CN205146917U - A cooling device for aluminium alloy production - Google Patents
A cooling device for aluminium alloy production Download PDFInfo
- Publication number
- CN205146917U CN205146917U CN201520939438.6U CN201520939438U CN205146917U CN 205146917 U CN205146917 U CN 205146917U CN 201520939438 U CN201520939438 U CN 201520939438U CN 205146917 U CN205146917 U CN 205146917U
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- liquid nitrogen
- air jet
- pipe
- screw thread
- pump
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Abstract
The utility model discloses a cooling device for aluminium alloy production, including support, water tank, casing, cylinder, liquid nitrogen case, force (forcing) pump, liquid nitrogen conveyer pipe, jet -propelled pipe, water pump, outlet pipe, shower nozzle, this cooling device simple structure, liquid nitrogen absorb a large amount of heat when being transformed into nitrogen gas through jet -propelled pipe, can reduce the inside temperature of casing by a wide margin, adjust and set for force (forcing) pump pressure, can adjust and spout into the inside nitrogen gas volume of casing to the inside temperature of control casing makes the aluminium alloy evenly cool off in specific temperature range, and characteristic of materials is stable.
Description
Technical field
The utility model relates to a kind of cooling device, particularly relates to kind of a kind of cooling device produced for aluminium section bar.
Background technology
At present, when aluminium section bar is produced, need to cool just shaping aluminium section bar, the tradition type of cooling is air-cooled or mist is cold, because aluminium section bar wall unevenness is even, adopt traditional type of cooling to carry out cooling and easily cause the uneven of cooling, thus affect aluminium section bar material property.In view of above-mentioned defect, be necessary in fact to design a kind of cooling device produced for aluminium section bar.
Utility model content
Technical problem to be solved in the utility model is: provide a kind of cooling device produced for aluminium section bar, solve when aluminium section bar is produced, easily cause the uneven of cooling when adopting traditional type of cooling to cool, thus affect the problem of aluminium section bar material property.
For solving the problems of the technologies described above, the technical solution of the utility model is:
A kind of cooling device produced for aluminium section bar, comprise support, water tank, housing, cylinder, liquid nitrogen case, force (forcing) pump, liquid nitrogen carrier pipe, air jet pipe, water pump, outlet pipe, shower nozzle, described water tank is positioned at pedestal upper end, described water tank is connected with support welding, described housing is positioned at water tank upper end, described housing is connected with water tank one, described cylinder is positioned at housing lower end, described cylinder is connected with housing into rotation, described liquid nitrogen case is positioned at housing tip, described liquid nitrogen case is connected with housing screw thread, described force (forcing) pump is positioned at center, liquid nitrogen box top, described force (forcing) pump is connected with liquid nitrogen case screw thread, described liquid nitrogen carrier pipe is positioned at the force (forcing) pump left and right sides, described liquid nitrogen carrier pipe is connected with force (forcing) pump screw thread, described air jet pipe is positioned at the inner walls left and right sides, described air jet pipe is connected with housing screw thread and is connected with liquid nitrogen carrier pipe screw thread, described water pump is positioned at tank outer wall, described water pump is connected with water tank screw thread, described outlet pipe is positioned at water pump upper end, described outlet pipe is connected with water pump screw thread, described shower nozzle is positioned at the inner walls left and right sides, described shower nozzle is connected with housing screw thread and is connected with outlet pipe screw thread.
The utility model further improves as follows:
Further, described air jet pipe quantity is some, and described air jet pipe quantity is preferably 2, is symmetrically arranged in the inner walls left and right sides.
Further, described shower nozzle is atomizer, and described shower nozzle quantity is some, and described shower nozzle is distributed in inner walls, and water can be become water smoke by described shower nozzle.
Further, described water tank bottom is also provided with draining valve, and described draining valve is connected with water tank screw thread, and described draining valve is used for the sewage in water tank to discharge.
Further, described inner walls top is also provided with cold plate, and described cold plate is connected with case weld, described cold plate cross section is zigzag, water recovery can be become water droplet by described cold plate, and water droplet falls into water tank by cold plate, makes water circulation use.
