EP0084366B2 - Coke oven chamber door - Google Patents

Coke oven chamber door Download PDF

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Publication number
EP0084366B2
EP0084366B2 EP83100326A EP83100326A EP0084366B2 EP 0084366 B2 EP0084366 B2 EP 0084366B2 EP 83100326 A EP83100326 A EP 83100326A EP 83100326 A EP83100326 A EP 83100326A EP 0084366 B2 EP0084366 B2 EP 0084366B2
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EP
European Patent Office
Prior art keywords
door
coke oven
steel plate
steel plates
plug
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.)
Expired
Application number
EP83100326A
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German (de)
French (fr)
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EP0084366B1 (en
EP0084366A1 (en
Inventor
Wilhelm Dr Ing. Stewen
Peter Pape
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
STEWEN, WILHELM, DR.-ING.
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Stewen Wilhelm Dr-Ing
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Application filed by Stewen Wilhelm Dr-Ing filed Critical Stewen Wilhelm Dr-Ing
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    • CCHEMISTRY; METALLURGY
    • C10PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
    • C10BDESTRUCTIVE DISTILLATION OF CARBONACEOUS MATERIALS FOR PRODUCTION OF GAS, COKE, TAR, OR SIMILAR MATERIALS
    • C10B25/00Doors or closures for coke ovens
    • C10B25/02Doors; Door frames
    • C10B25/06Doors; Door frames for ovens with horizontal chambers

