EP3456849A1 - Tuyere for bottom and side blowing and method for cooling the same - Google Patents
Tuyere for bottom and side blowing and method for cooling the same Download PDFInfo
- Publication number
- EP3456849A1 EP3456849A1 EP18182891.4A EP18182891A EP3456849A1 EP 3456849 A1 EP3456849 A1 EP 3456849A1 EP 18182891 A EP18182891 A EP 18182891A EP 3456849 A1 EP3456849 A1 EP 3456849A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- tuyere
- headpiece
- nose
- cooling
- blast pipe
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 238000001816 cooling Methods 0.000 title claims abstract description 21
- 238000007664 blowing Methods 0.000 title claims abstract description 11
- 238000000034 method Methods 0.000 title claims abstract description 10
- 230000001681 protective effect Effects 0.000 claims abstract description 20
- 239000002826 coolant Substances 0.000 claims abstract description 8
- 230000007704 transition Effects 0.000 claims abstract description 8
- 239000000463 material Substances 0.000 claims abstract description 5
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 claims description 6
- 229910052760 oxygen Inorganic materials 0.000 claims description 6
- 239000001301 oxygen Substances 0.000 claims description 6
- OMZSGWSJDCOLKM-UHFFFAOYSA-N copper(II) sulfide Chemical compound [S-2].[Cu+2] OMZSGWSJDCOLKM-UHFFFAOYSA-N 0.000 abstract description 5
- 230000001590 oxidative effect Effects 0.000 abstract description 5
- 238000009851 ferrous metallurgy Methods 0.000 abstract description 2
- 238000005272 metallurgy Methods 0.000 abstract description 2
- 238000009856 non-ferrous metallurgy Methods 0.000 abstract description 2
- 239000002994 raw material Substances 0.000 abstract description 2
- 210000003625 skull Anatomy 0.000 description 10
- 238000002844 melting Methods 0.000 description 8
- 230000008018 melting Effects 0.000 description 8
- UCKMPCXJQFINFW-UHFFFAOYSA-N Sulphide Chemical compound [S-2] UCKMPCXJQFINFW-UHFFFAOYSA-N 0.000 description 4
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 4
- 230000007423 decrease Effects 0.000 description 3
- 230000004907 flux Effects 0.000 description 3
- 238000004880 explosion Methods 0.000 description 2
- 238000013021 overheating Methods 0.000 description 2
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000000919 ceramic Substances 0.000 description 1
- 230000006378 damage Effects 0.000 description 1
- 238000002474 experimental method Methods 0.000 description 1
- 239000002360 explosive Substances 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 239000012768 molten material Substances 0.000 description 1
- 238000000365 skull melting Methods 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
Images
Classifications
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21B—MANUFACTURE OF IRON OR STEEL
- C21B7/00—Blast furnaces
- C21B7/16—Tuyéres
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21B—MANUFACTURE OF IRON OR STEEL
- C21B7/00—Blast furnaces
- C21B7/16—Tuyéres
- C21B7/163—Blowpipe assembly
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F27—FURNACES; KILNS; OVENS; RETORTS
- F27D—DETAILS OR ACCESSORIES OF FURNACES, KILNS, OVENS, OR RETORTS, IN SO FAR AS THEY ARE OF KINDS OCCURRING IN MORE THAN ONE KIND OF FURNACE
- F27D1/00—Casings; Linings; Walls; Roofs
- F27D1/12—Casings; Linings; Walls; Roofs incorporating cooling arrangements
Definitions
- the group of inventions relates to metallurgy and more particularly to devices for blowing oxidizing blast through molten copper sulfide or polymetallic raw material and methods for cooling these devices, and can be used in nonferrous and ferrous metallurgy.
- Inventor's Certificate SU 1667920 and patent RU 2152441 disclose the use of tuyeres with coaxial pipes (tuyere with a protective envelope shell) to reduce the heat impact on the tuyere nose (end). Oxidizing blast is fed through a main passage, and a weakly oxidizing, inert or reducing blast is fed through a protective passage.
- the tuyere with a protective shell reduces the rate of heat impact on the surface of the tuyere nose, but does not protect it from burnout.
- Headpieces can be used to protect the tuyere end face from burnout, as described in patent RU 2235789 . End face headpieces protect the tuyere nose for a certain period of time.
- low thermal conductivity of the headpiece prevents forming a stable skull layer on the headpiece, thereby leading to burnout of the headpiece and the tuyere nose surface.
- Cooling passages are formed by a filled pipe, and the cooling intensity is attained by the use, in the nose, of a coil with a specified section of the cooling passage.