Further, described air jet pipe is also provided with evaporation hole, and described evaporation hole runs through air jet pipe main body, and described evaporation hole quantity is some, and be distributed in air jet pipe surface, liquid nitrogen becomes nitrogen by evaporation hole, cools enclosure interior space.
Further, described air jet pipe is also provided with pipe joint, and described pipe joint and air jet pipe are weldingly connected.The air jet pipe being provided with pipe joint is easy installation and reliable, safeguards simple.
Compared with prior art, this is used for the cooling device that aluminium section bar is produced, during work, aluminium section bar enters enclosure interior by cylinder, pump working, water is extracted from water tank and by outlet pipe, hydraulic pressure is entered shower nozzle, aluminium shape surface is sprayed to after shower nozzle makes water fogging, simultaneously, force (forcing) pump is started working, liquid nitrogen in liquid nitrogen case extracts and by liquid nitrogen carrier pipe, liquid nitrogen is pressed into air jet pipe by force (forcing) pump, due to the pressure effect of force (forcing) pump, liquid nitrogen is transformed into nitrogen by evaporation hole, enclosure interior space is cooled, this cooling device structure is simple, liquid nitrogen absorbs a large amount of heat when being transformed into nitrogen by evaporation hole, can significantly reduce enclosure interior temperature, regulate setting force (forcing) pump pressure, the nitrogen amount spraying into enclosure interior can be regulated, thus control the temperature of enclosure interior, make aluminium section bar Homogeneous cooling in specific range of temperatures, strong mechanical property.
Accompanying drawing explanation
Fig. 1 illustrates the utility model front view
Fig. 2 illustrates the utility model side view cutaway drawing
Fig. 3 illustrates the utility model air jet pipe front view
Support 1 water tank 2
Housing 3 cylinder 4
Liquid nitrogen case 5 force (forcing) pump 6
Liquid nitrogen carrier pipe 7 air jet pipe 8
Water pump 9 outlet pipe 10
Shower nozzle 11 draining valve 201
Cold plate 301 evaporation hole 801
Pipe joint 802
Detailed description of the invention
As Fig. 1, Fig. 2, shown in Fig. 3, a kind of cooling device produced for aluminium section bar, comprise support 1, water tank 2, housing 3, cylinder 4, liquid nitrogen case 5, force (forcing) pump 6, liquid nitrogen carrier pipe 7, air jet pipe 8, water pump 9, outlet pipe 10, shower nozzle 11, described water tank 2 is positioned at support 1 upper end, described water tank 2 is weldingly connected with support 1, described housing 3 is positioned at water tank 2 upper end, described housing 3 is connected with water tank 2 one, described cylinder 4 is positioned at housing 3 lower end, described cylinder 4 is rotatedly connected with housing 3, described liquid nitrogen, 5 are positioned at housing 3 top, described liquid nitrogen case 5 is connected with housing 3 screw thread, described force (forcing) pump 6 is positioned at liquid nitrogen case 5 top center place, described force (forcing) pump 6 is connected with liquid nitrogen case 5 screw thread, described liquid nitrogen carrier pipe 7 is positioned at force (forcing) pump 6 left and right sides, described liquid nitrogen carrier pipe 7 is connected with force (forcing) pump 6 screw thread, described air jet pipe 8 is positioned at the housing 3 inwall left and right sides, described air jet pipe 8 is connected with housing 3 screw thread and is connected with liquid nitrogen carrier pipe 7 screw thread, described water pump 9 is positioned at water tank 2 outer wall, described water pump 9 is connected with water tank 2 screw thread, described outlet pipe 10 is positioned at water pump 9 upper end, described outlet pipe 10 is connected with water pump 9 screw thread, described shower nozzle 11 is positioned at the housing 3 inwall left and right sides, described shower nozzle 11 is connected with housing 3 screw thread and is connected with outlet pipe 10 screw thread, described air jet pipe 8 quantity is some, described air jet pipe 8 quantity is preferably 2, be symmetrically arranged in the housing 3 inwall left and right sides, described shower nozzle 11 is atomizer, described shower nozzle 11 quantity is some, described shower nozzle 11 is distributed in housing 3 inwall, water can be become water smoke by described shower nozzle 3, draining valve 201 is also provided with bottom described water tank 