EP1323837A1 - Produit sidérurgique en acier au carbone, notamment destiné à la galvanisation, et ses procédés de réalisation - Google Patents
Produit sidérurgique en acier au carbone, notamment destiné à la galvanisation, et ses procédés de réalisation Download PDFInfo
- Publication number
- EP1323837A1 EP1323837A1 EP02293146A EP02293146A EP1323837A1 EP 1323837 A1 EP1323837 A1 EP 1323837A1 EP 02293146 A EP02293146 A EP 02293146A EP 02293146 A EP02293146 A EP 02293146A EP 1323837 A1 EP1323837 A1 EP 1323837A1
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- EP
- European Patent Office
- Prior art keywords
- steel
- product
- equal
- less
- strip
- 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.)
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Classifications
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- C—CHEMISTRY; METALLURGY
- C22—METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
- C22C—ALLOYS
- C22C38/00—Ferrous alloys, e.g. steel alloys
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- C—CHEMISTRY; METALLURGY
- C22—METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
- C22C—ALLOYS
- C22C38/00—Ferrous alloys, e.g. steel alloys
- C22C38/04—Ferrous alloys, e.g. steel alloys containing manganese
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- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21D—MODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
- C21D8/00—Modifying the physical properties of ferrous metals or ferrous alloys by deformation combined with, or followed by, heat treatment
- C21D8/02—Modifying the physical properties of ferrous metals or ferrous alloys by deformation combined with, or followed by, heat treatment during manufacturing of plates or strips
- C21D8/021—Modifying the physical properties of ferrous metals or ferrous alloys by deformation combined with, or followed by, heat treatment during manufacturing of plates or strips involving particular fabrication steps or treatments of ingots or slabs
- C21D8/0215—Rapid solidification; Thin strip casting
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- C—CHEMISTRY; METALLURGY
- C22—METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
- C22C—ALLOYS
- C22C38/00—Ferrous alloys, e.g. steel alloys
- C22C38/002—Ferrous alloys, e.g. steel alloys containing In, Mg, or other elements not provided for in one single group C22C38/001 - C22C38/60
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- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21D—MODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
- C21D8/00—Modifying the physical properties of ferrous metals or ferrous alloys by deformation combined with, or followed by, heat treatment
- C21D8/12—Modifying the physical properties of ferrous metals or ferrous alloys by deformation combined with, or followed by, heat treatment during manufacturing of articles with special electromagnetic properties
- C21D8/1277—Modifying the physical properties of ferrous metals or ferrous alloys by deformation combined with, or followed by, heat treatment during manufacturing of articles with special electromagnetic properties involving a particular surface treatment
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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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/12—All metal or with adjacent metals
- Y10T428/12493—Composite; i.e., plural, adjacent, spatially distinct metal components [e.g., layers, joint, etc.]
- Y10T428/12771—Transition metal-base component
- Y10T428/12785—Group IIB metal-base component
- Y10T428/12792—Zn-base component
- Y10T428/12799—Next to Fe-base component [e.g., galvanized]
Definitions
- the invention relates to the steel industry. More specifically, it concerns carbon steels of the type to be galvanized, i.e. a deposit of zinc on their surface by soaking the product in a zinc bath liquid. This product is then generally in the form of a strip in scrolling or sheet metal.
- Carbon steels intended for galvanizing are steels containing a maximum of 0.15% carbon and 0.08 to 2% manganese, as well as the usual alloying elements and impurities in carbon steels.
- the different classes of steel for galvanizing are mainly distinguished by their contents of deoxidizing elements.
- the so-called “class 3” steels have a silicon content of 0.15 to 0.25%.
- So-called “class 2” steels have a lower silicon content or equal to 0.040%.
- So-called “class 1” steels have a lower silicon content or equal to 0.030%.
- alumina inclusions can be made liquid by treatment with calcium, but this introduces an additional cost in alloying elements. It is also necessary to prevent reoxidation as much as possible atmospheric during continuous casting, to avoid the formation of new alumina inclusions which cannot be removed before solidification, and which will be found in the final product, whose properties they will degrade mechanical. To this end, argon is injected into the nozzles introducing the steel in the mold, which again increases the manufacturing cost. Of more, there is a risk of trapping argon bubbles at the time of solidification, likely to cause defects in the product.
