CN201202964Y - Nitrogen gas conveying device - Google Patents
Nitrogen gas conveying device Download PDFInfo
- Publication number
- CN201202964Y CN201202964Y CNU2008201046939U CN200820104693U CN201202964Y CN 201202964 Y CN201202964 Y CN 201202964Y CN U2008201046939 U CNU2008201046939 U CN U2008201046939U CN 200820104693 U CN200820104693 U CN 200820104693U CN 201202964 Y CN201202964 Y CN 201202964Y
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- Prior art keywords
- heat exchange
- cooling water
- pipeline
- exchange groove
- nitrogen gas
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Abstract
Disclosed is a nitrogen transporting device, which belongs to the transportation technology field for the nitrogen protective gas and is composed of a liquid nitrogen tank, an evaporator and a pipeline. One end of the pipeline is connected with the liquid nitrogen tank, and the other end thereof is connected with the evaporator, the middle part of the pipeline can form a bending pipe section which is arranged in a heat exchange groove, the heat exchange groove is provided with a heat water inlet pipe for the bending pipe section heat exchange, and a water cooling cycle mechanism is arranged on the heat exchange groove. The device has the advantages that the liquid nitrogen from the liquid nitrogen tank can act the heat exchange in the heat exchange groove through the bending pipe section in the middle part of the pipeline, and then flows into the evaporator so as to improve the evaporation effect of the evaporator, and compared with prior art, 15-20 percent of the liquid nitrogen can be saved; the icing phenomenon can not appear in the whole pipeline, thus removing ice is unnecessary by men; the cooling water after the heat exchange by the bending pipe section can reflow into a sintering furnace to recycle cooling, thereby being beneficial for improving the cooling effect of the sintering furnace.
Description
Technical field
The utility model belongs to the conveying technology field of nitrogen protection gas, is specifically related to a kind of nitrogen gas conveying device, is used for the liquid nitrogen of liquid nitrogen storage tank is sent into kiln after the evaporator evaporation vaporization.
Background technique
At ferrite, electronic ceramics or other the similar all product that need under nitrogen protection gas, implement sintering, usually will be in sintering furnace supplying nitrogen, manufacturing enterprise at the said goods all is equipped with nitrogen gas conveying device for this reason, the structure of nitrogen gas conveying device is very simple, as shown in Figure 2, form by liquid nitrogen storage tank 1 with by pipeline 3 and the vaporizer 2 that liquid nitrogen storage tank 1 connects, during use, open the valve 4 on the pipeline 3, liquid nitrogen in the liquid nitrogen storage tank 1 enters vaporizer 2 by pipeline 3, by the evaporation of vaporizer 2; To become gaseous nitrogen be nitrogen and introduce kiln with liquid nitrogen.The deficiency that above-mentioned nitrogen gas conveying device exists is: because the temperature of liquid nitrogen is usually about-184 ℃, therefore to the pipeline of implementing between the vaporizer 2 to connect 3, tend to form thick ice sheet from liquid nitrogen storage tank 1, cause the gasification result of vaporizer poor, and gasification result is poor more, and then the unreasonable breakage of liquid nitrogen is big more.Conventional way is to shorten the length of pipeline 3 as far as possible, gives daily operation, safeguards and enable initial installation and cause trouble yet shorten pipeline 3.Therefore, present way is: in order to ensure the evaporation effect of vaporizer 2, avoid the invalid consume of liquid nitrogen, periodically the ice sheet of concentrating on the tube wall of pipeline 3 is knocked out by the special messenger.But, artificially give pipeline 3 deicing, can increase workman's extra work load on the one hand, frequently strike ice on the other hand and can undermine pipeline 3, particularly influence the sealed connection between pipeline 3 and the liquid nitrogen storage tank 1, bury the anxiety of leakage.Therefore facts have proved that this artificial mode that pipeline 3 is implemented deicing is unsafe, also be unscientific, thereby be worthless.
The above-mentioned industry that suffers from is for a long time suffered from not having good countermeasure.Yet; the applicant thinks; because the sintering kiln that adopts nitrogen protection gas to implement the sintering electronic product all is equipped with the measure to the kiln cooling usually; if can refer to the recirculated cooling water of kiln cooling to pipeline 3 heating; can yet be regarded as so is a kind of evaporation gasification result, saving liquid nitrogen that had both helped improving vaporizer 2; help improving the useful act of cooling water again to the cooling double effects of kiln cooling, below the technological scheme that will introduce based on producing under this background.
Summary of the invention
Task of the present utility model is will provide a kind of to help improving the evaporation effect of vaporizer and use the nitrogen gas conveying device of saving liquid nitrogen.
