CN208936813U - A kind of high efficiente callback cooler - Google Patents

A kind of high efficiente callback cooler Download PDF

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Publication number
CN208936813U
CN208936813U CN201821638792.5U CN201821638792U CN208936813U CN 208936813 U CN208936813 U CN 208936813U CN 201821638792 U CN201821638792 U CN 201821638792U CN 208936813 U CN208936813 U CN 208936813U
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CN
China
Prior art keywords
cooler
coil pipe
frame
clean
ontology
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Active
Application number
CN201821638792.5U
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Chinese (zh)
Inventor
赵亮
应立华
周燕
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Zhejiang Hanzhilan Special Equipment Co ltd
Original Assignee
Lanxi Xingye Pressure Vessel Manufacturing Co Ltd
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Application filed by Lanxi Xingye Pressure Vessel Manufacturing Co Ltd filed Critical Lanxi Xingye Pressure Vessel Manufacturing Co Ltd
Priority to CN201821638792.5U priority Critical patent/CN208936813U/en
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Publication of CN208936813U publication Critical patent/CN208936813U/en
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Abstract

The utility model discloses a kind of high efficiente callback coolers, including cooler ontology, the first coil pipe is welded on the inner wall of the cooler ontology, center position at the top of the cooler ontology bottom plate is welded with gin pole, and the second coil pipe is welded on the outer wall of gin pole, the bottom end of second coil pipe is connected to by conduit with the bottom end of the first coil pipe, the center position spiral of the cooler bodies top is fixed with motor, and motor and the rotation connection axis of cooler body interior are sequentially connected.In the utility model, equipped with clean-up frame, clean-up frame is driven to rotate by rotation connection axis using motor, clean-up frame makes scale removing brush carry out scale removal to the first coil pipe and the second coil pipe, meanwhile, clean-up frame stirs the cold water of cooler body interior, accelerate cold water flow, in this way convenient for clearing up the outer wall of two coil pipes, while increasing the mobility of water, the efficiency of the significant high efficiente callback cooler heat recovery.

