CN201161928Y - Guide plate transportation immersion cooling cylinder - Google Patents

Guide plate transportation immersion cooling cylinder Download PDF

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Publication number
CN201161928Y
CN201161928Y CNU2008200317384U CN200820031738U CN201161928Y CN 201161928 Y CN201161928 Y CN 201161928Y CN U2008200317384 U CNU2008200317384 U CN U2008200317384U CN 200820031738 U CN200820031738 U CN 200820031738U CN 201161928 Y CN201161928 Y CN 201161928Y
Authority
CN
China
Prior art keywords
cooling
section
guide plate
cylindrical shell
barrel
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.)
Expired - Fee Related
Application number
CNU2008200317384U
Other languages
Chinese (zh)
Inventor
张元松
杨正清
王兆宏
邱红侠
王立功
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.)
JIANYE QINGSONG GROUP CO Ltd
Original Assignee
JIANYE QINGSONG 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 JIANYE QINGSONG GROUP CO Ltd filed Critical JIANYE QINGSONG GROUP CO Ltd
Priority to CNU2008200317384U priority Critical patent/CN201161928Y/en
Application granted granted Critical
Publication of CN201161928Y publication Critical patent/CN201161928Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a guide board conveying submerged type cooling cylinder in the acid manufacturing device field, which comprises a barrel which is composed of a material discharging section and a cooling section which are coaxially connected, wherein the diameter of the cooling section is bigger than the diameter of the material discharging section, a material inlet and a material outlet are arranged on the barrel corresponding to the cooling section and the material discharging section, rolling rings are sleeved outside the material discharging section and on the material inlet, the rolling rings are supported on a riding wheel which is arranged on a machine frame, a gear is arranged outside the material discharging section, a driving mechanism is arranged on the machine frame and is connected with the gear in a driving mode, a cooling barrel which is fixed corresponding to the machine frame is sleeved outside the cooling section, a cooling water inlet and an overflowing port are arranged on the cooling barrel, a spraying pipe and a steam outlet are arranged on the upper portion inside the cooling barrel, a plurality of guide strips are arranged on the circumference of the inner wall of the barrel of the cooling section, and the dip angles of each guide strip in each row of guide strips with a main shaft of the barrel are equal. When in work, the cylinder rotates, the guide strips propels materials, under the effect of cooling water and spraying water, the materials overturned and cooled, the cooling effect is good, and the guide board conveying submerged type cooling cylinder can be applied in acid manufacturing industry.