- the object of the invention is to put the steelmakers in a position to offer galvanized steel strips and sheets corresponding to shades of classes 1 and 2 previously mentioned, produced at cost minimal, i.e. made from semi-finished products, containing little or no aluminum.
- the invention also relates to a steel product resulting from galvanizing the previous product.
- Said continuous casting machine can be a casting machine continuous slabs in a mold with fixed walls.
- Said continuous casting machine can be a casting machine continuous thin strips in a mold with one or more movable walls accompanying the product being solidified.
- Said machine can, in this case, be a continuous casting between cylinders.
- the invention also relates to a process for obtaining a product.
- steelmaking of the previous type characterized in that one elaborates and one runs steel semi-finished product in the form of a strip, using a continuous casting of thin strips.
- the said strip can then be laminated.
- the invention also relates to a process for obtaining a product. steel, characterized in that a strip is produced by one of the processes previous, and in that one performs a galvanization of said strip.
- composition of the steel that one wishes to obtain has the following characteristics (percentages are percentages weight).
- the carbon content is between 0.0005% and 0.15%.
- the manganese content is between 0.08% and 2%.
- the silicon content is less than or equal to 0.040% (class steel 2), preferably less than or equal to 0.030% (class 1 steel) for, as mentioned, provide a high deposition rate during galvanizing.
- total aluminum content is less than or equal to 0.010%, preferably less than or equal to 0.004%.
- Aluminum content says “Soluble” (ie soluble in an acid solution at the time of analysis of the sample) is less than or equal to 0.004%.
- the total oxygen content is between 0.0050 and 0.0500%, and preferably between 0.0050 and 0.0300%.
- This oxygen content results from chemical equilibria that were established in the pocket, during the development, between the liquid metal and the pocket slag, the possible supply of oxygen atmospheric liquid metal that may have occurred between the preparation in the pocket and pouring the metal into the mold, and the efficiency of the decanting of the oxidized inclusions formed during and after the preparation in poached.
- Phosphorus and sulfur contents (less than or equal to 0.20% for sulfur, at 0.10% for phosphorus, preferably less than or equal to 0.030%), copper, chromium, nickel, molybdenum, tungsten, cobalt (lower or equal to 1%, preferably less than or equal to 0.5%), made of titanium, niobium, vanadium, zirconium (less than or equal to 0.5%, preferably less than or equal to 0.2%), tin, antimony, arsenic (less than or equal to 0.1%), boron (less than or equal to 0.1%, preferably equal to 0.01%) and nitrogen (less than or equal to 0.0400%, preferably less than or equal to 0.015%) corresponding to the most usual requirements in steels for galvanizing.
- the other elements present are iron and impurities resulting from development.
- a steel having the contents is produced in the ladle in C, Mn, Si, P, S, Cu, Cr, Ni, Mo, W, Co, Ti, Nb, V, Zr, Sn, Sb, As, B and N mentioned above.
- aluminum can be added to capture most of the dissolved oxygen present in the liquid steel at the time of filling the ladle. This forms alumina inclusions which normally go decant in the pocket slag during the elaboration.
- the steelmaker can determine, using available theoretical models in the literature, what slag compositions can allow it to obtain a given dissolved oxygen content, for given Si and Mn contents. he can adjust the composition of their pocket slag by adding lime, silica, alumina and / or magnesia so as to form a slag synthetic ”. To this end, it can carry out chemical analyzes of the slag in being developed, in order to determine which oxides should be added to it to obtain the desired composition. The result of this practice can be controlled by measurements of the dissolved oxygen content of the liquid steel, made using known electrochemical cells. At the end of development, we obtains a steel whose dissolved oxygen content must be located within prescribed limits for the total oxygen content of the steel according to the invention, and the ladle is sent to the continuous casting plant.
- a steel containing 0.02% Si and 0.8% Mn and balanced with a slag of composition 40% CaO, 35% SiO 2 , 10% of MnO, 10% MgO, 5% of various oxides contains 70 ppm of dissolved oxygen.
- a steel containing 0.01% Si and 0.6% Mn and balanced with a slag of composition 35% CaO, 35% SiO 2 , 20% MnO, 10% MgO and d '' various oxides contains 100 ppm of dissolved oxygen.