Description

A kind of high efficiente callback cooler
Technical field
The utility model belongs to cooler technical field, specially a kind of high efficiente callback cooler.
Background technique
Cooler is one kind of heat exchange equipment, to cooling fluid.It is usually coolant to remove heat with water or air. It can be mainly divided into shell and tube cooler, panel cooler and air cooled chiller.Cooler is metallurgy, chemical industry, the energy, friendship The heat-exchange device that the industrial departments such as logical, light industry, food generally use.It is suitable for cooler, condensation, heating, evaporation, waste heat The different operating conditions such as recycling.Therefore, in the numerous heat exchanger of class, cooler, pipe heat exchanger still occupy critical positions.It is existing When some coolers carry out heat recovery, mostly exchanged heat using cold water, however after long-time use, the outer wall of heat exchanger tube produces Raw a large amount of scale reduces the efficiency of heat exchange, to reduce the efficiency of heat recovery.
Utility model content
The purpose of this utility model is that: in order to solve existing cooler after prolonged use, the outer wall of heat exchanger tube Generating a large amount of scale reduces the efficiency of heat exchange, so that it is cold to provide a kind of high efficiente callback the problem of reducing the efficiency of heat recovery But device.
The technical solution adopted in the utility model is as follows:
A kind of high efficiente callback cooler, including cooler ontology are welded with the first disk on the inner wall of the cooler ontology It manages, the center position at the top of the cooler ontology bottom plate is welded with gin pole, and is welded on the outer wall of gin pole The bottom end of second coil pipe, second coil pipe is connected to by conduit with the bottom end of the first coil pipe, the cooler bodies top Center position spiral is fixed with motor, and motor and the rotation connection axis of cooler body interior are sequentially connected, and rotate The bottom end of connecting shaft is welded with clean-up frame, and the clean-up frame is U-shaped structure, in the two side arms of clean-up frame there are two symmetrical bondings The top insertion of scale removing brush, the cooler outer body is connected with air inlet pipe, and air inlet pipe is connected by conduit and the first coil pipe Logical, the top insertion of the cooler ontology is connected with escape pipe, and escape pipe is connected to by conduit with the second coil pipe, described cold But the upper and lower ends of device ontology side, which are respectively embedded into, is connected with water outlet and water inlet.
Wherein, the cross section of first coil pipe and the second coil pipe is semicircle.
Wherein, two scale removing brushs on one side arm of clean-up frame connect with the outer wall of the first coil pipe and the second coil pipe respectively Touching.
Wherein, the bottom insertion of the cooler ontology is connected with blowdown valve.
Wherein, the length of the clean-up frame and gin pole is respectively less than the depth of cooler ontology, and the level of clean-up frame Hold the top of centrally located column.
In conclusion by adopting the above-described technical solution, the beneficial effects of the utility model are:
1, in the utility model, it is equipped with clean-up frame, drives clean-up frame to rotate by rotation connection axis using motor, clean-up frame So that scale removing brush carries out scale removal to the first coil pipe and the second coil pipe, meanwhile, clean-up frame stirs the cold water of cooler body interior, adds Quickly cooling water flowing in this way convenient for clearing up the outer wall of two coil pipes, while increasing the mobility of water, the significant high efficiente callback The efficiency of cooler heat recovery.
2, in the utility model, it is equipped with the first coil pipe and the second coil pipe, extends hot-air in cooling using two coil pipes The flow path of device body interior extends cold water and absorbs the time of heat, so that the efficiency of heat recovery is improved, meanwhile, the The section of one coil pipe and the second coil pipe is semicircle, is cleared up in this way convenient for scale removing brush two coil pipes, and cleaning efficiency is improved.
Detailed description of the invention
Fig. 1 is the structure schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram of clean-up frame in the utility model;
Fig. 3 is the structural schematic diagram of the second coil pipe and gin pole in the utility model.
Marked in the figure: 1, motor;2, air inlet pipe;3, cooler ontology;4, scale removing brush;5, clean-up frame;6, the first coil pipe;7, Blowdown valve;8, water inlet;9, gin pole;10, the second coil pipe;11, water outlet;12, escape pipe;13, it is rotatablely connected axis.
Specific embodiment
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only to explain this Utility model is not used to limit the utility model.
Referring to Fig.1-3, a kind of high efficiente callback cooler, including cooler ontology 3 weld on the inner wall of cooler ontology 3 There is the first coil pipe 6, the center position at the top of 3 bottom plate of cooler ontology is welded with gin pole 9, and the outer wall of gin pole 9 On be welded with the second coil pipe 10, the bottom end of the second coil pipe 10 is connected to by conduit with the bottom end of the first coil pipe 6, cooler ontology 3 The center position spiral at top is fixed with motor 1, and the rotation connection axis 13 inside motor 1 and cooler ontology 3 is driven and connects The bottom end for connecing, and being rotatablely connected axis 13 is welded with clean-up frame 5, and clean-up frame 5 is U-shaped structure, right in the two side arms of clean-up frame 5 Claiming bonding, there are two scale removing brushs 4, and the top insertion in 3 outside of cooler ontology is connected with air inlet pipe 2, and air inlet pipe 2 passes through conduit It is connected to the first coil pipe 6, the top insertion of cooler ontology 3 is connected with escape pipe 12, and escape pipe 12 passes through conduit and second Coil pipe 10 is connected to, and the upper and lower ends of 3 side of cooler ontology, which are respectively embedded into, is connected with water outlet 11 and water inlet 8.
The cross section of first coil pipe 6 and the second coil pipe 10 is semicircle, two scale removing brushs 4 on 5 one side arm of clean-up frame It is in contact respectively with the outer wall of the first coil pipe 6 and the second coil pipe 10, the bottom insertion of cooler ontology 3 is connected with blowdown valve 7, clearly The length of reason frame 5 and gin pole 9 is respectively less than the depth of cooler ontology 3, and the centrally located column 9 of horizontal ends of clean-up frame 5 Top.
3 bottom of cooler ontology is equipped with blowdown valve 7, the scale that scale removing brush 4 is cleared up can be passed through blowdown using blowdown valve 7 Valve 7 is discharged, easy to use in this way convenient for clearing up the first coil pipe 6 and the second coil pipe 10.
Working principle: it in use, being first connected to outer water tube with water inlet 8, is added to the inside of cooler ontology 3 enough Cold water, then air inlet pipe 2 is connected to external heating pipe, then hot gas is passed through the inside of the first coil pipe 6, arranges using conduit Enter the inside of the second coil pipe 10, at this point, motor 1 drives clean-up frame 5 to rotate by rotation connection axis 13, clean-up frame 5 makes scale removal It brushes 4 pair of first coil pipe 6 and the second coil pipe 10 carries out scale removal, meanwhile, the cold water inside cooler ontology 3 is stirred, cold water stream is accelerated It is dynamic, the efficiency of heat recovery is improved, the cold water inside cooler ontology 3 carries out heat recovery, and then cooling air is by going out Tracheae 12 is discharged, and the hot water inside cooler ontology 3 passes through the discharge of water outlet 11 again and utilizes, and after use, opens blowdown valve 7, the scale of 3 bottom precipitation of cooler ontology is discharged.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this Made any modifications, equivalent replacements, and improvements etc., should be included in the utility model within the spirit and principle of utility model Protection scope within.

