaped frame is relative to the cable, so that under the driving of the second electric push rod, the two limiting rollers move towards each other and limit the cable in the conveying process.

[0013] Preferably, the utility model still includes slide rail and sliding block, the lower surface of each U-shaped frame is further provided with sliding block in a spaced manner left and right, and the upper surface of the bottom plate is further provided with the slide rail matched with the sliding block relative to each sliding block position and horizontally longitudinally, and through the cooperation of the sliding block and the slide rail, the stability of the horizontal longitudinal movement of the U-shaped frame is ensured.

[0014] The utility model discloses the beneficial effects of:

[0015] (1) the utility model discloses the cooperation of first electric push rod, mounting plate, vertical plate, conveying roller and support roller, the interval between conveying roller and support roller is adjusted according to the specification of cable, so that the cable is always in contact with conveying roller and support roller, and the cable of different specifications is conveniently stably conveyed, and the application range is wide.

[0016] (2) the utility model discloses the cooperation of first motor, main gear, pinion and bearing, can make the barrel rotate in the frame body and rotate around the cable axis, so that the cable is straightened during conveying, and a straightening device is not needed, and the cost is saved.

[0017] (3) the utility model discloses the cooperation of second electric push rod, U-shaped frame and limiting roller, and the cable in conveying is limited to prevent deviation.

[0018] (4) the utility model discloses the rotation assembly, and the barrel and the cable are coaxially arranged through horizontal rotation, so that the cable is conveniently conveyed, and the process is time-saving and labor-saving.

[0019] (5) The utility model discloses a hydraulic cylinder, universal wheel and the cooperation of support leg, convenient for the switching of moving state and cable conveying state, to ensure the stability when conveying cable. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the drawing needed in the embodiment will be simply introduced below, and obviously, the drawing in the following description is only some embodiments in the utility model, and other drawings can also be obtained according to these drawings without creative labor for the ordinary skilled in the art.

[0021] Figure 1 It is a structure schematic view of the cable processing guide belt device of the utility model.

[0022] Figure 2 It is Figure 1 It is a structure schematic view of the cable processing guide belt device of the utility model.

[0023] Wherein, 1 - base plate, 2 - hydraulic cylinder, 3 - universal wheel, 4 - support leg, 5 - bottom plate, 6 - roller group, 7 - anti-off mechanism, 8 - cylinder, 9 - bearing, 10 - frame, 11 - from gear, 12 - main gear, 13 - first motor, 14 - mounting seat, 15 - first electric push rod, 16 - mounting plate, 17 - vertical plate, 18 - second motor, 19 - conveying roller, 20 - supporting roller, 21 - cable, 22 - side plate, 23 - third motor, 24 - gear shaft, 25 - main bevel gear, 26 - from bevel gear, 71 - U-shaped frame, 72 - limiting roller, 73 - second electric push rod, 74 - sliding rail, 75 - sliding block. DETAILED DESCRIPTION

[0024] The technical scheme of the utility model will be clearly and completely described below through specific embodiments.

[0025] The utility model discloses a cable processing guide belt device, including base plate 1, rotating assembly, bottom plate 5, cylinder 8, frame 10, mounting seat 14 and guide belt assembly, and the specific structure is as shown in Figure 1 、 Figure 2 The bottom plate 5 is horizontally arranged circular structure, and is parallel and is arranged on the upper surface of the horizontally arranged base plate 1, and is connected with the base plate 1 horizontally rotatably through the rotating assembly, the cylinder 8 is horizontally and transversely arranged at the middle position of the bottom plate 5, and the left and right ends of the cylinder 8 are open, and the hollow cylindrical frame 10 is coaxially connected to the left and right ends of the cylinder 8, and the left and right ends of each frame 10 are open, and is rotatably connected with the cylinder 8 through the bearing 9, and the two frames 10 are symmetrically arranged, and are fixedly connected with the upper surface of the bottom plate 5 through the mounting seat 14.