- liquid steel present in the ingot mold at casting time contains insufficient dissolved oxygen content to cause a reaction with the carbon which would give off CO important, risking dangerous effervescence. We thus avoid a risk of liquid metal overflowing out of the mold.
- This procedure is applicable to steels continuously cast under slab shape on machines using ingot molds without oscillating bottom with fixed walls. They can be of the conventional type used for casting slabs about 20cm thick which are then hot rolled to obtain hot strips. These can then be galvanized and used as which, or may undergo cold rolling and other heat treatments or thermomechanical before galvanizing.
- a steel is cast liquid prepared as above on a continuous casting installation of the type having a bottomless ingot mold including two large movable walls the product being solidified.
- the two main known processes meeting this characteristic are the casting between two scrolling bands cooled and pouring between two cylinders with cooled horizontal axes internally and rotated in opposite directions.
- the casting space where takes place the solidification of the product is closed laterally by fixed lateral faces.
- Products are thus obtained directly in the form of strips, generally 1 to 10mm thick, which can then be hot rolled (possibly on a cage arranged in line with the casting installation).
- the strip can then be used directly, or undergo cold rolling and various other usual thermomechanical treatments.
- the use of such a direct casting installation of strips is advantageous in that the liquid well present in the mold has shallower depth than in a conventional continuous casting mold.
- the CO bubbles that form in the lower part of the liquid well therefore have less possibility of growth before reaching the surface of the well liquid, and the effervescence is significantly reduced compared to what we would observe when casting the same steel on a conventional continuous casting.
- the flared shape towards the top of the mold is more suitable than the practically constant cross section of conventional fixed molds attenuation level variations due to effervescence.
- the strip can be cast on an installation the mold of which has only one movable wall, such as a strip of scrolling or rotating cylinder. We can thus have access to thicknesses tape less than 1mm.
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- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Mechanical Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Thermal Sciences (AREA)
- Crystallography & Structural Chemistry (AREA)
- Physics & Mathematics (AREA)
- Treatment Of Steel In Its Molten State (AREA)
- Continuous Casting (AREA)
- Coating With Molten Metal (AREA)
- Heat Treatment Of Sheet Steel (AREA)
- Metal Rolling (AREA)
- Electroplating Methods And Accessories (AREA)
Abstract
Description
- d'une part, elle provoque souvent lors de la solidification de l'acier l'apparition de « soufflures », dans la zone centrale du produit, c'est à dire de porosités correspondant à l'emplacement de poches de gaz présentes au moment de la solidification ; cet inconvénient peut cependant être annulé si l'acier subit ensuite un fort laminage à chaud qui va refermer ces porosités ;
- d'autre part, si l'effervescence devient inopinément trop importante, il y a un risque que l'acier déborde de la lingotière où a lieu sa solidification.
- soit coulés non en continu, mais en lingots dans une lingotière traditionnelle, car ce procédé tolère mieux les possibles effervescences de l'acier: le remplissage de la lingotière peut être interrompu avant son débordement si on constate une forte effervescence, et même les conséquences d'un débordement ne sont jamais graves au point de remettre en cause la marche régulière de l'aciérie ; les lingots sont ensuite laminés à chaud pour former des brames ;
- soit coulés en continu sous forme de brames sur des machines classiques à lingotière sans fond refroidie oscillante à parois fixes, mais après adjonction à l'acier d'une quantité relativement importante d'aluminium pour que ce soit cet élément qui pilote la désoxydation en formant des inclusions d'alumine solides, empêchant ainsi la formation de CO, donc l'effervescence.
