CN205897907U - High -efficient cooling device - Google Patents

High -efficient cooling device Download PDF

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Publication number
CN205897907U
CN205897907U CN201620860336.XU CN201620860336U CN205897907U CN 205897907 U CN205897907 U CN 205897907U CN 201620860336 U CN201620860336 U CN 201620860336U CN 205897907 U CN205897907 U CN 205897907U
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China
Prior art keywords
cooling
pipe
tube
water cavity
cooling water
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Expired - Fee Related
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CN201620860336.XU
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Chinese (zh)
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连慧
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Individual
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Individual
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Abstract

The utility model provides a high -efficient cooling device, including cooling organism, cooling tube, coolant tank, the cooler is internal to be equipped with the cooling tube, the cooling tube includes two vertical pipes at the upper and lower end, a plurality of level and smooth pipe and connects the bent pipe of the level and smooth pipe of double -phase neighbour, the level and smooth intraductal communicating pipe that is equipped with, the cooling tube outer wall surrounds and is equipped with the cooling water cavity, communicating pipe both ends with the cooling water cavity communicates with each other, cooling water cavity upper end is equipped with the delivery port, the delivery port pass through the outlet pipe with the coolant tank top communicates with each other, cooling water cavity lower extreme is equipped with the water inlet, the water inlet pass through the inlet tube with the coolant tank bottom communicates with each other, cooler side wall is equipped with a plurality of fans, and this device can cool off the inside of hot material, and cooling efficiency is high, has avoided the material too much to pile up the problem that can only carry out the skin cooling, can select forced air cooling and water -cooling as required moreover, and through the numerical value feedback regulation feeding volume of thermometer, the cooling effect is better.

