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CN203197978U - Polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device - Google Patents

Polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device Download PDF

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Publication number
CN203197978U
CN203197978U CN 201320138494 CN201320138494U CN203197978U CN 203197978 U CN203197978 U CN 203197978U CN 201320138494 CN201320138494 CN 201320138494 CN 201320138494 U CN201320138494 U CN 201320138494U CN 203197978 U CN203197978 U CN 203197978U
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CN
China
Prior art keywords
cutting
polyurethane coating
twines
thermal insulation
power set
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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.)
Expired - Lifetime
Application number
CN 201320138494
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Chinese (zh)
Inventor
周韶华
吴永焕
张扬
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.)
Tianjin Pipeline Engineering Group Co Ltd
Original Assignee
Tianjin Pipeline Engineering Group 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 Tianjin Pipeline Engineering Group Co Ltd filed Critical Tianjin Pipeline Engineering Group Co Ltd
Priority to CN 201320138494 priority Critical patent/CN203197978U/en
Application granted granted Critical
Publication of CN203197978U publication Critical patent/CN203197978U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device which comprises a base, a moving trolley, a standing pillar and a cutting saw. The vertical movement of the device is controlled by a lifting device on the stand pillar, the horizontal movement of the cutting saw is controlled by a cutting retractable arm and a retractable power device, an on-line moving pipeline is tracked and positioned by a tracking power device, and the advancing rate of the device and the advancing rate of the pipeline are the same. The polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device is reasonable in design, easy to operate, strong in practicability and high in automation degree. By means of the device, automatic on-line cutting can be achieved, the labor intensity of a worker can be reduced, production efficiency is improved, and production cost is reduced. The research and development of the device successfully fills the gap on domestic coating prefabricated directly-buried insulating pipe on-line end cutting devices.

