CN204517296U - winding tool - Google Patents

winding tool Download PDF

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Publication number
CN204517296U
CN204517296U CN201520248076.6U CN201520248076U CN204517296U CN 204517296 U CN204517296 U CN 204517296U CN 201520248076 U CN201520248076 U CN 201520248076U CN 204517296 U CN204517296 U CN 204517296U
Authority
CN
China
Prior art keywords
contact roller
coiling
support arm
cable
winding tool
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.)
Withdrawn - After Issue
Application number
CN201520248076.6U
Other languages
Chinese (zh)
Inventor
杜中庆
陈跃中
熊忠
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.)
State Grid Corp of China SGCC
Jiangxi Vocational and Technical College of Electricity
Original Assignee
State Grid Corp of China SGCC
Jiangxi Vocational and Technical College of Electricity
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 State Grid Corp of China SGCC, Jiangxi Vocational and Technical College of Electricity filed Critical State Grid Corp of China SGCC
Priority to CN201520248076.6U priority Critical patent/CN204517296U/en
Application granted granted Critical
Publication of CN204517296U publication Critical patent/CN204517296U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The winding tool that the utility model provides, relates to the technical field of cable butting coiling, comprising: support and thread depressing mechanism, and described thread depressing mechanism is arranged on the bracket; The middle part of described thread depressing mechanism forms the winding space for holding cable, and described thread depressing mechanism is for compressing coiling and rotating around the cable in described winding space.Carry out the cable of coiling at joint through the thread depressing mechanism of above-mentioned winding tool, coiling is evenly distributed at joint, and is not easy to scatter; Meanwhile, this winding tool structure is simple, easy to operate, can effectively increase work efficiency.