Description

A kind of highly efficient cooling device
Technical field
This utility model is related to technical field of chemical and in particular to a kind of highly efficient cooling device.
Background technology
In Chemical Manufacture, produce different products raw material, middle material, intermediate products, finished product may be required for into Row cooling, cooling step is essential and the final mass that determines product, and therefore, chiller is that chemical field is common Process units.Existing chiller species has a lot, and the type of cooling that different chillers adopts is also different, existing common The type of cooling has natural cooling, air-cooled, circulating water, mechanical refrigeration etc., need to select suitably to cool down for different products Mode.At present, in Chemical Manufacture, the cooling effect of chiller is poor, and selectivity is low, and efficiency is low.
Utility model content
For above-mentioned problem, the utility model proposes a kind of cooling effectiveness is high, can voluntarily select air-cooled or water Cold highly efficient cooling device.
In order to realize above-mentioned purpose, this utility model is using following technical scheme:
A kind of highly efficient cooling device, including cooling body, cooling tube, cooling water tank, is provided with described in described cooler body Cooling tube, described cooling tube includes two VERTICAL TUBE of upper and lower end, some smooth pipes and the bending connecting two adjacent smooth pipes Pipe, the VERTICAL TUBE of described cooling tube upper end through described cooling body top and is provided with feed hopper, described cooling tube lower end VERTICAL TUBE through described cooling organism bottom and is provided with discharging opening, is communicated with managing, outside described cooling tube in described smooth pipe Wall around being provided with cooling water cavity, described communicating pipe two ends communicate with described cooling water cavity, described cooling water cavity upper end is provided with water outlet Mouthful, described outlet is communicated with described cooling water tank top by outlet pipe, and described cooling water cavity lower end is provided with water inlet, described Water inlet is communicated with described cooling water tank bottom by water inlet pipe, and described outlet pipe, water inlet pipe are provided with heating pipe, described cooling Organism sidewall is provided with some blower fans, and described blower fan is communicated with described cooling water cavity by connecting tube.
Preferably, described cooling organism sidewall top, middle part, bottom are equipped with thermometer, the temperature-sensitive end of described thermometer Through described cooling water cavity and extend in described swan-neck, the reading end of described thermometer is located at described cooling organism sidewall Outward.
Preferably, it is provided with feedboard in described feed hopper, described feedboard is provided with charging aperture, turn above described feedboard Move and be provided with control template, described control template is provided with control amount mouth, and described control template lateral edges are provided with rotating bar.
Preferably, described communicating pipe is parallel to the axis direction of described smooth pipe.
Preferably, described communicating pipe is parallel to the axis direction of described VERTICAL TUBE.
Preferably, described water inlet pipe is provided with water pump, and described water inlet pipe, outlet pipe are equipped with flow control valve.
Preferably, described heating pipe, be equipped with valve in connecting tube.
Because using above-mentioned technical scheme, the beneficial effects of the utility model are: this device smooths in pipe and is communicated with Pipe, can cool down to the inside of thermal material, and the cooling water cavity cooling effectiveness of cooperation cooling pipe outer wall is higher, it is to avoid material mistake Pile up can only carry out surface-cooled problem more, and can select air-cooled and water-cooled as needed;By cool down organism sidewall on, In, lower three sections of Temperature numerical can intuitively understand the cooling progress of thermal material, then adjust the matching degree of charging aperture and control amount mouth Thus controlling inlet amount, also can pass through the flow of Flow-rate adjustment valve regulation cooling water or the rotating speed adjusting blower fan, cooling effect simultaneously Fruit is more preferably.
Brief description
Fig. 1 is structural representation of the present utility model;
Fig. 2 is another kind structural representation of the present utility model;
Fig. 3 is the structural representation of this utility model feed hopper;
Fig. 4 is this utility model a-a sectional view;
In figure: 1 cooling body, 11 blower fans, 111 connecting tubes, 12 thermometeies, 2 cooling tubes, 21 VERTICAL TUBE, 22 smooth pipes, 221 communicating pipes, 23 swan-necks, 3 cooling water tanks, 31 outlet pipes, 32 water inlet pipes, 321 water pumps, 322 flow control valves, 33 steam Pipe, 4 feed hoppers, 41 feedboards, 411 charging apertures, 42 control templates, 421 control amount mouths, 422 rotating bars, 5 feed openings, 6 cooling water cavities, 61 outlets, 62 water inlets, 7 valves.
Specific embodiment
Purpose, technical scheme and advantage for making this utility model embodiment are clearer, new below in conjunction with this practicality Type embodiment, is clearly and completely described to the technical scheme in this utility model embodiment.Based on reality of the present utility model Apply example, the every other embodiment that those of ordinary skill in the art are obtained under the premise of not making creative work, all belong to Scope in this utility model protection.
