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EP 0 341 798 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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02.01.1992 Bulletin 1992/01 |
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Date of filing: 09.05.1989 |
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Plug for use in a steel converter to minimize tapping off of slag
Abstichstopfen für einen Stahlkonverter, um das Mitlaufen von Abstichschlacke zu vermeiden
Bouchon pour utilisation dans un convertisseur d'acier, afin de minimiser l'écoulement
de laitier
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Designated Contracting States: |
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BE DE ES FR GB LU NL |
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Priority: |
11.05.1988 NL 8801231
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Date of publication of application: |
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15.11.1989 Bulletin 1989/46 |
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Proprietor: HOOGOVENS GROEP B.V. |
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NL-1970 CA IJmuiden (NL) |
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Inventor: |
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- Trentelman, Jozef Gerard Maria
NL-1701 VL Heerhugowaard (NL)
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Representative: Van Breda, Jacobus, Mr. Ir. et al |
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HOOGOVENS GROEP BV
P.O. Box 10.000 1970 CA IJmuiden 1970 CA IJmuiden (NL) |
| (56) |
References cited: :
EP-A- 0 094 241
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EP-A- 0 128 576
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- INJECTION METALLURGY, vol. 214, May 1986, pages 228,232,234; S.C. McPHERSON: "Ladle
metallurgy and clean steel production"
- PATENT ABSTRACTS OF JAPAN, vol. 8, no. 138 (C-231)[1575], 27th June 1984, page 26
C 231; & JP-A-59 47 314 (SHIN NIPPON SEITETSU K.K.) 17-03-1984
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] The invention relates to a plug of refractory material for use in a steel converter
to minimize tapping off of slag from the converter, and also to a method of tapping
a steel converter using such a plug.
[0002] Counteracting the slag which comes out at the end of tapping the steel from the converter,
known as the end slag, is a long-standing problem. Various methods are known for tackling
this problem.
[0003] The simplest method is to observe the flow of steel and to stop tapping at the first
appearance of slag.
[0004] Another method is to use a spherical ball which is introduced into the converter
before tapping. The specific gravity of the ball is such that it floats on the steel
but not on the slag. When the slag threatens to emerge, the ball closes the opening
of the tap hole of the converter. A disadvantage of this method, however, is that
this closing frequently occurs so early that much steel still remains behind in the
converter. This is undesirable. For this reason, plugs are used which are not spherical,
but for example take the shape of a cube. This kind of plug does not close the tap
hole completely. The remaining steel may still run out of the converter, but at a
lower velocity. At the point when slag threatens to emerge, tapping off is stopped.
The article "Ladle metallurgy and clean steel production", S.C. McPherson, "Steel
Times", vol. 214, 1986-5 (May), page 220 etc. illustrates such spherical and cubic
plugs. EP-A-94241 describes a cubic plug for the same purpose.
[0005] When the cubic plug is positioned well, its use provides better control because of
the reduced tapping velocity at the end of tapping. However, non-spherical plugs of
this kind require very accurate positioning in the converter because they do not automatically
find the tap hole at the end of tapping. This is because, in contrast to spherical
plugs, their ability to roll is insufficient. As a result the closing of the tap hole
is sometimes so poor that the flow of end slag is insufficiently counteracted. With
non-spherical plugs, improvement in the probability of achieving a good closing off
is sought by providing them with a long shank which is introduced into the tap hole
of the converter. This holds the plug at the desired place so that the probability
of accurate positioning is equivalent to that of the spherical plug. However, positioning
the plug with a shank is considerably harder than positioning the spherical plug.
[0006] The object of the invention is to provide a plug which avoids the defects of the
spherical plug and the cubic plugs described above, as well as those of the plugs
with a shank. The plug of the invention given is claim 1 is of the shankless type
and has a polyhedral shape with a plurality of generally flat faces. Each face joins
at least one adjacent face at an obtuse angle. In some embodiments at least one end
point of each intersecting line of two adjacent faces lies on an imaginary sphere
enveloping the plug. This plug does not close the tap hole completely so that towards
the end of tapping the flow of steel is reduced but not completely blocked. Moreover,
this plug has sufficient ability to roll so that it does not need to be provided with
a shank for positioning at the tap hole. As a result using the plug in accordance
with the invention is as simple as using the known spherical plug, a method of tapping
a steel converter using the plug of claim 1 being given in claim 7.