Description

Winding tool
Technical field
The utility model relates to the technical field of cable butting coiling, especially relates to winding tool.
Background technology
The power station of different regions, transformer station, load point can couple together and carry or exchange electric energy by overhead transmission line, form electric power networks or the power distribution network of various grade.The part such as overhead transmission line route cable, overhead ground wire, insulator, shaft tower, earthing device, gold utensil composition.
The function of conduction current mainly born by cable, and insulator mainly plays carrying cable and prevents electric current from going back to ground; The metal-ware of the widely used irony of power transmission cable or aluminum is referred to as gold utensil, major part gold utensil needs to bear larger pulling force in transmission line runs, sometimes also need to ensure that the contact of electric aspect is good, it is related to the safety of cable or shaft tower, even if a damage, also may cause line fault.
When Overhead Transmission Line Construction, usually can need how to be fixed with cable butting, and the quality that the accuracy of this docking and coiling are wound around can produce certain impact to the function of cable conduction current together and then by coiling.
In the prior art, usually be all adopt manual method to carry out the docking of cable and the fixing of coiling, concrete grammar is: docked one end with another root cable, one end of a cable, after docking completes, be fixed in joint coiling, the instrument that whole operating process uses is cutting pliers.
Said method is used to carry out docking the cable of coiling, because whole operating process is manually completed by cutting pliers by operating personnel, therefore, coiling is wound around comparatively uneven in the joint of cable butting and firmness is lower, thus cause coiling to be easy to scatter in joint, this just may cause the power transmission failure of overhead transmission line, thus affects user power utilization; And when work high above the ground, the operation of artificial docking and coiling is very inconvenient, and operating efficiency is lower.
Utility model content
The purpose of this utility model is to provide a kind of winding tool, uneven, insecure to solve the artificial coiling existed in prior art, easily scatters and operate inconvenient and that operating efficiency is lower technical problem in joint.
A kind of winding tool that the utility model provides, comprising: support and thread depressing mechanism, and described thread depressing mechanism is arranged on the bracket; The middle part of described thread depressing mechanism forms the winding space for holding cable, and described thread depressing mechanism is for compressing coiling and rotating around the cable in described winding space.
Further, described thread depressing mechanism comprises multiple compressing unit, and described winding space is enclosed by described multiple compressing unit and formed.
Preferably, described multiple compressing unit comprises the first contact roller of laying triangular in shape, the second contact roller and the 3rd contact roller; Described support comprises the first support arm and the second support arm, and described first contact roller rotates and is arranged on described first support arm, and described second contact roller and described 3rd contact roller all rotate and be arranged on described second support arm.
Further, also comprise conducting mechanism, described conducting mechanism comprises for guiding described coiling to be wound to the first guide portion on described cable; Described first guide portion is arranged on described first support arm and close described first contact roller place, and described first guide portion is provided with coiling approaching channel.
Further, described conducting mechanism also comprises the second guide portion for guiding the described coiling direction of motion; Described second guide portion to be arranged on described first support arm and to arrange away from described first contact roller relative to described first guide portion; Described second guide portion comprises multiple spaced coiling running roller.
Further, described first support arm is provided with position adjusting mechanism, described position adjusting mechanism for regulating described first contact roller relative to the distance of described second contact roller and described 3rd contact roller, to regulate the size of described winding space.
Preferably, described position adjusting mechanism comprises screw rod and driving arm, and described first contact roller and described driving arm are rotationally connected, and one end of described driving arm and described screw rod is rotationally connected, and the other end of described screw rod is threaded with described first support arm.
Preferably, described driving arm is provided with through hole, one end of described screw rod is located in described through hole, described screw rod is provided with first collar and second collar; Described first collar and described second collar lay respectively at the both sides of described through hole, and its external diameter is all greater than the diameter of described through hole.
Further, described position adjusting mechanism also comprises the track be arranged on described first support arm, and described first contact roller can move up and down along described track under the driving of described screw rod.
Further, described position adjusting mechanism also comprises handle, and described handle is arranged on one end that described screw rod stretches out in described first support arm.
Compared with prior art, the beneficial effects of the utility model are:
The winding tool that the utility model provides, comprise support and thread depressing mechanism, thread depressing mechanism is arranged on support, and can form the winding space for holding cable at the middle part of thread depressing mechanism, and this thread depressing mechanism can compress coiling and rotate around the cable in winding space; Carry out the cable of coiling at joint through the thread depressing mechanism of above-mentioned winding tool, coiling is evenly distributed at joint, and is not easy to scatter; Meanwhile, this winding tool structure is simple, easy to operate, can effectively increase work efficiency.
Accompanying drawing explanation
