CN118515139A - Cable conveyor and working method thereof - Google Patents

Cable conveyor and working method thereof Download PDF

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Publication number
CN118515139A
CN118515139A CN202411002423.7A CN202411002423A CN118515139A CN 118515139 A CN118515139 A CN 118515139A CN 202411002423 A CN202411002423 A CN 202411002423A CN 118515139 A CN118515139 A CN 118515139A
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CN
China
Prior art keywords
cable
conveyor belt
storage block
conveying
block
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN202411002423.7A
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Chinese (zh)
Other versions
CN118515139B (en
Inventor
赵伟
张晓峰
李伟
李豪杰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Changzhou Taierge Heavy Industry Machinery Co ltd
Original Assignee
Changzhou Taierge Heavy Industry Machinery Co ltd
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Application filed by Changzhou Taierge Heavy Industry Machinery Co ltd filed Critical Changzhou Taierge Heavy Industry Machinery Co ltd
Priority to CN202411002423.7A priority Critical patent/CN118515139B/en
Publication of CN118515139A publication Critical patent/CN118515139A/en
Application granted granted Critical
Publication of CN118515139B publication Critical patent/CN118515139B/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H51/00Forwarding filamentary material
    • B65H51/14Aprons, endless belts, lattices, or like driven elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H51/00Forwarding filamentary material
    • B65H51/18Gripping devices with linear motion
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/30Handled filamentary material
    • B65H2701/34Handled filamentary material electric cords or electric power cables

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  • Pusher Or Impeller Conveyors (AREA)

Abstract

The invention belongs to the technical field of conveying, and particularly relates to a cable conveyor and a working method thereof, wherein the cable conveyor comprises the following components: a moving device and a pair of conveying devices; the conveying device is arranged on the moving device, and the moving device is suitable for driving the two conveying devices to move so as to adjust the distance between the two conveying devices; the two conveying devices are oppositely arranged and are arranged in parallel, and the conveying devices are in contact with the cables to convey the cables; a plurality of pairs of limiting mechanisms are arranged in the conveying device, and the limiting mechanisms are suitable for the outer wall of the adaptive cable; the cable conveying device has the advantages that the cable conveying is realized, the cable is suitable for the outer wall of the cable in the conveying process through the limiting mechanism, and the cable is prevented from being extruded and deformed.