- 0,0005% ≤ C ≤ 0,15% ;
- 0,08% ≤ Mn ≤ 2% ;
- Si ≤ 0,040% de préférence ≤ 0,030% ;
- Altotal ≤ 0,010%, de préférence ≤ 0,004% ;
- Alsoluble ≤ 0,004% ;
- 0,0050% ≤ Ototal ≤ 0,0500%, et de préférence ≤ 0,0300% ;
- P ≤ 0,20%, de préférence ≤ 0,03% ;
- S ≤ 0,10%, de préférence ≤ 0,03% ;
- chacun des éléments Cu, Cr, Ni, Mo, W, Co < 1%, de préférence ≤ 0,5% ;
- chacun des éléments Ti, Nb, V, Zr ≤ 0,5%, de préférence ≤ 0,2% ;
- chacun des éléments Sn, Sb, As ≤ 0,1% ;
- B ≤ 0,1 %, de préférence ≤ 0,01 % ;
- N ≤ 0,0400%, de préférence ≤ 0,0150% ;
- on élabore en poche un acier liquide dont les teneurs en C, Mn, Si, Al, P, S, Cu, Cr, Ni, Mo, W, Co, Ti, Nb, V, Zr, Sn, Sb, As, B et N sont conformes à celles citées précédemment, et dont on maintient la teneur en oxygène dissous entre 0,0050 et 0,0500% grâce à l'établissement d'un équilibre chimique entre le métal et le laitier de poche qui le recouvre ;
- et on coule ledit acier sur une machine de coulée continue.
- on élabore et on coule un demi-produit sidérurgique, en utilisant un procédé tel que précédemment décrit
- et on lamine ledit demi-produit sous forme d'une bande.
- l'élaboration de l'acier liquide dans des conditions telles qu'un équilibre entre le métal liquide et le laitier de poche s'établit et impose une teneur en oxygène dissous suffisamment basse pour éviter l'apparition d'une effervescence dans la lingotière de la machine de coulée continue ; cette teneur en oxygène doit être conservée autant que possible entre la poche et la lingotière ;
- la coulée de l'acier sous forme de bandes minces (généralement de 1 à 10 mm d'épaisseur), sur une installation de coulée entre deux cylindres ou entre deux bandes en défilement, qui est plus tolérante qu'une machine de coulée continue classique à lingotière oscillante à parois fixes vis-à-vis d'une effervescence de l'acier ; on peut également utiliser à cet effet une installation de coulée sur une surface en mouvement unique, telle qu'une bande en défilement ou un cylindre en rotation.
- en réglant la composition du laitier dans un domaine adéquat ;
- et en réalisant une agitation du métal liquide (par un procédé connu, tel que l'injection d'un gaz neutre et/ou l'utilisation d'un brasseur électromagnétique) de manière à réaliser un contact intime entre le laitier et le métal qui vient à son contact de manière renouvelée.
- continuer le brassage de l'acier liquide en poche pendant la coulée, de manière à assurer la conservation de l'équilibre métal-laitier dans la poche pendant toute la durée de la coulée ;
- conférer à la poudre de couverture recouvrant l'acier présent dans le répartiteur de la machine de coulée une composition procurant un équilibre métal-laitier permettant de conserver la teneur en oxygène dissous obtenue dans la poche dans les limites recherchées ;
- protéger autant que possible le métal liquide des réoxydations atmosphériques en l'exposant à un gaz non oxydant (argon, hélium, voire azote si on accepte une teneur en azote relativement élevée dans le métal final) jusqu'à son introduction dans la lingotière ; à cet effet on peut réaliser une injection de gaz non oxydant dans les tubes en réfractaire protégeant les jets de coulée entre poche et répartiteur et répartiteur et lingotière, et/ou réaliser un capotage intégral du répartiteur et injecter du gaz non oxydant sous le capot.
Claims (10)
- Produit sidérurgique en acier au carbone, destiné à être galvanisé, caractérisé en ce qu'il se présente sous forme d'une bande ou d'une tôle obtenue à partir d'un demi-produit coulé en continu et formée d'un acier de composition en poids :le reste étant du fer et des impuretés résultant de l'élaboration.0,0005% ≤ C ≤ 0,15% ;0,08% ≤ Mn ≤ 2% ;Si ≤ 0,040%, de préférence ≤ 0,030% ;Altotal ≤ 0,010%, de préférence ≤ 0,004% ;Alsoluble ≤ 0,004% ;0,0050% ≤ Ototal ≤ 0,0500%, et de préférence ≤ 0,0300% ;P ≤ 0,20%, de préférence ≤ 0,03% ;S ≤ 0,10%, de préférence ≤ 0,03% ;chacun des éléments Cu, Cr, Ni, Mo, W, Co ≤ 1%, de préférence ≤ 0,5% ;chacun des éléments Ti, Nb, V, Zr ≤ 0,5%, de préférence ≤ 0,2% ;chacun des éléments Sn, Sb, As ≤ 0,1% ;B ≤ 0,1%, de préférence ≤ 0,01% ;N ≤ 0,0400%, de préférence ≤ 0,0150% ;
- Produit sidérurgique, caractérisé en ce qu'il résulte de la galvanisation du produit selon la revendication 1.