[0026] As Figure 1 , Figure 2 shown, two mounting seat 14 are not beyond the corresponding frame 10 coverage, and each frame 10 are not beyond the coverage of the cylinder 8; two bearings 9 are coaxially arranged between the corresponding frame 10 and cylinder 8, and the cylinder 8 is connected with two frame 10 through bearing 9 and its own axis rotation, and ensure that both bearings 9 are not beyond the coverage of the corresponding frame 10.

[0027] As Figure 1 , Figure 2 shown, the left side of the cylinder 8 extends vertically to the left side of the frame 10, and a pinion 11 is coaxially fixed on the left side of the cylinder 8, and a through hole is coaxially and vertically provided on the left side of the pinion 11, the diameter of the through hole is greater than the inner diameter of the cylinder 8, and the outer diameter of the pinion 11 is less than the outer diameter of the frame 10; a first motor 13 is horizontally provided on the left side of the upper surface of the frame 10, the output end of the first motor 13 is arranged to the left, and the first motor 13 is connected with the pinion 11 through the main gear 12, so that the cylinder 8 is driven to rotate around its own axis under the drive of the first motor 13 through the meshing of the main gear 12 and the pinion 11.

[0028] The utility model discloses a guide belt assembly is equipped in the cylinder 8, and the cable 21 is transported through guide belt assembly to the horizontal coaxial through the cylinder 8, and in this process, through the cylinder 8 drive guide belt assembly synchronous rotation, and then straighten cable 21 in the process of conveying, wherein, guide belt assembly includes first electric push rod 15, mounting plate 16, vertical board 17, second motor 18, shaft coupling, conveying roller 19 and support roller 20, as Figure 1 , Figure 2As shown, a support roller 20 is horizontally and longitudinally arranged in the inner middle position of the barrel 8, the two ends of the support roller 20 are respectively rotationally connected to the corresponding positions of the inner circumferential wall of the barrel 8 around the axial direction, and the upper end surface of the support roller 20 is arranged in the same plane with the center line of the barrel 8; a first electric push rod 15 is vertically arranged on the upper surface of the barrel 8 relative to the position of the support roller 20 and relative to the two frame bodies 10, the pushing end of the first electric push rod 15 vertically extends into the interior of the barrel 8, and is fixedly connected to the upper surface of the mounting plate 16 through screwing, and drives the mounting plate 16 to vertically move up and down in the interior of the barrel 8 relative to the area above the support roller 20; a vertical plate 17 is symmetrically arranged on the lower surface of the mounting plate 16, and a conveying roller 19 matched with the support roller 20 is horizontally and longitudinally arranged between the two vertical plates 17 relative to the position of the support roller 20, the lower surface of the conveying roller 19 is arranged below the horizontal plane of the lower end surface of the vertical plate 17, and the conveying roller 19 and the support roller 20 are vertically aligned and arranged in the same plane; the rear end of the conveying roller 19 is rotationally connected to the corresponding vertical plate 17 around the axial direction, and a second motor 18 is coaxially arranged on the front surface of the front vertical plate 17 relative to the position of the conveying roller 19, the output end of the second motor 18 vertically extends out of the corresponding vertical plate 17, and is coaxially connected to the front end of the conveying roller 19 through a shaft coupling; the spacing between the two frame bodies 10 ensures that the first electric push rod 15 does not interfere with the rotation of the barrel 8, and the height of each mounting seat 14 ensures that the bottom plate 5 does not interfere with the rotation of the first electric push rod 15 relative to the barrel 8. After the conveying roller 19 vertically descends and the support roller 20 cooperates with the cable 21 to tightly contact, under the driving of the second motor 18, the conveying roller 19 rotates around the axial direction, and the cable 21 is conveyed.