Description

Cable conveyor and working method thereof
Technical Field
The invention belongs to the technical field of conveying, and particularly relates to a cable conveyor and a working method thereof.
Background
The cable on the charging pile that robot used under water is thicker, need carry through the conveyer at cable installation's in-process, and traditional conveying mode carries the cable clamp in the middle through two relative parallel conveyor, and two conveyor can press from both sides cable clamp deformation, leads to the cable probably because deformation is difficult to lay or influence the quality of cable.
Therefore, based on the technical problems, a new cable conveyor and a working method thereof are needed to be designed.
Disclosure of Invention
The invention aims to provide a cable conveyor and a working method thereof.
In order to solve the above technical problems, the present invention provides a cable conveyor, including:
A moving device and a pair of conveying devices;
The conveying device is arranged on the moving device, and the moving device is suitable for driving the two conveying devices to move so as to adjust the distance between the two conveying devices;
the two conveying devices are oppositely arranged and are arranged in parallel, and the conveying devices are in contact with the cables to convey the cables;
the conveying device is provided with a plurality of pairs of limiting mechanisms, and the limiting mechanisms are suitable for the outer wall of the adaptive cable.
Further, the conveying device includes: a mounting frame and an endless conveyor belt;
The mounting frame is connected with the mobile device;
the annular conveyor belt is arranged in the mounting frame, and the width direction of the annular conveyor belt corresponds to the height direction in the mounting frame;
a plurality of pairs of limiting mechanisms are arranged on the outer wall of the annular conveyor belt side by side, and two limiting mechanisms in each pair are arranged symmetrically up and down.
Further, the stop gear includes: the device comprises a bottom plate, a connecting plate and an arc plate;
one surface of the bottom plate, which is close to the annular conveyor belt, is in sliding connection with the annular conveyor belt, and the bottom plate is vertical to the surface of the annular conveyor belt;
the connecting plate is arranged on one surface, far away from the annular conveyor belt, of the bottom plate, is vertically arranged, and is parallel to the surface of the annular conveyor belt;
The arc-shaped plate is connected with the top surface of the connecting plate;
A graphite cotton yarn is arranged on one surface of the arc-shaped plate, which is contacted with the cable;
The arc plate is provided with a plurality of first through holes.
Further, baffles are arranged on two sides of the connecting plate;
The bottom plate, the connecting plate, the arc plates, the two baffles and the surface of the annular conveyor belt enclose an area, one arched surface of the arc plates faces the area, and graphite powder is stored in the area.
Further, a chute corresponding to the connecting plate is formed on the surface of the annular conveyor belt;
The sliding chute is vertically arranged;
the bottom plate is close to the one side of the annular conveyor belt and is provided with a lug, and the lug stretches into the chute.
Further, a first spring is connected between the bottom surface of the protruding block and the inner bottom surface of the sliding groove.
Further, the stop gear still includes: a storage block;
the storage block is fixed with the surface of the annular conveyor belt;
The storage block is positioned on the surface of the bottom plate, the connecting plate, the arc-shaped plate, the two baffles and the annular conveyor belt to form an area, and the storage block extends out of the top surface of the area;
the storage block is hollow and is arranged towards one surface of the arc-shaped plate in an open manner;
The storage block stores lubricating oil.
Further, a gap exists between the surface of the storage block facing the endless conveyor belt and the endless conveyor belt;
and a second through hole is formed in one surface of the storage block, facing the annular conveyor belt, and is communicated with the inside of the storage block.
Further, an extrusion block is arranged in the storage block, and the side wall of the extrusion block is in contact with the inner wall of the storage block;
a portion of the extrusion block extends from the opening of the storage block;
and a second spring is connected between one surface of the extrusion block, which is close to the annular conveyor belt, and the inner wall corresponding to the storage block.
Further, the side of the extrusion block away from the endless conveyor belt is a slope, and the slope is in contact with the arc plate.
Further, a limiting block is arranged on the extrusion block;
a limiting groove is formed in the inner wall of the storage block, and the limiting block extends into the limiting groove;
the limiting block is connected with the limiting groove in a sliding mode.
On the other hand, the invention also provides a working method adopting the cable conveyor, which comprises the following steps:
the two conveying devices are driven to move through the moving device so as to adjust the distance between the two conveying devices;
the cable is transported by the transport means in contact with the cable.