Definitions

  • the invention relates to a coke oven chamber door with a heat-resistant stopper, which consists of an outer door body plate and inner steel plates which are slidably arranged for thermal insulation at one end.
  • a heat-resistant stopper which consists of an outer door body plate and inner steel plates which are slidably arranged for thermal insulation at one end.
  • Such furnace chamber doors are used in particular for coke ovens, the furnace chamber walls of which are provided with heating trains which, compared to the design in flame furnaces with quenched furnace filling and moved back first heating trains, have heating trains moved forward and a mechanical leveling of the furnace filling.
  • the refractory stopper not only serves to reduce the heat emission of the door plate, which is usually made of cast iron, to the extent that the door body constructions cannot bend, but the stopper is also intended to withstand the preheating stress caused by the laying of the first heating cables Reduce the furnace, namely the furnace heads and in particular the anchor positions located there, by keeping the glowing coke furnace far back.
  • the stopper is made of refractory material, e.g. B. in the form of a resting on a lower stone holder and held by lateral stone holders, or made of molded blocks that are screwed to the door body plate, for example.
  • the first heating draft of the chamber walls is usually behind an outward-facing wall made of preferably semi-acidic stones, the outside of which is supported on the anchor stands by a layer of heat-insulating material and carries the usually interchangeable door frame.
  • the inside of the refractory stopper material protrudes into the furnace chamber up to the first heating draft.
  • the sealing joint is removed from the heat of the first heating train and the coke cake.
  • the thermal expansion of the coating that occurs during the coking process can be compensated for by using metal plates as the coating. In this way, the footprint of the door plug becomes a heating surface and can result in a better cooking of the head parts of the stove.
  • An air or gas cushion can be formed between the door plugs and the steel plates.
  • the poor thermal conductivity of this closed air or gas space can be used excellently for thermal insulation.
  • the distance between the door body and steel plates can be varied depending on the permissible surface temperature of the door body.
  • the steel plates are stiffened in a T-shape and are located one above the other at the ends. The steel plates can freely expand at these ends.
  • the steel plates should not be longer than 1 m in the case of 4 m high furnaces, the steel plate length decreasing by one tenth of the change in height with each increase in the furnace height. For a 7 m furnace, this would result in a maximum length of steel plates of 0.7 m.
  • the operational availability of this door system is much lower than with conventional door plugs due to recurring faults. The damage is concentrated on the lower plate area.
  • the invention has for its object to adapt such door plugs to the rough coking plant.
  • the invention is based on the idea that the cause of the various damage is the fact that when the door is pulled off - in particular in the manually controlled sequence - the doors are partially pulled off and subsequently lowered, so that the bottom steel plate rests on the sole touches down. At this point, the entire weight rests on the steel plate, which is then strongly deformed together with its holder. In the further work process, the door is pulled forward, the lowest steel plate then slides over the sole and comes in front of the door frame, which is higher than the sole. As a result, the bottom plate is bent forward and torn out of the holder.
  • the lowest steel plate has a fixed point at the lower end and is slidably mounted at the upper end for thermal expansion.
  • Another advantage is the double function of the upper bracket for the lowest steel plate. According to the original concept, this bracket forms a longitudinally movable bearing for the steel plate above. According to the invention, this bracket also forms a longitudinally displaceable bearing for the lowest steel plate.
  • a common movable bearing is provided for two adjacent steel plates.
  • the ends of the steel plates facing away from the displaceable mounting have common holders with the adjoining steel plates, so that two steel plates are locked to each of these holders.
  • the top steel plate of the oven door is possibly using separate brackets and Slidable bearings arranged so that the steel plate end located at the top of the door is locked and the thermal expansion of the steel plate or the associated change in length affects down. All steel plates are arranged so that the lower end of each upper steel plate overlaps the upper end of an underlying steel plate.
  • the known coke oven chamber door is provided with a door body 1.
  • a plug 2 is located on the door body 1.
  • the coke oven chamber door closes an interchangeable door frame of a coke oven.
  • the interchangeable door frame usually sits in the top of the coke oven chamber walls, which are equipped with heating cables.
  • the coke oven chamber door projects with the stopper 2 into the coke oven chamber, while the door head 1 lies against the outside of the door frame.
  • sealing strips not shown, provide an adequate seal.
  • the sealing strips consist, for example, of profiled iron.
  • the stopper 2 forms a hollow body and, as a hollow body, a gas collecting space through which the gas resulting from the coking can rise to a gas collecting space arranged in the head of the coke oven or to a riser pipe in the ceiling area of the coke oven.
  • the plug 2 is composed of a number of sections, of which the sections 3 and 4 are shown in FIGS. 1 and 2. Each section 3 and 4 has a steel plate 5. The individual steel plates 5 overlap, from top to bottom so that the lower end of an upper steel plate 5 overlaps the upper end of a subsequent lower steel plate 5.
  • the steel plates 5 are provided with tabs at each end.
  • the tabs on the upper steel sheet end serve to lock the associated steel sheet end, while the tabs on the lower steel sheet end are intended to enable longitudinally displaceable storage for thermal expansion of the sheets downwards.
  • the tab of section 4 at the lower end of sheet steel is designated by 6, that at the upper end of section 3 by 7 and that at the lower end of section 3 by 8.
  • the tab 6 is guided with bolts 9 in the tab 7 so as to be longitudinally displaceable. For this purpose, there is a sufficient section for the thermal expansion of the steel sheet 5 of section 4 between the tabs 6 and 7.
  • the tab 7 is in turn on a bracket 10 attached to the door body 1. Between the bracket 10 and the tab 7 there is a schematically indicated bolt or screw connection which defines the upper end of section 3. The same arrangement exists at the upper end of section 4. At the lower end of section 3, a bracket 11 enables longitudinally displaceable storage for thermal expansion. The bracket 11 is fastened to the door frame and guides the lower end of the section 3 with a bolt 12 which is displaceable longitudinally in the bracket 8.
  • the cavity existing between the steel plates 5 and the door body 1 forms a vertical gas collection space, via which the gaseous coking products are advantageously derived and fed to the upper gas collection tube and the riser tube. Due to the resulting favorable gas pressure conditions, the pressure structure on the door frame or on the coke oven door as a whole is so favorable to the respective outer atmosphere that emissions on the coke oven doors are prevented with conventional sealing strips.
  • the steel plates 5 have a high thermal conductivity.
  • the high thermal conductivity also results in the supply of heat via the steel plates 5. This effect allows the plate to protrude less than 100 mm into the furnace chamber. This is equivalent to an increase in the usable oven volume while the head sections are cooked consistently.
  • the coke oven chamber door according to FIGS. 4 to 7 differs from the coke oven chamber door according to FIGS. 1 to 3 both by a different suspension of the sections 3 and 4 in the connecting area 13 and by a different arrangement at the foot of the plug 2.
  • the latter area is marked with 14.
  • the tab 7 is provided at the connection point with the bracket 10 with an elongated hole 15, which enables a thermal expansion of the steel plate 5 in the longitudinal direction of the door within the scope of section 3.
  • the connection between the tab 7 and the bracket 10 is made by a bolt arranged in the bracket 10 and shown schematically, which slides in the slot 15.
  • the console 16 extends essentially to the steel plate 5 of section 3 and is connected to a slide shoe 17 on the underside.
  • section 3 is stiffened with the bracket 16 and is additionally protected against damage by the sliding shoe 17. In this way it is achieved that neither damage to the door structure nor to the frame or the sole stones can occur when inserting the door, regardless of the operation of the door operating machines.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Organic Chemistry (AREA)
  • Coke Industry (AREA)

