CN115818487A - Cable arrangement method of deep-sea winch - Google Patents

Cable arrangement method of deep-sea winch Download PDF

Info

Publication number
CN115818487A
CN115818487A CN202211189999.XA CN202211189999A CN115818487A CN 115818487 A CN115818487 A CN 115818487A CN 202211189999 A CN202211189999 A CN 202211189999A CN 115818487 A CN115818487 A CN 115818487A
Authority
CN
China
Prior art keywords
cable
deep sea
pulley
arrangement
winch
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.)
Pending
Application number
CN202211189999.XA
Other languages
Chinese (zh)
Inventor
黄勇金
谷文平
李新献
林云志
陈嘉庆
安万平
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.)
South China Marine Machinery Co Ltd
Original Assignee
South China Marine Machinery Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by South China Marine Machinery Co Ltd filed Critical South China Marine Machinery Co Ltd
Priority to CN202211189999.XA priority Critical patent/CN115818487A/en
Publication of CN115818487A publication Critical patent/CN115818487A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Electric Cable Installation (AREA)

Abstract

The invention provides a cable arrangement method of a deep-sea winch, which comprises the following specific steps: s1, when the winch needs to be laid; (1) the cable containing winch drives the deep sea cable to be discharged; (2) After the deep sea cable is discharged for one circle, the cable arranging motor drives the cable arranging sliding block to transversely move for the distance of the deep sea cable; (3) Repeating the step (2) until the deep sea cable is released to a layer; (4) The cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing upwards; (5) the deep sea cable is released to the required length; s2, when the winch needs to gather cables; (1) The cable containing winch drives the deep sea cable to be retracted and wound on the cable containing winch; (2) After the deep sea cable is wound for one circle on the cable containing winch, the cable arranging motor drives the cable arranging sliding block to transversely move for the distance of the deep sea cable; (3) Repeating the step (2) until the deep sea cable is wound by one layer; (4) The cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing downwards; and (5) completing the withdrawal of the deep sea cable.