The invention has the beneficial effects that the invention is provided with the moving device and the pair of conveying devices; the conveying device is arranged on the moving device, and the moving device is suitable for driving the two conveying devices to move so as to adjust the distance between the two conveying devices; the two conveying devices are oppositely arranged and are arranged in parallel, and the conveying devices are in contact with the cables to convey the cables; a plurality of pairs of limiting mechanisms are arranged in the conveying device, and the limiting mechanisms are suitable for the outer wall of the adaptive cable; the cable conveying device has the advantages that the cable conveying is realized, the cable is suitable for the outer wall of the cable in the conveying process through the limiting mechanism, and the cable is prevented from being extruded and deformed.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention will be realized and attained by the structure particularly pointed out in the written description and drawings.
In order to make the above objects, features and advantages of the present invention more comprehensible, preferred embodiments accompanied with figures are described in detail below.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings that are needed in the description of the embodiments or the prior art will be briefly described, and it is obvious that the drawings in the description below are some embodiments of the present invention, and other drawings can be obtained according to the drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of a cable conveyor of the present invention;
FIG. 2 is a schematic view of the structure of the conveying device of the present invention;
Fig. 3 is a cross-sectional view of the delivery device of the present invention.
In the figure:
1, a mobile device;
2 conveying device, 21 mounting frame, 22 endless conveyor belt, 221 spout, 23 bottom plate, 231 lug, 232 first spring, 24 connecting plate, 25 baffle, 26 arc, 261 first through-hole, 27 storage block, 271 second through-hole, 28 extrusion piece, 281 stopper, 282 second spring.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
As shown in fig. 1 to 3, there is provided in at least one embodiment a cable conveyor comprising: a moving device 1 and a pair of conveying devices 2; the conveying devices 2 are arranged on the moving device 1, and the moving device 1 is suitable for driving the two conveying devices 2 to move so as to adjust the distance between the two conveying devices 2; the two conveying devices 2 are oppositely arranged, and the two conveying devices 2 are arranged in parallel, and the conveying devices 2 are in contact with the cable to convey the cable; a plurality of pairs of limiting mechanisms are arranged in the conveying device 2, and the limiting mechanisms are suitable for the outer wall of the adaptive cable; the cable conveying device has the advantages that the cable conveying is realized, the cable is suitable for the outer wall of the cable in the conveying process through the limiting mechanism, and the cable is prevented from being extruded and deformed.
The conveying device 2 includes: a mounting frame 21 and an endless conveyor belt 22; the mounting frame 21 is connected with the mobile device 1; the annular conveyor belt 22 is arranged in the mounting frame 21, and the width direction of the annular conveyor belt 22 corresponds to the height direction inside the mounting frame 21; a plurality of pairs of limiting mechanisms are arranged on the outer wall of the annular conveyor belt 22 side by side, and two limiting mechanisms in each pair are arranged symmetrically up and down; the endless conveyor 22 may be a chain conveyor, on which a plurality of plates are connected, and the adjacent plates may be connected together by rotation, and the gap between the adjacent plates is small; the installation frame 21 can facilitate the installation of the annular conveyor belt 22, and gaps exist between the annular conveyor belt 22 and the inner top surface and the inner bottom surface of the installation frame 21, so that the annular conveyor belt 22 can rotate conveniently; the opening of one side wall of the mounting frame 21 is arranged, and the openings of the mounting frames 21 of the two conveying devices 2 are arranged oppositely, so that the limiting mechanisms on the two annular conveying belts 22 can be matched to convey and adapt to the outer wall of the cable, namely, when the cable enters between the two conveying devices 2, the outer wall of the cable can firstly contact the arc-shaped plate 26; an upper limit mechanism and a lower limit mechanism are arranged on one plate of the annular conveyor belt 22; the width of the bottom plate 23 may be approximately or the same as the width of the upper plate of the endless conveyor 22; the range of mounting bracket 21 is stretched out to stop gear's part, avoids mounting bracket 21 to cause the influence to the cable in cable transportation process.
