CN207204250U - A kind of ink sand mill cooling device - Google Patents

A kind of ink sand mill cooling device Download PDF

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Publication number
CN207204250U
CN207204250U CN201721168239.5U CN201721168239U CN207204250U CN 207204250 U CN207204250 U CN 207204250U CN 201721168239 U CN201721168239 U CN 201721168239U CN 207204250 U CN207204250 U CN 207204250U
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CN
China
Prior art keywords
cooling
cooling device
overflow plate
water outlet
passage
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Expired - Fee Related
Application number
CN201721168239.5U
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Chinese (zh)
Inventor
马宏军
魏风军
朱征
许留锋
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Luoyang Suntech Printing Materials Co Ltd
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Luoyang Suntech Printing Materials Co Ltd
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Priority to CN201721168239.5U priority Critical patent/CN207204250U/en
Application granted granted Critical
Publication of CN207204250U publication Critical patent/CN207204250U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of ink sand mill cooling device, including abrasive material cylinder, the first cooling device and the second cooling device, first cooling device includes cooling shell, water inlet A and water outlet A, shell is cooled down as cylindrical shape, the external side of abrasive barrel is sheathed on, cools down and leaves cooling gap A between shell and abrasive material cylinder;Second cooling device includes intake tunnel, cooler pan and overflow launder, and intake tunnel is connected with cooler pan, and cooler pan is reserved with water inlet B in the junction of passage I;Water outlet B is additionally provided with cooler pan, overflow launder is provided with water outlet B;Overflow launder includes outer overflow plate, interior overflow plate and overfall, is reserved with cooling gap B between interior overflow plate and abrasive material cylinder body outer wall, water storage gap is left between two overflow plates, interior overflow plate is provided with overfall;Water outlet A is vertically installed on outer overflow plate.A kind of ink sand mill cooling device of the present utility model, the sufficiently cool of sand mill is realized, improve cooling effectiveness.