Description

Cable arrangement method of deep-sea winch
Technical Field
The invention relates to the technical field of deep sea winches, in particular to a cable arrangement method of a winch for deep sea.
Background
The deep sea scientific investigation winch needs to recover and release the cable through the winch in the operation process. If the cable is untidy on the winch drum, knotting, overlapping and extruding phenomena can occur, the service life of the cable is seriously influenced, and even the cable is damaged, so that the cable guider needs to reliably and stably guide the cable, and the cable is neatly wound on the winch drum; the winch is widely applied to the occasions of marine cable laying, ship towing, deep sea fishing, deep sea detection and the like, has the main function of realizing cable paying off and cable winding, and particularly needs to arrange cables on a cable storage drum in order through a cable arranger in the cable winding process, so that the cable arranger and the cable storage drum are required to keep a certain synchronous relation.
Most do not be equipped with automatic row cable device among the prior art, to arranging the very high ten thousand meters hawsers of cable regularity requirement, when the hawser at the fairlead in-process, the winding inequality appears, indiscriminate rope, sting the rope or even the hawser phenomenon of knoing easily, can lead to serious extrusion and friction between the hawser, the unusual wearing and tearing of aggravation hawser, direct influence hawser life and operation safety.
Meanwhile, in the existing deep sea winch, the deep sea cable is usually directly wound and unwound through the deep sea winch, and the deep sea winch is easy to damage due to the fact that the cable containing amount of the deep sea winch is large and the stress of the deep sea winch is large.
Disclosure of Invention
The invention provides a cable arranging method of a deep-sea winch.
In order to achieve the purpose, the technical scheme of the invention is as follows: a cable arrangement method of a deep-sea winch comprises the following specific steps:
s1, when the winch needs to be used for cable laying.
(1) The cable containing winch drives the deep sea cable to be discharged.
(2) After the deep sea cable is discharged for one circle, the cable arranging motor drives the cable arranging slide block to transversely move for the distance of the deep sea cable.
(3) And (3) repeating the step (2) until the deep sea cable is released to a layer.
(4) And the cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing upwards until the cable arrangement pulley assembly is consistent with the horizontal height of the next deep sea cable.
(5) And (4) repeating the steps (1) to (4) until the deep sea cable is released to the required length.
And S2, when the winch needs to perform cable collection.
(1) The cable containing winch drives the deep sea cable to be retracted and wound on the cable containing winch.
(2) After the deep sea cable is wound for one circle on the cable containing winch, the cable arranging motor drives the cable arranging sliding block to transversely move for the distance of the deep sea cable.
(3) And (5) repeating the step (2) until the deep sea cable is wound by one layer.
(4) And the cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing downwards until the cable arrangement pulley assembly is consistent with the horizontal height of the next layer of deep sea cable.
(5) And (5) repeating the steps (1) to (4) until the deep sea cable is completely withdrawn.
The method is realized through the following structure, and comprises a cable accommodating mechanism and a cable arranging mechanism, wherein the cable accommodating mechanism comprises a cable accommodating winch and a deep sea cable, one end of the deep sea cable is wound on the cable accommodating winch, the other end of the deep sea cable is connected with the cable arranging mechanism, and the tail end of the deep sea cable extends out of the cable arranging mechanism and is connected with deep sea equipment;
the cable arrangement mechanism comprises a cable arrangement rack, a cable arrangement pulley assembly, a cable arrangement driving assembly and a cable arrangement height adjusting assembly; the cable arranging machine frame is arranged on one side of the cable containing winch, a cable arranging driving assembly is arranged on the cable arranging machine frame, and a cable arranging pulley assembly is arranged on the cable arranging driving assembly;
the cable arrangement driving assembly comprises a cable arrangement motor, a cable arrangement lead screw and a cable arrangement sliding block, the cable arrangement lead screw is arranged on the cable arrangement rack, the cable arrangement motor is arranged at one end of the cable arrangement rack, a driving shaft of the cable arrangement motor is connected with the cable arrangement lead screw, the cable arrangement sliding block moving along the length direction of the cable arrangement lead screw is arranged on the cable arrangement lead screw, a cable arrangement height adjusting assembly is arranged on the cable arrangement sliding block, and the cable arrangement pulley assembly is arranged on the cable arrangement height adjusting assembly.