Task of the present utility model is finished like this, a kind of nitrogen gas conveying device, by liquid nitrogen storage tank, vaporizer and pipeline are formed, one end of pipeline and liquid nitrogen storage tank connect, the other end and vaporizer connect, the middle part of described pipeline constitutes bending tube section, this bending tube section is placed in the heat exchange groove, on described heat exchange groove, dispose one and be used for the sintering kiln cooled hot water that circulates is incorporated into the hot water inlet pipe of the described bending tube section heat exchange of confession of heat exchange groove, and be used for cooling water with the heat exchange groove and return and guide to the hydronic cooling water cycling mechanism of sintering kiln disposing one on the heat exchange groove through after the bending tube section heat exchange.
In a specific embodiment of the present utility model, described heat exchange groove is processing formation on terrace directly.
In another specific embodiment of the present utility model, described heat exchange groove is placed on the terrace.
Go back in the specific embodiment of the present utility model, the curved shape of described bending tube section is a helically bent.
In another specific embodiment of the present utility model, the curved shape of described bending tube section is the U-shaped bending.
In another specific embodiment of the present utility model, the curved shape of described bending tube section is the bending of S shape.
More of the present utility model and in specific embodiment, described cooling water cycling mechanism is made up of motor and water pump, motor and water pump are combined, and the water intake of water pump connects an end of cooling water inlet pipe, and the other end of cooling water inlet pipe is stretched in the described heat exchange groove; The water outlet of water pump connects an end of cooling water outlet pipe, and the other end of cooling water outlet pipe be used for the hydronic cooling water inlet pipe of sintering kiln road is connected.
In of the present utility model and then specific embodiment, described sintering kiln is a tunnel kiln.
The advantage of technological scheme provided by the utility model is: the liquid nitrogen of being emitted by the liquid nitrogen storage tank bending tube section at middle part by the road carries out being incorporated into vaporizer after the heat exchange in the heat exchange groove, thereby can improve the evaporation effect of vaporizer, compared with the prior art can save 15-20% liquid nitrogen; The phenomenon that on whole pipeline, can not occur freezing, thereby need not the people and be deicing; Cooling water after the bending tube section heat exchange is returned by the cooling water cycling mechanism and causes sintering kiln circulation cooling, helps improving the cooling effect to sintering kiln.
Description of drawings
Fig. 1 is a specific embodiment structural drawing of the present utility model.
Fig. 2 is the schematic representation of the nitrogen gas conveying device in the prior art.
Embodiment
Embodiment 1:
Ask for an interview Fig. 1, under normal conditions, liquid nitrogen storage tank 1 and vaporizer 2 are fixed on the outdoor terrace 8, one end of pipeline 3 and liquid nitrogen storage tank 1 connect, the other end and vaporizer 2 connect, and open valve 4, just can the liquid nitrogen in the liquid nitrogen storage tank 1 be incorporated into vaporizer 2 evaporations by pipeline 3, making liquid nitrogen become gaseous nitrogen by the evaporation of vaporizer 2 is nitrogen, is incorporated in the burner hearth of sintering kiln.
In the technological scheme that the utility model is recommended, will be used to carry the middle part of the pipeline 3 of liquid nitrogen to be processed into bending tube section 31, and this bending tube section 31 will be presented in the heat exchange groove 5 of outfit.In the present embodiment, the heat exchange groove of being selected 5 directly on terrace 8 processing constitute, i.e. pond of excavation on terrace 8 is watered and is laid cement and make leakage proof and handle, thereby constitutes heat exchange groove 5.In the present embodiment, the curved shape of selecting bending tube section 31 is a spirality, and this curved shape can make the total length of bending tube section 31 long, and total heat exchange area is big, so heat exchange effect is good.Side on the upper side at heat exchange groove 5 is provided with a hot water inlet pipe 6, because this hot water inlet pipe 6 is communicated with the hydronic rising pipe of sintering kiln, therefore by hot water inlet pipe 6 hot water is incorporated in the heat exchange groove 5 for bending tube section 31 heat absorptions, cooling water after the i.e. cooling after the heat absorption is drawn by cooling water cycling mechanism 7, is back to sintering kiln circulation cooling.As the motor 71 and water pump 72 combinations of preferred and unrestricted cooling water cycling mechanism 7, and be installed on the terrace 8, perhaps rack-mount, again support is fixed on the terrace 8.The water intake of water pump 72 is connected with an end of cooling water inlet pipe 721, and the other end of cooling water inlet pipe 721 is insinuated into the below in the heat exchange groove 5, promptly is stretched over the nearly bottom of the vallecular cavity of heat exchange groove 5; The water outlet of water pump 72 is connected with an end of cooling water outlet pipe 722, and the other end of cooling water outlet pipe 722 be used for the hydronic cooling water inlet pipe of sintering kiln road is connected and communicates.As long as constantly in heat exchange groove 5, introduce hot water by hot water inlet pipe 6, simultaneously constantly draw cooling water by cooling water cycling mechanism 7, water temperature in the heat exchange groove 5 can satisfy the heat exchange requirement of bending tube section 31 so, the temperature of the liquid nitrogen that flows to vaporizer 2 is improved, thereby the outer wall that can prevent whole pipeline 3 effectively freezes, need not artificial deicing, the evaporation effect that more positive meaning is to improve vaporizer 2 is a gasification result, saves the consumption of liquid nitrogen.Through the claimant the utility model scheme and prior art have been carried out contrast (under the confidential state) on probation, the result shows, utilizes the utility model scheme can save liquid nitrogen 15-20%.The top sintering kiln of mentioning is a tunnel kiln, and sintered products is a ferrite.