A kind of highly efficient cooling device, referring to figs. 1 to shown in Fig. 4, including cooling body 1, cooling tube 2, cooling water tank 3, institute State cooling body 1 side wall upper part, middle part, bottom are equipped with thermometer 12, the temperature-sensitive end of described thermometer 12 is through described cold But water cavity 6 extend in described swan-neck 23, the reading end of described thermometer 12 outside described cooling body 1 side wall, institute State in cooling body 1 and be provided with described cooling tube 2, described cooling tube 2 includes two VERTICAL TUBE 21 of upper and lower end, some smooth pipes 22 And the swan-neck 23 of connection two adjacent smooth pipes 22, the VERTICAL TUBE 21 of described cooling tube 2 upper end is through described cooling body 1 Top is simultaneously provided with feed hopper 4, is provided with feedboard 41, described feedboard 41 is provided with charging aperture 411, described in described feed hopper 4 Feedboard 41 top rotates and is provided with control template 42, and described control template 42 is provided with the control amount mouth matching with described charging aperture 411 421, described control template 42 lateral edges are provided with rotating bar 422, and the VERTICAL TUBE 21 of described cooling tube 2 lower end is through described cooler Body 1 bottom is simultaneously provided with discharging opening 5, is communicated with pipe 221 in described smooth pipe 22, and described communicating pipe 221 is parallel to described smooth The axis direction of pipe 22, or described communicating pipe 221 is parallel to the axis direction of described VERTICAL TUBE 21, described cooling tube 2 outer wall ring Be arranged with cooling water cavity 6, described communicating pipe 221 two ends communicate with described cooling water cavity 6, described cooling water cavity 6 upper end is provided with out The mouth of a river 61, described outlet 61 is communicated with described cooling water tank 3 top by outlet pipe 31, and described cooling water cavity 6 lower end is provided with Water inlet 62, described water inlet 62 is communicated with described cooling water tank 3 bottom by water inlet pipe 32, described outlet pipe 31, water inlet pipe Upper 32 are provided with heating pipe 33, and described water inlet pipe 32 is provided with water pump 321, and described water inlet pipe 32, outlet pipe 31 are equipped with flow Regulating valve 322, described cooling body 1 side wall is provided with some blower fans 11, and described blower fan 11 passes through connecting tube 111 and described cooling water Chamber 6 communicates, and described heating pipe 33, connecting tube 111 are equipped with valve 7.
This utility model chiller cooling tube is " s " type curved structure, and VERTICAL TUBE is connected with half smooth pipe, then passes through Bending tube transitions are connected with smooth pipe, are communicated with managing, if arranging parallel to vertical tube axis direction, often communicating pipe in smooth pipe At least provided with four communicating pipes in individual smooth pipe, if communicating pipe is arranged parallel to smooth tube axis direction, in each smooth pipe At least provided with two communicating pipes.Blower fan located at cooling body both sides, at least provided with four.Water inlet pipe and outlet pipe are " l " shape, heat Trachea on water inlet pipe, the horizontal pipeline section of outlet pipe, flow control valve on water inlet pipe, the vertical pipeline section of outlet pipe, water On pipeline section between cooling water tank and flow control valve for the pump.
Specifically, this utility model can be not only used for liquid thermal material cooling it can also be used to solid particle thermal material cold But, air-cooled or water-cooled can be selected as the case may be.When air-cooled, close the flow control valve on water inlet pipe and water pump, open heat Valve on trachea and connecting tube, opens blower fan, and thermal material is put into feed hopper, rotates control template by rotating bar so that controlling Control amount mouth on template is overlapped with the charging aperture on feedboard, and thermal material enters in cooling tube, by cooling water cavity and smooth Between the communicating pipe communicating with cooling water cavity in pipe, the cold wind air-flow of circulation carries out heat exchange to thermal material, and final vapourss are from steam Bank of tubes goes out, and thermal material is cooled and discharges from discharging opening.During water-cooled, contrary with air-cooled, in closing heating pipe, connecting tube valve, Open the flow control valve on outlet pipe and water inlet pipe, start water pump, thermal material is put in cooling tube by same operation, cooling Water enters in cooling water cavity and communicating pipe from the bottom up, carries out heat exchange with thermal material, is then return to cooling water tank, finally hot thing Material is cooled to discharge from discharging opening, to be cooled after the completion of, switch off the pump and flow control valve, by the steam tube valve on water inlet pipe Open so that cooling water cavity and the cooling water left in communicating pipe drain.
The cooling of thermal material during being cooled down, can be intuitively recognized by cooling down the thermometer on organism sidewall Progress, if cooling effect is weak, can control the inlet amount of thermal material, or adjust by adjusting the Duplication of charging aperture and control amount mouth The rotating speed of blower fan or regulation flow control valve, improve cooling effectiveness.
This device is provided with the communicating pipe parallel to smooth tube axis direction or the communicating pipe parallel to vertical tube axis direction, It is applied between thermal material, can effectively cool down inside thermal material, cooling effect is higher.
Above example only in order to the technical solution of the utility model to be described, is not intended to limit;Although with reference to aforementioned reality Apply example this utility model has been described in detail, it will be understood by those within the art that: it still can be to front State the technical scheme described in each embodiment to modify, or equivalent is carried out to wherein some technical characteristics;And these Modification or replacement, do not make the essence of appropriate technical solution depart from spirit and the model of this utility model each embodiment technical scheme Enclose.