According to the structure, the cable arrangement mechanism is arranged, when deep sea cables need to be collected, the cable arrangement mechanism and the cable containing mechanism act synchronously, so that the deep sea cables can be contained in the cable containing winch in a neat arrangement mode, and the problem of uneven winding is avoided.
Further, arrange cable height control assembly and include adjust cylinder, adjusting base and regulation connecting axle, adjusting base sets up on the top of arranging the cable slider, arranges cable loose pulley assembly and is equipped with the adjusting cylinder through the wobbling setting of regulation connecting axle on adjusting base, arranges cable loose pulley assembly in one side of arranging the cable slider, the piston rod connection row cable loose pulley assembly of adjusting cylinder.
Above setting, drive through adjust cylinder and arrange cable loose pulley assembly and carry out the luffing motion, when holding cable winch and receiving the cable or when letting out the cable, can adjust to the level height of holding the cable winch with deep sea hawser, like this, the cable of receiving or letting out of carrying out deep sea hawser that can be better, simple structure and effective.
Furthermore, the cable arrangement pulley assembly comprises a pulley support, a first pulley and a first pulley shaft, wherein one end of the pulley support is arranged on the adjusting base in a swinging mode through an adjusting connecting shaft, and the first pulley is arranged on the pulley support in a rotating mode through the first pulley shaft; a piston rod of the adjusting oil cylinder is connected with the pulley bracket, and the other end of the deep sea cable is wound on the first pulley.
Through the arrangement, the deep sea mooring rope is convenient to tighten or loosen through the arrangement of the first pulley, and the structure is simple and effective.
Furthermore, arrange cable pulley assembly and still include the second pulley, be equipped with the second pulley mount in one side of pulley support, the second pulley passes through second pulley shaft pivoted setting on the second pulley mount, and the second pulley supports the other end of holding deep sea hawser.
Above setting, can fix a position and the direction deep sea hawser through the second pulley, place the deep sea hawser off tracking when receiving the cable.
Furthermore, the cable arrangement driving assembly further comprises a cable arrangement guide shaft, the cable arrangement guide shaft is arranged on the cable arrangement rack on two sides of the cable arrangement wire rod, a sliding hole corresponding to the cable arrangement guide shaft is formed in the cable arrangement sliding block, and the cable arrangement guide shaft is located in the sliding hole.
Above setting, through arranging cable guiding axle can so that the removal of arranging the cable slider firm more stable, simple structure and effective.
Drawings
FIG. 1 is a top view of the drawworks system of the present invention.
Fig. 2 is a top view of the cable routing mechanism of the present invention.
Figure 3 is a side view of the cable sheave assembly of the present invention.
Fig. 4 is a front view of the tension mechanism of the present invention.
Fig. 5 is a side view of the tension mechanism of the present invention.
Fig. 6 is an enlarged view of a portion a in fig. 2.
Fig. 7 is a schematic structural diagram of a buffering device of the present invention.
FIG. 8 is a front view of the cable winch of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1 to 8, the winch system comprises a tension mechanism 1, a cable accommodating mechanism 2 and a cable arranging mechanism 3, wherein the cable accommodating mechanism 2 comprises a cable accommodating winch 21 and a deep sea cable 20, one end of the deep sea cable 20 is wound on the cable accommodating winch 21, the other end of the deep sea cable 20 is connected with the tension mechanism 2 through the cable arranging mechanism 3 and is wound on the tension mechanism 2, and the tail end of the deep sea cable 20 extends out of the tension mechanism 2 and is connected with deep sea equipment. In this embodiment, the deep sea equipment is an existing equipment for deep sea work, and will not be described in detail herein.
As shown in fig. 2 and 3, the cable arranging mechanism 3 includes a cable arranging frame 31, a cable arranging pulley assembly 32, a cable arranging driving assembly 33 and a cable arranging height adjusting assembly 34; the cable arranging frame 31 is arranged on one side of the cable accommodating winch 21, a cable arranging driving assembly 33 is arranged on the cable arranging frame 31, and a cable arranging pulley assembly 32 is arranged on the cable arranging driving assembly 33.