- Procédé pour l'obtention d'un demi-produit sidérurgique, caractérisé en ce que :on élabore en poche un acier liquide dont les teneurs en C, Mn, Si, Al, P, S, Cu, Cr, Ni, Mo, W, Co, Ti, Nb, V, Zr, Sn, Sb, As, B et N sont conformes à celles citées dans la revendication 1, et dont on maintient la teneur en oxygène dissous entre 0,0050 et 0,0500% grâce à l'établissement d'un équilibre chimique entre le métal et le laitier de poche qui le recouvre ;et on coule ledit acier sur une machine de coulée continue.
- Procédé selon la revendication 3, caractérisé en ce que ladite machine de coulée continue est une machine de coulée continue de brames dans une lingotière à parois fixes.
- Procédé selon la revendication 3, caractérisé en ce que ladite machine de coulée continue est une machine de coulée continue de bandes minces dans une lingotière à une ou plusieurs parois mobiles accompagnant le produit en cours de solidification.
- Procédé selon la revendication 5, caractérisé en ce que ladite machine est une coulée continue entre cylindres.
- Procédé d'obtention d'un produit sidérurgique selon la revendication 1, caractérisé en ce que :on élabore et on coule un demi-produit sidérurgique, en utilisant un procédé selon la revendication 3 ou 4et on lamine ledit demi-produit sous forme d'une bande.
- Procédé d'obtention d'un produit sidérurgique selon la revendication 1, caractérisé en ce qu'on élabore et on coule un demi-produit sidérurgique sous forme d'une bande, en utilisant un procédé selon la revendication 5 ou 6.
- Procédé selon la revendication 8, caractérisé en ce qu'on lamine ladite bande.
- Procédé d'obtention d'un produit sidérurgique, caractérisé en ce qu'on élabore une bande par le procédé selon l'une des revendications 7 à 9, et en ce qu'on effectue une galvanisation de ladite bande.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR0116831A FR2833970B1 (fr) | 2001-12-24 | 2001-12-24 | Demi-produit siderurgique en acier au carbone et ses procedes de realisation, et produit siderurgique obtenu a partir de ce demi-produit, notamment destine a la galvanisation |
| FR0116831 | 2001-12-24 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP1323837A1 true EP1323837A1 (fr) | 2003-07-02 |
| EP1323837B1 EP1323837B1 (fr) | 2011-10-05 |
Family
ID=8870960
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP02293146A Expired - Lifetime EP1323837B1 (fr) | 2001-12-24 | 2002-12-18 | Procédé de réalisation d'un produit sidérurgique en acier au carbone, notamment destiné à la galvanisation. |
Country Status (8)
| Country | Link |
|---|---|
| US (1) | US7374623B2 (fr) |
| EP (1) | EP1323837B1 (fr) |
| JP (1) | JP4323166B2 (fr) |
| KR (1) | KR100943014B1 (fr) |
| AT (1) | ATE527386T1 (fr) |
| AU (1) | AU2002318875B2 (fr) |
| CA (1) | CA2415244C (fr) |
| FR (1) | FR2833970B1 (fr) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2006088223A1 (fr) | 2005-02-18 | 2006-08-24 | Nippon Steel Corporation | Procédé de fabrication d’une feuille en acier à teneur extrêmement faible en carbone et objet moulé à teneur extrêmement faible en carbone présentant d’excellentes propriétés de surface, d’aptitude au façonnage et d'aptitude au |
| RU2299262C1 (ru) * | 2006-03-02 | 2007-05-20 | Юлия Алексеевна Щепочкина | Сталь |