Claims (5)

1. a kind of high efficiente callback cooler, including cooler ontology (3), it is characterised in that: the inner wall of the cooler ontology (3) On be welded with the first coil pipe (6), the center position at the top of cooler ontology (3) bottom plate is welded with gin pole (9), and It is welded on the outer wall of gin pole (9) the second coil pipe (10), the bottom end of second coil pipe (10) passes through conduit and the first disk The bottom end connection of (6) is managed, the center position spiral at the top of the cooler ontology (3) is fixed with motor (1), and motor (1) It is sequentially connected with the internal rotation connection axis (13) of cooler ontology (3), and the bottom end for being rotatablely connected axis (13) is welded with clearly It manages frame (5), the clean-up frame (5) is U-shaped structure, in the two side arms of clean-up frame (5) there are two symmetrical bondings scale removing brush (4), Top insertion on the outside of the cooler ontology (3) is connected with air inlet pipe (2), and air inlet pipe (2) passes through conduit and the first coil pipe (6) it is connected to, the insertion of the top of the cooler ontology (3) is connected with escape pipe (12), and escape pipe (12) passes through conduit and the Two coil pipes (10) connection, the upper and lower ends of cooler ontology (3) side, which are respectively embedded into, is connected with water outlet (11) and water inlet Mouth (8).
2. a kind of high efficiente callback cooler as described in claim 1, it is characterised in that: first coil pipe (6) and the second disk The cross section for managing (10) is semicircle.
3. a kind of high efficiente callback cooler as described in claim 1, it is characterised in that: on (5) one side arm of clean-up frame Two scale removing brushs (4) are in contact with the outer wall of the first coil pipe (6) and the second coil pipe (10) respectively.
4. a kind of high efficiente callback cooler as described in claim 1, it is characterised in that: the bottom of the cooler ontology (3) Insertion is connected with blowdown valve (7).
5. a kind of high efficiente callback cooler as described in claim 1, it is characterised in that: the clean-up frame (5) and gin pole (9) length is respectively less than the depth of cooler ontology (3), and the top of the centrally located column of horizontal ends (9) of clean-up frame (5).
CN201821638792.5U 2018-10-10 2018-10-10 A kind of high efficiente callback cooler Active CN208936813U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821638792.5U CN208936813U (en) 2018-10-10 2018-10-10 A kind of high efficiente callback cooler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821638792.5U CN208936813U (en) 2018-10-10 2018-10-10 A kind of high efficiente callback cooler

Publications (1)

Publication Number Publication Date
CN208936813U true CN208936813U (en) 2019-06-04

Family

ID=66723933

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821638792.5U Active CN208936813U (en) 2018-10-10 2018-10-10 A kind of high efficiente callback cooler

Country Status (1)

Country Link
CN (1) CN208936813U (en)

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GR01 Patent grant
GR01 Patent grant
CP03 Change of name, title or address

Address after: 321100 Li He Village, Lanjiang Street, Lanxi City, Jinhua, Zhejiang Province (beside China National Highway 330) (self declared)

Patentee after: Zhejiang Hanzhilan Special Equipment Co.,Ltd.

Address before: 321100 No. 20, Chengjiao West Road, Lanjiang street, Lanxi City, Jinhua City, Zhejiang Province

Patentee before: LANXI XINGYE PRESSURE VESSEL MANUFACTURING Co.,Ltd.

CP03 Change of name, title or address