[0029] The base 1 is a hollow rectangular structure arranged horizontally, and four hydraulic cylinders 2 are vertically and symmetrically arranged at the four right-angled positions of the inner bottom surface of the base 1. Figure 1 As shown, the four hydraulic cylinders 2 act synchronously, and the piston rods of each hydraulic cylinder 2 vertically extend out of the lower surface of the base 1, and are respectively connected to the corresponding universal wheels 3; four supporting legs 4 are vertically and symmetrically arranged at the four right-angled positions of the lower surface of the base 1, and each supporting leg 4 is arranged in the square area surrounded by the four universal wheels 3; when each universal wheel 3 is in the upper limit position, the lower end surface of each universal wheel 3 is arranged above the horizontal plane of the lower end of the corresponding supporting leg 4. Under the driving of the hydraulic cylinders 2, the universal wheels 3 and the supporting legs 4 are matched to switch between the moving state and the cable conveying state.

[0030] The rotating assembly is arranged without interference with the four hydraulic cylinders 2, and the rotating assembly comprises a side plate 22, a gear shaft 24, a main bevel gear 25, a slave bevel gear 26, a third motor 23 and a roller set 6. Figure 1As shown in the base 1 in the middle of the internal vertical gear shaft 24 is also provided, the lower end of the gear shaft 24 and the inner bottom surface of the base 1 is rotatably connected, and its upper end vertically upward extending out of the upper surface of the base 1, and the lower surface of the base plate 5 middle coaxial fixed connection; In the gear shaft 24 relative to the inside of the base 1 is also horizontally coaxial sleeve fixedly provided with a bevel gear 26, and the bevel gear 26 and the base 1 is not interfered with each other; In the base 1 relative to the bevel gear 26 right side is also vertically longitudinal set with its matching side plate 22, and in the base 1 relative to the bevel gear 26 and the side plate 22 between is also horizontally transverse third motor 23 is provided, the fixed end of the third motor 23 and the left side of the side plate 22 is screw fixed, and its output end is horizontally arranged to the bevel gear 26 direction, and through the main bevel gear 25 and the bevel gear 26 meshing connection. The utility model drives under the third motor 23, through the meshing of the main bevel gear 25 and the bevel gear, the gear shaft 24 rotates around its own axial rotation, and drives the base plate 5 to rotate horizontally.

[0031] As Figure 1 shown, the upper surface of the base 1 is also connected with a plurality of abutting against the lower surface of the base plate 5 roller group 6, and the plurality of roller group 6 is coaxial with the base plate 5, and is arranged respectively with the gear shaft 24 without interfering with each other; Each roller group 6 is tapered, and its end close to the gear shaft 24 is small, and the other end is large, so as to adapt to the linear velocity of the base plate 5 rotating close to the gear shaft 24 is smaller.

[0032] The utility model is provided with anti-deviation mechanism 7 on the upper surface of the base plate 5 relative to the right side of the cylinder 8, and the anti-deviation mechanism 7 comprises a second electric push rod 73, a U-shaped frame 71, a limiting roller 72, a sliding block 75 and a sliding rail 74. Figure 1 、 Figure 2 As shown in the upper surface of the base plate 5 relative to the right side of the cylinder 8 is also provided with a U-shaped frame 71 which is horizontally arranged in the open slot, and the open ends of the two U-shaped frames 71 are arranged in alignment, and are arranged on the front and rear sides of the cable 21; The upper surface of the base plate 5 relative to the outside of each U-shaped frame 71 is also horizontally longitudinally provided with a second electric push rod 73, and the tail of each second electric push rod 73 is fixedly connected with the corresponding position of the upper surface of the base plate 5 through the rib plate; The driving end of each second electric push rod 73 is screw fixed with the outer bottom surface of the corresponding U-shaped frame 71 close to the bottom end position, and drives the corresponding U-shaped frame 71 to move horizontally longitudinally; A limiting roller 72 is vertically arranged in the inside of each U-shaped frame 71, and the two limiting rollers 72 are symmetrically arranged relative to the front and rear of the cable 21; The two ends of each limiting roller 72 are rotatably connected with the two inner sides of the corresponding U-shaped frame 71 around its own axial direction, and the side close to the cable 21 of each limiting roller 72 extends out of the corresponding U-shaped frame 71, so that under the driving of the second electric push rod 73, the two limiting rollers 72 move towards each other, and limit the cable 21 in conveying.