Description

The polyurethane coating polyethylene twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment
Technical field
The utility model relates to field of engineering technology, and especially a kind of polyurethane coating polyethylene twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment.
Background technology
Prefabricated direct-buried thermal insulation pipe is in China's production history of existing two more than ten years, and product is widely used in the fields such as cities and towns central heating and cities and towns central cooling, is the environmental protection and energy saving product of generally acknowledging.For remedying the deficiency of tradition " tube-in-tube " technique, our factory has been researched and developed domestic article one polyurethane coating polyethylene and has been twined (being called for short spraying twines) prefabricated direct-buried thermal insulation pipe production line, because production technology is different from tradition " tube-in-tube " technique, therefore need a kind of energy of research and development design satisfy spraying twine manufacturing technique requirent at the end cutting equipment.
Summary of the invention
The purpose of this utility model is to overcome the deficiencies in the prior art, provide a kind of can be so that the requirement that the prefabricated direct-buried thermal insulation pipe pipe end satisfies 4.4.1.2 among the Q/12BJ6066-2011 be twined in spraying, the spraying that can fill the domestic gaps is twined prefabricated direct-buried thermal insulation pipe at the end cutting equipment.
The utility model solves its technical problem and is achieved through the following technical solutions:
A kind of polyurethane coating polyethylene twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: comprise base, travelling car and column, travelling car is seated on the base, column is installed on the travelling car, vertical lift power set are installed on the top of column, but the lower end of these vertical lift power set connects elevator chamber mobile under the in the vertical direction; Flexible power set are installed on this elevator chamber, and these flexible power set connect an in the horizontal direction cutting telescopic arm of move left and right, and the front end of this cutting telescopic arm is installed cast-cutting saw.
And described vertical lift power set are motor vertical and screw structure, and motor vertical is installed on the column, and leading screw is connected with elevator chamber.
And the front of described column arranges a vertical stopping means that is used for the vertical displacement of control elevator chamber; A vertical locking device that is used for the locking elevator chamber is installed at the back side of described column.
And described flexible power set are flexible motor and screw structure, and flexible motor is installed on the elevator chamber, and leading screw connects the cutting telescopic arm.
And a cutting stopping means that is used for the displacement of control cast-cutting saw horizontal direction is installed in the rear end of described elevator chamber.
And, a cutting motor is installed on the described cutting telescopic arm, this cutting motor connects and the driving cast-cutting saw.
And, described travelling car is made of car body and the wheel that is installed in vehicle bottom, install one on the base and be used for driving the tracking power set that travelling car moves forward and backward, these tracking power set comprise tracking motor and leading screw, tracking motor is installed on the base, and leading screw is connected with the car body of travelling car.
And, the seesaw tracking stopping means of displacement of control travelling car is installed on the described base.
And, protective cover of spiral-lock on the described base.
Advantage of the present utility model and beneficial effect are:
1, this equipment is mainly by base, travelling car, vertical movable part with move horizontally part and consist of, by to cast-cutting saw about, about and mobile on three directions in front and back carry out automatically control, this equipment of use has been realized automated production, finally not only reduce the adverse effect of human factor in the production process, improved product quality, but also significantly improved process velocity and production efficiency.
2, because this equipment can be realized the automatic online cutting, therefore use this equipment can alleviate staff's labour intensity, minimizing waste of human resource, reduction enterprise production cost.
3, this equipment is controlled the vertical movement of this equipment by elevator chamber, vertical stopping means and vertical locking device, so that cut the cast-cutting saw center line on the telescopic arm termination and be cut pipe centerline in the same horizontal line, cut the safe distance of steel pipe to guarantee cutting.
4, the horizontal direction displacement of this equipment by cutting telescopic arm, cutting stopping means and flexible power set control cast-cutting saw to be adapting to the cutting demand of different tube diameters, so this equipment is suitable for processing the pipeline of different tube diameters.
5, this equipment carries out track and localization by base, tracking power set and tracking stopping means to online movement pipeline, has guaranteed that this equipment is identical with the pipeline advanced speed, and namely cast-cutting saw ring cutting pipeline location is on same cross section.
6, the utility model is that a kind of reasonable in design, simple to operate, practical, polyurethane coating polyethylene that automaticity is high twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, use this equipment can realize on-line automatic cutting, in a large number reduce human body labour intensity, enhance productivity, reduce production costs.The research and development of this equipment design has successfully filled up domestic spraying winding prefabricated direct-buried thermal insulation pipe in the blank of end cutting equipment.
Description of drawings
Fig. 1 is at end cutting equipment schematic diagram;
Fig. 2 is at end cutting equipment power figure;
Fig. 3 is the top view of cutting on line plant bottom case.
The specific embodiment
The utility model is described in further detail below by specific embodiment, and following examples are descriptive, is not determinate, can not limit protection domain of the present utility model with this.
A kind of polyurethane coating polyethylene twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, comprises base 4, travelling car 15, column 3 and cast-cutting saw 13, protective cover 5 of spiral-lock on the base.Before and after the cast-cutting saw of this cutting equipment can be realized, up and down and about the movement of three directions, its concrete structure is as follows:
⑴. moving forward and backward of cast-cutting saw:
Travelling car is made of car body and the wheel that is installed in vehicle bottom, travelling car is seated on the base, install one on the base and be used for driving the tracking power set 11 that travelling car moves forward and backward, these tracking power set comprise tracking motor and leading screw, tracking motor is installed on the base, and leading screw is connected with the car body of travelling car.The seesaw tracking stopping means 12 of displacement of control travelling car also is installed on the base.
⑵. moving up and down of cast-cutting saw:
Column is installed on the travelling car, vertical lift power set 8 are installed on the top of column, these vertical lift power set are motor vertical and screw structure, motor vertical is installed on the column, leading screw connects an elevator chamber 2, and this elevator chamber can vertically move up and down under the driving of vertical lift power set.
The front of column is provided for controlling the vertical stopping means 7 of elevator chamber vertical displacement.A vertical locking device 9 that is used for the locking elevator chamber is installed at the back side of column, this vertical locking device structure form is not limit, both can be as shown in Figure 2, a slide plate is set at the back side of column, this slide plate is installed on the column by guide wheel and vertical motion up and down, the jackscrew that is used for holding out against elevator chamber is installed at the middle part of slide plate, also can adopt other locking modes.
⑶. the move left and right of cast-cutting saw:
Flexible power set 10 are installed on the elevator chamber, should be flexible motor and screw structure by flexible power set, flexible motor is installed on the elevator chamber, and leading screw connects an in the horizontal direction cutting telescopic arm 1 of move left and right, and the front end of this cutting telescopic arm is installed cast-cutting saw.On the cutting telescopic arm cutting motor 14 is installed, this cutting motor connects and the driving cast-cutting saw.
A cutting stopping means 6 that is used for the displacement of control cast-cutting saw horizontal direction is installed in the rear end of elevator chamber.
Above-mentioned tracking stopping means, vertical stopping means and cutting stopping means form are not limit, and can adopt the sensor mode, as long as can realize the automatic control that cast-cutting saw moves.