| WO2012104306A1 (fr) * | 2011-01-31 | 2012-08-09 | Tata Steel Ijmuiden Bv | Procédé de fabrication d'acier à résistance élevée et acier fabriqué au moyen dudit procédé |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20080264525A1 (en) * | 2004-03-22 | 2008-10-30 | Nucor Corporation | High copper low alloy steel sheet |
| US20100158746A1 (en) * | 2006-02-16 | 2010-06-24 | Katsuhiro Sasai | Extremely Low Carbon Steel Plate Excellent in Surface Characteristics, Workability, and Formability and a Method of Producing Extremely Low Carbon Cast Slab |
| KR101008117B1 (ko) * | 2008-05-19 | 2011-01-13 | 주식회사 포스코 | 표면특성이 우수한 고가공용 고강도 박강판 및용융아연도금강판과 그 제조방법 |
| KR101027250B1 (ko) * | 2008-05-20 | 2011-04-06 | 주식회사 포스코 | 고연성 및 내지연파괴 특성이 우수한 고강도 냉연강판,용융아연 도금강판 및 그 제조방법 |
| CN102575308A (zh) * | 2009-07-30 | 2012-07-11 | 塔塔钢铁艾默伊登有限责任公司 | 生产超低碳钢板坯、带材或片材的过程 |
| KR101318382B1 (ko) * | 2010-12-27 | 2013-10-15 | 주식회사 포스코 | 표면 결함이 없는 법랑용 강판 및 그 제조방법 |
| CN103305770B (zh) * | 2012-03-14 | 2015-12-09 | 宝山钢铁股份有限公司 | 一种薄带连铸550MPa级高强耐大气腐蚀钢带的制造方法 |
| CN103305759B (zh) * | 2012-03-14 | 2014-10-29 | 宝山钢铁股份有限公司 | 一种薄带连铸700MPa级高强耐候钢制造方法 |
| CN103302255B (zh) * | 2012-03-14 | 2015-10-28 | 宝山钢铁股份有限公司 | 一种薄带连铸700MPa级高强耐大气腐蚀钢制造方法 |
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| US3793000A (en) * | 1972-06-12 | 1974-02-19 | Nat Steel Corp | Process for preparing killed low carbon steel and continuously casting the same, and the solidified steel shapes thus produced |
| US4073643A (en) * | 1973-05-29 | 1978-02-14 | Nippon Steel Corporation | Continuously cast steel slabs for steel sheets having excellent workabilities and method for production thereof |
| US4014683A (en) * | 1974-12-23 | 1977-03-29 | National Steel Corporation | Method of making Drawing Quality steel |
| JPS52128821A (en) * | 1976-04-12 | 1977-10-28 | Nippon Steel Corp | Preparation of high tensile steel having superior low temperature toughness and yield point above 40 kg/pp2 |
| JPS61249651A (ja) | 1985-04-30 | 1986-11-06 | Kawasaki Steel Corp | 未脱酸溶鋼の連続鋳造方法 |
| JPS61288016A (ja) * | 1985-06-13 | 1986-12-18 | Nisshin Steel Co Ltd | 浸炭焼入れ性の優れた低炭素熱延鋼板の製造方法 |
| US4746361A (en) * | 1987-04-03 | 1988-05-24 | Inland Steel Company | Controlling dissolved oxygen content in molten steel |
| CA1296505C (fr) * | 1987-05-06 | 1992-03-03 | R. Guthrie Research Associates Inc. | Coulee en continu de fines bandes metalliques |
| JPH0742513B2 (ja) * | 1989-03-14 | 1995-05-10 | 新日本製鐵株式会社 | オーステナイト系ステンレス鋼薄板の製造方法 |
| JPH07266005A (ja) * | 1994-03-31 | 1995-10-17 | Nippon Steel Corp | 同期型ベルト式連続鋳造法による溶接熱影響部靭性の優れた鋼の製造方法 |
| FR2767078B1 (fr) * | 1997-08-07 | 1999-10-22 | Lorraine Laminage | Procede d'elaboration d'une tole mince en acier a ultra bas carbone pour la realisation de produits emboutis pour emballage et tole mince obtenue |
| JP3828720B2 (ja) | 2000-06-07 | 2006-10-04 | 新日本製鐵株式会社 | 成形性の優れた鋼管およびその製造方法 |
| UA76140C2 (en) * | 2001-04-02 | 2006-07-17 | Nucor Corp | A method for ladle refining of steel |
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2001
- 2001-12-24 FR FR0116831A patent/FR2833970B1/fr not_active Expired - Fee Related
-
2002
- 2002-12-18 CA CA2415244A patent/CA2415244C/fr not_active Expired - Fee Related
- 2002-12-18 AT AT02293146T patent/ATE527386T1/de not_active IP Right Cessation