[0033] As Figure 1 , Figure 2 indicated, the lower surface of each U-shaped frame 71 is also provided with sliding blocks 75 at intervals, and the upper surface of the bottom plate 5 is also provided with sliding rails 74 matching the sliding blocks 75 horizontally and longitudinally relative to each sliding block 75, and the stability of the horizontal and longitudinal movement of the U-shaped frame 71 is ensured through the cooperation of the sliding blocks 75 and the sliding rails 74.

[0034] The working principle of the utility model:

[0035] First, under the assistance of people, the base 1 is moved to the specified position of the cable 21 production line through the universal wheel 3; then the piston rod of the hydraulic cylinder 2 is retracted, driving the universal wheel 3 to lift up, so that the supporting leg 4 contacts the ground, ensuring the stability of the cable 21 during conveying; then under the driving of the rotating assembly, the cylinder body 8 is coaxially and oppositely arranged with the cable 21 through horizontal rotation; then under the driving of the first electric push rod 15, the conveying roller 19 vertically descends, so that the conveying roller 19 and the supporting roller 20 respectively contact the upper and lower surfaces of the cable 21, at this time, the cable 21 can be conveyed under the driving of the second motor 18, and in this process, the cable 21 in conveying is straightened through the cooperation of the first motor 13, the main gear 12, the driven gear 11 and the bearing 9, and at the same time, the cable 21 in conveying is prevented from deviating through the cooperation of the second electric push rod 73, the U-shaped frame 71 and the limiting roller 72.

[0036] The utility model has the advantages of:

[0037] (1) the utility model discloses a first electric push rod 15, mounting plate 16, vertical plate 17, conveying roller 19 and supporting roller 20 cooperate, the interval between conveying roller 19 and supporting roller 20 can be adjusted according to the specification of cable 21, so that cable 21 is always in contact with conveying roller 19 and supporting roller 20, which is convenient for stable conveying of different specifications of cable 21, and the utility scope is wide.

[0038] (2) the utility model discloses a first motor 13, main gear 12, driven gear 11 and bearing 9 are used in cooperation, can make the cylinder body 8 rotate in the frame 10 around the cable 21 axial, thereby being convenient for straightening cable 21 while conveying, and no need to set up straightening device again, saves the cost.

[0039] (3) the utility model discloses a second electric push rod 73, U-shaped frame 71 and limiting roller 72 cooperate, and the cable 21 in conveying can be limited to prevent deviation.

[0040] (4) the utility model discloses a rotating assembly, which is convenient for coaxial arrangement of the cylinder body 8 and the cable 21 through horizontal rotation, thereby being convenient for conveying the cable 21, and this process saves time and effort.

[0041] (5) The utility model discloses the cooperation of hydraulic cylinder 2, universal wheel 3 and support leg 4 is used conveniently, and the switching of mobile state and cable 21 conveying state is convenient, thereby ensure the stability when cable 21 is conveyed.

[0042] The above-described embodiments are merely preferred embodiments of the utility model and are not intended to limit the concept and scope of the utility model. Without departing from the design concept of the utility model, various modifications and improvements to the technical solutions of the utility model made by ordinary engineering technicians in the field shall fall within the protection scope of the utility model. The technical content claimed by the utility model has been fully recorded in the technical requirements.