Description

A kind of ink sand mill cooling device
Technical field
A kind of cooling device is the utility model is related to, more particularly, to a kind of ink sand mill cooling device.
Background technology
Sand mill is mainly used in the wet grinding of chemical liquid product, and grinder is developed by ball mill, extensively Pigment is scattered in ink application production process and grinds.Sand mill is that current material adaptability is most wide, the most advanced, efficiency highest Milling apparatus, grinding chamber is the narrowest, and driving lever gap is minimum, and grinding energy is most intensive.
Compared with the milling apparatus such as sand mill and ball mill, roller mill, colloid mill, have production efficiency is high, continuity is strong, The advantages that cost is low, product fineness is high, process conditions are widely different, are applied particularly to ink and technique is sanded, and it is thin can be directed to ink The different of degree require that appropriate plus-minus abrasive media is adjusted and classified, to produce the ink product of different fineness.Sand mill In use, the solia particle in material and grinding end mutual collision friction, and the relevant device and material of sand mill will Substantial amounts of heat is produced, in order to prevent from being sanded the damage of machine equipment and the thermal decomposition of correlative such as ink etc., is generally required pair Sand mill carries out cooling treatment.The cooling of sand mill at present is more using the single cycle cooling water cooling of bottom in and top out, this cooling Although mode can be such that the abrasive material cylinder of sand mill is soaked in cooling water, its water inlet can have larger temperature with delivery port Difference, the barrel of delivery port side can not be adequately cooled, on the other hand, the flow of cooling water of single-cycle type of cooling compared with Difference, the heat exchanger effectiveness between cooling water and abrasive material cylinder are relatively low.
Utility model content
The utility model provides a kind of ink sand mill cooling device, different by water inlet and flow of cooling water direction The first cooling device and the second cooling device, realize the sufficiently cool of sand mill, improve cooling effectiveness.
To reach above-mentioned purpose, the specific method that the utility model uses for:
A kind of ink sand mill cooling device, including abrasive material cylinder, the first cooling device and the second cooling device, its feature It is:First cooling device includes cooling shell, water inlet A and water outlet A, and the cooling shell is cylindrical shape, is sheathed on mill The external side of barrel, the water inlet A are arranged on cooling shell side wall, left between described cooling shell and described abrasive material cylinder Cooling gap A;Second cooling device includes intake tunnel, cooler pan and overflow launder, and the intake tunnel is set including level The passage I put, the passage II for being vertically connected at the one end of passage I, the passage I are arranged between cooling shell and abrasive material cylinder;Institute The other end for stating passage I is connected with cooler pan, and the cooler pan is hollow cylinder, and the bottom surface of described cooler pan one end is set The bottom surface of abrasive material cylinder is placed in, the cooler pan is reserved with water inlet B in the junction of passage I;It is additionally provided with the cooler pan Water outlet B, the water outlet B are symmetrical arranged with the water inlet B, and overflow launder is provided with the water outlet B;The overflow launder And in the cooling gap A, the overflow launder includes outer overflow plate, interior overflow plate and overfall, the outer overflow plate and interior excessive Flowing plate is arranged on the first cooling device inwall each parallel to cooling shell inwall, the outer overflow plate, interior overflow plate and abrasive barrel Cooling gap B is reserved between external wall, the outer overflow plate is connected by two connecting plates with interior overflow plate, stayed between two overflow plates There is water storage gap, the water storage gap is communicated in inside cooler pan by water outlet B, and the interior overflow plate is provided with overfall; The water outlet A is vertically installed on outer overflow plate.
Further, triple valve is provided with the passage II, passage II is connected to water inlet A by triple valve.
Further, the cooler pan cental axial position is additionally provided with the opening for being available for slurry inlet pipe to pass through.
Further, the water inlet A is respectively positioned on lowest part of the cooling shell on horizontal level, and the water outlet B is located at Highest point of the outer overflow plate on horizontal level.
Further, the overflow launder is provided with aqua storage tank close to one end of water outlet B.
A kind of ink sand mill cooling device of the present utility model, using water inlet and flow of cooling water direction it is different One cooling device and the second cooling device, realize the sufficiently cool of sand mill:Cooling water is via passage II and is arranged at passage II On triple valve realize shunting, flow to respectively in the first cooling device and the second cooling device;Via the cooling current of water inlet A To the first cooling device, cooling water enters the cooling gap A cooled down between shell and described abrasive material cylinder, the first cooling device Cooling water carries out heat exchange with abrasive material cylinder body outer wall from the bottom to top, realizes the cooling effect of the first cooling device;Via passage II The cooling device of cooling current direction second of passage I is reached, the cooling water in passage I continues to flow, and passes through entering below cooler pan Mouth of a river B flows into cooler pan, further flows into overflow launder via the water outlet B above cooler pan, and the cooling water of cooler pan enters under being On go out, realize to the sufficiently cool of abrasive material cylinder bottom surface, water storage gap be stored in into the cooling water after overflow launder, when between water storage When cooling water water surface elevation in gap exceedes overfall, cooling water flows into cooling gap B via overfall, so far, the second cooling The cooling water of device from top to bottom carries out heat exchange with abrasive material cylinder body outer wall, realizes cooling of second cooling device to abrasive material cylinder Effect;The cooling water of first cooling device and the second cooling device is finally realized to being sanded in cooling gap A and cooling gap B The cooling of machine, cooling water is full of two cooling gaps, and is finally discharged via water outlet A.
The utility model having the beneficial effect that compared with prior art:
1. ink sand mill cooling device of the present utility model, by water inlet and flow of cooling water direction it is different first Cooling device and the second cooling device, the sufficiently cool of sand mill is realized, improve cooling effectiveness;
2. cooling device of the present utility model can be sufficiently cool to the progress of abrasive material cylinder bottom surface, avoid due to abrasive material cylinder The too high destruction to material of bottom surface heat;