[0007] A preferred shape of the plug is one in which it has symmetrical upper and lower
halves meeting at a common plane which has a larger area than any parallel sections
of the upper and lower halves. The plug then fits releasably in the mould in which
it is cast and can be removed from it without its shape being lost. In view of the
large number of plugs needed in practice (per converter charge one plug is consumed),
this represents an important cost advantage.
[0008] In practice a simple embodiment has been found to be a plug of which the common plane
between the lower and upper halves has essentially a rectangular e.g. square shape.
It is particularly desirable that the plug has a top plane and a base plane which
are parallel to the said common plane of the lower and upper halves.
[0009] Embodiments of the invention will be described by way of non-limitative example with
reference to the drawings, in which:
Fig. 1 shows a first embodiment of the plug in accordance with the invention; and
Fig. 2 shows a further embodiment of the plug in accordance with the invention.
[0010] The plugs shown in Figs. 1 and 2 consist essentially of refractory material of appropriate
density to float at the steel slag interface. This may be for example a suitable type
of refractory concrete.
[0011] Fig. 1 shows an embodiment in which the plug has fourteen flat faces, of which six
large faces 5 intersect each other at 90° and eight small triangular faces 6 form
bevels at the corners. There are thus twenty four angles, each angle being the meeting
point for three intersecting meeting lines of the faces. For example angle 1 is formed
by the intersecting lines 2, 3 and 4. The plug may be lifted or tipped into a converter
using an eye 7. Each of the faces 6 intersects each of the three adjacent larger faces
5 at an obtuse angle. The shape of the plug enables it to roll easily to lodge in
the taphole of the steel converter.
[0012] Fig. 2 shows a further improved plug with edges bevelled off more. The shape of this
plug reduces the risk of the angles crumbling away and improves its ability to roll.
[0013] In this case the plug is a body of polyhedral shape having a rectangular central
plane of symmetry 10 and mutually symmetrical upper and lower halves 8, 9 on each
side of this central plane. Each half 8, 9 has four large planar faces 8a, 9a meeting
the central plane of symmetry 10 and extending away from it at an angle less than
90°, specifically 75° and a planar end face 11, 12 meeting all the first planar faces
8a, 9a and lying parallel to the central plane of symmetry 10. At each meeting point
of two of the first planar faces 8a, 9a and one of the second planar faces 11, 12
there is a small bevel face 13 at an obtuse angle to all three adjoining faces. There
are rounded surfaces 14 at meeting zones of each adjacent pair of the first planar
faces 8a, 9a.
[0014] Both the lower half 8 and the upper half 9 have a tapering shape. This has the advantage
that the mould or die which is used for making the plug may be re-used. This reduces
the production costs of the plug to a significant degree.
[0015] To give an example of dimensions, the plugs illustrated are each 205 mm high and
have maximum widths of 205 mm.
1. A plug of refractory material for use in a steel converter to minimize tapping
off of slag, the plug having a polyhedral shape and being shankless, characterized
in that the plug surface consists of a plurality of generally flat faces (5, 6; 8a,
9a, 11, 12, 13) lying in respective planes with the planes of every adjacent pair
of faces intersecting at angles not less than 90° and the plane of each face intersecting
the plane of at least one adjacent face at an angle greater than 90°.
2. A plug according to claim 1 wherein the planes of every adjacent pair of said faces
intersect at angles greater than 90°.
3. A plug according to claim 1 or claim 2 having mutually symmetrical upper and lower
halves (8, 9) meeting at a common plane which has a larger area than any section of
the upper and lower halves parallel to it.
4. A plug according to claim 3 wherein said common plane (10) of the upper and lower
halves (8, 9) has substantially a rectangular shape.
5. A plug according to claim 3 or claim 4 having a top face (11) and a bottom face
(12) both parallel to said common plane.
6. A plug according to any one of claims 3 to 5 wherein at least some of the meeting
zones (14) of adjacent faces are rounded.
7. A method of tapping a steel converter comprising the steps of (i) placing a plug
according to any one of claims 1 to 6 in the molten bath in the converter, the plug
having a density such that it floats at the interface of steel and slag and (ii) tapping
the steel from the furnace via a taphole in a manner such that the plug lodges in
the taphole.
1. Ein Abstichstopfen aus Feuerfestmaterial für einen Stahlkonverter zum Minimieren
des Mitabziehens von Schlacke, welcher Abstichstopfen eine polyedrische Gestalt besitzt
und schaftlos ist, dadurch gekennzeichnet, daß die Stopfenoberfläche aus einer Vielzahl
von allgemein ebenen Flächen (5, 6; 8a, 9a, 11, 12, 13) besteht, welche in entsprechenden
Ebenen liegen, wobei sich die Ebenen Jedes benachbarten Flächenpaares unter einem
Winkel von nicht unter 90° schneiden und die Ebene jeder Fläche die Ebene von zumindest
einer benachbarten Fläche unter einem Winkel größer als 90° schneidet.
2. Ein Abstichstopfen gemäß Anspruch 1, wobei sich die Ebenen jedes benachbarten Flächenpaares
unter einem Winkel größer als 90° schneiden.
3. Ein Abstichstopfen gemäß Anspruch 1 oder Anspruch 2 mit gegenseitig symmetrischer
oberer und unterer Hälfte (8, 9), welche sich in einer gemeinsamen Ebene treffen,
welche eine größere Fläche besitzt, als irgendein Schnitt der oberen und unteren Hälfte
parallel zu ihr.
4. Ein Abstichstopfen gemäß Anspruch 3, wobei die der oberen und der unteren Hälfte
(8, 9) gemeinsame Ebene (10) eine im wesentlichen rechteckige Form hat.
5. Ein Abstichstopfen gemäß Anspruch 3 oder Anspruch 4 mit einer oberen Fläche (11)
und einer unteren Fläche (12), die beide parallel zu der gemeinsamen Ebene liegen.
6. Ein Abstichstopfen gemäß irgendeinem der Ansprüche 3 bis 5, wobei zumindest einige
der zusammentreffenden Zonen (14) benachbarter Flächen gerundet sind.
7. Ein Verfahren zum Abstechen eines Stahlkonverters mit den Schritten (i) Anordnen
eines Abstichstopfens gemäß irgendeinem der Ansprüche 1 bis 6 in das Schmelzbad im
Konverter, wobei der Abstichstopfen eine solche Dichte hat, daß er an der Grenzfläche
von Stahl und Schlacke schwimmt und (ii) Abstechen des Stahles vom Schmelzofen über
ein Abstichloch in der Art, daß sich der Abstichstopfen im Abstichloch festsetzt.
1. Bouchon en matériau réfractaire pour l'utilisation dans un convertisseur d'acier
afin de minimiser l'écoulement du laitier, le bouchon ayant une forme polyhédrique
et ne comportant pas de tige, caractérisé en ce que la surface du bouchon se compose
d'une pluralité de surfaces globalement planes (5, 6; 8a, 9a, 11, 12, 13) se trouvant
dans des plans respectifs, les plans de chaque paire de faces adjacente se coupant
selon des angles qui ne sont pas inférieurs à 90°, et le plan de chaque face coupant
le plan d'au moins une face adjacente à un angle supérieur à 90°.
2. Bouchon selon la revendication 1, dans lequel les plans de chaque paire adjacente
desdites faces se coupent à des angles supérieurs à 90°.
3. Bouchon selon la revendication 1 ou la revendication 2, ayant des moitiés supérieure
et inférieure (8, 9) symétriques l'une par rapport à l'autre qui se rencontrent en
un plan commun qui a une surface plus grande que toute section des moitiés supérieure
et inférieure parallèle à celui-ci.
4. Bouchon selon la revendication 3, dans lequel ledit plan commun (10) des moitiés
supérieure et inférieure (8, 9) a substantiellement une forme rectangulaire.
5. Bouchon selon la revendication 3 ou la revendication 4, ayant une face supérieure
(11) et une face inférieure (12) qui sont toutes deux parallèles audit plan commun.
6. Bouchon selon l'une quelconque des revendications 3 à 5, dans lequel au moins certaines
des zones de rencontre (14) des faces adjacentes sont arrondies.
7. Procédé pour vider un convertisseur d'acier, comportant les étapes suivantes:
(i) placement d'un bouchon selon l'une quelconque des revendications 1 à 6 dans le
bain fondu dans le convertisseur, le bouchon ayant une densité telle qu'il flotte
à l'interface entre l'acier et le laitier, et
(ii) évacuation de l'acier à partir du four par un trou de coulée d'une façon telle
que le bouchon se loge dans le trou de coulée.