- 2002-12-18 EP EP02293146A patent/EP1323837B1/fr not_active Expired - Lifetime
- 2002-12-18 AU AU2002318875A patent/AU2002318875B2/en not_active Ceased
- 2002-12-19 JP JP2002367812A patent/JP4323166B2/ja not_active Expired - Fee Related
- 2002-12-20 US US10/323,886 patent/US7374623B2/en not_active Expired - Lifetime
- 2002-12-23 KR KR1020020082563A patent/KR100943014B1/ko not_active Expired - Fee Related
Patent Citations (7)
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| US3988174A (en) * | 1972-04-03 | 1976-10-26 | Nippon Steel Corporation | Hot rolled steel sheet having excellent workability and method thereof |
| US4024624A (en) * | 1976-03-31 | 1977-05-24 | United States Steel Corporation | Continuous casting method for the production of rolled low carbon steel products with improved formability |
| US5460665A (en) * | 1991-10-29 | 1995-10-24 | Kawasaki Steel Corporation | Method of manufacturing a low-alloy ultra-low-carbon cold anisotropy rolled steel sheet exhibiting an excellent resistance to fabrication embrittlement and small internal anisotropy |
| EP0578221A1 (fr) * | 1992-07-08 | 1994-01-12 | Nkk Corporation | Rôle d'acier, résistant à la formation de soufflures et procédé pour sa fabrication |
| EP0785283A1 (fr) * | 1996-01-19 | 1997-07-23 | Kawasaki Steel Corporation | Procédé de production d'un acier à pourcentage ultra-bas de carbon |
| EP0792942A1 (fr) * | 1996-02-29 | 1997-09-03 | Kawasaki Steel Corporation | Acier, tÔle d'acier ayant une excellente usinabilité et sa méthode de fabrication par procédé de four électrique et dégazage sous vide |
| EP0906960A1 (fr) * | 1997-09-29 | 1999-04-07 | Kawasaki Steel Corporation | Acier calmé par la titane et procédé pour sa fabrication |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2006088223A1 (fr) | 2005-02-18 | 2006-08-24 | Nippon Steel Corporation | Procédé de fabrication d’une feuille en acier à teneur extrêmement faible en carbone et objet moulé à teneur extrêmement faible en carbone présentant d’excellentes propriétés de surface, d’aptitude au façonnage et d'aptitude au |
| EP1852514A4 (fr) * | 2005-02-18 | 2009-11-11 | Nippon Steel Corp | Procédé de fabrication d une feuille en acier à teneur extrêmement faible en carbone et objet moulé à teneur extrêmement faible en carbone présentant d excellentes propriétés de surface, d aptitude au façonnage et d'aptitude au |
| RU2299262C1 (ru) * | 2006-03-02 | 2007-05-20 | Юлия Алексеевна Щепочкина | Сталь |
| WO2012104306A1 (fr) * | 2011-01-31 | 2012-08-09 | Tata Steel Ijmuiden Bv | Procédé de fabrication d'acier à résistance élevée et acier fabriqué au moyen dudit procédé |
Also Published As
| Publication number | Publication date |
|---|---|
| JP2003247044A (ja) | 2003-09-05 |
| FR2833970A1 (fr) | 2003-06-27 |
| CA2415244A1 (fr) | 2003-06-24 |
| KR100943014B1 (ko) | 2010-02-18 |
| US20030116232A1 (en) | 2003-06-26 |
| ATE527386T1 (de) | 2011-10-15 |
| KR20030055126A (ko) | 2003-07-02 |
| FR2833970B1 (fr) | 2004-10-15 |
| JP4323166B2 (ja) | 2009-09-02 |
| AU2002318875B2 (en) | 2007-10-25 |
| CA2415244C (fr) | 2010-12-14 |
| EP1323837B1 (fr) | 2011-10-05 |
| US7374623B2 (en) | 2008-05-20 |
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