The cable arrangement driving assembly 33 comprises a cable arrangement motor 331, a cable arrangement screw rod 332 and a cable arrangement sliding block 333, the cable arrangement screw rod 332 is arranged on the cable arrangement rack 31, the cable arrangement motor 331 is arranged at one end of the cable arrangement rack 31, a driving shaft of the cable arrangement motor 31 is connected with the cable arrangement screw rod 332, the cable arrangement sliding block 333 which moves along the length direction of the cable arrangement screw rod 332 is arranged on the cable arrangement screw rod 332, a cable arrangement height adjusting assembly 34 is arranged on the cable arrangement sliding block 333, and the cable arrangement pulley assembly 32 is arranged on the cable arrangement height adjusting assembly 34.
As shown in fig. 4 and 5, the tension mechanism 1 includes a tension frame 11, a first tension winch 12, a second tension winch 13, a force measuring pulley 14, and a buffer device 15, the tension frame 11 is located at one end of a cable accommodating winch 21, the first tension winch 12 and the second tension winch 13 are disposed at the bottom end of the tension frame 11, the force measuring pulley 14 is disposed at the top end of the tension frame 11, and the buffer device 15 is disposed on the tension frame 11 above the force measuring pulley 14. Through the action of the first tension winch and the second tension winch, when the cable collecting and releasing of the cable containing winch are carried out, the first tension winch and the second tension winch can synchronously rotate, and the three winches synchronously act, so that the pulling force of the deep sea cable on the cable containing winch can be shared when the cable collecting and releasing are carried out, the cable containing winch can be better protected, and the cable containing winch cannot be damaged due to overlarge pulling force of the deep sea cable
In the structure, by arranging the tension mechanism 1 and the cable arrangement mechanism 3, when the deep sea cable 20 needs to be retracted, the cable arrangement mechanism 3 and the cable containing mechanism 2 synchronously act, so that the deep sea cable 20 can be orderly arranged and contained in the cable containing winch 21, and the problem of uneven winding is avoided; meanwhile, the force of the deep sea cable 20 is shared by the first tension winch 12 and the second tension winch 13, so that the pressure of the cable accommodating winch 21 is reduced, and the cable accommodating winch 21 is prevented from being damaged due to overlarge stress.
As shown in fig. 3, the cable height adjusting assembly 34 includes an adjusting cylinder 341, an adjusting base 342 and an adjusting connecting shaft 343, the adjusting base 342 is disposed at a top end of the cable arranging slider 333, the cable arranging pulley assembly 32 is swingably disposed on the adjusting base 342 via the adjusting connecting shaft 343, an adjusting cylinder 341 is disposed at one side of the cable arranging slider 333, and a piston rod of the adjusting cylinder 341 is connected to the cable arranging pulley assembly 32.
Above setting, drive row's cable loose pulley assembly 32 through adjustment cylinder 341 and carry out the luffing motion, when holding cable winch 21 and receiving the cable or when letting out the cable, can adjust row's cable loose pulley assembly 32 with deep sea hawser 20 at the level who holds on cable winch 21, like this, the receipts cable or the letting out of carrying out deep sea hawser 20 that can be better, simple structure and effective.
As shown in fig. 2 and 3, the flat cable pulley assembly 32 includes a pulley bracket 321, a first pulley 322, and a first pulley shaft 323, one end of the pulley bracket 321 is swingably provided on the adjustment base 342 via an adjustment connecting shaft 343, and the first pulley 322 is rotatably provided on the pulley bracket 321 via the first pulley shaft 323; the piston rod of the adjusting cylinder 341 is connected to the pulley bracket 321, and the other end of the deep sea cable 20 is wound around the first pulley 322.
Above setting, through the setting of first pulley 322, make things convenient for tightening up or relaxing of deep sea hawser 20, simple structure is effective.
As shown in fig. 2 and 6, the cable-arranging pulley assembly 32 further includes a second pulley 324, a second pulley holder 325 is disposed at one side of the pulley support 321, the second pulley 324 is rotatably disposed on the second pulley holder 325 via a second pulley shaft 326, and the second pulley 324 abuts against the other end of the deep-sea cable 20.
With the arrangement, the deep sea cable 20 can be positioned and directionally fixed through the second pulley 324, so that the deep sea cable 20 can be placed to be deviated when being collected.