The limit mechanism comprises: a bottom plate 23, a connecting plate 24 and an arc plate 26; one surface of the bottom plate 23, which is close to the annular conveyor belt 22, is in sliding connection with the annular conveyor belt 22, and the bottom plate 23 is perpendicular to the surface of the annular conveyor belt 22; the connecting plate 24 is arranged on one surface of the bottom plate 23 far away from the annular conveyor belt 22, the connecting plate 24 is vertically arranged, and the connecting plate 24 is parallel to the surface of the annular conveyor belt 22; the arc-shaped plate 26 is connected with the top surface of the connecting plate 24; a graphite cotton yarn is arranged on one surface of the arc-shaped plate 26, which is contacted with the cable; the arc plate 26 is provided with a plurality of first through holes 261; graphite powder can be smeared on the outer wall of the cable when the cable is conveyed through the graphite cotton yarn; the first through holes 261 may then supplement graphite powder to the graphite cotton yarn.
Baffles 25 are arranged on both sides of the connecting plate 24; the bottom plate 23, the connecting plate 24, the arc-shaped plate 26 and the two baffle plates 25 form a region with the surface of the annular conveyor belt 22, the arched surface of the arc-shaped plate 26 faces the region, and graphite powder is stored in the region; the arc plate 26 contacts with the inclined surface of the extrusion block 28, and a telescopic material such as a corrugated pipe and the like can be connected between the side wall of the extrusion block 28 and the baffle plate 25 to block graphite powder in the enclosed area, so that the graphite powder can only be supplemented on the graphite cotton yarns through the first through holes 261; and when the bottom plate 23 approaches the pressing block 28, graphite powder possibly stuck together between the bottom plate 23 and the pressing block 28 is pressed again and separated.
The surface of the annular conveyor belt 22 is provided with a chute 221 corresponding to the connecting plate 24; the sliding groove 221 is vertically arranged; a protruding block 231 is arranged on one surface of the bottom plate 23, which is close to the annular conveyor belt 22, and the protruding block 231 extends into the sliding groove 221; a first spring 232 is connected between the bottom surface of the protruding block 231 and the inner bottom surface of the sliding slot 221; when the outer wall of the cable contacts the arc plate 26, the cable can extrude the arc plate 26 to move outwards, namely the arc plate 26 can move towards the inner top surface or the inner bottom surface of the corresponding mounting frame 21, so that the arc plate 26 can adapt to the outer wall shape of the cable, the cable is prevented from being deformed by excessively extruding the cable, the corresponding connecting plate 24 can be driven to move in the moving process of the arc plate 26, the bottom plate 23 is enabled to move, the bottom plate 23 contacts the inner top surface or the inner bottom surface of the corresponding mounting frame 21, gaps between the annular belt and the inner top surface and the inner bottom surface of the mounting frame 21 are blocked, most dust generated in the cable conveying process is prevented from entering the mounting frame 21, and a driving structure for driving the annular conveyor belt 22 to rotate in the mounting frame 21 is protected; the arcuate plate 26 is reset by the first spring 232 when the cable is disengaged from the arcuate plate 26 during rotation of the endless conveyor 22.
The stop gear still includes: a storage block 27; the storage block 27 is fixed to the surface of the endless conveyor 22; the storage blocks 27 are partially positioned on the bottom plate 23, the connecting plate 24, the arc-shaped plate 26 and the surfaces of the two baffle plates 25 and the annular conveyor belt 22 to form a region, and extend out of the top surface of the region; the storage block 27 is hollow and is arranged towards one surface of the arc-shaped plate 26 in an open way; the storage block 27 stores lubricating oil therein; a gap exists between the surface of the storage block 27 facing the endless conveyor belt 22 and the endless conveyor belt 22; a second through hole 271 is formed in one surface of the storage block 27 facing the endless conveyor belt 22, the second through hole 271 is close to the top surface of the storage block 27 (i.e., the second through hole 271 on the storage block 27 located above is close to the inner top surface of the mounting frame 21, and the second through hole 271 on the storage block 27 located below is far from the inner bottom surface of the mounting frame 21), and the second through hole 271 is communicated with the inside of the storage block 27; when the arc plate 26 is extruded and moved by the cable, the arc plate 26 is contacted with the inclined surface of the extrusion block 28, the extrusion block 28 extrudes the hollow space inside the storage block 27 when the arc plate 26 is moved, so that lubricating oil in the storage block 27 can be discharged on the surface of the annular conveyor belt 22 through the second through holes 271 to supplement the lubricating oil on the annular conveyor belt 22, and the lubricating oil extruded from the second through holes 271 can flow to a plurality of positions from top to bottom on the surface of the annular conveyor belt 22 due to the arrangement of the second through holes 271 close to the top surface of the storage block 27, so that most positions on the annular conveyor belt 22 can be supplemented with the lubricating oil; the gap between the side of the storage block 27 facing the endless conveyor belt 22 and the endless conveyor belt 22 can facilitate the flow of lubricating oil on the surface of the endless conveyor belt 22 after extrusion and spraying on the surface of the endless conveyor belt 22; the number of the second through holes 271 may be plural, so that the ejection of the lubricating oil is facilitated.