Description

Die Erfindung betrifft eine Koksofenkammertür mit einem hitzebeständigen Stopfen, der aus einer außenliegenden Türkörperplatte und innenliegenden Stahlplatten besteht, die zur Wärmedämmung mit einem Ende verschiebbar angeordnet sind. Derartige Ofenkammertüren dienen insbesondere für Koksöfen, deren Ofenkammerwände mit Heizzügen versehen sind, welche gegenüber der Bauart in Flammenöfen mit abgeschreckter Ofenfüllung und zurückverlegten ersten Heizzügen vorverlegte Heizzüge und eine maschinelle Planierung der Ofenfüllung aufweisen. Bei den hierfür bestimmten Kammertüren dient der feuerfeste Stopfen nicht nur dazu, die Wärmeabgabe der zumeist aus Gußeisen bestehenden Türplatte nach außen soweit zu vermindern, daß die Türkörperkonstruktionen sich nicht verbiegen können, sondern der Stopfen soll auch die durch die Verlegung der ersten Heizzüge bedingte Vorwärmebeanspruchung des Ofens, nämlich der Ofenköpfe und insbesondere der dort liegenden Ankerstände dadurch reduzieren, daß er den glühenden Koksofen entsprechend weit zurückhält.The invention relates to a coke oven chamber door with a heat-resistant stopper, which consists of an outer door body plate and inner steel plates which are slidably arranged for thermal insulation at one end. Such furnace chamber doors are used in particular for coke ovens, the furnace chamber walls of which are provided with heating trains which, compared to the design in flame furnaces with quenched furnace filling and moved back first heating trains, have heating trains moved forward and a mechanical leveling of the furnace filling. With the chamber doors intended for this purpose, the refractory stopper not only serves to reduce the heat emission of the door plate, which is usually made of cast iron, to the extent that the door body constructions cannot bend, but the stopper is also intended to withstand the preheating stress caused by the laying of the first heating cables Reduce the furnace, namely the furnace heads and in particular the anchor positions located there, by keeping the glowing coke furnace far back.

Bei bekannten Koksofentürkonstruktionen für derartige Koksöfen besteht der Stopfen aus feuerfestem Material, z. B. in Form einer auf einem unteren Steinhalter ruhenden und von seitlichen Steinhaltern festgehaltenen Aufmauerung oder aus Formsteinen, die mit der Türkörperplatte beispielsweise verschraubt sind. Der jeweils erste Heizzug der Kammerwände liegt zumeist hinter einer nach außen weisenden Mauerung aus vorzugsweise halbsauren Steinen, deren Außenseite über eine Schicht aus wärmedämmendem Werkstoff auf den Ankerständen abgestützt ist und den in der Regel auswechselbaren Türrahmen trägt. Die Innenseite des feuerfesten Stopfenmaterials steht bei geschlossener Türe bis zum ersten Heizzug in die Ofenkammer vor. Dadurch ist die Dichtungsfuge der Wärmeeinwirkung des ersten Heizzuges und des Kokskuchens entzogen. Zur Beschleunigung der Ausgarung der Kopfpartien des Koksofens und demzufolge zur Vergleichmäßigung des Kokskuchens ist 4 nach der DE-OS 3 000 161 vorgeschlagen worden, den Stopfen an seiner Ofenseite mit einem Belag zu versehen, der gegenüber dem Stopfenwerkstoff eine höhere Wärmeleitfähigkeit aufweist. Durch den Belag werden die Gesamtabmessungen des Türstopfens nicht verändert, so daß der Türstopfen ohne Belag um die in der gleichen Richtung liegende Belagstärke reduziert ist.In known coke oven door constructions for such coke ovens, the stopper is made of refractory material, e.g. B. in the form of a resting on a lower stone holder and held by lateral stone holders, or made of molded blocks that are screwed to the door body plate, for example. The first heating draft of the chamber walls is usually behind an outward-facing wall made of preferably semi-acidic stones, the outside of which is supported on the anchor stands by a layer of heat-insulating material and carries the usually interchangeable door frame. When the door is closed, the inside of the refractory stopper material protrudes into the furnace chamber up to the first heating draft. As a result, the sealing joint is removed from the heat of the first heating train and the coke cake. In order to accelerate the cooking of the head parts of the coke oven and consequently to make the coke cake more uniform, 4 has been proposed according to DE-OS 3 000 161 to provide the stopper on its oven side with a coating which has a higher thermal conductivity than the stopper material. The overall dimensions of the door plug are not changed by the covering, so that the door plug without a covering is reduced by the covering thickness lying in the same direction.