3. the cooling water of the first cooling device of cooling device of the present utility model enters with abrasive material cylinder body outer wall from the bottom to top Row heat exchange, realizes the cooling effect of the first cooling device, the cooling water of the second cooling dress from top to bottom with abrasive material cylinder body outer wall Carry out heat exchange to put, the heat exchange of the upper and lower both sides of abrasive material cylinder is more uniformly distributed;
4. the cooling water approach axis in cooling gap A and cooling gap B is different, in the cooling water in two cooling gaps Portion's mobility is stronger, and the heat exchanger effectiveness between cooling water and abrasive material cylinder improves;
5. aqua storage tank avoids cooling water from directly being flowed directly out by the overfall close to water outlet B one end on overflow plate, make cold But the overflow of water is more uniformly distributed.
Brief description of the drawings
Fig. 1 is the schematic diagram of ink sand mill cooling device;
Fig. 2 is the sectional view in A-A faces;
Fig. 3 is the structural representation of overflow launder.
Wherein, in figure respectively marked as:1st, abrasive material cylinder;2nd, shell is cooled down;3rd, water inlet A;4th, water outlet A;5th, passage II;6、 Passage I;7th, cooler pan;701st, it is open;702nd, water inlet B;703rd, water outlet B;8th, interior overflow plate;801st, aqua storage tank;802nd, overflow Head piece;9th, outer overflow plate;10th, connecting plate.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made The every other embodiment obtained, belong to the scope of the utility model protection.
A kind of ink sand mill cooling device, including abrasive material cylinder 1, the first cooling device and the second cooling device, it is special Sign is:First cooling device includes cooling shell 2, water inlet A 3 and water outlet A 4, and the cooling shell 2 is cylindric, set Located at the outside of abrasive material cylinder 1, the water inlet A 3 is arranged in the cooling side wall of shell 2, described cooling shell 2 and described abrasive barrel Cooling gap A is left between body 1;Second cooling device includes intake tunnel, cooler pan 7 and overflow launder, and the water inlet is logical Road includes horizontally disposed passage I 6, is vertically connected at the passage II 5 of the one end of passage I 6, and the passage I 6 is arranged at cooling shell 2 Between abrasive material cylinder 1;The other end of the passage I 6 is connected with cooler pan 7, and the cooler pan 7 is hollow cylinder, The bottom surface of described one end of cooler pan 7 is arranged at the bottom surface of abrasive material cylinder 1, and the cooler pan 7 is reserved with the junction of passage I 6 Water inlet B 702;Water outlet B 703 is additionally provided with the cooler pan 7, the water outlet B 703 is symmetrically set with the water inlet B 702 Put, overflow launder is provided with the water outlet B 703;The overflow launder is located in cooling gap A, and the overflow launder includes excessive Flowing plate 9, interior overflow plate 8 and overfall 802, the outer overflow plate 9 and interior overflow plate 8 are described outer each parallel to the cooling inwall of shell 2 Overflow plate 9 is arranged on the first cooling device inwall, and cooling gap B is reserved between interior overflow plate 8 and abrasive material cylinder 1 outer wall, The outer overflow plate 9 is connected with interior overflow plate 8 by two connecting plates 10, leaves water storage gap between two overflow plates, between the water storage Gap is communicated in inside cooler pan 7 by water outlet B 703, and the interior overflow plate 8 is provided with overfall 802;The water outlet A 4 is hung down Directly it is arranged on outer overflow plate 9.
Triple valve is provided with the passage II 5, passage II 5 is connected to water inlet A 3 by triple valve;The cooler pan 7 Cental axial position is additionally provided with the opening 701 for being available for slurry inlet pipe to pass through;The water inlet A 3 is respectively positioned on cooling shell 2 in horizontal position The lowest part put, the water outlet B 703 are located at highest point of the outer overflow plate 9 on horizontal level;The overflow launder close to go out Mouth of a river B703 one end is provided with aqua storage tank 801.
In use, cooling water switch is opened, cooling water is via passage II 5 and the threeway being arranged on passage II 5 Valve realizes shunting, flows to respectively in the first cooling device and the second cooling device;Via the cooling current direction first of water inlet A 3 Cooling device, the cooling gap A that cooling water enters between cooling shell 2 and described abrasive material cylinder 1, the cooling of the first cooling device Water carries out heat exchange with the outer wall of abrasive material cylinder 1 from the bottom to top, realizes the cooling effect of the first cooling device;Arrived via passage II 5 Up to the cooling device of cooling current direction second of passage I 6, the cooling water in passage I 6 continues to flow, and passes through entering for the lower section of cooler pan 7 Mouth of a river B702 flows into cooler pan 7, further flows into overflow launder, the cooling of cooler pan 7 via the water outlet B 703 of the top of cooler pan 7 Water is bottom in and top out, realizes to the sufficiently cool of the bottom surface of abrasive material cylinder 1, is stored in into the cooling water after overflow launder between water storage Gap, when the cooling water water surface elevation in water storage gap exceedes overfall 802, cooling water flows into chilling room via overfall 802 Gap B, so far, the cooling water of the second cooling device from top to bottom carry out heat exchange with the outer wall of abrasive material cylinder 1, realize that the second cooling fills Put the cooling effect to abrasive material cylinder 1;The cooling water of first cooling device and the second cooling device is finally in cooling gap A and cold But the cooling to sand mill is realized in the B of gap, cooling water is full of two cooling gaps, and is finally discharged via water outlet A 4.
It should also be noted that, herein, such as first and second or the like relational terms are used merely to one Entity or operation make a distinction with another entity or operation, and not necessarily require or imply between these entities or operation Any this actual relation or order be present.Moreover, term " comprising ", "comprising" or its any other variant are intended to contain Lid nonexcludability includes, so that process, method, article or equipment including a series of elements not only will including those Element, but also the other element including being not expressly set out, or it is this process, method, article or equipment also to include Intrinsic key element.In the absence of more restrictions, the key element limited by sentence "including a ...", it is not excluded that Other identical element also be present in process, method, article or equipment including the key element.
Each embodiment is described by the way of progressive in this specification, what each embodiment stressed be and other The difference of embodiment, between each embodiment identical similar portion mutually referring to.