As shown in fig. 2 and 3, the cable arranging driving assembly 33 further includes a cable arranging guide shaft 334, the cable arranging guide shaft 334 is disposed on the cable arranging frame 31 at two sides of the cable arranging screw 332, a sliding hole 335 corresponding to the cable arranging guide shaft 334 is disposed on the cable arranging slider 333, and the cable arranging guide shaft 334 is disposed in the sliding hole 335.
Above setting, through arranging cable guiding axle 334 can make the removal of arranging cable slider 333 more stable firm, simple structure and effective.
The cable arrangement method of the winch system comprises the following specific steps:
s1, when the winch needs to be used for cable laying.
(1) The cable containing winch drives the deep sea cable to be discharged.
(2) After the deep sea cable is discharged for one circle, the cable arranging motor drives the cable arranging slide block to transversely move for the distance of the deep sea cable.
(3) And (3) repeating the step (2) until the deep sea cable is released to a layer.
(4) And the cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing upwards until the cable arrangement pulley assembly is consistent with the horizontal height of the next deep sea cable.
(5) And (4) repeating the steps (1) to (4) until the deep sea cable is released to the required length.
And S2, when the winch needs to perform cable collection.
(1) The cable containing winch drives the deep sea cable to be retracted and wound on the cable containing winch.
(2) After the deep sea cable is wound for one circle on the cable containing winch, the cable arranging motor drives the cable arranging sliding block to transversely move for the distance of the deep sea cable.
(3) And (5) repeating the step (2) until the deep sea cable is wound by one layer.
(4) And the cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing downwards until the cable arrangement pulley assembly is consistent with the horizontal height of the next layer of deep sea cable.
(5) And (5) repeating the steps (1) to (4) until the deep sea cable is completely withdrawn.
As shown in fig. 2, a guide pulley block 4 is further disposed between the cable arranging mechanism 3 and the tension mechanism 1, the guide pulley block 4 includes a guide pulley frame 41 and a guide pulley 42, and the guide pulley 42 is disposed on the guide pulley frame 41 through a guide pulley shaft 43; the other end of the deep sea cable 20 is wound around a guide pulley 42.
Above setting leads the deep sea hawser through the direction pulley for the better row cable of going on of deep sea hawser.
As shown in fig. 5 and 7, the buffer device 15 includes a buffer bracket 151, a buffer pulley 152, a buffer slider 153, and a buffer spring, the buffer bracket 151 is disposed at the top end of the tension frame 11, a buffer guide groove 150 penetrating through the front and rear ends of the buffer bracket 151 is disposed at the top end of the buffer bracket 151, buffer guide rails 155 are disposed at the upper and lower sides of the front end of the buffer guide groove 150, the buffer slider 153 slidably disposed along the length direction of the buffer guide rail 155 is disposed on the buffer guide rail 155, the buffer pulley 152 is disposed at the rear end of the buffer guide groove 150 and rotatably connected to the buffer slider 153 through a buffer pulley shaft 1521, a buffer spring barrel 156 is disposed at one end of the buffer guide groove 150 extending outward of the deep sea cable 20, a buffer spring (not shown) is disposed in the buffer spring barrel 156, and the buffer spring extends into the buffer guide groove 150 and is connected to the buffer slider 153; a baffle 154 is arranged at the other end of the buffer guide rail groove 150; the other end of the deep sea cable 20 is wound around a buffer pulley 152.
With the arrangement, when the deep sea cable 20 is operated in deep sea, the buffer device 15 can play a certain buffer role on the deep sea cable 20 due to the unstable factors of the sea water, so that the tension of the deep sea cable is prevented from directly acting on the tension mechanism. When the deep sea mooring rope receives pulling force, the deep sea mooring rope drives the buffer pulley to move towards the buffer spring, and in the process of moving the buffer pulley, the buffer pulley is buffered to a certain extent through the elastic action of the buffer spring, so that the buffer pulley is prevented from directly impacting the buffer support.
As shown in fig. 4 and 5, the load cell 14 is rotatably disposed on the tension frame 11 via a load cell shaft 141, a pressure sensor (not shown) is disposed on the load cell 141, and the deep-sea cable 20 is supported on the load cell 14. The tension of the deep sea mooring rope is detected through the pressure sensor, the stress condition of the deep sea mooring rope is monitored in real time, and accidents are prevented.