2, described draining valve 201 is connected with water tank 2 screw thread, described draining valve 201 is for discharging the sewage in water tank 2, described housing 3 inwall top is also provided with cold plate 301, described cold plate 301 is weldingly connected with housing 3, described cold plate 301 cross section is zigzag, water recovery can be become water droplet by described cold plate 301, water droplet falls into water tank 2 by cold plate 301, make water circulation use, described air jet pipe 8 is also provided with evaporation hole 801, described evaporation hole 801 runs through air jet pipe 8 main body, described evaporation hole 801 quantity is some, be distributed in air jet pipe 8 surface, liquid nitrogen becomes nitrogen by evaporation hole 801, housing 3 inner space is cooled, described air jet pipe 8 is also provided with pipe joint 802, described pipe joint 802 is weldingly connected with air jet pipe 8.The air jet pipe 8 being provided with pipe joint 802 is easy installation and reliable, safeguard simple, this is used for the cooling device that aluminium section bar is produced, during work, it is inner that aluminium section bar enters housing 3 by cylinder 4, water pump 9 works, water is extracted from water tank 2 and by outlet pipe 10, hydraulic pressure is entered shower nozzle 11, aluminium shape surface is sprayed to after shower nozzle 11 makes water fogging, simultaneously, force (forcing) pump 6 is started working, liquid nitrogen in liquid nitrogen case 5 extracts and by liquid nitrogen carrier pipe 7, liquid nitrogen is pressed into air jet pipe 8 by force (forcing) pump 6, due to the pressure effect of force (forcing) pump 6, liquid nitrogen is transformed into nitrogen by evaporation hole 801, housing 3 inner space is cooled, this cooling device structure is simple, liquid nitrogen absorbs a large amount of heat when being transformed into nitrogen by evaporation hole 801, significantly can reduce housing 3 internal temperature, regulate force (forcing) pump 6 pressure, the nitrogen amount spraying into housing 3 inside can be regulated, thus control the temperature of housing 3 inside, make aluminium section bar Homogeneous cooling in specific range of temperatures, strong mechanical property.
The utility model is not limited to above-mentioned concrete embodiment, and those of ordinary skill in the art is from above-mentioned design, and without performing creative labour, all conversion made, all drop within protection domain of the present utility model.
Claims (7)
1. the cooling device produced for aluminium section bar, comprise support, characterized by further comprising water tank, housing, cylinder, liquid nitrogen case, force (forcing) pump, liquid nitrogen carrier pipe, air jet pipe, water pump, outlet pipe, shower nozzle, described water tank is positioned at pedestal upper end, described water tank is connected with support welding, described housing is positioned at water tank upper end, described housing is connected with water tank one, described cylinder is positioned at housing lower end, described cylinder is connected with housing into rotation, described liquid nitrogen case is positioned at housing tip, described liquid nitrogen case is connected with housing screw thread, described force (forcing) pump is positioned at center, liquid nitrogen box top, described force (forcing) pump is connected with liquid nitrogen case screw thread, described liquid nitrogen carrier pipe is positioned at the force (forcing) pump left and right sides, described liquid nitrogen carrier pipe is connected with force (forcing) pump screw thread, described air jet pipe is positioned at the inner walls left and right sides, described air jet pipe is connected with housing screw thread and is connected with liquid nitrogen carrier pipe screw thread, described water pump is positioned at tank outer wall, described water pump is connected with water tank screw thread, described outlet pipe is positioned at water pump upper end, described outlet pipe is connected with water pump screw thread, described shower nozzle is positioned at the inner walls left and right sides, described shower nozzle is connected with housing screw thread and is connected with outlet pipe screw thread.
2., as claimed in claim 1 for the cooling device that aluminium section bar is produced, it is characterized in that described air jet pipe quantity is some, described air jet pipe quantity is preferably 2, is symmetrically arranged in the inner walls left and right sides.