Claims (7)

1. a kind of highly efficient cooling device it is characterised in that: include cooling body (1), cooling tube (2), cooling water tank (3), described It is provided with described cooling tube (2), described cooling tube (2) includes upper and lower end two VERTICAL TUBE (21), Ruo Ganping in cooling body (1) Slip pipe (22) and the swan-neck (23) connecting two adjacent smooth pipes (22), the VERTICAL TUBE (21) of described cooling tube (2) upper end is passed through It is through at described cooling body (1) top and is provided with feed hopper (4), the VERTICAL TUBE (21) of described cooling tube (2) lower end is through institute State cooling body (1) bottom and be provided with discharging opening (5), be communicated with described smooth pipe (22) managing (221), described cooling tube (2) around being provided with cooling water cavity (6), described communicating pipe (221) two ends are communicated outer wall with described cooling water cavity (6), described cooling Water cavity (6) upper end is provided with outlet (61), and described outlet (61) passes through outlet pipe (31) and described cooling water tank (3) top phase Logical, described cooling water cavity (6) lower end is provided with water inlet (62), and described water inlet (62) passes through water inlet pipe (32) and described cooling water Case (3) bottom communicates, and on described outlet pipe (31), water inlet pipe, (32) are provided with heating pipe (33), and described cooling body (1) side wall sets There are some blower fans (11), described blower fan (11) is communicated with described cooling water cavity (6) by connecting tube (111).
2. highly efficient cooling device according to claim 1 it is characterised in that: described cooling body (1) side wall upper part, in Portion, bottom are equipped with thermometer (12), and the temperature-sensitive end of described thermometer (12) through described cooling water cavity (6) and extends to institute State in swan-neck (23), the reading end of described thermometer (12) is outside the wall of described cooling body (1) side.
3. highly efficient cooling device according to claim 1 it is characterised in that: be provided with feedboard in described feed hopper (4) (41), described feedboard (41) is provided with charging aperture (411), rotates and be provided with control template (42), institute above described feedboard (41) State control template (42) and be provided with control amount mouth (421) matching with described charging aperture (411), described control template (42) lateral edges set There is rotating bar (422).
4. highly efficient cooling device according to claim 1 it is characterised in that: described communicating pipe (221) is parallel to described flat The axis direction of slip pipe (22).
5. highly efficient cooling device according to claim 1 it is characterised in that: described communicating pipe (221) is parallel to described perpendicular The axis direction of straight tube (21).
6. highly efficient cooling device according to claim 1 it is characterised in that: described water inlet pipe (32) is provided with water pump (321), described water inlet pipe (32), be equipped with flow control valve (322) on outlet pipe (31).
7. highly efficient cooling device according to claim 1 it is characterised in that: on described heating pipe (33), connecting tube (111) It is equipped with valve (7).
CN201620860336.XU 2016-08-09 2016-08-09 High -efficient cooling device Expired - Fee Related CN205897907U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620860336.XU CN205897907U (en) 2016-08-09 2016-08-09 High -efficient cooling device

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Application Number Priority Date Filing Date Title
CN201620860336.XU CN205897907U (en) 2016-08-09 2016-08-09 High -efficient cooling device

Publications (1)

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CN205897907U true CN205897907U (en) 2017-01-18

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107266270A (en) * 2017-06-16 2017-10-20 四川玖泰肥业科技有限公司 The fertiliser granulates dispersal device of high cooling efficiency
CN108827030A (en) * 2018-06-28 2018-11-16 蒋晓进 A kind of dairy products cooling device based on water-cooling pattern
CN109059415A (en) * 2018-05-07 2018-12-21 安徽金龙山葛业有限公司 A kind of cooling device of kudzuvine root juice
CN112985109A (en) * 2021-03-02 2021-06-18 江西益普生药业有限公司 High-efficient quick cooling device of glycerine
CN115159165A (en) * 2022-08-15 2022-10-11 吉林新力源化工股份有限公司 Chemical raw material discharge cooler

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107266270A (en) * 2017-06-16 2017-10-20 四川玖泰肥业科技有限公司 The fertiliser granulates dispersal device of high cooling efficiency
CN109059415A (en) * 2018-05-07 2018-12-21 安徽金龙山葛业有限公司 A kind of cooling device of kudzuvine root juice
CN108827030A (en) * 2018-06-28 2018-11-16 蒋晓进 A kind of dairy products cooling device based on water-cooling pattern
CN112985109A (en) * 2021-03-02 2021-06-18 江西益普生药业有限公司 High-efficient quick cooling device of glycerine
CN115159165A (en) * 2022-08-15 2022-10-11 吉林新力源化工股份有限公司 Chemical raw material discharge cooler
CN115159165B (en) * 2022-08-15 2023-12-22 吉林新力源化工股份有限公司 Chemical raw material discharging cooler

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

Granted publication date: 20170118

Termination date: 20180809

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