As shown in fig. 8, the cable-accommodating winch 21 includes a cable-accommodating frame 211, a cable-accommodating drum 212 and a cable-accommodating motor 213, the cable-accommodating drum 212 is rotatably disposed on the cable-accommodating frame 211, the cable-accommodating motor 213 is disposed at one end of the cable-accommodating frame 211, a driving shaft of the cable-accommodating motor 211 is connected to the cable-accommodating drum 212, and one end of the deep-sea cable 20 is wound on the cable-accommodating drum 212.
According to the structure, one end of the deep sea cable is wound on the cable accommodating reel, the other end of the deep sea cable extends out of the cable accommodating reel, the deep sea cable is wound on the first pulley through the second pulley, the angle of the deep sea cable is 90 degrees under the action of the first pulley, the deep sea cable is changed for 90 degrees again under the action of the guide pulley (as shown by an arrow in figure 1), so that the other end of the deep sea cable extends to the tension winch at one end of the cable accommodating winch, after the other end of the deep sea cable is sequentially wound on the first tension winch and the second tension winch, the other end of the deep sea cable extends upwards to abut against the force measuring pulley, and finally the deep sea cable is wound on the buffer pulley, extends out of the tension mechanism and is connected with deep sea equipment, and is shown by an arrow in figure 5.
When the winch system is used for retracting the deep sea cable, the cable accommodating winch 21 acts to retract the deep sea cable 20, meanwhile, the first tension winch 12 and the second tension winch 13 synchronously rotate to drive the deep sea cable 20 to retract so as to share the pressure of the cable accommodating winch, in the process of retracting the deep sea cable 20 by the cable accommodating winch 21, after the deep sea cable 20 is wound by one circle of cable accommodating drum 212, the cable arranging motor 331 drives the cable arranging slider 333 to transversely move for the distance of the deep sea cable 20, so that the deep sea cable 20 is orderly wound on the cable accommodating drum 212, the cable arranging motor 331 drives the cable arranging slider to move from one end of the cable accommodating drum 212 to the other end of the cable accommodating drum 212, and then from the other end of the cable accommodating drum 212 to one end of the cable accommodating drum 212, so that the process is repeated until the deep sea cable 20 is completely retracted, so as to ensure that the deep sea cable 20 can be flatly wound on the cable accommodating drum 212; after the deep sea cable 20 is fully wound on the cable accommodating drum 212, the cable accommodating winch continues to act to wind the next deep sea cable on the fully wound deep sea cable, and the adjusting cylinder 341 drives the cable arranging pulley 322 to swing downwards, so that the horizontal height of the cable arranging pulley 322 is consistent with the horizontal height of the deep sea cable 20 wound on the cable accommodating drum 212 of the next deep sea cable, and the deep sea cable is more convenient to arrange.
When the cable is released, the cable containing winch 21 acts to release the deep sea cable 20, through synchronous rotation of the first tension winch 12 and the second tension winch 13, the deep sea cable 20 is driven to release, in the process of releasing the deep sea cable 20 by the cable containing winch 21, after each circle of the deep sea cable 20 wound on the cable containing drum 212 is released, the cable discharging motor 331 drives the cable discharging slider 333 to transversely move for a distance of one deep sea cable 20, the cable discharging motor 331 drives the cable discharging slider 333 to move from one end of the cable containing drum 212 to the other end of the cable containing drum 212, and then moves from the other end of the cable containing drum 212 to one end of the cable containing drum 212, so that the operation is repeated until the deep sea cable 20 is released to a required length; after the deep sea cable 20 is reeled out on the cable containing drum 212, the adjusting cylinder 341 drives the cable arranging pulley 322 to swing upwards to be consistent with the level of the deep sea cable 20 at the next layer, thereby facilitating the reeling-out of the deep sea cable 20 at the next layer wound on the cable containing drum. In this embodiment, because the cable releasing of the deep sea cable is released from the outside of the cable drum inwards, when the cable releasing is performed, the adjusting cylinder drives the cable arranging pulley to swing to be consistent with the horizontal height of the deep sea cable wound on the outermost layer of the cable drum, and when the cable releasing is performed, after each layer of deep sea cable is wound, the adjusting cylinder drives the cable arranging pulley to rise by the height of one deep sea cable, so that the cable arranging pulley is always consistent with the horizontal height of the deep sea cable.