Description

Guide plate is carried the immersion cooling drum
Technical field
The utility model relates to a kind of acid-producing apparatus, particularly is used for the immersion cooling drum that uses in the acid industry roasting workshop section.
Background technology
In the prior art, have a kind of immersion cooling drum (patent No.: ZL01 2 37481.4) to be used for the roasting workshop section of sulphuric acid plant, the high temperature warm sludge that fluidizing furnace is discharged is cooled to≤60 ℃ normal temperature from 1000 ℃, is convenient to packing and transportation.This device comprises horizontally disposed cylindrical shell, described cylindrical shell is made up of coaxial continuous discharging section and cooling section, the cooling section diameter is greater than the discharging section diameter, be provided with discharge port with the corresponding end of discharging section on the cylindrical shell, be provided with opening for feed with the corresponding end of cooling section on the cylindrical shell, described discharging section reaches the opening for feed place outward and is set with rolling ring, and rolling ring is bearing on the support roller that is provided with on the frame, discharging section is provided with a gear outward, and frame is provided with driving mechanism and is connected with described geartransmission; Be provided with screw-blade and flight in the cylindrical shell of cooling section, described cooling section be set with outward one with the relatively-stationary cooling cylinder of frame, cooling cylinder is provided with entrance of cooling water and overflow port, the cooling cylinder internal upper part is provided with shower and vapour outlet.During this device busy, the slag that fluidizing furnace comes enters in the cooling section, advance a large amount of water coolants from water tank bottom, make cooling section partly be immersed in the water coolant, outside shower is to the cooling section spray cooling, the drive mechanism cylindrical shell rotates simultaneously, screw-blade or flight are under the driving that cylindrical shell rotates, constantly slag is advanced to discharge port, in the process of above-mentioned action, the slag cooling that is cooled of heat, the temperature rising of water coolant, part steam leaves from vapour outlet, and a part of water constantly overflows from overflow port.Its weak point is: be provided with screw-blade or flight in the existing cooling section, its difficulty of processing is big, and inter deterioration is serious during use; The easy Yin Gaowen of rolling ring and annealing influences work-ing life; In addition, overflow port is arranged on cylindrical shell one side, and cooling performance is relatively poor.
The utility model content
The purpose of this utility model provides a kind of guide plate and carries the immersion cooling drum, makes cylindrical shell easy to process, the slag good cooling results.
The purpose of this utility model is achieved in that guide plate conveying immersion cooling drum, comprise horizontally disposed cylindrical shell, described cylindrical shell is made up of coaxial continuous discharging section and cooling section, the cooling section diameter is greater than the discharging section diameter, be provided with discharge port with the corresponding end of discharging section on the cylindrical shell, be provided with opening for feed with the corresponding end of cooling section on the cylindrical shell, described discharging section reaches the opening for feed place outward and is set with rolling ring, rolling ring is bearing on the support roller that is provided with on the frame, discharging section is provided with a gear outward, and frame is provided with driving mechanism and is connected with described geartransmission; Described cooling section be set with outward one with the relatively-stationary cooling cylinder of frame, cooling cylinder is provided with entrance of cooling water and overflow port, the cooling cylinder internal upper part is provided with shower and vapour outlet; It is characterized in that: the circumference of the cylinder inboard wall of described cooling section is provided with the plurality of rows guide plate, and the inclination angle equates between each guide plate in every row's guide plate and the cylindrical shell main shaft.
During the utility model work, the high temperature furnace slag that fluidizing furnace comes enters in the cylindrical shell of cooling section, advance a large amount of water coolants from water tank bottom, make cooling section partly be immersed in the water coolant, outside shower is to the cooling section spray cooling, and the drive mechanism cylindrical shell rotates simultaneously, and guide plate can constantly advance slag to the discharge port direction, because guide plate is non-continous way, in the cylindrical shell rotation process, constantly stir slag, multimachine can contact cylinder inboard wall to make the slag that is in the cylindrical shell central position have more, and further with heat transferred water coolant or spray water, in the cylindrical shell of cooling section, slag stirs often, and the residence time is long, heat release repeatedly, good cooling results; In the process of above-mentioned action, the slag cooling that is cooled of heat, the temperature rising of water coolant, a part of steam leaves from vapour outlet, and a part of water constantly overflows from overflow port.Compared with prior art, the utility model is good cooling results not only, because the guide plate size is little, and be discontinuous formula, each guide plate all can adopt straight plate directly to be welded on the cylinder inboard wall, and itself and slag contact surface are little, wearing and tearing are also few, simultaneously can alleviate cylindrical shell weight, few during device fabrication with the material amount, dwindled cost of investment; Weight of equipment is light, can reduce the power of motor of transmission configuration, reduces normal working cost of driving.The utility model can be applicable in the acid industry.
As further improvement of the utility model, be provided with the cinder thermofin between the rolling ring at described opening for feed place and the opening for feed.The employing slag is heat insulation, makes rolling ring away from opening for feed, contact with the slag that fluidizing furnace comes, and can solve the rolling ring high temperature annealing that is heated, and reduces material hardness and is easy to problem such as wearing and tearing; Support roller can not be heated yet and dissolve butter, has prolonged the life-span of two ends fulcrum rollers and the time of rolling ring contact surface abrasion.
For improving cooling performance, described entrance of cooling water is positioned at the cooling cylinder bottom center away from opening for feed one end, and described overflow port has two, is separately positioned on the cooling cylinder both sides near opening for feed one end.Water coolant enters from the cold import of anhydrating, and to flow to overflow port to mode with slag operation contrary, overflow port is arranged on the cooling cylinder both sides, and the water coolant shunting is moved upward, and reduces the cooling dead band, can further improve cooling performance.
Description of drawings
Fig. 1 is the utility model structural representation.
Fig. 2 is a cooling section tube structure synoptic diagram.
Fig. 3 is that the B-B of Fig. 2 is to view.
Fig. 4 is that the A of Fig. 1 is to partial view.
Fig. 5 is opening for feed local structure synoptic diagram.
Wherein, 1 frame, 2 support rollers, 3 rolling rings, 4,17 overflow ports, 5 entrance of cooling water, 6 gears, 7 driving mechanisms, 8 discharge ports, 9 flanges, 10 discharging sections, 11 showers, 12 vapour outlets, 13 cooling cylinders, 14 cooling sections, 15 opening for feeds, 16 guide plates, 18 sewage draining exits, 19 cinder thermofins.
Embodiment
As figure, guide plate is carried the immersion cooling drum, comprise horizontally disposed cylindrical shell, cylindrical shell is made up of coaxial continuous discharging section 10 and cooling section 14, cooling section 14 diameters are greater than discharging section 10 diameters, be provided with discharge port 8 with discharging section 10 corresponding ends on the cylindrical shell, be provided with opening for feed 15 with cooling section 14 corresponding ends on the cylindrical shell, discharging section 10 outer opening for feed 15 places that reach are set with rolling ring 3, rolling ring 3 is bearing on the support roller 2 that is provided with on the frame 1, the discharging section 10 outer gears 6 that are provided with, frame 1 is provided with driving mechanism 7 and is in transmission connection with described gear 6; Cooling section 14 is outer be set with one with frame 1 relatively-stationary cooling cylinder 13, cooling cylinder 13 is provided with entrance of cooling water 5 and two overflow ports 4,17, entrance of cooling water 5 is positioned at cooling cylinder 13 bottom center away from opening for feed 15 1 ends, and overflow port 4,17 is separately positioned on cooling cylinder 13 both sides near opening for feed 15 1 ends.Cooling cylinder 13 internal upper parts are provided with shower 11 and vapour outlet 12; The circumference of described cooling section 14 inwalls is provided with the plurality of rows guide plate, and inclination angle [theta] all equates between each guide plate 16 in every row's guide plate and the cylindrical shell main shaft.Be provided with cinder thermofin 19 between the rolling ring 3 at opening for feed 15 places and the opening for feed 15.
Adopt flange 9 to be connected between discharging section 10 and the cooling section 14, made things convenient for transportation and installation; Cooling cylinder 13 bottoms also are provided with sewage draining exit 18, so that the body refuse of water in the emptying cooling cylinder 13 or bottom settlings.
This device adopts guide plate 16 to carry under horizontality, the high temperature furnace slag that fluidizing furnace comes enters in the cylindrical shell of cooling section, shower is constantly sprayed water to cooling section, entrance of cooling water water inlet simultaneously, make the cylindrical shell of cooling section partly be immersed in the water coolant, the drive mechanism cylindrical shell rotates simultaneously, guide plate can constantly advance slag to the discharge port direction, because guide plate is non-continous way, in the cylindrical shell rotation process, constantly stir slag, multimachine can contact cylinder inboard wall to make the slag that is in the cylindrical shell central position have more, and further with heat transferred water coolant or spray water, in the cylindrical shell of cooling section, slag stirs often, and the residence time is long, heat release repeatedly, good cooling results; The cooling area utilization ratio of cooling section 14 is 100%, has increased the Coefficient K value, and the heat that slag is discharged is more thorough, and cooling-down effect is better; Drum rotational speed design 3.8~4.5r/min can reduce the wearing and tearing of each drive disk assembly, has prolonged work-ing life; The water coolant of cooling section 14 has the cold but section of living of certain buoyancy holding, can reduce power configuration.

