CN209386825U - A kind of waste heat recycling device for ferro-boron smelting furnace - Google Patents
A kind of waste heat recycling device for ferro-boron smelting furnace Download PDFInfo
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- CN209386825U CN209386825U CN201821816927.2U CN201821816927U CN209386825U CN 209386825 U CN209386825 U CN 209386825U CN 201821816927 U CN201821816927 U CN 201821816927U CN 209386825 U CN209386825 U CN 209386825U
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- smelting furnace
- water storage
- storage box
- plugged
- water
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P10/00—Technologies related to metal processing
- Y02P10/25—Process efficiency
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Abstract
The utility model discloses a kind of waste heat recycling devices for ferro-boron smelting furnace, including bottom plate and smelting furnace, the top dead center position of the bottom plate is connected with smelting furnace, the front side upper and lower ends of the smelting furnace are connected with door body, the outer wall top of the smelting furnace is socketed with lid, connecting column is connected at left and right sides of the top of the bottom plate, the top of the connecting column is connected with the first water storage box, and rear and front end is plugged with one end of heat exchanger tube on the left of the upper surface of the smelting furnace;The device can maximumlly utilize heat generated when smelting, not only water can be heated and be emitted, the water emitted after heating can be used for daily life water, but also it can use heating water and be formed by vapor and generate electricity, daily required electric energy is provided for people, it is practical, be conducive to sustainable development.
Description
Technical field
The utility model relates to waste gas recovery technical field, specifically a kind of Waste Heat Recovery for ferro-boron smelting furnace
Utilize device.
Background technique
Smelting is a kind of refinement technique, refers to the methods of use roasting, melting, electrolysis and use chemical agent in ore
METAL EXTRACTION come out, reduce metal contained in impurity or increase metal in certain ingredient, be smelt required metal, so
And during ferro-boron is smelted, a large amount of heat can be generated, these heats can be discharged into air in the form of exhaust gas substantially
In, but this mode, heat can not be maximumlly utilized, a large amount of heating power resource can be wasted, be unfavorable for instead
Sustainable development.
Utility model content
Aiming at the defects existing in the prior art, the utility model aim is to provide a kind of for ferro-boron smelting
The waste heat recycling device of furnace, to solve the above technical problem.
The utility model technical solution used for the above purpose is: a kind of waste heat for ferro-boron smelting furnace time
It receives and utilizes device, including bottom plate and smelting furnace;The top dead center position of the bottom plate is connected with smelting furnace;Before the smelting furnace
Side upper and lower ends are connected with door body;It is characterized by: the outer wall top of the smelting furnace is socketed with lid;The top of the bottom plate
The end left and right sides is connected with connecting column;The top of the connecting column is connected with the first water storage box;The upper surface of the smelting furnace
Left side rear and front end is plugged with one end of heat exchanger tube;The other end of the heat exchanger tube is through lid and extends into the first water storage box
Inner cavity;The other end of the heat exchanger tube extend the lower surface of the first water storage box and through lid outer wall and smelting furnace it is upper
It is plugged on the right side of surface;The top left hand of the bottom plate is connected with the second water storage box;It inserts the left side bottom end of second water storage box
It is connected to water inlet pipe;The top of second water storage box is plugged with one end of the first drainpipe and the other end of the first drainpipe is inserted
It is connected to water pump;The bottom end of the water pump is connect with the top left hand screw of the first drainpipe;Is plugged on the right side of the water pump
The other end of one end of two drainpipes and the second drainpipe and the outer wall of the first water storage box plug;Second drainpipe
Top is threaded with valve;The right side bottom end of first water storage box is plugged with third drainpipe;The third drainpipe
Left side is threaded with valve;Steam turbine is connected on the right side of the top of the bottom plate;It inserts on the right side top of first water storage box
It is connected to one end of connecting tube and the top dead center position of the other end of connecting tube and steam turbine plugs;The right side of the connecting tube
Side is threaded with valve;Generator is connected on the right side of the steam turbine;The top phase of the bottom end of the generator and bottom plate
Clamping;The right side bottom end of the generator is plugged with battery by connecting line;The right side top of the generator is plugged with defeated
Electric wire.