3., as claimed in claim 2 for the cooling device that aluminium section bar is produced, it is characterized in that described shower nozzle is atomizer, described shower nozzle quantity is some, and described shower nozzle is distributed in inner walls.
4., as claimed in claim 3 for the cooling device that aluminium section bar is produced, it is characterized in that described water tank bottom is also provided with draining valve, described draining valve is connected with water tank screw thread.
5., as claimed in claim 4 for the cooling device that aluminium section bar is produced, it is characterized in that described inner walls top is also provided with cold plate, described cold plate is connected with case weld, and described cold plate cross section is zigzag.
6., as claimed in claim 5 for the cooling device that aluminium section bar is produced, it is characterized in that described air jet pipe is also provided with evaporation hole, described evaporation hole runs through air jet pipe main body, and described evaporation hole quantity is some, is distributed in air jet pipe surface.
7., as claimed in claim 6 for the cooling device that aluminium section bar is produced, it is characterized in that described air jet pipe is also provided with pipe joint, described pipe joint and air jet pipe are weldingly connected.
Priority Applications (1)
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CN201520939438.6U CN205146917U (en) | 2015-11-20 | 2015-11-20 | A cooling device for aluminium alloy production |
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CN201520939438.6U CN205146917U (en) | 2015-11-20 | 2015-11-20 | A cooling device for aluminium alloy production |
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CN205146917U true CN205146917U (en) | 2016-04-13 |
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Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107052071A (en) * | 2017-05-22 | 2017-08-18 | 佛山市高明区生产力促进中心 | A kind of cooling device for aluminum profiles |
CN107990736A (en) * | 2017-11-27 | 2018-05-04 | 裴兆欣 | A kind of temperature automatically controlled smelting device |
CN108687156A (en) * | 2018-05-03 | 2018-10-23 | 东莞市润华铝业有限公司 | A kind of cooling device of aluminium section bar |
WO2019071667A1 (en) * | 2017-10-11 | 2019-04-18 | 苏州富通高新材料科技股份有限公司 | Self-circulating sheet material shaping machine |
WO2019169678A1 (en) * | 2018-03-05 | 2019-09-12 | 深圳前海帕拓逊网络技术有限公司 | Low noise atomization humidifier |
CN110355227A (en) * | 2019-07-28 | 2019-10-22 | 伍钜波 | A kind of aluminum profile system of processing |
CN112460911A (en) * | 2020-11-07 | 2021-03-09 | 株洲天桥舜臣选煤机械有限责任公司 | Cooling device for metallurgical equipment |
CN113083928A (en) * | 2021-03-29 | 2021-07-09 | 北京科技大学 | Extrusion die cooling channel structure and cooling method |
-
2015
- 2015-11-20 CN CN201520939438.6U patent/CN205146917U/en active Active
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107052071A (en) * | 2017-05-22 | 2017-08-18 | 佛山市高明区生产力促进中心 | A kind of cooling device for aluminum profiles |
WO2019071667A1 (en) * | 2017-10-11 | 2019-04-18 | 苏州富通高新材料科技股份有限公司 | Self-circulating sheet material shaping machine |
CN107990736A (en) * | 2017-11-27 | 2018-05-04 | 裴兆欣 | A kind of temperature automatically controlled smelting device |
WO2019169678A1 (en) * | 2018-03-05 | 2019-09-12 | 深圳前海帕拓逊网络技术有限公司 | Low noise atomization humidifier |
CN108687156A (en) * | 2018-05-03 | 2018-10-23 | 东莞市润华铝业有限公司 | A kind of cooling device of aluminium section bar |
CN110355227A (en) * | 2019-07-28 | 2019-10-22 | 伍钜波 | A kind of aluminum profile system of processing |
CN112460911A (en) * | 2020-11-07 | 2021-03-09 | 株洲天桥舜臣选煤机械有限责任公司 | Cooling device for metallurgical equipment |
CN113083928A (en) * | 2021-03-29 | 2021-07-09 | 北京科技大学 | Extrusion die cooling channel structure and cooling method |
CN113083928B (en) * | 2021-03-29 | 2022-04-29 | 北京科技大学 | Extrusion die cooling channel structure and cooling method |
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