Claims (9)

1. a polyurethane coating polyethylene twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: comprise base, travelling car and column, travelling car is seated on the base, column is installed on the travelling car, vertical lift power set are installed on the top of column, but the lower end of these vertical lift power set connects elevator chamber mobile under the in the vertical direction; Flexible power set are installed on this elevator chamber, and these flexible power set connect an in the horizontal direction cutting telescopic arm of move left and right, and the front end of this cutting telescopic arm is installed cast-cutting saw.
2. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: described vertical lift power set are motor vertical and screw structure, motor vertical is installed on the column, and leading screw is connected with elevator chamber.
3. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: the front of described column arranges a vertical stopping means that is used for the vertical displacement of control elevator chamber; A vertical locking device that is used for the locking elevator chamber is installed at the back side of described column.
4. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: described flexible power set are flexible motor and screw structure, flexible motor is installed on the elevator chamber, and leading screw connects the cutting telescopic arm.
5. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: a cutting stopping means that is used for the displacement of control cast-cutting saw horizontal direction is installed in the rear end of described elevator chamber.
6. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: a cutting motor is installed on the described cutting telescopic arm, and this cutting motor connects and the driving cast-cutting saw.
7. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: described travelling car is made of car body and the wheel that is installed in vehicle bottom, install one on the base and be used for driving the tracking power set that travelling car moves forward and backward, these tracking power set comprise tracking motor and leading screw, tracking motor is installed on the base, and leading screw is connected with the car body of travelling car.
8. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: the seesaw tracking stopping means of displacement of control travelling car is installed on the described base.
9. polyurethane coating polyethylene according to claim 1 twines prefabricated direct-buried thermal insulation pipe at the end cutting equipment, it is characterized in that: protective cover of spiral-lock on the described base.
CN 201320138494 2013-03-26 2013-03-26 Polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device Expired - Lifetime CN203197978U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320138494 CN203197978U (en) 2013-03-26 2013-03-26 Polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320138494 CN203197978U (en) 2013-03-26 2013-03-26 Polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device

Publications (1)

Publication Number Publication Date
CN203197978U true CN203197978U (en) 2013-09-18

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CN 201320138494 Expired - Lifetime CN203197978U (en) 2013-03-26 2013-03-26 Polyurethane coating and polyethylene winding prefabricated directly-buried insulating pipe on-line end cutting device

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103213158A (en) * 2013-03-26 2013-07-24 天津市管道工程集团有限公司 Online end cutting device for polyurethane spray-coated polyethylene wound prefabricated directly-buried heat-preservation pipe
CN106273528A (en) * 2015-05-15 2017-01-04 天津市管道工程集团有限公司 Polyurethane coating polyethylene is wound around insulating tube production line and production technology
CN108356613A (en) * 2018-01-31 2018-08-03 重庆聚伯雅科技有限公司 Accessory processing unit (plant)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103213158A (en) * 2013-03-26 2013-07-24 天津市管道工程集团有限公司 Online end cutting device for polyurethane spray-coated polyethylene wound prefabricated directly-buried heat-preservation pipe
CN106273528A (en) * 2015-05-15 2017-01-04 天津市管道工程集团有限公司 Polyurethane coating polyethylene is wound around insulating tube production line and production technology
CN108356613A (en) * 2018-01-31 2018-08-03 重庆聚伯雅科技有限公司 Accessory processing unit (plant)

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Granted publication date: 20130918