Preferably, two connecting columns are located at the left and right sides of smelting furnace.
Preferably, the quantity of the heat exchanger tube is the front-rear center position that two and two heat exchanger tubes are located at the first water storage box
It sets arranged symmetrically.
Preferably, the connecting tube is in " L " font.
Preferably, the lid is in concave.
The utility model has the beneficial effects that a kind of waste heat recycling device for ferro-boron smelting furnace, by heat exchanger tube,
The cooperation of second water storage box, water inlet pipe, the first drainpipe, water pump, the second drainpipe and third drainpipe, so as to first
The inner cavity injection water of water storage box and the water for injecting the first water storage box cavity is heated and is discharged, by steam turbine, connecting tube,
The cooperation of generator and power transmission line, so as to which vapor is converted to electric energy, a part is stored into internal storage battery, another portion
Point be discharged by power transmission line, the device can maximumlly using generated heat when smelting, not only can by water heating and
It emits, the water emitted after heating can be used for daily life water, but also can use heating water institute
The vapor of formation generates electricity, and provides daily required electric energy for people, practical, is conducive to sustainable development.
Detailed description of the invention
Fig. 1 is the schematic cross-sectional view of the utility model;
Fig. 2 is the smelting furnace structural schematic diagram of the utility model;
Fig. 3 is the cover body structure schematic diagram of the utility model;
In figure: 1. bottom plates, 2. smelting furnaces, 3. lids, 4. connecting columns, 5. first water storage boxes, 6. heat exchanger tubes, 7. second water storages
Case, 8. water inlet pipes, 9. first drainpipes, 10. water pumps, 11. second drainpipes, 12. third drainpipes, 13. steam turbines, 14. connect
Adapter tube, 15. generators, 16. batteries, 17. power transmission lines.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment;
Embodiment one:
See Fig. 1, Fig. 2, Fig. 3;A kind of waste heat recycling device for ferro-boron smelting furnace, including bottom plate 1 and smelting furnace
2, the top dead center position of bottom plate 1 is connected with smelting furnace 2, and the front side upper and lower ends of smelting furnace 2 are connected with door body, smelting furnace 2
Outer wall top be socketed with lid 3, be connected with connecting column 4 at left and right sides of the top of bottom plate 1, the top of connecting column 4 is connected with
First water storage box 5, the upper surface left side rear and front end of smelting furnace 2 are plugged with one end of heat exchanger tube 6, the model of heat exchanger tube 6
The other end of Φ 25mmx2.5, heat exchanger tube 6 run through lid 3 and extend into the inner cavity of the first water storage box 5, the other end of heat exchanger tube 6
Extend the lower surface of the first water storage box 5 and plugged on the right side of the outer wall of lid 3 and the upper surface of smelting furnace 2, by changing
Generated heat transfer is to the inner cavity of the first water storage box 5 when heat pipe 6 can smelt 2 inner cavity of smelting furnace, and to flow into
The water of first water storage box, 5 inner cavity is heated, and the top left hand of bottom plate 1 is connected with the second water storage box 7, a left side for the second water storage box 7
Side bottom end is plugged with water inlet pipe 8, and the top of the second water storage box 7 is plugged with one end of the first drainpipe 9, and the first drainpipe 9
The other end is plugged with water pump 10, the model 150QJ0-50/7 of water pump 10, and water pump 10 is connected with external power supply, external power supply
For 380V alternating current, connects or the external power supply of broken water pump 10 makes its work or stops working, the bottom end of water pump 10 and first
The top left hand screw of drainpipe 9 connects, and the right side of water pump 10 is plugged with one end of the second drainpipe 11, and the second drainpipe 11
The outer wall of the other end and the first water storage box 5 plug, the top of the second drainpipe 11 is threaded with valve, the first water storage box
5 right side bottom end is plugged with third drainpipe 12, and the left side of third drainpipe 12 is threaded with valve, connects the outer of water pump 10
It connects power supply, opens water pump 10, the water of 7 inner cavity of the second water storage box is extracted and pass through the second drainpipe 11 and is discharged into the by water pump 10
The inner cavity of one water storage box 5, is connected with steam turbine 13 on the right side of the top of bottom plate 1, the model N100-8.83/535 of steam turbine 13,
The right side top of first water storage box 5 is plugged with one end of connecting tube 14, and the top of the other end of connecting tube 14 and steam turbine 13
Center plugs, and the right side of connecting tube 14 is threaded with valve, and the right side of steam turbine 13 is connected with generator 15, power generation
The model QFW-3-4 of machine 15, the bottom end of generator 15 are mutually clamped with the top of bottom plate 1, and the right side bottom end of generator 15 passes through
Connecting line is plugged with battery 16, and the right side top of generator 15 is plugged with power transmission line 17.