- the main cooling intensity characteristic is the coolant velocity, i.e. the flow rate of coolant, and maintenance of the specified flow rate at the proper level.
- the nose wall cannot be kept integral under heat strains of >1000 kW/m 2 .
- patent US 5,989,488 which uses cooling the tuyere end face for its protection.
- the unregulated flow rate of coolant per the nose surface area cannot protect it when the blast flame hangs near the tuyere surface; this leads to the tuyere surface burnout despite the fact that the nose surface is protected by a ceramic insert.
- the object of the present group of inventions is to provide a tuyere for bottom and side blowing an oxidizing blast through a molten copper sulfide in a protective shell under high heat strains in the blast flame region, and enable long operation of the tuyere.
- the group of inventions offers higher service characteristics of a tuyere for bottom and side blowing, including, inter alia, enhanced reliability and longer service of the tuyere, improved efficiency of cooling the tuyere under high heat strains.
- a tuyere for bottom and side blowing comprising a tuyere body having a passage, a main blast pipe, a protective blast pipe, a tuyere nose, a cooled element and a ceramometal headpiece, wherein the main blast pipe and the protective blast pipe are arranged coaxially with respect to each other, the ceramometal headpiece is disposed on the tuyere nose and is made of a material with an average thermal conductivity of at least 30 W/m°C and a phase transition latent heat of at least 1000 kJ/kg.
- the object is further attained by a method for cooling a tuyere, comprising cooling the tuyere nose at the coolant flow rate of at least 25 ⁇ 10 -3 m 3 /s per 1 m 2 of the surface area of the nose, and maintaining negative pressure within the cooled elements.
- the present group of inventions provides a tuyere, cooled from an explosion-proof cooling system, with a protective envelope of air or another blast, and the end face (nose) of the tuyere and the coaxial pipes is protected by a headpiece contacting the molten material, which is explosive in reaction with water.
- a tuyere for bottom and side blowing comprises a tuyere body 1 with a cooling passage 2, a main blast pipe 3, a protective blast pipe 4, a tuyere nose 5, a cooled element 6 and a ceramometal headpiece 7.
- the main blast pipe 3 and the protective blast pipe 4 are arranged coaxially with respect to each other.
- the cooling element 6 is formed by filled pipes or a slit-like passage.
- the ceramometal headpiece 7 is arranged on the tuyere nose 5 to protect the surface of the tuyere nose 5 and the spout of pipes 3, 4, and is made of a material having an average thermal conductivity of at least 30 W/m°C and a phase transition latent heat of at least 1000 kJ/kg.
- the ceramometal headpiece 7 is made of layers of different materials: those having a low thermal conductivity and a high melting point, and those having a high thermal conductivity and a melting point of about 1100°C.
- Thermal conductivity of the ceramometal headpiece is determined as the average of the sum of products of mass fraction of the layer by thermal conductivity for cross-section of the ceramometal headpiece.
- Phase transition heat or latent melting heat is determined for a particular ceramometal headpiece.
- thermocouples are caulked into its working surface on the side of molten sulfide.
- Temperature of 960° C, equivalent to the skull melting temperature, is taken for the instant of melting the protective skull.
- the coefficient of heat transfer from the cooled element wall to the coolant was about 3700 kW/m 2 °C.
- the method is implemented in the following manner.
- the tuyere is installed in the molten sulfide zone. Oxygen for main blast is fed though the main blast pipe 3, and air is fed through the protective blast pipe 4. Skull layer forms on the surface of the ceramometal headpiece 7, which protects the headpiece 7 and the tuyere from wear. Water coolant is supplied on the surface of the tuyere nose 5, and a negative pressure is created in the cavity of the cooled element 6. Negative pressure is provided by installing the tuyere in a certain place of the explosion-proof cooling system.
- Performance of the tuyere was tested on "Noranda" system.
- the tuyere was installed in the tuyere belt and in the bottom of the system. Surface of the headpiece was in contact with molten copper sulfide. A layer of protective skull formed on the surface of the tuyere headpiece. Main oxygen blast was fed through the central passage. Air blast was fed through the protective shell. Tuyeres in the bottom and side part of the system were operated for a long time. No wear and overheating of tuyere occurred, which was confirmed by determined parameters of the tuyere.
Landscapes
- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Manufacturing & Machinery (AREA)
- Materials Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Manufacture And Refinement Of Metals (AREA)
- Structure Of Emergency Protection For Nuclear Reactors (AREA)
- Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)
Abstract
Description
- The group of inventions relates to metallurgy and more particularly to devices for blowing oxidizing blast through molten copper sulfide or polymetallic raw material and methods for cooling these devices, and can be used in nonferrous and ferrous metallurgy.