Die während des Verkokungsvorganges auftretende Wärmedehnung des Belages läßt sich durch Verwendung von Metallplatten als Belag kompensieren. Auf diese Weise wird die Standfläche des Türstopfens zur Heizfläche, und kann eine bessere Ausgarung der Kopfpartien des Ofenbesatzes bewirken.The thermal expansion of the coating that occurs during the coking process can be compensated for by using metal plates as the coating. In this way, the footprint of the door plug becomes a heating surface and can result in a better cooking of the head parts of the stove.

Zwischen den Türstopfen und den Stahlplatten kann ein Luft- bzw. Gaspolster gebildet werden. Die schlechte Wärmeleitfähigkeit dieses abgeschlossenen Luft- oder Gasraumes läßt sich zur Wärmedämmung hervorragend nutzen. Der Abstand zwischen Türkörper und Stahlplatten kann je nach der zulässigen Oberflächentemperatur des Türkörpers variiert werden. Die Stahlplatten sind nach einer bekannten Ausführungsform T-förmig versteift und liegen an den Enden nach unten gerichtet übereinander. An diesen Enden können sich die Stahlplatten frei dehnen. Die Stahlplatten sollen bei 4 m hohen Öfen nicht länger als 1 m sein, wobei sich die Stahlplattenlänge mit jeder Vergrößerung der Ofenhöhe um ein Zehntel der Höhenänderung vermindert. Bei einem 7-m-Ofen würden sich daraus Stahlplattenlängen von maximal 0,7 m ergeben. Die betriebliche Verfügbarkeit dieses Türsystems ist durch immer wieder auftretende Störungen weitaus geringer als bei konventionelle Türstopfen. Dabei konzentrieren sich die Schäden auf den unteren Plattenbereich.An air or gas cushion can be formed between the door plugs and the steel plates. The poor thermal conductivity of this closed air or gas space can be used excellently for thermal insulation. The distance between the door body and steel plates can be varied depending on the permissible surface temperature of the door body. According to a known embodiment, the steel plates are stiffened in a T-shape and are located one above the other at the ends. The steel plates can freely expand at these ends. The steel plates should not be longer than 1 m in the case of 4 m high furnaces, the steel plate length decreasing by one tenth of the change in height with each increase in the furnace height. For a 7 m furnace, this would result in a maximum length of steel plates of 0.7 m. The operational availability of this door system is much lower than with conventional door plugs due to recurring faults. The damage is concentrated on the lower plate area.

Der Erfindung liegt die Aufgabe zugrunde, derartige Türstopfen dem rauhen Kokereibetrieb anzupassen. Dabei geht die Erfindung von dem Gedanken aus, daß Ursache für die verschiedenen Schäden die Tatsache ist, daß beim Abziehen der Türe - insbesondere im von Hand gesteuerten Ablauf - die Türen teilweise abgezogen und nachfolgend abgesenkt werden, so daß sich die unterste Stahlplatte auf die Sohle aufsetzt. Zu diesem Zeitpunkt lastet das gesamte Gewicht auf der Stahlplatte, die dann zusammen mit ihrer Halterung stark verformt wird. Im weiteren Arbeitsablauf wird die Tür nach vorne gezogen, die unterste Stahlplatte schleift dann über die Sohle und gerät vor den gegenüber der Sohle höherstehenden Türrahmen. Dadurch wird die unterste Platte nach vorne gebogen und aus der Halterung gerissen. Nach der Erfindung werden derartige Beschädigungen dadurch vermieden, daß die Wärmedehnung der untersten Stahlplatte nach oben gelenkt wird, d. h. im Unterschied zu den anderen Stahlplatten hat die unterste Stahlplatte am unteren Ende einen Fixpunkt und ist sie am oberen Ende zur Wärmedehnung verschiebbar gelagert. Dadurch ergibt sich eine definierte, gleichbleibende Höhe der Stahlplatten bei beliebiger Wärmedehnung. Ein weiterer Vorteil ist in der Doppelfunktion der oberen Halterung für die unterste Stahlplatte zu sehen. Nach dem ursprünglichen Konzept bildet diese Halterung eine längsverschiebliche Lagerung für die darüberliegende Stahlplatte. Nach der Erfindung bildet diese Halterung zugleich eine längsverschiebliche Lagerung für die unterste Stahlplatte.The invention has for its object to adapt such door plugs to the rough coking plant. The invention is based on the idea that the cause of the various damage is the fact that when the door is pulled off - in particular in the manually controlled sequence - the doors are partially pulled off and subsequently lowered, so that the bottom steel plate rests on the sole touches down. At this point, the entire weight rests on the steel plate, which is then strongly deformed together with its holder. In the further work process, the door is pulled forward, the lowest steel plate then slides over the sole and comes in front of the door frame, which is higher than the sole. As a result, the bottom plate is bent forward and torn out of the holder. According to the invention, such damage is avoided in that the thermal expansion of the lowermost steel plate is directed upwards, i.e. H. in contrast to the other steel plates, the lowest steel plate has a fixed point at the lower end and is slidably mounted at the upper end for thermal expansion. This results in a defined, constant height of the steel plates with any thermal expansion. Another advantage is the double function of the upper bracket for the lowest steel plate. According to the original concept, this bracket forms a longitudinally movable bearing for the steel plate above. According to the invention, this bracket also forms a longitudinally displaceable bearing for the lowest steel plate.