Claims (3)

1, guide plate is carried the immersion cooling drum, comprise horizontally disposed cylindrical shell, described cylindrical shell is made up of coaxial continuous discharging section and cooling section, the cooling section diameter is greater than the discharging section diameter, be provided with discharge port with the corresponding end of discharging section on the cylindrical shell, be provided with opening for feed with the corresponding end of cooling section on the cylindrical shell, described discharging section reaches the opening for feed place outward and is set with rolling ring, rolling ring is bearing on the support roller that is provided with on the frame, discharging section is provided with a gear outward, and frame is provided with driving mechanism and is connected with described geartransmission; Described cooling section be set with outward one with the relatively-stationary cooling cylinder of frame, cooling cylinder is provided with entrance of cooling water and overflow port, the cooling cylinder internal upper part is provided with shower and vapour outlet; It is characterized in that: the circumference of the cylinder inboard wall of described cooling section is provided with the plurality of rows guide plate, and the inclination angle equates between each guide plate in every row's guide plate and the cylindrical shell main shaft.
2, guide plate according to claim 1 is carried the immersion cooling drum, it is characterized in that: be provided with the cinder thermofin between the rolling ring at described opening for feed place and the opening for feed.
3, guide plate according to claim 1 and 2 is carried the immersion cooling drum, it is characterized in that: described entrance of cooling water is positioned at the cooling cylinder bottom center away from opening for feed one end, described overflow port has two, is separately positioned on the cooling cylinder both sides near opening for feed one end.
CNU2008200317384U 2008-01-31 2008-01-31 Guide plate transportation immersion cooling cylinder Expired - Fee Related CN201161928Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008200317384U CN201161928Y (en) 2008-01-31 2008-01-31 Guide plate transportation immersion cooling cylinder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008200317384U CN201161928Y (en) 2008-01-31 2008-01-31 Guide plate transportation immersion cooling cylinder

Publications (1)

Publication Number Publication Date
CN201161928Y true CN201161928Y (en) 2008-12-10

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ID=40182869

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2008200317384U Expired - Fee Related CN201161928Y (en) 2008-01-31 2008-01-31 Guide plate transportation immersion cooling cylinder

Country Status (1)

Country Link
CN (1) CN201161928Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102364286A (en) * 2010-11-01 2012-02-29 连云港晶族新材料科技有限公司 Continuous cooling device for high-temperature granules
CN110451199A (en) * 2019-08-15 2019-11-15 中卫市蓝韵废弃资源综合利用有限公司 A method of going out carbon black for trench scraper plate

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102364286A (en) * 2010-11-01 2012-02-29 连云港晶族新材料科技有限公司 Continuous cooling device for high-temperature granules
CN110451199A (en) * 2019-08-15 2019-11-15 中卫市蓝韵废弃资源综合利用有限公司 A method of going out carbon black for trench scraper plate
CN110451199B (en) * 2019-08-15 2021-09-10 中卫市蓝韵废弃资源综合利用有限公司 Method for discharging carbon black from trench scraper

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20081210

Termination date: 20130131

CF01 Termination of patent right due to non-payment of annual fee