Claims

1. A tape guide device for cable processing, characterized by: The utility model provides a kind of cable straightening device, including base, rotating assembly, bottom plate, cylinder, frame, mounting seat and guide belt assembly;The bottom plate is horizontally arranged circular structure, and is horizontally arranged on the upper surface of the base in parallel interval, and is connected with the base horizontally by rotating assembly;The cylinder is horizontally arranged in the middle position of the bottom plate, and its left and right ends are open type;In the cylinder, coaxially sleeve joint hollow cylindrical frame is arranged in the left and right end positions, and the left and right ends of each frame are open type, and are connected with the cylinder by bearing, and the two frames are symmetrically arranged, and are fixedly connected with the upper surface of the bottom plate by mounting seat;The guide belt assembly is arranged in the cylinder, and the cable is transported by the guide belt assembly, and in the process, the cylinder drives the guide belt assembly to rotate synchronously, and then straightens the cable in the process.

2. The guide belt device for cable processing according to claim 1, characterized in that: Two mounting seats do not exceed the coverage of the corresponding frame, and each frame does not exceed the coverage of the cylinder;Two bearings are coaxially arranged between the corresponding frame and the cylinder, and the cylinder is connected with the two frames by bearings, and the two bearings do not exceed the coverage of the corresponding frame.

3. The guide belt device for cable processing according to claim 2, characterized in that: It also includes a first motor, a main gear and a pinion gear;The left side of the cylinder extends out to the left side of the frame, and a pinion gear is fixedly arranged on the left side of the cylinder, and a through hole is vertically arranged on the left side of the pinion gear, the diameter of the through hole is larger than the inner diameter of the cylinder, and the outer diameter of the pinion gear is smaller than the outer diameter of the frame;A first motor is horizontally arranged on the left side of the frame, and the output end of the first motor is arranged to the left, and the main gear is engaged with the pinion gear, so that the cylinder rotates around its own axis under the drive of the first motor.

4. The guide belt device for cable processing according to claim 3, characterized in that: The guide belt assembly comprises a first electric push rod, a mounting plate, a vertical plate, a second motor, a shaft coupling, a conveying roller and a supporting roller; a supporting roller is horizontally and longitudinally arranged in the middle lower position of the inner part of the barrel, the two ends of the supporting roller are rotationally connected to the corresponding positions of the inner circumferential wall of the barrel, and the upper end surface of the supporting roller is arranged in the same plane as the center line of the barrel; a first electric push rod is vertically arranged above the supporting roller between the two frame bodies; the pushing end of the first electric push rod extends vertically downward into the inner part of the barrel, and is fixedly connected to the upper surface of the horizontally arranged mounting plate by screwing, and drives the mounting plate to move vertically up and down above the area of the supporting roller in the inner part of the barrel; vertical transversely arranged vertical plates are symmetrically arranged on the lower surface of the mounting plate; a conveying roller matched with the supporting roller is horizontally and longitudinally arranged between the two vertical plates; the lower surface of the conveying roller is arranged below the horizontal plane of the lower end surface of the vertical plate; the conveying roller and the supporting roller are vertically aligned and arranged in the same plane; the rear end of the conveying roller is rotationally connected to the corresponding vertical plate; a second motor is coaxially arranged horizontally and longitudinally on the front surface of the front vertical plate relative to the conveying roller; the output end of the second motor extends vertically out of the corresponding vertical plate and is coaxially connected to the front end of the conveying roller through a shaft coupling; when the conveying roller vertically descends and the supporting roller cooperates with the cable to tightly contact, the conveying roller rotates around its own axis under the drive of the second motor to convey the cable.

5. The guide belt device for cable processing according to claim 4, characterized in that: The distance between the two frame bodies should ensure that the first electric push rod does not interfere with the rotation of the barrel, and the height of each mounting seat should ensure that the bottom plate does not interfere with the rotation of the first electric push rod.