- When molten copper sulfide is blown in the blast flame region, high temperatures and hence high heat strains are developing, which lead to burnout of the cooled element. Therefore, cooled tuyeres are not used for blowing molten sulfide (matte) as their use can lead to burnout and thereupon to explosion.
- Inventor's Certificate
SU 1667920 RU 2152441 - However, the tuyere with a protective shell reduces the rate of heat impact on the surface of the tuyere nose, but does not protect it from burnout.
- Headpieces can be used to protect the tuyere end face from burnout, as described in patent
RU 2235789 - However, low thermal conductivity of the headpiece prevents forming a stable skull layer on the headpiece, thereby leading to burnout of the headpiece and the tuyere nose surface.
- The prior art most closely related to the present device is a blast furnace tuyere disclosed in patent
RU 2299243 - However, if the specified flow rate is not provided, the nose wall cannot be kept integral under heat strains of >1000 kW/m2.
- The prior art most closely related to the inventive method is patent
US 5,989,488 , which uses cooling the tuyere end face for its protection. - However, the unregulated flow rate of coolant per the nose surface area cannot protect it when the blast flame hangs near the tuyere surface; this leads to the tuyere surface burnout despite the fact that the nose surface is protected by a ceramic insert.
- The object of the present group of inventions is to provide a tuyere for bottom and side blowing an oxidizing blast through a molten copper sulfide in a protective shell under high heat strains in the blast flame region, and enable long operation of the tuyere.
- The group of inventions offers higher service characteristics of a tuyere for bottom and side blowing, including, inter alia, enhanced reliability and longer service of the tuyere, improved efficiency of cooling the tuyere under high heat strains.
- The object is attained in a tuyere for bottom and side blowing, comprising a tuyere body having a passage, a main blast pipe, a protective blast pipe, a tuyere nose, a cooled element and a ceramometal headpiece, wherein the main blast pipe and the protective blast pipe are arranged coaxially with respect to each other, the ceramometal headpiece is disposed on the tuyere nose and is made of a material with an average thermal conductivity of at least 30 W/m°C and a phase transition latent heat of at least 1000 kJ/kg.
-
- where L is the length of the headpiece, millimeters,
- Po2 is the partial pressure of oxygen of the main blast, MPa.
- The object is further attained by a method for cooling a tuyere, comprising cooling the tuyere nose at the coolant flow rate of at least 25·10-3m3/s per 1 m2 of the surface area of the nose, and maintaining negative pressure within the cooled elements.
- The present group of inventions provides a tuyere, cooled from an explosion-proof cooling system, with a protective envelope of air or another blast, and the end face (nose) of the tuyere and the coaxial pipes is protected by a headpiece contacting the molten material, which is explosive in reaction with water.
- The group of inventions is disclosed with reference to the drawing showing a longitudinal section of a tuyere, where reference numerals stand for:
- 1 - tuyere body;
- 2 - passage;
- 3 - main blast pipe;
- 4 - protective blast pipe;
- 5 - tuyere nose;
- 6 - cooled element;
- 7 - ceramometal headpiece.
- A tuyere for bottom and side blowing comprises a
tuyere body 1 with acooling passage 2, amain blast pipe 3, aprotective blast pipe 4, atuyere nose 5, a cooledelement 6 and aceramometal headpiece 7. - The
main blast pipe 3 and theprotective blast pipe 4 are arranged coaxially with respect to each other. - The
cooling element 6 is formed by filled pipes or a slit-like passage. - The
ceramometal headpiece 7 is arranged on thetuyere nose 5 to protect the surface of thetuyere nose 5 and the spout ofpipes - Reduction in the thermal conductivity of the
headpiece 7 prevents formation of a protective skull and causes wear of theheadpiece 7 and the tuyere. Reduction in the phase transition latent heat of theheadpiece 7 decreases the time of thermal impact of the blast flame on theheadpiece 7 and causes thereby melting the protective skull, overheating theheadpiece 7 and the tuyere. Theceramometal headpiece 7 is made of layers of different materials: those having a low thermal conductivity and a high melting point, and those having a high thermal conductivity and a melting point of about 1100°C. -
- where L is the length of the ceramometal headpiece, millimeters,
- Po2 is the partial pressure of oxygen, MPa.