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, accompanying drawing in the following describes is execution modes more of the present utility model, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings.
The structural representation of the winding tool that Fig. 1 provides for the utility model embodiment;
The partial enlarged drawing of the syndeton at the first contact roller place that Fig. 2 is the winding tool shown in Fig. 1.
Reference numeral:
1-support; 2-thread depressing mechanism; 3-position adjusting mechanism;
4-coiling; 5-cable; 6-coiling approaching channel;
7-coiling running roller;
11-first support arm; 12-second support arm; 21-first contact roller;
22-second contact roller; 23-the 3rd contact roller; 24-connecting axle;
31-screw rod; 32-handle; 33-track;
34-driving arm; 311-first collar; 312-second collar.
Embodiment
Be clearly and completely described the technical solution of the utility model below in conjunction with accompanying drawing, obviously, described embodiment is the utility model part embodiment, instead of whole embodiments.Based on the embodiment in the utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of the utility model protection.
In description of the present utility model, it should be noted that, orientation or the position relationship of the instruction such as term " " center ", " on ", D score, "left", "right", " vertically ", " level ", " interior ", " outward " they be based on orientation shown in the drawings or position relationship; be only the utility model and simplified characterization for convenience of description; instead of instruction or imply the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore can not be interpreted as restriction of the present utility model.In addition, term " first ", " second ", " the 3rd " only for describing object, and can not be interpreted as instruction or hint relative importance.
In description of the present utility model, it should be noted that, unless otherwise clearly defined and limited, term " installation ", " being connected ", " connection " should be interpreted broadly, and such as, can be fixedly connected with, also can be removably connect, or connect integratedly; Can be mechanical connection, also can be electrical connection; Can be directly be connected, also indirectly can be connected by intermediary, can be the connection of two element internals.For the ordinary skill in the art, concrete condition the concrete meaning of above-mentioned term in the utility model can be understood.
The structural representation of the winding tool that Fig. 1 provides for the utility model embodiment; The partial enlarged drawing of the syndeton at the first contact roller place that Fig. 2 is the winding tool shown in Fig. 1.
As shown in Figure 1-2, the winding tool that the utility model embodiment provides, comprising: support 1 and thread depressing mechanism 2, and thread depressing mechanism 2 is arranged on support 1; The middle part of thread depressing mechanism 2 forms the winding space for holding cable 5, and thread depressing mechanism 2 is for compressing coiling 4 and rotating around the cable 5 in winding space.
The Main Function of support 1 is each component supporting this winding tool, and therefore, every structure that can play a supporting role can be the support 1 of the present embodiment indication.
The Main Function of thread depressing mechanism 2 is for providing one for placing the winding space of the cable 5 treating coiling and compressing coiling 4, thus making coiling 4 can be compact and be wrapped in comparatively uniformly and treat on the cable 5 of coiling, this thread depressing mechanism 2 can also around the axial rotation of cable 5 simultaneously; Therefore, every mechanism that can function as described above thread depressing mechanism 2 that can provide as the present embodiment.
Winding space is formed by thread depressing mechanism 2, is mainly used to place the cable 5 waiting to dock coiling; And the size of winding space is determined by the diameter of cable 5, size just can be put this winding space into cable 5 and be advisable.
Certainly, the size of winding space can be fixing, also can be adjustable; As the preferred scheme of one, the size of winding space can regulate, and the winding tool so just enabling the present embodiment provide is applicable to the cable 5 of any model, effectively expands the scope of application.
The concrete using method of the winding tool that the utility model embodiment provides is: first will wait that the cable 5 docking coiling is placed in winding space, coiling 4 is placed on thread depressing mechanism 2, then while this winding tool of rotation or thread depressing mechanism 2, push its axial direction along cable 5 to move, thus make coiling 4 be wrapped on cable 5, finally cut off coiling 4, take off winding tool, complete docking coiling.
The winding tool that the utility model embodiment provides, comprise support 1 and thread depressing mechanism 2, thread depressing mechanism 2 is arranged on support 1, and can form the winding space for holding cable 5 at the middle part of thread depressing mechanism 2, and this thread depressing mechanism 2 can compress coiling 4 and rotate around the cable 5 in winding space; Carry out the cable 5 of coiling at joint through the thread depressing mechanism 2 of above-mentioned winding tool, coiling 4 is evenly distributed at joint, and is not easy to scatter; Meanwhile, this winding tool structure is simple, easy to operate, can effectively increase work efficiency.
On the basis of above-described embodiment, particularly, thread depressing mechanism 2 comprises multiple compressing unit, and winding space is enclosed by multiple compressing unit and formed.Multiple compressing unit cooperatively interacts the cable 5 that can compress and be placed on winding space, coiling 4 can also be pressed on this cable 5 simultaneously, thus realizes coiling on this cable 5.Compressing unit is set, can firmly fixes and compress cable 5, in the process of coiling, ensure that cable 5 remains static all the time, coiling 4 can be wrapped on cable 5 uniformly, thus firmly fix the joint of docking cable 5, make it be not easy to unclamp.
The structure of compressing unit can have multiple choices, such as: aduncate arcuate structure, flat structure or wheel, etc., every structure that can function as described above can be the compressing unit of the present embodiment indication; The quantity of compressing unit is multiple, can be two, can also be three or more, can form the winding space of attached cable 5, ensures that thread depressing mechanism 2 does not move when cable 5 rotates and is as the criterion.