When it is implemented, two connecting columns 4 are located at the left and right sides of smelting furnace 2 in Fig. 1, so that the first water storage
Case 5 is in the surface of smelting furnace 2.
When it is implemented, the quantity of heat exchanger tube 6 is two, and two heat exchanger tubes 6 are located at the first water storage box 5 in Fig. 3
Front-rear center positional symmetry setting, heated so as to the water faster to 5 inner cavity of the first water storage box.
When it is implemented, connecting tube 14 is in " L " font in Fig. 1, to facilitate the first water storage box 5 and steam turbine 13
Connection.
When it is implemented, lid 3 is in concave, in Fig. 3 so as to integrally wrap the outer wall top of smelting furnace 2
It wraps.
Working principle of the utility model is: in use, first connecting the external electricity of water pump 10, steam turbine 13 and generator 15
The valve on 14 right side of connecting tube is first closed when needing to provide domestic water for people, is then then turned on water pump 10, water by source
The water of second water storage box, 7 inner cavity is extracted by the first drainpipe 9 and is discharged from the second drainpipe 11 by pump 10, and the water of discharge can be into
Enter the inner cavity to the first water storage box 5 and be in contact with heat exchanger tube 6, ferro-boron is put into the inner cavity of smelting furnace 2 and carries out heating smelting,
Generated heat can be transmitted to heat exchanger tube 6 when heating, and heat exchanger tube 6 can heat the water of 5 inner cavity of the first water storage box, heat
Water afterwards can be discharged from third drainpipe 12, to provide domestic water for people, when needing to provide electric energy for people, first will
The valve on 11 top of the second drainpipe is closed together with the valve in 12 left side of third drainpipe, and heat exchanger tube 6 is in the first water storage box 5
The water of chamber is heated, and when being heated to certain temperature, water can evaporate to form vapor, and vapor can enter by connecting tube 14
To the inner cavity of steam turbine 13, generator 15 can be made to start to work by the processing of steam turbine 13, generator 15 works generated
Electric energy a part can enter the inner cavity of battery 16, so that electric energy savings be got up, the meeting of another part passes through power transmission line 17
It is discharged, to provide electric energy for people, which not only can provide hot water for people, so as to daily used, but also
Electric energy can be provided, it is practical.
In the utility model description, it is to be understood that term " top ", " bottom end ", " left side ", " right side ", " preceding
The indicating positions such as side ", " rear side ", " surface ", " inside " or positional relationship be based on positional relationship described in attached drawing, merely to
Convenient for describing the utility model or simplifying description, rather than the specific orientation that instruction must have;It is grasped described in embodiment
Making process not is that absolute use step can do corresponding adjustment in actual use.
The preferable specific embodiment of the above, only the utility model, but the protection scope of the utility model is not
It is confined to this, anyone skilled in the art is within the technical scope disclosed by the utility model, practical according to this
Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model
Within enclosing.