- Thermal conductivity of the ceramometal headpiece is determined as the average of the sum of products of mass fraction of the layer by thermal conductivity for cross-section of the ceramometal headpiece. Phase transition heat or latent melting heat is determined for a particular ceramometal headpiece. To determine characteristics of the ceramometal headpiece, thermocouples are caulked into its working surface on the side of molten sulfide. Temperature of 960° C, equivalent to the skull melting temperature, is taken for the instant of melting the protective skull. The coefficient of heat transfer from the cooled element wall to the coolant was about 3700 kW/m2°C. Experiments have shown that a decrease in the average thermal conductivity of the ceramometal headpiece by less than 30 W/m°C leads to increasing the headpiece surface temperature above 980° C, which is the evidence that the skull is melting. Based on the headpiece surface temperature, removed heat flux and heat applied to the headpiece surface, the impact of the latent phase transition heat on the time of decay of the heat flux on the headpiece surface is mathematically determined as compared to experimental data. Mathematical modeling has identified that the use of a headpiece with latent heat of phase transition of more than 1000 kJ/kg causes an increase in the time of heat flux impact on the headpiece skull from 0 to 60 sec, and no melting of the skull occurs during this time.
- The method is implemented in the following manner.
- The tuyere is installed in the molten sulfide zone. Oxygen for main blast is fed though the
main blast pipe 3, and air is fed through theprotective blast pipe 4. Skull layer forms on the surface of theceramometal headpiece 7, which protects theheadpiece 7 and the tuyere from wear. Water coolant is supplied on the surface of thetuyere nose 5, and a negative pressure is created in the cavity of the cooledelement 6. Negative pressure is provided by installing the tuyere in a certain place of the explosion-proof cooling system. In a case of uncontrolled destruction (burnout) of the headpiece and the tuyere end wall, molten sulfide penetrates into the cooled element, crystallizes, the flow of water inside the element is stopped and no explosion occurs. Water flow rate on the surface of thenose 5 should be at least 25·10-3 m3/s. With reduction in the flow rate the cooling intensity decreases and involves melting the skull on the headpiece surface, wear of the headpiece, and as a consequence, possible burnout of the tuyere. - Performance of the tuyere was tested on "Noranda" system. The tuyere was installed in the tuyere belt and in the bottom of the system. Surface of the headpiece was in contact with molten copper sulfide. A layer of protective skull formed on the surface of the tuyere headpiece. Main oxygen blast was fed through the central passage. Air blast was fed through the protective shell. Tuyeres in the bottom and side part of the system were operated for a long time. No wear and overheating of tuyere occurred, which was confirmed by determined parameters of the tuyere.
- The above examples are particular cases and do not cover all possible embodiments of the present group of inventions.
- Those skilled in the art will appreciate that variations of the present device and method do not alter the matter of the invention, but only determine specific embodiments thereof.
Claims (3)
- A tuyere for bottom and side blowing, characterized in that the tuyere comprises a tuyere body having a passage, a main blast pipe, a protective blast pipe, a tuyere nose, a cooled element and a ceramometal headpiece, wherein the main blast pipe and the protective blast pipe are arranged coaxially with respect to each other, the ceramometal headpiece is disposed on the tuyere nose and is made of a material having an average thermal conductivity of at least 30 W/m°C and a phase transition latent heat of at least 1000 kJ/kg.
- A method for cooling a tuyere according to claim 1, characterized in that the method comprises cooling the tuyere nose at the coolant flow rate of at least 25·10-3 m3/s per 1 m2 of the surface area of the nose, and maintaining negative pressure within the cooled elements.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
RU2017132288A RU2676382C1 (en) | 2017-09-15 | 2017-09-15 | Bottom and side blown tuyere |
Publications (3)
Publication Number | Publication Date |
---|---|
EP3456849A1 true EP3456849A1 (en) | 2019-03-20 |
EP3456849B1 EP3456849B1 (en) | 2020-06-17 |
EP3456849B8 EP3456849B8 (en) | 2020-08-12 |
Family
ID=63047107