On the basis of above-described embodiment, as the preferred scheme of one, as shown in Figure 1, multiple compressing unit comprises the first contact roller 21, second contact roller 22 and the 3rd contact roller 23 of laying triangular in shape; Support 1 comprises the first support arm 11 and the rotation of the second support arm 12, first contact roller 21 is arranged on the first support arm 11, and the second contact roller 22 and the 3rd contact roller 23 all rotate and be arranged on the second support arm 12.
Three contact rollers are set and make its distribution triangular in shape, even if the winding tool that the present embodiment can be made to provide uses minimum component can reach fixing equally and compresses the object of cable 5, and said structure effectively reduces the weight and volume of winding tool, be easy to carry with hand-held, winding operation become and is more prone to.
First contact roller 21 is arranged on the first support arm 11, second contact roller 22 and the 3rd contact roller 23 are arranged on the second support arm 12, the winding tool structure that the present embodiment is provided is compacter, can also make the fixing more firm of the first contact roller 21, second contact roller 22 and the 3rd contact roller 23 simultaneously.
Can be that to be fixedly connected with also can be rotationally connected between first contact roller 21 and the first support arm 11, as the preferred scheme of one, be rotationally connected by connecting axle 24 between the first contact roller 21 and the first support arm 11; Second contact roller 22 and also can be that to be fixedly connected with can also be rotationally connected between the 3rd contact roller 23 with the second support arm 12, as the preferred scheme of one, the second contact roller 22 and the 3rd contact roller 23 are all by being rotationally connected between connecting axle 24 and the second support arm 12.
Employing is rotationally connected, cable 5 and coiling 4 is compressed at thread depressing mechanism 2, and during axial rotation around cable 5, the first contact roller 21, second contact roller 22 and the frictional force between the 3rd contact roller 23 and cable 5 can be reduced widely, even if this just makes operating personnel apply less power, also winding operation can be completed.
On the basis of above-described embodiment, particularly, as shown in Figure 2, also comprise conducting mechanism, conducting mechanism comprises for guiding coiling 4 to be wound to the first guide portion on cable 5; First guide portion is arranged on the first support arm 11 and close first contact roller 21 place, the first guide portion is provided with coiling approaching channel 6.
The Main Function of the first guide portion guides coiling 4 to be wound on cable 5, and the component that can meet its above-mentioned effect can have a variety of, such as: the cylindrical channel of both ends open, coiling 4 inserted from one end and then pass from the other end; Or can also be coiling approaching channel 6, coiling 4 can be placed in this coiling approaching channel 6.
As the preferred scheme of one, as depicted in figs. 1 and 2, the first guide portion selects coiling approaching channel 6, and coiling approaching channel 6 not only can guide the winding of coiling 4, and structure is simple, is easy to fixing; Coiling approaching channel 6 is fixed on the first support arm 11, and near the first contact roller 21 place, can be compressed in rotation process as long as realize coiling 4 by the first contact roller 21; Certainly, it should be noted that, coiling approaching channel 6 can directly be connected with the first support arm 11, also indirectly can be connected with the first support arm 11 by other component.
It should be noted that, the quantity of coiling approaching channel 6 can be multiple, can carry out winding operation like this with multiply coiling 4 to cable 5 simultaneously, further increasing the firmness of operating efficiency and docking coiling place.
On the basis of above-described embodiment, further, as shown in Figure 1, conducting mechanism also comprises the second guide portion for guiding coiling 4 direction of motion; Second guide portion to be arranged on the first support arm 11 and to arrange away from the first contact roller 21 relative to the first guide portion; Second guide portion comprises multiple spaced coiling running roller 7.
It should be noted that, the second guide portion can directly be connected with the first support arm 11, also indirectly can be connected with the first support arm 11 by other component; The Main Function of the second guide portion is the direction of motion guiding coiling 4, to ensure in the process of coiling, coiling 4 direction is as required wrapped on cable 5, avoid coiling 4 to tie a knot or be wrapped in the situation appearance on other component, therefore, every component that can function as described above can as the second guide portion of the present embodiment indication.
As the preferred scheme of one, as shown in Figure 1, the second guide portion comprises multiple spaced coiling running roller 7, and coiling 4 crosses through between multiple coiling running roller 7, thus plays the object controlling coiling 4 direction of motion; Coiling running roller 7 surface is cylindrical and smooth, and frictional force between coiling 4 is less, can not produce larger resistance to the motion of coiling 4, and coiling 4 of can not wearing and tearing, thus can not damage the intensity of coiling 4.
It should be noted that, coiling running roller 7 and the connection of the first support arm 11 can be that to be rotationally connected also can be fixedly connected with, preferably, for being rotationally connected; Coiling 4, in motion process, is rotationally connected between coiling running roller 7 and the first support arm 11, can reduce the frictional force between coiling 4 and coiling running roller 7 further, thus the resistance that coiling 4 is moved is less.
On the basis of above-described embodiment, further, the first support arm 11 is provided with position adjusting mechanism 3, position adjusting mechanism 3 for regulating the first contact roller 21 relative to the distance of the second contact roller 22 and the 3rd contact roller 23, to regulate the size of winding space.