In weiterer Ausbildung dieses Gedankens ist für jeweils zwei benachbarte Stahlplatten eine gemeinsame verschiebliche Lagerung vorgesehen.In a further development of this idea, a common movable bearing is provided for two adjacent steel plates.

Nach der Erfindung besitzen die der verschieblichen Lagerung abgewandten Enden der Stahlplatten gemeinsame Halterungen mit den sich daran anschließenden Stahlplatten, so daß an jeder dieser Halterungen jeweils zwei Stahlplatten arretiert sind.According to the invention, the ends of the steel plates facing away from the displaceable mounting have common holders with the adjoining steel plates, so that two steel plates are locked to each of these holders.

Die oberste Stahlplatte der Ofentür wird ggfs. unter Verwendung separater Halterungen und verschieblicher Lagerungen so angeordnet, daß das sich am oberen Ende der Tür befindende Stahlplattenende arretiert ist und sich die Wärmedehnung der Stahlplatte oder die damit verbundene Längenänderung nach unten hin auswirkt. Alle Stahlplatten sind so angeordnet, daß das untere Ende einer jeweils oberen Stahlplatte das obere Ende einer darunterliegenden Stahlplatte überlappt.The top steel plate of the oven door is possibly using separate brackets and Slidable bearings arranged so that the steel plate end located at the top of the door is locked and the thermal expansion of the steel plate or the associated change in length affects down. All steel plates are arranged so that the lower end of each upper steel plate overlaps the upper end of an underlying steel plate.

Der durch die bei jeder Temperatur definierten Abmessungen der Tür gegebene Schutz vor Beschädigungen wird ergänzt durch eine Verlängerung des Türhafters entsprechend dem Abstand des Türkörpers bis zu den Stahlplatten. Diese Verlängerung hat vorzugsweise die Form eines U-Profils mit unterlegter Platte und ist darüber hinaus an der Unterseite mit einem Gleitschuh versehen. In der Zeichnung sind der Stand der Technik, von dem die Erfindung ausgeht, und ein Ausführungsbeispiel der Erfindung dargestellt. Es zeigen

  • Fig. 1 bis 3 Türkörper in der bisherigen Ausführung,
  • Fig. 4 bis 7 einen erfindungsgemäßen Türkörper in verschiedenen Ansichten.
The protection from damage given by the dimensions of the door defined at every temperature is supplemented by an extension of the door holder according to the distance between the door body and the steel plates. This extension preferably has the shape of a U-profile with an underlaid plate and is also provided on the underside with a sliding block. The drawing shows the prior art from which the invention is based and an exemplary embodiment of the invention. Show it
  • 1 to 3 door body in the previous version,
  • 4 to 7 a door body according to the invention in different views.

Nach den Fig. 1 bis 3 ist die bekannte Koksofenkammertür mit einem Türkörper 1 versehen. An dem Türkörper 1 befindet sich ein Stopfen 2.1 to 3, the known coke oven chamber door is provided with a door body 1. A plug 2 is located on the door body 1.

Im Betriebsfall verschließt die Koksofenkammertür einen auswechselbaren Türrahmen eines Koksofens. Der auswechselbare Türrahmen sitzt üblicherweise in den Kopfpartien der Koksofenkammerwände, die mit Heizzügen versehen sind.In operation, the coke oven chamber door closes an interchangeable door frame of a coke oven. The interchangeable door frame usually sits in the top of the coke oven chamber walls, which are equipped with heating cables.