Embodiment 2:
Figure slightly only is processed into U-shaped with bending tube section 31, and wherein, the total length of bending tube section 31 is identical with embodiment 1, and all the other are all with the description to embodiment 1.
Embodiment 3:
Figure slightly, the curved shape of the bending tube section 31 that total length and embodiment 1 is identical constitutes S shape, all the other are all with the description to embodiment 1.
Embodiment 4:
Figure omits, and with more particularly burying underground on the terrace 8 for the heat exchange groove 5 of cuboid of prefabricated rectangle, all the other are all with the description to embodiment 1.
Claims (8)
1, a kind of nitrogen gas conveying device, by liquid nitrogen storage tank (1), vaporizer (2) and pipeline (3) are formed, one end of pipeline (3) and liquid nitrogen storage tank (1) connect, the other end and vaporizer (2) connect, the middle part that it is characterized in that described pipeline (3) constitutes bending tube section (31), this bending tube section (31) is placed in the heat exchange groove (5), on described heat exchange groove (5), dispose one and be used for the sintering kiln cooled hot water that circulates is incorporated into the hot water inlet pipe (6) of the described bending tube section of confession (31) heat exchange of heat exchange groove (5), and be used for cooling water with heat exchange groove (5) and return and guide to the hydronic cooling water cycling mechanism of sintering kiln (7) disposing one on the heat exchange groove (5) through after bending tube section (31) heat exchange.
2, nitrogen gas conveying device according to claim 1 is characterized in that described heat exchange groove (5) is directly in upward processing formation of terrace (8).
3, nitrogen gas conveying device according to claim 1 is characterized in that described heat exchange groove (5) is placed on the terrace (8).
4, nitrogen gas conveying device according to claim 1, the curved shape that it is characterized in that described bending tube section (31) is a helically bent.
5, nitrogen gas conveying device according to claim 1, the curved shape that it is characterized in that described bending tube section (31) is the U-shaped bending.
6, nitrogen gas conveying device according to claim 1, the curved shape that it is characterized in that described bending tube section (31) are the bending of S shape.
7, nitrogen gas conveying device according to claim 1, it is characterized in that described cooling water cycling mechanism (7) is made up of motor (71) and water pump (72), motor (71) is combined with water pump (72), the water intake of water pump (72) connects an end of cooling water inlet pipe (721), and the other end of cooling water inlet pipe (721) is stretched in the described heat exchange groove (5); The water outlet of water pump (72) connects an end of cooling water outlet pipe (722), and the other end of cooling water outlet pipe (722) be used for the hydronic cooling water inlet pipe of sintering kiln road is connected.
8,, it is characterized in that described sintering kiln is a tunnel kiln according to claim 1 or 7 described nitrogen gas conveying devices.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CNU2008201046939U CN201202964Y (en) | 2008-05-07 | 2008-05-07 | Nitrogen gas conveying device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CNU2008201046939U CN201202964Y (en) | 2008-05-07 | 2008-05-07 | Nitrogen gas conveying device |
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CN201202964Y true CN201202964Y (en) | 2009-03-04 |
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CNU2008201046939U Expired - Fee Related CN201202964Y (en) | 2008-05-07 | 2008-05-07 | Nitrogen gas conveying device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108788037A (en) * | 2018-07-20 | 2018-11-13 | 芜湖君华材料有限公司 | A kind of amorphous magnetic material conduction oil circulating cooling system |
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2008
- 2008-05-07 CN CNU2008201046939U patent/CN201202964Y/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108788037A (en) * | 2018-07-20 | 2018-11-13 | 芜湖君华材料有限公司 | A kind of amorphous magnetic material conduction oil circulating cooling system |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20090304 Termination date: 20140507 |