Position adjusting mechanism 3 can have multiple choices, if can drive the first contact roller 21 away from or near the second contact roller 22 and the 3rd contact roller 23, such as: realize above-mentioned functions by gear drive, chain drive or helical rotation.
It should be noted that, the distance between the second contact roller 22 and the 3rd contact roller 23 can be fixing, also can be conditioned; As the preferred scheme of one, the distance between the second contact roller 22 and the 3rd contact roller 23 can be conditioned, and the winding tool that the present embodiment can be made like this to provide adapts to the cable 5 of different-diameter model further, expands the scope of application.
The mode of the spacing of the second contact roller 22 and the 3rd contact roller 23 can be regulated to have a variety of selection, such as: on the second support arm 12, interval arranges multiple connecting axle through hole, the function of adjustable range is realized by the second contact roller 22 and the 3rd contact roller 23 being connected from different connecting axle through holes; Or arrange a square hole on the second support arm 12, the connecting axle 24 connecting the second contact roller 22 and the 3rd contact roller 23 can be fixed on the optional position of this square hole, thus realizes the function of adjustable range.
Setting position governor motion 3, can regulate and the size of fixing winding space, the cable 5 that the winding tool provided to enable the present embodiment meets different-diameter model uses, and expands its scope of application.
On the basis of above-described embodiment, as the preferred scheme of one, particularly, as depicted in figs. 1 and 2, position adjusting mechanism 3 comprises screw rod 31 and driving arm 34, first contact roller 21 is rotationally connected with driving arm 34, and driving arm 34 is rotationally connected with one end of screw rod 31, and the other end of screw rod 31 is threaded with the first support arm 11.
Driving arm 34 is connected with the first support arm 11, can be direct connection, also can be the indirect connection realized by other component; First contact roller 21 can be fixedly connected with the connection between driving arm 34, also can be rotationally connected, preferably be rotationally connected, because be rotationally connected, the frictional force on the first contact roller 21 and cable 5 surface can be reduced, make the first contact roller 21 all become easy realization along the surperficial rectilinear motion of cable 5 and circular motion.
Driving arm 34 is rotationally connected with one end of screw rod 31, namely, screw rod 31 can rotate in driving arm 34, but driving arm 34 does not rotate along with the rotation of screw rod 31, but screw rod 31 can with driving arm 34 upwards or move down when rotation.
Screw rod 31 is threaded with the first support arm 11, can realize upwards or downward movement to make screw rod 31 under the effect be threaded by rotating.
The structure of above-mentioned position adjusting mechanism 3 is simple, easy to operate, for other position adjusting mechanism 3, can meet the demand of operating personnel's work high above the ground better.
On the basis of above-described embodiment, as the preferred scheme of one, particularly, as depicted in figs. 1 and 2, driving arm 34 is provided with through hole, one end of screw rod 31 wears in through-holes, screw rod 31 is provided with first collar 311 and second collar 312; First collar 311 and second collar 312 lay respectively at the both sides of through hole, and its external diameter is all greater than the diameter of through hole.
It should be noted that, in order to ensure that screw rod 31 is in rotation process, driving arm 34 only has axial motion and without circumferential movement, therefore the inner surface of through hole is without screw thread.
The one end passing through hole at screw rod 31 only can arrange a collar, also can arrange two collars; When only there being a collar, this collar can drive driving arm 34 to move up when screw rod 31 upwards screw, and when screw rod 31 screw downwards time, driving arm 34 relies on the gravity of self to move down.
As the preferred scheme of one, screw rod 31 arranges first collar 311 and second collar 312, and first collar 311 and second collar 312 lay respectively at the both sides of through hole; When screw rod 31 upwards screw time, first collar 311 drives driving arm 34 to move up; When screw rod 31 screw downwards time, driving arm 34 moves down under the pressure effect of self gravitation and second collar 312; Second collar 312 can also play the effect compressing driving arm 34, makes it can not rock in the process of winding operation, thus ensures the stability of the first contact roller 21, guarantees that coiling 4 is wound around further more all even fastening.
On the basis of above-described embodiment, particularly, as shown in Figure 1, position adjusting mechanism 3 also comprises track 33, first contact roller 21 be arranged on the first support arm 11 and can move up and down along track 33 under the driving of screw rod 31.
The track 33 that first support arm 11 is arranged, the first contact roller 21 not only can be made to move up and down along this track 33, but also the double swerve of contact roller can be stoped, thus ensure the stability of the first contact roller 21, guarantee that coiling 4 can be wrapped on the cable 5 waiting to dock coiling equably further.
On the basis of above-described embodiment, particularly, as shown in Figure 1, position adjusting mechanism 3 also comprises handle 32, and handle 32 is arranged on one end that screw rod 31 stretches out in the first support arm 11.Screw rod 31 arranges handle 32, rotating screw bolt 31 can be facilitated, operate convenient.
Last it is noted that above each embodiment is only in order to illustrate the technical solution of the utility model, be not intended to limit; Although be described in detail the utility model with reference to foregoing embodiments, those of ordinary skill in the art is to be understood that: it still can be modified to the technical scheme described in foregoing embodiments, or carries out equivalent replacement to wherein some or all of technical characteristic; And these amendments or replacement, do not make the essence of appropriate technical solution depart from the scope of each embodiment technical scheme of the utility model.