Claims (5)

1. a kind of ink sand mill cooling device, including abrasive material cylinder(1), the first cooling device and the second cooling device, it is special Sign is:First cooling device includes cooling shell(2), water inlet A(3)And water outlet A(4), the cooling shell(2)For circle Tubular, it is sheathed on abrasive material cylinder(1)Outside, the water inlet A(3)It is arranged at cooling shell(2)In side wall, described cooling shell (2)With described abrasive material cylinder(1)Between leave cooling gap A;
Second cooling device includes intake tunnel, cooler pan(7)And overflow launder, the intake tunnel include horizontally disposed Passage I(6), be vertically connected at passage I(6)The passage II of one end(5), the passage I(6)It is arranged at cooling shell(2)With abrasive material Cylinder(1)Between;The passage I(6)The other end be connected with cooler pan(7), the cooler pan(7)For hollow cylinder, The cooler pan(7)The bottom surface of one end is arranged at abrasive material cylinder(1)Bottom surface, the cooler pan(7)In passage I(6)Connection Place is reserved with water inlet B(702);The cooler pan(7)On be additionally provided with water outlet B(703), the water outlet B(703)With it is described Water inlet B(702)It is symmetrical arranged, the water outlet B(703)Place is provided with overflow launder;The overflow launder is located at cooling gap A Interior, the overflow launder includes outer overflow plate(9), interior overflow plate(8)And overfall(802), the outer overflow plate(9)With interior overflow Plate(8)Each parallel to cooling shell(2)Inwall, the outer overflow plate(9)It is arranged on the first cooling device inwall, interior overflow plate (8)With abrasive material cylinder(1)Cooling gap B, the outer overflow plate are reserved between outer wall(9)With interior overflow plate(8)Connect by two Fishplate bar(10)Connect, leave water storage gap between two overflow plates, the water storage gap passes through water outlet B(703)It is communicated in cooler pan (7)Inside, the interior overflow plate(8)It is provided with overfall(802);The water outlet A(4)It is vertically installed in outer overflow plate(9) On.
A kind of 2. ink sand mill cooling device according to claim 1, it is characterised in that:The passage II(5)On set It is equipped with triple valve, passage II(5)Water inlet A is connected to by triple valve(3).
A kind of 3. ink sand mill cooling device according to claim 1, it is characterised in that:The cooler pan(7)Center Shaft position is additionally provided with the opening for being available for slurry inlet pipe to pass through(701).
A kind of 4. ink sand mill cooling device according to claim 1, it is characterised in that:The water inlet A(3)Equal position In cooling shell(2)Lowest part on horizontal level, the water outlet B(703)Positioned at outer overflow plate(9)On horizontal level Highest point.
A kind of 5. ink sand mill cooling device according to claim 1, it is characterised in that:The overflow launder is close to water outlet Mouth B(703)One end be provided with aqua storage tank(801).
CN201721168239.5U 2017-09-13 2017-09-13 A kind of ink sand mill cooling device Expired - Fee Related CN207204250U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721168239.5U CN207204250U (en) 2017-09-13 2017-09-13 A kind of ink sand mill cooling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721168239.5U CN207204250U (en) 2017-09-13 2017-09-13 A kind of ink sand mill cooling device

Publications (1)

Publication Number Publication Date
CN207204250U true CN207204250U (en) 2018-04-10

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CN201721168239.5U Expired - Fee Related CN207204250U (en) 2017-09-13 2017-09-13 A kind of ink sand mill cooling device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117091331A (en) * 2023-10-17 2023-11-21 山东耐斯特炭黑有限公司 Airflow multistage cooling equipment for carbon black production

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117091331A (en) * 2023-10-17 2023-11-21 山东耐斯特炭黑有限公司 Airflow multistage cooling equipment for carbon black production
CN117091331B (en) * 2023-10-17 2024-02-09 山东耐斯特炭黑有限公司 Airflow multistage cooling equipment for carbon black production

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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: 20180410

Termination date: 20210913