6. The guide belt device for cable processing according to claim 1, characterized in that: The base is a horizontally arranged hollow cuboid structure, and hydraulic cylinders are vertically and symmetrically arranged at the four corners of the inner bottom surface; the pistons of the four hydraulic cylinders are vertically extended downward out of the lower surface of the base and are connected to the corresponding universal wheels; supporting legs are vertically and symmetrically arranged at the four corners of the lower surface of the base, and each supporting leg is arranged within the square area surrounded by the four universal wheels; the lower end surface of each universal wheel is arranged above the horizontal plane of the lower end of the corresponding supporting leg when it is in the upper limit position; under the drive of the hydraulic cylinders, the universal wheels and the supporting legs cooperate to switch between the moving state and the cable conveying state.

7. The guide belt device for cable processing according to claim 6, characterized in that: The rotating assembly is arranged without interference with the four hydraulic cylinders, and the rotating assembly comprises a side plate, a gear shaft, a main bevel gear, a slave bevel gear and a third motor; a gear shaft is also vertically arranged at the middle position of the interior of the base, the lower end of the gear shaft is rotationally connected with the inner bottom surface of the base, the upper end of the gear shaft vertically extends out of the upper surface of the base, and the upper end is coaxially fixedly connected with the middle position of the lower surface of the base plate; a slave bevel gear is also coaxially fixedly arranged on the gear shaft relative to the interior of the base, the slave bevel gear is arranged without interference with the base; a side plate matched with the slave bevel gear is also vertically longitudinally arranged relative to the right side of the slave bevel gear in the interior of the base, and a third motor is also horizontally transversely arranged relative to the slave bevel gear and the side plate in the interior of the base, the fixed end of the third motor is screwingly fixed with the left surface of the side plate, the output end of the third motor is horizontally arranged towards the slave bevel gear, the output end of the third motor is connected with the slave bevel gear through the main bevel gear, and the gear shaft rotates around its own axis and drives the base plate to horizontally rotate under the drive of the third motor through the meshing of the main bevel gear and the slave bevel gear.

8. The guide belt device for cable processing according to claim 7, characterized in that: The device also comprises a plurality of roller groups; a plurality of roller groups abutting against the lower surface of the base plate are also connected and arranged on the upper surface of the base, the roller groups are coaxially arranged with the base plate, and each roller group is arranged without interference with the gear shaft; each roller group is conical, the end close to the gear shaft is the small end, and the other end is the large end, so as to adapt to the smaller linear velocity close to the gear shaft when the base plate rotates.

9. The guide belt device for cable processing according to claim 1, characterized in that: A deviation prevention mechanism is also arranged on the upper surface of the base plate relative to the right side of the cylinder, and the deviation prevention mechanism comprises a second electric push rod, a U-shaped frame and a limiting roller; a U-shaped frame horizontally arranged along the horizontal direction is also symmetrically arranged on the upper surface of the base plate relative to the right side of the cylinder, the opening ends of the two U-shaped frames are arranged in alignment and are symmetrically arranged on the front and back sides of the cable; a second electric push rod is also horizontally longitudinally arranged relative to each U-shaped frame on the outer side of the base plate, and the tail of each second electric push rod is fixedly connected with the corresponding position of the upper surface of the base plate through the rib plate; the pushing end of each second electric push rod is screwingly fixed with the outer bottom surface of the corresponding U-shaped frame at the bottom end position, and drives the corresponding U-shaped frame to move horizontally and longitudinally; a limiting roller is also vertically arranged in each U-shaped frame, and the two limiting rollers are symmetrically arranged relative to the front and back of the cable; the two ends of each limiting roller are rotationally connected with the two inner sides of the corresponding U-shaped frame around its own axis, and the side close to the cable of each limiting roller extends out of the corresponding U-shaped frame, so as to move towards each other under the drive of the second electric push rod, and limit the cable in the conveying process.

10. The carrier tape device for cable processing of claim 9, wherein: The device also comprises a slide rail and a slide block; a slide block is also symmetrically arranged on the lower surface of each U-shaped frame, and a slide rail matched with the slide block is also horizontally longitudinally arranged relative to each slide block on the upper surface of the base plate, and the stability of the horizontal longitudinal movement of the U-shaped frame is ensured through the cooperation of the slide block and the slide rail.