A squeezing block 28 is arranged in the storage block 27, and the side wall of the squeezing block 28 is in contact with the inner wall of the storage block 27; a portion of the pressing block 28 protrudes from the opening of the storage block 27; a second spring 282 is connected between one surface of the extrusion block 28, which is close to the annular conveyor belt 22, and the inner wall corresponding to the storage block 27; the side of the extrusion block 28 away from the endless conveyor belt 22 is a slope, and the slope is in contact with the arc plate 26; during the cable conveying process, the arc-shaped plate 26 contacts with the inclined surface of the extrusion block 28, so that the extrusion block 28 can be driven to move.
A limiting block 281 is arranged on the extrusion block 28; a limiting groove is formed in the inner wall of the storage block 27, and the limiting block 281 extends into the limiting groove; the limiting block 281 is slidably connected with the limiting groove; the cooperation of the limiting block 281 and the limiting groove can limit and guide the movement of the extrusion block 28.
The moving device 1 can be a combination of a screw rod and a moving block, the whole conveying device 2 is arranged on the corresponding moving block, the corresponding moving block is driven to move by the screw rod, so that the distance between the two conveying devices 2 is adjusted, and each conveying device 2 corresponds to the screw rod and the moving block.
When the cables do not pass through the conveying devices 2, a space exists between the bottom plate 23 and the inner top surface or the inner bottom surface of the corresponding mounting frame 21, at the moment, the two conveying devices 2 are driven to move through the moving device 1, the space between the two conveying devices 2 is adjusted, the space between the two conveying devices 2 is rough, the size of the cable is suitable for the cable, at the moment, the cable passes through the space between the two conveying devices 2, the bottom plate 23 is driven to move through the cable contact arc plate 26, the size of the cable is perfectly suitable for the conveying devices, deformation damage to parts such as cable skin and the like caused by excessive extrusion of the cable in the conveying process is avoided, at the moment, the bottom plate 23 moves to be in contact with the inner top surface or the inner bottom surface of the corresponding mounting frame 21, dust generated in the cable in the conveying process is prevented from entering the mounting frame 21 from a gap between the annular conveying belt 22 and the mounting frame 21, dust in the mounting frame 21 is reduced, graphite powder is smeared on the outer wall of the cable through graphite cotton yarn when the cable is contacted with the arc plate 26, the extrusion block 28 can move towards the annular conveying belt 22 in the moving process, the lubricating oil in the storage block 27 is extruded on the annular conveying belt 22, and the annular conveying belt 22 is replenished with the lubricating oil in the annular conveying belt 22; after the arc plate 26 is separated from the cable, the first spring 232 drives the bottom plate 23 to reset, so that the space for storing graphite powder is reduced, and the graphite powder is supplemented to the graphite cotton yarn through the first through hole 261, so that the graphite powder can be smeared on the surface of the cable when the cable is contacted again.
In at least one other embodiment, there is also provided a working method using the above cable conveyor, including:
the two conveying devices 2 are driven to move by the moving device 1 so as to adjust the distance between the two conveying devices 2; the cable is transported by the transport device 2 in contact with the cable.
In summary, the present invention is provided by a moving device 1 and a pair of conveying devices 2; the conveying devices 2 are arranged on the moving device 1, and the moving device 1 is suitable for driving the two conveying devices 2 to move so as to adjust the distance between the two conveying devices 2; the two conveying devices 2 are oppositely arranged, and the two conveying devices 2 are arranged in parallel, and the conveying devices 2 are in contact with the cable to convey the cable; a plurality of pairs of limiting mechanisms are arranged in the conveying device 2, and the limiting mechanisms are suitable for the outer wall of the adaptive cable; the cable conveying device has the advantages that the cable conveying is realized, the cable is suitable for the outer wall of the cable in the conveying process through the limiting mechanism, and the cable is prevented from being extruded and deformed.
In the description of embodiments of the present invention, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present invention will be understood in specific cases by those of ordinary skill in the art.
In the description of the present invention, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present invention and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
With the above-described preferred embodiments according to the present invention as an illustration, the above-described descriptions can be used by persons skilled in the relevant art to make various changes and modifications without departing from the scope of the technical idea of the present invention.