Claims (5)

1. A cable arrangement method of a deep-sea winch is characterized by comprising the following steps: the method comprises the following specific steps:
s1, when the winch needs to be laid;
(1) The cable containing winch drives the deep sea cable to be discharged;
(2) After the deep sea cable is discharged for one circle, the cable arranging motor drives the cable arranging sliding block to transversely move for the distance of the deep sea cable;
(3) Repeating the step (2) until the deep sea cable is released to a layer;
(4) The cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing upwards until the horizontal height of the cable arrangement pulley assembly is consistent with the horizontal height of the next deep sea cable;
(5) Repeating the step (1) to the step (4) until the deep sea cable is released to the required length;
s2, when the winch needs to collect cable;
(1) The cable containing winch drives the deep sea cable to be retracted and wound on the cable containing winch;
(2) After the deep sea cable is wound for one circle on the cable containing winch, the cable arranging motor drives the cable arranging sliding block to transversely move for the distance of the deep sea cable;
(3) Repeating the step (2) until the deep sea cable is wound by one layer;
(4) The cable arrangement height adjusting assembly drives the cable arrangement pulley assembly to swing downwards until the horizontal height of the cable arrangement pulley assembly is consistent with the horizontal height of the next deep sea cable;
(5) Repeating the step (1) to the step (4) until the deep sea cable is completely withdrawn;
the method is realized through the following structure, and comprises a cable accommodating mechanism and a cable arranging mechanism, wherein the cable accommodating mechanism comprises a cable accommodating winch and a deep sea cable, one end of the deep sea cable is wound on the cable accommodating winch, the other end of the deep sea cable is connected with the cable arranging mechanism, and the tail end of the deep sea cable extends out of the cable arranging mechanism and is connected with deep sea equipment;
the cable arrangement mechanism comprises a cable arrangement rack, a cable arrangement pulley assembly, a cable arrangement driving assembly and a cable arrangement height adjusting assembly; the cable arranging machine frame is arranged on one side of the cable containing winch, a cable arranging driving assembly is arranged on the cable arranging machine frame, and a cable arranging pulley assembly is arranged on the cable arranging driving assembly;
the cable arrangement driving assembly comprises a cable arrangement motor, a cable arrangement lead screw and a cable arrangement sliding block, the cable arrangement lead screw is arranged on the cable arrangement rack, the cable arrangement motor is arranged at one end of the cable arrangement rack, a driving shaft of the cable arrangement motor is connected with the cable arrangement lead screw, the cable arrangement sliding block moving along the length direction of the cable arrangement lead screw is arranged on the cable arrangement lead screw, a cable arrangement height adjusting assembly is arranged on the cable arrangement sliding block, and the cable arrangement pulley assembly is arranged on the cable arrangement height adjusting assembly.
2. The method for arranging the cable of the winch for the deep sea according to claim 1, wherein: arrange cable height adjusting part including adjust cylinder, adjusting base and regulation connecting axle, adjusting base sets up on the top of arranging the cable slider, arranges cable pulley assembly and is equipped with the adjusting cylinder through the wobbling setting of regulation connecting axle on adjusting base, arranges cable slider's one side, adjusting cylinder's piston rod connection row cable pulley assembly.
3. The cable arranging method of the deep sea winch according to claim 2, wherein: the cable arrangement pulley assembly comprises a pulley support, a first pulley and a first pulley shaft, wherein one end of the pulley support is arranged on the adjusting base in a swinging mode through an adjusting connecting shaft, and the first pulley is arranged on the pulley support in a rotating mode through the first pulley shaft; a piston rod of the adjusting oil cylinder is connected with the pulley bracket, and the other end of the deep sea cable is wound on the first pulley.
4. The cable arranging method of the deep sea winch according to claim 3, wherein: arrange cable pulley assembly and still include the second pulley, be equipped with second pulley mount in one side of pulley support, the second pulley passes through second pulley shaft pivoted setting on second pulley mount, and the second pulley supports the other end of holding deep sea hawser.
5. The method for arranging the cable of the winch for the deep sea according to claim 1, wherein: the cable arrangement driving assembly further comprises a cable arrangement guide shaft, the cable arrangement guide shaft is arranged on the cable arrangement rack on two sides of the cable arrangement wire rod, a sliding hole corresponding to the cable arrangement guide shaft is formed in the cable arrangement sliding block, and the cable arrangement guide shaft is located in the sliding hole.
CN202211189999.XA 2022-09-28 2022-09-28 Cable arrangement method of deep-sea winch Pending CN115818487A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202211189999.XA CN115818487A (en) 2022-09-28 2022-09-28 Cable arrangement method of deep-sea winch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202211189999.XA CN115818487A (en) 2022-09-28 2022-09-28 Cable arrangement method of deep-sea winch