Claims (10)

1. a winding tool, is characterized in that, comprising: support and thread depressing mechanism, and described thread depressing mechanism is arranged on the bracket;
The middle part of described thread depressing mechanism forms the winding space for holding cable, and described thread depressing mechanism is for compressing coiling and rotating around the cable in described winding space.
2. winding tool according to claim 1, is characterized in that, described thread depressing mechanism comprises multiple compressing unit, and described winding space is enclosed by described multiple compressing unit and formed.
3. winding tool according to claim 2, is characterized in that, described multiple compressing unit comprises the first contact roller of laying triangular in shape, the second contact roller and the 3rd contact roller;
Described support comprises the first support arm and the second support arm, and described first contact roller rotates and is arranged on described first support arm, and described second contact roller and described 3rd contact roller all rotate and be arranged on described second support arm.
4. winding tool according to claim 3, is characterized in that, also comprises conducting mechanism, and described conducting mechanism comprises for guiding described coiling to be wound to the first guide portion on described cable;
Described first guide portion is arranged on described first support arm and close described first contact roller place, and described first guide portion is provided with coiling approaching channel.
5. winding tool according to claim 4, is characterized in that, described conducting mechanism also comprises the second guide portion for guiding the described coiling direction of motion;
Described second guide portion to be arranged on described first support arm and to arrange away from described first contact roller relative to described first guide portion;
Described second guide portion comprises multiple spaced coiling running roller.
6. the winding tool according to any one of claim 3-5, it is characterized in that, described first support arm is provided with position adjusting mechanism, described position adjusting mechanism for regulating described first contact roller relative to the distance of described second contact roller and described 3rd contact roller, to regulate the size of described winding space.
7. winding tool according to claim 6, it is characterized in that, described position adjusting mechanism comprises screw rod and driving arm, described first contact roller and described driving arm are rotationally connected, one end of described driving arm and described screw rod is rotationally connected, and the other end of described screw rod is threaded with described first support arm.
8. winding tool according to claim 7, is characterized in that, described driving arm is provided with through hole, and one end of described screw rod is located in described through hole, described screw rod is provided with first collar and second collar;
Described first collar and described second collar lay respectively at the both sides of described through hole, and its external diameter is all greater than the diameter of described through hole.
9. winding tool according to claim 8, is characterized in that, described position adjusting mechanism also comprises the track be arranged on described first support arm, and described first contact roller can move up and down along described track under the driving of described screw rod.
10. winding tool according to claim 7, is characterized in that, described position adjusting mechanism also comprises handle, and described handle is arranged on one end that described screw rod stretches out in described first support arm.
CN201520248076.6U 2015-04-22 2015-04-22 winding tool Withdrawn - After Issue CN204517296U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520248076.6U CN204517296U (en) 2015-04-22 2015-04-22 winding tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520248076.6U CN204517296U (en) 2015-04-22 2015-04-22 winding tool

Publications (1)

Publication Number Publication Date
CN204517296U true CN204517296U (en) 2015-07-29

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Application Number Title Priority Date Filing Date
CN201520248076.6U Withdrawn - After Issue CN204517296U (en) 2015-04-22 2015-04-22 winding tool

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104767159A (en) * 2015-04-22 2015-07-08 国家电网公司 Winding tool
CN105762700A (en) * 2016-03-28 2016-07-13 国网山东省电力公司章丘市供电公司 Cable laying manual traction auxiliary tool

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104767159A (en) * 2015-04-22 2015-07-08 国家电网公司 Winding tool
CN105762700A (en) * 2016-03-28 2016-07-13 国网山东省电力公司章丘市供电公司 Cable laying manual traction auxiliary tool

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Granted publication date: 20150729

Effective date of abandoning: 20170613