Die Koksofenkammertür ragt im Betriebszustand mit dem Stopfen 2 in die Koksofenkammer, während der Türkopf 1 außen an dem Türrahmen anliegt. Zwischen dem Türrahmen und dem Türkörper 1 bewirken nicht dargestellte Dichtleisten eine ausreichende Abdichtung. Die Dichtleisten bestehen beispielsweise aus Profileisen. Der Stopfen 2 bildet einen Hohlkörper und als Hohlkörper einen Gassammelraum, durch den das bei der Verkokung anfallende Gas zu einem im Kopf des Koksofens angeordneten Gassammelraum bzw. zu einem Steigrohr im Deckenbereich des Koksofens aufsteigen kann.In the operating state, the coke oven chamber door projects with the stopper 2 into the coke oven chamber, while the door head 1 lies against the outside of the door frame. Between the door frame and the door body 1, sealing strips, not shown, provide an adequate seal. The sealing strips consist, for example, of profiled iron. The stopper 2 forms a hollow body and, as a hollow body, a gas collecting space through which the gas resulting from the coking can rise to a gas collecting space arranged in the head of the coke oven or to a riser pipe in the ceiling area of the coke oven.

Der Stopfen 2 setzt sich aus einer Anzahl von Abschnitten zusammen, von denen die Abschnitte 3 und 4 in den Fig. 1 und 2 dargestellt sind. Jeder Abschnitt 3 bzw. 4 besitzt eine Stahlplatte 5. Die einzelnen Stahlplatten 5 überlappen sich, und zwar von oben nach unten so, daß das untere Ende einer oberen Stahlplatte 5 das obere Ende einer nachfolgend unteren Stahlplatte 5 überlappt.The plug 2 is composed of a number of sections, of which the sections 3 and 4 are shown in FIGS. 1 and 2. Each section 3 and 4 has a steel plate 5. The individual steel plates 5 overlap, from top to bottom so that the lower end of an upper steel plate 5 overlaps the upper end of a subsequent lower steel plate 5.

Die Stahlplatten 5 sind an jedem Ende mit Laschen versehen. Dabei dienen die Laschen am oberen Stahlblechende zur Arretierung des zugehörenden Stahlblechendes, während die Laschen am unteren Stahlblechende eine längsverschiebliche Lagerung zur Wärmedehnung der Bleche nach unten ermöglichen sollen. Die Lasche des Abschnittes 4 am unteren Stahlblechende ist mit 6, die am oberen Ende des Abschnittes 3 mit 7 und die am unteren Ende des Abschnittes 3 mit 8 bezeichnet. Die Lasche 6 ist mit Bolzen 9 in der Lasche 7 längsverschiebbar geführt. Dazu besteht ein für die Wärmedehnung des Stahlbleches 5 des Abschnittes 4 ausreichender Abschnitt zwischen den Laschen 6 und 7.The steel plates 5 are provided with tabs at each end. The tabs on the upper steel sheet end serve to lock the associated steel sheet end, while the tabs on the lower steel sheet end are intended to enable longitudinally displaceable storage for thermal expansion of the sheets downwards. The tab of section 4 at the lower end of sheet steel is designated by 6, that at the upper end of section 3 by 7 and that at the lower end of section 3 by 8. The tab 6 is guided with bolts 9 in the tab 7 so as to be longitudinally displaceable. For this purpose, there is a sufficient section for the thermal expansion of the steel sheet 5 of section 4 between the tabs 6 and 7.

Die Lasche 7 liegt ihrerseits auf einer am Türkörper 1 befestigten Konsole 10. Zwischen der Konsole 10 und der Lasche 7 besteht eine schematisch angedeutete Bolzen- oder Schraubverbindung, die das obere Ende des Abschnittes 3 festlegt. Dieselbe Anordnung besteht am oberen Ende des Abschnittes 4. Am unteren Ende des Abschnittes 3 wird eine zur Wärmedehnung längsverschiebliche Lagerung durch eine Konsole 11 ermöglicht. Die Konsole 11 ist am Türrahmen befestigt und führt das untere Ende des Abschnittes 3 mit einem längsverschiebbar in der Lasche 8 sitzenden Bolzen 12.The tab 7 is in turn on a bracket 10 attached to the door body 1. Between the bracket 10 and the tab 7 there is a schematically indicated bolt or screw connection which defines the upper end of section 3. The same arrangement exists at the upper end of section 4. At the lower end of section 3, a bracket 11 enables longitudinally displaceable storage for thermal expansion. The bracket 11 is fastened to the door frame and guides the lower end of the section 3 with a bolt 12 which is displaceable longitudinally in the bracket 8.