Publications (1)

Publication Number Publication Date
CN115818487A true CN115818487A (en) 2023-03-21

Family

ID=85524094

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202211189999.XA Pending CN115818487A (en) 2022-09-28 2022-09-28 Cable arrangement method of deep-sea winch

Country Status (1)

Country Link
CN (1) CN115818487A (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202575796U (en) * 2011-12-01 2012-12-05 射阳远洋船舶辅机有限公司 Deep-sea winch
CN205257856U (en) * 2015-12-07 2016-05-25 捷胜海洋装备股份有限公司 Row's cable device of deep sea ocean scientific investigation pulling winch
CN107487731A (en) * 2017-09-18 2017-12-19 江苏海泰船舶成套设备有限公司 Cable winch is held in one kind traction
CN109534202A (en) * 2019-01-02 2019-03-29 武汉船用机械有限责任公司 A kind of method and apparatus that cable storage winch arranges cable automatically
CN210419050U (en) * 2019-05-15 2020-04-28 南京中船绿洲机器有限公司 Automatic compensation type rope arranging system for deep sea retractable winch
CN114314398A (en) * 2021-12-24 2022-04-12 无锡市申锡船舶设备有限公司 Deep sea hydrology winch system

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202575796U (en) * 2011-12-01 2012-12-05 射阳远洋船舶辅机有限公司 Deep-sea winch
CN205257856U (en) * 2015-12-07 2016-05-25 捷胜海洋装备股份有限公司 Row's cable device of deep sea ocean scientific investigation pulling winch
CN107487731A (en) * 2017-09-18 2017-12-19 江苏海泰船舶成套设备有限公司 Cable winch is held in one kind traction
CN109534202A (en) * 2019-01-02 2019-03-29 武汉船用机械有限责任公司 A kind of method and apparatus that cable storage winch arranges cable automatically
CN210419050U (en) * 2019-05-15 2020-04-28 南京中船绿洲机器有限公司 Automatic compensation type rope arranging system for deep sea retractable winch
CN114314398A (en) * 2021-12-24 2022-04-12 无锡市申锡船舶设备有限公司 Deep sea hydrology winch system

Similar Documents

Publication Publication Date Title
EP2480487B1 (en) Improved level wind arm for a winch assembly
CN109132904B (en) Winch device and unmanned ship
CN210505106U (en) Auxiliary retraction device for shore power cable of boat
CN115818488A (en) Method for sharing tension of steel wire rope based on deep-sea winch
WO2011139160A1 (en) Tension control device for an anchor line rope
JPH0645437B2 (en) Integrated hoisting and anchoring device and mooring device including the device
CN210795397U (en) Capstan with automatic wire arrangement device
CN117012464A (en) Bundle strander is used in flexible cable processing
CN218841530U (en) Cable arranging winch for deep sea
CN118004914A (en) Tension winch with guide structure for ship
CN218841529U (en) Stretching resistance winch for deep sea
CN115818487A (en) Cable arrangement method of deep-sea winch
CN115893239A (en) Winch system for deep sea
CN218434337U (en) Conveniently-fixed small ship anchor lifting device
CN215710865U (en) Cable conductor is straining device for unwrapping wire
CN211870988U (en) Cable winding and unwinding system for offshore seismic exploration
CN117163863B (en) Device and method for assisting cable arrangement of underwater winch
CN114314179A (en) Well cable conductor winding and unwinding devices
CN110835004A (en) Cable winding and unwinding system for offshore seismic exploration
CN219009783U (en) Cable protection mechanism of electric hoist with small cable offset abrasion
JP2003511321A (en) Method and apparatus for use in handling loads
JP2585487B2 (en) Capstan type winch used for automatic lifting system such as ball net
CN216997425U (en) Tensioning device for friction winch
CN218708807U (en) Winding winch for hydrology
CN221318793U (en) Dead recovery unit of motor-pumped well on-line measuring head anti-sticking

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination