CN209344642U - Automatic overhead line system - Google Patents
Automatic overhead line system Download PDFInfo
- Publication number
- CN209344642U CN209344642U CN201822120700.0U CN201822120700U CN209344642U CN 209344642 U CN209344642 U CN 209344642U CN 201822120700 U CN201822120700 U CN 201822120700U CN 209344642 U CN209344642 U CN 209344642U
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- CN
- China
- Prior art keywords
- electric wire
- motor
- overhead line
- traction rope
- line system
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Abstract
The utility model provides automatic overhead line system, including being twisted machine, the pulley above power transmission tower set on ground, and traction rope, the machine that is twisted includes rope rolling sleeve, and traction rope one end volume is located on rope rolling sleeve, the other end connects with electric wire around pulley, it further include motor, the motor output shaft of the motor is connect with rope rolling sleeve one end, and rope rolling sleeve rotates under drive motor drive, traction rope is set to stack shell volume, traction rope pulls above electric wire to power transmission tower.The automatic overhead line system of the utility model, it solves the existing machine that is twisted to be driven using diesel oil or gasoline, so that being twisted control has long delay, causes the construction efficiency of overhead line low, and the problem of the case where operating non-timely occur, safety accident is caused to occur.
Description
Technical field
The utility model relates to construction of transformer substation stringing technical fields, and in particular to automatic overhead line system.
Background technique
Overhead line often with crane or is twisted machine hanging wire, both operation modes are each advantageous, porcelain insulator substring length, V-type
The overhead line that insulator chain weight is larger, hanging wire difficulty is big generally uses crane hanging wire, but relative cost is higher;It is twisted machine hanging wire
It is at low cost compared with crane hanging wire, but to be driven using diesel oil or gasoline due to being twisted owner at present, being twisted control, there is length to prolong
Chi Xing cannot achieve instantaneous braking, and situations such as be easy to appear skidding, brake failure in throw-over, start and stop, not only reduce frame
The speed of application of ceases to be busy, and be easy in the construction process, non-timely due to operation, lead to the generation of safety accident.
Utility model content
In order to overcome the drawbacks of the prior art, the utility model provides automatic overhead line system, solves the existing machine that is twisted and adopts
It is driven with diesel oil or gasoline, so that being twisted control has long delay, causes the construction efficiency of overhead line low, and go out
The case where now operating non-timely, the problem of causing safety accident to occur.
The automatic overhead line system of the utility model, including being twisted machine, the pulley above power transmission tower set on ground,
And traction rope, the machine that is twisted includes rope rolling sleeve, and traction rope one end volume is located on rope rolling sleeve, the other end around pulley with
Electric wire connection, further includes motor, the motor output shaft of the motor is connect with rope rolling sleeve one end, and rope rolling sleeve is driving
Motor drives lower rotation, sets traction rope to stack shell volume, traction rope pulls above electric wire to power transmission tower.
It further, further include electric motor-controlling components, the electric motor-controlling components include speed setting controller and wired
Control terminal, the speed setting controller are set to the outer wall of motor, connect with the motor, wired control terminal and the tune
Fast controller connection.
It further, further include ranging speed-regulating part, the ranging speed-regulating part includes flexible magnet ring and Hall sensor,
The flexibility magnet ring is set to close to electric wire one end on traction rope, apart from traction rope and electric wire joining place certain distance, the Hall
The induction end of sensor is set on pulley, and output end is connect with the speed setting controller, in traction rope to pulling above power transmission tower
During electric wire, if speed setting controller receives Hall sensor to the induction information of flexible magnet ring, motor is dropped
Speed operation.
It further, further include electric wire positioning fixation member, the electric wire positioning fixation member includes fixinig plate, terminals
Son and photoelectric sensor open up fixation hole on fixinig plate, and the fixinig plate is fixed at power transmission tower close to electric wire side, and closely
Pulley, described connecting terminal one end connect with electric wire, and the through-hole of the other end is the connecting pin with the fixation hole, the photoelectric transfer
The induction end of sensor is fixed at the hole wall of the fixation hole, and output end is connect with the speed setting controller.
It further, further include wireless controller, the wireless controller is connect with the speed setting controller.
It further, further include retarder, the output shaft of the retarder is connect with the rope rolling sleeve other end.
Compared with the nearest prior art, the technical solution of the utility model have it is following the utility model has the advantages that
Automatic overhead line system provided by the utility model, including motor, the motor output shaft and volume of the motor
The connection of rope sling cylinder one end, rope rolling sleeve rotate under drive motor drive, set traction rope to stack shell volume, traction rope pulls electric wire
It to above power transmission tower, is driven relative to existing using diesel oil or gasoline, starts, stops no-delay, may be implemented instantaneously to make
It is dynamic, it ensure that the timeliness of operation, improve the speed of application of overhead line, reduce construction accident occurrence probability.
Automatic overhead line system provided by the utility model, the Motor Control including speed setting controller and wired control terminal
Component, speed setting controller are connect with the motor, and wired control terminal is connect with the speed setting controller, and operator can
With by wired control terminal drive speed setting controller motor is precisely adjusted the speed, guarantee signal transmit accuracy and into
The timeliness of one step guarantee operation, is realized in erection of elevated power lines operation, and traction rope pulls electric wire to the remote of power transmission tower top process
Process control and automatic control further decrease construction accident occurrence probability.
Automatic overhead line system provided by the utility model, the ranging speed regulation including flexible magnet ring and Hall sensor
Component, flexible magnet ring are set to close to electric wire one end on traction rope, apart from traction rope and electric wire joining place certain distance, hall sensing
The induction end of device is set on pulley, and output end is connect with the speed setting controller, in traction rope to pulling electric wire above power transmission tower
During, if speed setting controller receives Hall sensor to the induction information of flexible magnet ring, reduction of speed behaviour is carried out to motor
Make, automatic reduction of speed is haved the function that the conveying for the electric wire that will be reached above power transmission tower, to carry out stringing for operator
Construction provides sufficient time preparation;
It and further comprise the electric wire positioning fixation member of fixation hole, connecting terminal and photoelectric sensor, fixation hole is solid
Surely power transmission tower is set to close to electric wire side, and closely pulley, connecting terminal one end connect with electric wire, the through-hole of the other end is and institute
The connecting pin of fixation hole is stated, the induction end of photoelectric sensor is fixed at the hole wall of fixation hole, and output end and speed setting controller connect
It connects, when controller receives the induction information of photoelectric sensor, then controls speed setting controller drive motor and stop operating, operate
The through-hole of connecting terminal is threadedly coupled by personnel with fixation hole, wait operator's stringing operation, to one stabilization of operator,
The peace Poling Construction condition of safety, further decreases construction accident incidence.
Automatic overhead line system provided by the utility model further includes wireless controller, wireless controller and the speed regulation
Controller connection, convenient for the operator on power transmission tower according to top Poling Construction situation, start and stop are twisted machine, further ensure
The safety and reliability of Poling Construction.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below to embodiment or
Attached drawing needed in the prior art is briefly described.It should be evident that the accompanying drawings in the following description is only this reality
Without creative efforts, may be used also for those of ordinary skill in the art with novel some embodiments
To obtain other drawings based on these drawings.
Fig. 1 is the Poling Construction process schematic of the automatic overhead line system in a kind of embodiment of the utility model;
Fig. 2 is in the utility model another embodiment, and the Poling Construction process of the automatic overhead line system is illustrated
Figure;
Fig. 3 is the control schematic diagram of speed setting controller in a kind of embodiment of the utility model;
Fig. 4 is in another embodiment of the utility model, and the Poling Construction process of the automatic overhead line system is illustrated
Figure;
Fig. 5 is the control schematic diagram of speed setting controller in the utility model another embodiment;
Fig. 6 is in the utility model another embodiment, and the Poling Construction process of the automatic overhead line system is illustrated
Figure;
Fig. 7 is the control schematic diagram of speed setting controller in another embodiment of the utility model;
Fig. 8 is the control schematic diagram of speed setting controller in the utility model another embodiment;
Wherein, 1- is twisted machine, 2- power transmission tower, 3- pulley, 4- traction rope, 5- rope rolling sleeve, 6- electric wire, 7- motor, 8-
Retarder, 9- speed setting controller, 10- flexibility magnet ring, 11- fixinig plate, 12- connecting terminal, 13- fixation hole, 14- through-hole.
Specific embodiment
Below in conjunction with the attached drawing of the utility model, the technical solution of the utility model is clearly and completely described.
Based on the embodiments of the present invention, obtained by those of ordinary skill in the art without making creative efforts
Every other embodiment, fall within the protection scope of the utility model.
As shown in Figure 1, the automatic overhead line system of the utility model, including being twisted machine 1, set on power transmission tower set on ground
The pulley 3 and traction rope 4 of 2 tops, the machine 1 that is twisted includes rope rolling sleeve 5, and 4 one end of traction rope volume is located at rope rolling sleeve 5
On, it further includes motor 7, motor specifically uses asynchronous Cone-shaped electric machine, the electricity that the other end, which connect around pulley 3 with electric wire 6,
The motor output shaft of motivation 7 is connect with 5 one end of rope rolling sleeve, and rope rolling sleeve 5 rotates under the drive of motor 7, is set to stack shell volume
Traction rope 4, traction rope 4 are pulled electric wire 6 to 2 top of power transmission tower, are driven relative to existing using diesel oil or gasoline, starting,
Stop no-delay, may be implemented instantaneously to brake, ensure that the timeliness of operation, improve the speed of application of overhead line, reduce
Construction accident occurrence probability.
Further, during traction rope pulls above electric wire to power transmission tower, motor breaks down in order to prevent,
So that rope rolling sleeve stops operating suddenly, the biggish electric wire that causes to be self-possessed is pullled backward, so that overhead line system be caused to damage
Drawback, automatic overhead line system further include retarder 8, and retarder 8 specifically uses helical gear reducer, the output shaft of retarder 8
It is connect with 5 other end of rope rolling sleeve, when motor breaks down, retarder drives rope rolling sleeve underdrive, will not
So that rope rolling sleeve stops operating suddenly.
As a preferred embodiment, overhead line system further includes electric motor-controlling components, as Figure 2-3, the motor
Control unit includes speed setting controller 9 and wired control terminal, and the speed setting controller 9 is set to the outer wall of motor 7, with the electricity
Motivation 7 connects, and wired control terminal is connect with the speed setting controller, and operator can be driven by wired control terminal and be adjusted
Fast controller precisely adjusts the speed motor, guarantees the accuracy of signal transmitting and is further ensured that the timeliness of operation,
It realizes in erection of elevated power lines operation, traction rope pulls electric wire to the long-range control and automatic control of process above power transmission tower, into one
Step reduces construction accident occurrence probability.
As a preferred embodiment, as illustrated in figures 4-5, overhead line system further includes ranging speed-regulating part, the ranging speed regulation
Component includes flexible magnet ring 10 and Hall sensor, and the construction of flexible magnet ring 10 and Hall sensor is not particularly limited, and is used
Current version, the flexibility magnet ring 10 are fixed on traction rope 4 close to 6 one end of electric wire, apart from traction rope 4 and electric wire 6
The induction end of joining place certain distance, the Hall sensor is set on pulley 3, and output end is connect with the speed setting controller 9,
In traction rope 4 to during pulling electric wire 6 above power transmission tower 2, if speed setting controller 9 receives Hall sensor to flexible magnetic
The induction information of ring 10 carries out reduction of speed operation to motor, reaches automatic to the conveying that will reach the electric wire above power transmission tower
The effect of reduction of speed, so that carrying out Poling Construction for operator provides sufficient time preparation.
As a preferred embodiment, as shown in fig. 6-7, overhead line system further includes electric wire positioning fixation member, the electric wire
Positioning fixation member includes fixinig plate 11, connecting terminal 12 and photoelectric sensor, opens up fixation hole 13, terminals on fixinig plate 11
Son 12 can use existing copper lug, but be not limited to copper lug, be not particularly limited, adopt to the specific configuration of photoelectric sensor
With existing commercially available photoelectric sensor, the fixinig plate 11 is fixed at power transmission tower 2 close to 6 side of electric wire, and closely pulley
3, described 12 one end of connecting terminal is connect with electric wire 6, and the through-hole 14 of the other end is bolted with the fixation hole 13, photoelectric sensing
The induction end of device is fixed at the hole wall of fixation hole 13, and output end is connect with speed setting controller 9, when controller receives photoelectric transfer
The induction information of sensor then controls 9 drive motor 7 of speed setting controller and stops operating, and operator is by the through-hole of connecting terminal
It is threadedly coupled with fixation hole, the operation of operator's stringing is waited, to the peace Poling Construction item of one stabilization of operator, safety
Part further decreases construction accident incidence.
As a preferred embodiment, as shown in figure 8, overhead line system further includes wireless controller, wireless controller can be adopted
With existing hand-held remote controller, wireless controller is connect with the speed setting controller, convenient for the operator on power transmission tower
According to top Poling Construction situation, start and stop are twisted machine, further ensure the safety and reliability of Poling Construction.
Above description is only a specific implementation of the present invention, but the protection scope of the utility model is not limited to
In this, anyone skilled in the art within the technical scope disclosed by the utility model, can readily occur in variation
Or replacement, it should be covered within the scope of the utility model.Therefore, the protection scope of the utility model should be with the power
Subject to the protection scope that benefit requires.
Claims (6)
1. automatic overhead line system, including being twisted machine, pulley and traction rope above power transmission tower, institute set on ground
Stating the machine of being twisted includes rope rolling sleeve, and traction rope one end volume is located on rope rolling sleeve, and the other end connects with electric wire around pulley, special
Sign is, further includes motor, and the motor output shaft of the motor is connect with rope rolling sleeve one end, and rope rolling sleeve is in driving electricity
Motivation drives lower rotation, sets traction rope to stack shell volume, traction rope pulls above electric wire to power transmission tower.
2. automatic overhead line system according to claim 1, which is characterized in that it further include electric motor-controlling components, it is described
Electric motor-controlling components include speed setting controller and wired control terminal, and the speed setting controller is set to the outer wall of motor, with institute
Motor connection is stated, wired control terminal is connect with the speed setting controller.
3. automatic overhead line system according to claim 2, which is characterized in that further include ranging speed-regulating part, the survey
It include flexible magnet ring and Hall sensor away from speed-regulating part, the flexibility magnet ring is set on traction rope close to electric wire one end, distance
The induction end of traction rope and electric wire joining place certain distance, the Hall sensor is set on pulley, output end and the speed regulation
Controller connection, in traction rope to during pulling electric wire above power transmission tower, if speed setting controller receives Hall sensor
To the induction information of flexible magnet ring, reduction of speed operation is carried out to motor.
4. automatic overhead line system according to claim 3, which is characterized in that further include electric wire positioning fixation member, institute
Stating electric wire positioning fixation member includes fixinig plate, connecting terminal and photoelectric sensor, and fixation hole, the fixation are opened up on fixinig plate
Piece is fixed at power transmission tower close to electric wire side, and closely pulley, and described connecting terminal one end connects with electric wire, and the other end leads to
Hole is the connecting pin with the fixation hole, and the induction end of the photoelectric sensor is fixed at the hole wall of the fixation hole, output
End is connect with the speed setting controller.
5. automatic overhead line system according to claim 4, which is characterized in that it further include wireless controller, it is described wireless
Controller is connect with the speed setting controller.
6. automatic overhead line system according to claim 1, which is characterized in that it further include retarder, the retarder
Output shaft is connect with the rope rolling sleeve other end.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822120700.0U CN209344642U (en) | 2018-12-17 | 2018-12-17 | Automatic overhead line system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822120700.0U CN209344642U (en) | 2018-12-17 | 2018-12-17 | Automatic overhead line system |
Publications (1)
Publication Number | Publication Date |
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CN209344642U true CN209344642U (en) | 2019-09-03 |
Family
ID=67757509
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201822120700.0U Expired - Fee Related CN209344642U (en) | 2018-12-17 | 2018-12-17 | Automatic overhead line system |
Country Status (1)
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CN (1) | CN209344642U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111162485A (en) * | 2020-02-26 | 2020-05-15 | 陈利新 | Electric overhead line laying traction machine and construction method |
-
2018
- 2018-12-17 CN CN201822120700.0U patent/CN209344642U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111162485A (en) * | 2020-02-26 | 2020-05-15 | 陈利新 | Electric overhead line laying traction machine and construction method |
CN111162485B (en) * | 2020-02-26 | 2020-09-18 | 广西汉锐电气有限公司 | Electric overhead line laying traction machine and construction method |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190903 Termination date: 20191217 |