Der zwischen den Stahlplatten 5 und dem Türkörper 1 bestehende Hohlraum bildet einen vertikalen Gassammelraum, über den die gasförmigen Verkokungsprodukte vorteilhaft abgeleitet und dem oberen Gassammelrohr und dem Steigrohr zugeführt werden. Aufgrund der dabei entstehenden günstigen Gasdruckverhältnisse ist das Druckgefüge am Türrahmen bzw. an der Koksofentür insgesamt zur jeweils äußeren Atmosphäre so günstig, daß mit üblichen Dichtleisten Emissionen an den Koksofentüren verhindert werden.The cavity existing between the steel plates 5 and the door body 1 forms a vertical gas collection space, via which the gaseous coking products are advantageously derived and fed to the upper gas collection tube and the riser tube. Due to the resulting favorable gas pressure conditions, the pressure structure on the door frame or on the coke oven door as a whole is so favorable to the respective outer atmosphere that emissions on the coke oven doors are prevented with conventional sealing strips.

Die Stahlplatten 5 besitzen eine hohe Wärmeleitfähigkeit. Die hohe Wärmeleitfähigkeit hat eine Wärmezufuhr auch über die Stahlplatten 5 zur Folge. Dieser Effekt erlaubt es, die Platte um rund 100 mm weniger tief in die Ofenkammer hineinragen zu lassen. Das ist gleichbedeutend mit einer Erhöhung des nutzbaren Ofenvolumens bei gleichbleibender Garung der Kopfpartien.The steel plates 5 have a high thermal conductivity. The high thermal conductivity also results in the supply of heat via the steel plates 5. This effect allows the plate to protrude less than 100 mm into the furnace chamber. This is equivalent to an increase in the usable oven volume while the head sections are cooked consistently.

Die Koksofenkammertür nach den Fig. 4 bis 7 unterscheidet sich von der Koksofenkammertür nach den Fig. 1 bis 3 sowohl durch eine andere Aufhängung der Abschnitte 3 und 4 in dem Verbindungsbereich 13, als auch durch eine andere Anordnung am Fuß des Stopfens 2. Letzterer Bereich ist mit 14 gekennzeichnet. Die Lasche 7 ist an der Verbindungsstelle mit der Konsole 10 mit einem Langloch 15 versehen, das eine in Türlängsrichtung gerichtete Wärmedehnung der Stahlplatte 5 im Rahmen des Abschnittes 3 ermöglicht. Die Verbindung zwischen der Lasche 7 und der Konsole 10 erfolgt durch einen in der Konsole 10 angeordneten und schematisch dargestellten Bolzen, der in dem Langloch 15 gleitet.The coke oven chamber door according to FIGS. 4 to 7 differs from the coke oven chamber door according to FIGS. 1 to 3 both by a different suspension of the sections 3 and 4 in the connecting area 13 and by a different arrangement at the foot of the plug 2. The latter area is marked with 14. The tab 7 is provided at the connection point with the bracket 10 with an elongated hole 15, which enables a thermal expansion of the steel plate 5 in the longitudinal direction of the door within the scope of section 3. The connection between the tab 7 and the bracket 10 is made by a bolt arranged in the bracket 10 and shown schematically, which slides in the slot 15.

Im Bereich 14 ist das untere Ende des Abschnittes 3 mit der Lasche 8 fest an der hier mit 16 bezeichneten Konsole befestigt.In the region 14, the lower end of the section 3 is firmly attached to the bracket 8, which is designated here by the tab 8.

Die Konsole 16 erstreckt sich im wesentlichen bis zur Stahlplatte 5 des Abschnittes 3 und ist an der Unterseite mit einem Gleitschuh 17 verbunden.The console 16 extends essentially to the steel plate 5 of section 3 and is connected to a slide shoe 17 on the underside.

Mit der in den Fig. 4 bis 7 dargestellten erfindungsgemäßen Konstruktion wird die Wärmedehnung der untersten Stahlplatte 5 nach oben gelenkt. Damit ist ein definierter Fixpunkt für die Maße des gesamten Stopfens und den darunter liegenden Türhalter gegeben.With the inventions shown in FIGS. 4 to 7 Design according to the invention, the thermal expansion of the lowest steel plate 5 is directed upwards. This provides a defined fixed point for the dimensions of the entire stopper and the door holder underneath.