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP18182891.4A Active EP3456849B8 (en) | 2017-09-15 | 2018-07-11 | Tuyere for bottom and side blowing and method for cooling the same |
Country Status (5)
Country | Link |
---|---|
EP (1) | EP3456849B8 (en) |
AU (1) | AU2018204745A1 (en) |
CL (1) | CL2018002526A1 (en) |
EA (1) | EA038247B1 (en) |
RU (1) | RU2676382C1 (en) |
Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB518921A (en) * | 1937-08-28 | 1940-03-12 | Freyn Engineering Co | Improvements in tuyeres |
FR2549489A1 (en) * | 1983-07-18 | 1985-01-25 | Sacilor | Blast tuyere with saving and distribution of energy, for a blast furnace and other tank furnaces |
SU1667920A1 (en) | 1988-12-13 | 1991-08-07 | Научно-Производственное Объединение "Техэнергохимпром" | Gas converter |
US5989488A (en) | 1998-01-30 | 1999-11-23 | Kabushiki Kaisha Kobe Seiko Sho | Blast tuyere of a blast furnace |
RU2152441C1 (en) | 1998-01-06 | 2000-07-10 | Акционерное общество "Кузнецкий металлургический комбинат" | Apparatus for bottom blowing of steel in ladle |
RU2235789C2 (en) | 2001-12-03 | 2004-09-10 | Научно-Производственное Общество С Ограниченной Ответственностью С Иностранными Инвестициями "Доникс" | Blast tuyere of blast furnace and method for applying of protective coating onto blast tuyere of blast furnace |
RU2299243C1 (en) | 2006-01-10 | 2007-05-20 | Общество с ограниченной ответственностью "Научно-производственное предприятие "ЦветЛитФурма"(ООО"НПП"ЦветЛитФурма") | Blast furnace tuyere |
DE102009048351A1 (en) * | 2008-11-28 | 2010-06-02 | Siemens Aktiengesellschaft | Nozzle for injecting oxygen from a nozzle head into a pig-iron production aggregate, comprises an insert, which is interchangeably insertable into oxygen channel of the nozzle and is made of refractory material |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4572487A (en) * | 1984-05-10 | 1986-02-25 | Inland Steel Company | Blast furnace tuyere with replaceable liner |
SU1245600A1 (en) * | 1985-02-13 | 1986-07-23 | Днепровский металлургический комбинат им.Ф.Э.Дзержинского | Tuyere for bottom blowing of metal melt |
SU1350178A1 (en) * | 1986-03-04 | 1987-11-07 | Сибирский металлургический институт им.Серго Орджоникидзе | Tuyere for bottom blowing of metal |
RU2084540C1 (en) * | 1995-03-22 | 1997-07-20 | Государственный научно-исследовательский институт цветных металлов "Гинцветмет" | Cooled tuyere for blowing melt |
RU2167204C1 (en) * | 1999-12-31 | 2001-05-20 | Открытое акционерное общество "Новолипецкий металлургический комбинат" | Blast furnace tuyere |
-
2017
- 2017-09-15 RU RU2017132288A patent/RU2676382C1/en active
-
2018
- 2018-06-21 EA EA201891232A patent/EA038247B1/en unknown
- 2018-06-29 AU AU2018204745A patent/AU2018204745A1/en active Pending
- 2018-07-11 EP EP18182891.4A patent/EP3456849B8/en active Active
- 2018-09-04 CL CL2018002526A patent/CL2018002526A1/en unknown
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB518921A (en) * | 1937-08-28 | 1940-03-12 | Freyn Engineering Co | Improvements in tuyeres |
FR2549489A1 (en) * | 1983-07-18 | 1985-01-25 | Sacilor | Blast tuyere with saving and distribution of energy, for a blast furnace and other tank furnaces |
SU1667920A1 (en) | 1988-12-13 | 1991-08-07 | Научно-Производственное Объединение "Техэнергохимпром" | Gas converter |
RU2152441C1 (en) | 1998-01-06 | 2000-07-10 | Акционерное общество "Кузнецкий металлургический комбинат" | Apparatus for bottom blowing of steel in ladle |
US5989488A (en) | 1998-01-30 | 1999-11-23 | Kabushiki Kaisha Kobe Seiko Sho | Blast tuyere of a blast furnace |
RU2235789C2 (en) | 2001-12-03 | 2004-09-10 | Научно-Производственное Общество С Ограниченной Ответственностью С Иностранными Инвестициями "Доникс" | Blast tuyere of blast furnace and method for applying of protective coating onto blast tuyere of blast furnace |
RU2299243C1 (en) | 2006-01-10 | 2007-05-20 | Общество с ограниченной ответственностью "Научно-производственное предприятие "ЦветЛитФурма"(ООО"НПП"ЦветЛитФурма") | Blast furnace tuyere |
DE102009048351A1 (en) * | 2008-11-28 | 2010-06-02 | Siemens Aktiengesellschaft | Nozzle for injecting oxygen from a nozzle head into a pig-iron production aggregate, comprises an insert, which is interchangeably insertable into oxygen channel of the nozzle and is made of refractory material |
Also Published As
Publication number | Publication date |
---|---|
CL2018002526A1 (en) | 2019-02-01 |
EP3456849B1 (en) | 2020-06-17 |
EP3456849B8 (en) | 2020-08-12 |
EA038247B1 (en) | 2021-07-29 |
RU2676382C1 (en) | 2018-12-28 |
AU2018204745A1 (en) | 2019-04-04 |
EA201891232A1 (en) | 2019-03-29 |
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