Claims (12)

1. A cable conveyor, comprising:
A moving device and a pair of conveying devices;
The conveying device is arranged on the moving device, and the moving device is suitable for driving the two conveying devices to move so as to adjust the distance between the two conveying devices;
the two conveying devices are oppositely arranged and are arranged in parallel, and the conveying devices are in contact with the cables to convey the cables;
the conveying device is provided with a plurality of pairs of limiting mechanisms, and the limiting mechanisms are suitable for the outer wall of the adaptive cable.
2. The cable conveyor of claim 1, wherein:
the conveying device comprises: a mounting frame and an endless conveyor belt;
The mounting frame is connected with the mobile device;
the annular conveyor belt is arranged in the mounting frame, and the width direction of the annular conveyor belt corresponds to the height direction in the mounting frame;
a plurality of pairs of limiting mechanisms are arranged on the outer wall of the annular conveyor belt side by side, and two limiting mechanisms in each pair are arranged symmetrically up and down.
3. The cable conveyor of claim 2, wherein:
the limit mechanism comprises: the device comprises a bottom plate, a connecting plate and an arc plate;
one surface of the bottom plate, which is close to the annular conveyor belt, is in sliding connection with the annular conveyor belt, and the bottom plate is vertical to the surface of the annular conveyor belt;
the connecting plate is arranged on one surface, far away from the annular conveyor belt, of the bottom plate, is vertically arranged, and is parallel to the surface of the annular conveyor belt;
The arc-shaped plate is connected with the top surface of the connecting plate;
A graphite cotton yarn is arranged on one surface of the arc-shaped plate, which is contacted with the cable;
The arc plate is provided with a plurality of first through holes.
4. A cable conveyor according to claim 3, wherein:
baffles are arranged on two sides of the connecting plate;
The bottom plate, the connecting plate, the arc plates, the two baffles and the surface of the annular conveyor belt enclose an area, one arched surface of the arc plates faces the area, and graphite powder is stored in the area.
5. The cable conveyor of claim 4, wherein:
the surface of the annular conveyor belt is provided with a chute corresponding to the connecting plate;
The sliding chute is vertically arranged;
the bottom plate is close to the one side of the annular conveyor belt and is provided with a lug, and the lug stretches into the chute.
6. The cable conveyor of claim 5, wherein:
A first spring is connected between the bottom surface of the lug and the inner bottom surface of the chute.
7. The cable conveyor of claim 6, wherein:
The stop gear still includes: a storage block;
the storage block is fixed with the surface of the annular conveyor belt;
The storage block is positioned on the surface of the bottom plate, the connecting plate, the arc-shaped plate, the two baffles and the annular conveyor belt to form an area, and the storage block extends out of the top surface of the area;
the storage block is hollow and is arranged towards one surface of the arc-shaped plate in an open manner;
The storage block stores lubricating oil.
8. The cable conveyor of claim 7, wherein:
a gap exists between the surface of the storage block facing the annular conveyor belt and the annular conveyor belt;
and a second through hole is formed in one surface of the storage block, facing the annular conveyor belt, and is communicated with the inside of the storage block.
9. The cable conveyor of claim 8, wherein:
The storage block is internally provided with an extrusion block, and the side wall of the extrusion block is contacted with the inner wall of the storage block;
a portion of the extrusion block extends from the opening of the storage block;
and a second spring is connected between one surface of the extrusion block, which is close to the annular conveyor belt, and the inner wall corresponding to the storage block.
10. The cable conveyor of claim 9, wherein:
The surface of the extrusion block far away from the annular conveyor belt is an inclined surface, and the inclined surface is in contact with the arc-shaped plate.
11. The cable conveyor of claim 10, wherein:
a limiting block is arranged on the extrusion block;
a limiting groove is formed in the inner wall of the storage block, and the limiting block extends into the limiting groove;
the limiting block is connected with the limiting groove in a sliding mode.
12. A method of operation employing the cable conveyor of claim 1, comprising:
the two conveying devices are driven to move through the moving device so as to adjust the distance between the two conveying devices;
the cable is transported by the transport means in contact with the cable.
CN202411002423.7A 2024-07-25 2024-07-25 Cable conveyor and working method thereof Active CN118515139B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202411002423.7A CN118515139B (en) 2024-07-25 2024-07-25 Cable conveyor and working method thereof

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Application Number Priority Date Filing Date Title
CN202411002423.7A CN118515139B (en) 2024-07-25 2024-07-25 Cable conveyor and working method thereof

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CN118515139A true CN118515139A (en) 2024-08-20
CN118515139B CN118515139B (en) 2024-09-17

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JP2010111479A (en) * 2008-11-06 2010-05-20 Murata Machinery Ltd Wax coating device
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