Das untere Ende des Abschnittes 3 ist mit der Konsole 16 versteift und überdies durch den Gleitschuh 17 zusätzlich gegen Beschädigung geschützt. Auf diese Weise wird erreicht, daß beim Einsetzen der Tür weder Schäden an der Türkonstruktion noch an dem Rahmen bzw. den Sohlsteinen, unabhängig von der Arbeitsweise der Türbedienungsmaschinen, auftreten können.The lower end of section 3 is stiffened with the bracket 16 and is additionally protected against damage by the sliding shoe 17. In this way it is achieved that neither damage to the door structure nor to the frame or the sole stones can occur when inserting the door, regardless of the operation of the door operating machines.

Claims (3)

1. A coke oven chamber door having a refractory plug and a door plate, the refractory plug being embodied by steel plates which overlap one another lengthwise of the plug and which are mounted at one end for movement lengthwise of the plug in order to deal with heat expansion, characterised in that the bottom end of the bottom steel plate (5) is stationary and the end of the steel plate (5) above can move upwardly.
2. A door according to claim 1, characterised by a common displaceable mounting (6, 9, 7,10,15) in the region (13) of two contiguous steel plates (5).
3. A door according to one or more of claims 1 and 2 characterised by a sliding shoe (17) on the bottom plug end.
EP83100326A 1982-01-20 1983-01-15 Coke oven chamber door Expired EP0084366B2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE3201521 1982-01-20
DE3201521A DE3201521A1 (en) 1982-01-20 1982-01-20 "COOKING OVEN DOOR"

Publications (3)

Publication Number Publication Date
EP0084366A1 EP0084366A1 (en) 1983-07-27
EP0084366B1 EP0084366B1 (en) 1985-05-29
EP0084366B2 true EP0084366B2 (en) 1989-12-27

Family

ID=6153413

Family Applications (1)

Application Number Title Priority Date Filing Date
EP83100326A Expired EP0084366B2 (en) 1982-01-20 1983-01-15 Coke oven chamber door

Country Status (6)

Country Link
US (1) US4502922A (en)
EP (1) EP0084366B2 (en)
JP (1) JPS58502218A (en)
AU (1) AU554349B2 (en)
DE (1) DE3201521A1 (en)
WO (1) WO1983002454A1 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3344976C2 (en) * 1983-05-04 1985-02-28 WSW Planungsgesellschaft mbH, 4355 Waltrop Lightweight coke oven door
US4647343A (en) * 1984-05-03 1987-03-03 Wsw Planungs - Gmbh Self sealing coke oven door of lightweight construction

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4086145A (en) * 1977-03-14 1978-04-25 Jones & Laughlin Steel Corporation Coke oven door lining
US4217177A (en) * 1978-12-05 1980-08-12 Jones & Laughlin Steel Corporation Vented coke oven door apparatus
EP0028679B1 (en) * 1979-11-08 1983-06-08 WSW Planungs-GmbH Coke oven door with a voluminous gas collecting space
DE3000161A1 (en) * 1980-01-04 1981-07-09 Ruhrkohle Ag, 4300 Essen Coke oven door - with hollow stopper as gas collecting space for improved gas and coke quality
ATE3724T1 (en) * 1979-11-08 1983-06-15 Wsw-Planungsgesellschaft Mbh COKE OVEN DOOR WITH LARGE-VOLUME GAS COLLECTOR.
DE3044607C2 (en) * 1980-11-27 1985-04-18 Carl Still Gmbh & Co Kg, 4350 Recklinghausen Foot stone holder for coke oven doors
EP0058320B1 (en) * 1981-02-17 1985-05-02 WSW Planungs-GmbH Process for the coking of coal and coke oven for carrying out the process
ZA82980B (en) * 1981-02-17 1983-01-26 Wsw Planungsges Process of coking coal
US4381972A (en) * 1981-02-17 1983-05-03 Wsw-Planungs-Gmbh Coke-oven door

Also Published As

Publication number Publication date
EP0084366B1 (en) 1985-05-29
DE3201521A1 (en) 1983-07-28
JPS58502218A (en) 1983-12-22
AU1104883A (en) 1983-07-28
EP0084366A1 (en) 1983-07-27
WO1983002454A1 (en) 1983-07-21
US4502922A (en) 1985-03-05
AU554349B2 (en) 1986-08-14

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