Claims (5)
1. a kind of waste heat recycling device for ferro-boron smelting furnace, including bottom plate (1) and smelting furnace (2);The bottom plate (1)
Top dead center position be connected with smelting furnace (2);The front side upper and lower ends of the smelting furnace (2) are connected with door body;Its feature
Be: the outer wall top of the smelting furnace (2) is socketed with lid (3);The top left and right sides company of being connected with of the bottom plate (1)
Connect column (4);The top of the connecting column (4) is connected with the first water storage box (5);Front and back on the left of the upper surface of the smelting furnace (2)
Both ends are plugged with one end of heat exchanger tube (6);The other end of the heat exchanger tube (6) is through lid (3) and extends into the first water storage
The inner cavity of case (5);The other end of the heat exchanger tube (6) extends the lower surface of the first water storage box (5) and through the outer of lid (3)
It is plugged on the right side of wall and the upper surface of smelting furnace (2);The top left hand of the bottom plate (1) is connected with the second water storage box (7);It is described
The left side bottom end of second water storage box (7) is plugged with water inlet pipe (8);The top of second water storage box (7) is plugged with the first draining
The other end of one end and the first drainpipe (9) for managing (9) is plugged with water pump (10);The bottom end of the water pump (10) and first row
The top left hand screw of water pipe (9) connects;One end and second of the second drainpipe (11) is plugged on the right side of the water pump (10)
The other end of drainpipe (11) and the outer wall of the first water storage box (5) plug;The top screw thread of second drainpipe (11) connects
It is connected to valve;The right side bottom end of first water storage box (5) is plugged with third drainpipe (12);The third drainpipe (12)
Left side is threaded with valve;Steam turbine (13) are connected on the right side of the top of the bottom plate (1);First water storage box (5)
Right side top is plugged with the other end of one end of connecting tube (14) and connecting tube (14) and the top dead center position of steam turbine (13)
It plugs;Valve is threaded on the right side of the connecting tube (14);Generator is connected on the right side of the steam turbine (13)
(15);The bottom end of the generator (15) and the top of bottom plate (1) are mutually clamped;The right side bottom end of the generator (15) passes through company
Wiring is plugged with battery (16);The right side top of the generator (15) is plugged with power transmission line (17).
2. a kind of waste heat recycling device for ferro-boron smelting furnace according to claim 1, it is characterised in that: two
The connecting column (4) is located at the left and right sides of smelting furnace (2).
3. a kind of waste heat recycling device for ferro-boron smelting furnace according to claim 1, it is characterised in that: described
The quantity of heat exchanger tube (6) is two and two heat exchanger tubes (6) are located at the front-rear center positional symmetry setting of the first water storage box (5).
4. a kind of waste heat recycling device for ferro-boron smelting furnace according to claim 1, it is characterised in that: described
Connecting tube (14) is in " L " font.
5. a kind of waste heat recycling device for ferro-boron smelting furnace according to claim 1, it is characterised in that: described
Lid (3) is in concave.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821816927.2U CN209386825U (en) | 2018-11-06 | 2018-11-06 | A kind of waste heat recycling device for ferro-boron smelting furnace |
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CN201821816927.2U CN209386825U (en) | 2018-11-06 | 2018-11-06 | A kind of waste heat recycling device for ferro-boron smelting furnace |
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CN209386825U true CN209386825U (en) | 2019-09-13 |
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CN201821816927.2U Expired - Fee Related CN209386825U (en) | 2018-11-06 | 2018-11-06 | A kind of waste heat recycling device for ferro-boron smelting furnace |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114383432A (en) * | 2021-12-28 | 2022-04-22 | 湖南金业环保科技有限公司 | Process and device for recovering waste energy of smelting furnace for industrial production |
-
2018
- 2018-11-06 CN CN201821816927.2U patent/CN209386825U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114383432A (en) * | 2021-12-28 | 2022-04-22 | 湖南金业环保科技有限公司 | Process and device for recovering waste energy of smelting furnace for industrial production |
CN114383432B (en) * | 2021-12-28 | 2023-11-03 | 湖南金业环保科技有限公司 | Smelting furnace complementary energy recovery process and device for industrial production |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190913 Termination date: 20211106 |
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CF01 | Termination of patent right due to non-payment of annual fee |