US20080265474A1 - Tiltable Metallurgical Vessel - Google Patents
Tiltable Metallurgical Vessel Download PDFInfo
- Publication number
- US20080265474A1 US20080265474A1 US12/065,567 US6556706A US2008265474A1 US 20080265474 A1 US20080265474 A1 US 20080265474A1 US 6556706 A US6556706 A US 6556706A US 2008265474 A1 US2008265474 A1 US 2008265474A1
- Authority
- US
- United States
- Prior art keywords
- clamping
- metallurgical vessel
- anchor
- support ring
- tiltable
- 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.)
- Abandoned
Links
- 230000013011 mating Effects 0.000 claims description 13
- 238000003780 insertion Methods 0.000 claims description 9
- 230000037431 insertion Effects 0.000 claims description 9
- 238000006073 displacement reaction Methods 0.000 claims description 3
- 230000000284 resting effect Effects 0.000 claims description 2
- 229910000831 Steel Inorganic materials 0.000 description 6
- 238000012423 maintenance Methods 0.000 description 6
- 239000010959 steel Substances 0.000 description 6
- 238000009434 installation Methods 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 239000002893 slag Substances 0.000 description 3
- 238000007664 blowing Methods 0.000 description 2
- 238000010276 construction Methods 0.000 description 2
- 229910001341 Crude steel Inorganic materials 0.000 description 1
- 238000005266 casting Methods 0.000 description 1
- 210000000080 chela (arthropods) Anatomy 0.000 description 1
- 210000000078 claw Anatomy 0.000 description 1
- 239000000428 dust Substances 0.000 description 1
- 231100001261 hazardous Toxicity 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000000155 melt Substances 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 230000005855 radiation Effects 0.000 description 1
- 238000007670 refining Methods 0.000 description 1
- 230000008439 repair process Effects 0.000 description 1
- 238000010079 rubber tapping Methods 0.000 description 1
- 210000003625 skull Anatomy 0.000 description 1
- 239000000161 steel melt Substances 0.000 description 1
- 238000009628 steelmaking Methods 0.000 description 1
Images
Classifications
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21C—PROCESSING OF PIG-IRON, e.g. REFINING, MANUFACTURE OF WROUGHT-IRON OR STEEL; TREATMENT IN MOLTEN STATE OF FERROUS ALLOYS
- C21C5/00—Manufacture of carbon-steel, e.g. plain mild steel, medium carbon steel or cast steel or stainless steel
- C21C5/28—Manufacture of steel in the converter
- C21C5/42—Constructional features of converters
- C21C5/46—Details or accessories
- C21C5/4633—Supporting means
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21C—PROCESSING OF PIG-IRON, e.g. REFINING, MANUFACTURE OF WROUGHT-IRON OR STEEL; TREATMENT IN MOLTEN STATE OF FERROUS ALLOYS
- C21C5/00—Manufacture of carbon-steel, e.g. plain mild steel, medium carbon steel or cast steel or stainless steel
- C21C5/28—Manufacture of steel in the converter
- C21C5/42—Constructional features of converters
- C21C5/46—Details or accessories
- C21C5/50—Tilting mechanisms for converters
Definitions
- the invention relates to a tiltable metallurgical vessel with a support ring which at least partially surrounds the metallurgical vessel at a distance from it, supporting brackets which are fastened to the metallurgical vessel resting on the support ring and the metallurgical vessel being releasably fixed on the support ring by a number of clamping devices which can be actuated by pressure medium cylinders, each clamping device interacting with a locking bracket fastened to the metallurgical vessel and the clamping device being formed in such a way that it can move from a release position, releasing the locking bracket, into a clamping position, clamping the locking bracket together with the support ring, and vice versa.
- the invention relates to a clamping device for supporting and fastening a tiltable converter on a support ring which at least partially surrounds it at a distance.
- Metallurgical vessels of this type as are predominantly used in steel works for producing and refining steel melts, are exchangeable vessels which have to be changed at intervals over the course of time in order for it to be possible for their refractory lining to be renewed or for other repairs to be carried out on them.
- Tiltable metallurgical vessels such as converters
- the metallurgical vessel is therefore usually arranged in a support ring, which is designed either as a continuous annular welded structure or as an open horseshoe-shaped welded structure.
- the support ring can pivot about a horizontal axis and has support pins which are mounted in a supporting framework.
- the metallurgical vessel may be suspended in the support ring or rest on it or be supported on it.
- DE 102 51 964 A1 discloses a quick-acting fastening for a metallurgical treatment vessel on a support ring with which opposing vessel brackets and support ring brackets can be clamped together in a secured closed position by means of a toggle closure and can be easily released in an opposite actuating direction (release position).
- a hydraulic handling device to be manually fitted is proposed, but the basic problem of hazardous use for the maintenance personnel is not really solved.
- DE 25 11 610 A1 and EP 1 533 389 A1 already disclose embodiments of clamping devices which avoid the maintenance personnel being used directly for releasing the clamping elements on the support ring at a great height above the casting floor by the clamping and releasing operation being performed by hydraulic elements.
- the clamping device respectively comprises a pair of hooks with which a bracket on the converter can be engaged from behind in the manner of pincers, and consequently compressive forces acting in the direction of the support ring can be applied, fixing the converter in its position on the support ring.
- the present invention aims to avoid these disadvantages and difficulties and is based on the object of proposing a tiltable metallurgical vessel in a further embodiment in which the production of a secured connection and the opening of this secured connection between a metallurgical vessel and a support ring can be carried out with a minimal number of components in an environment that is largely protected from the action of heat and the discharge of slag.
- the clamping device comprising at least one housing, a clamping anchor, a pivoting lever and a pressure medium cylinder acting on the pivoting lever, by the clamping anchor being guided in a pivotably movable manner in a slotted guide in the housing and pivotably articulated on the pivoting lever and by the pivoting lever being pivotably supported in the housing.
- an expedient further refinement of the device according to the invention consists in that the clamping anchor has a clamping anchor shank and a clamping head with a supporting surface, in that the locking bracket has an insertion slot for receiving the clamping anchor shank and a mating supporting surface for supporting the clamping head, in that, in the clamping position, the supporting surface of the clamping head is pressed against the mating surface of the locking bracket and, in the release position, the clamping head is positioned outside the insertion slot and allows a movement lifting the metallurgical vessel off the support ring.
- a central clamping force acting perpendicularly on the locking bracket and parallel to the axis of the converter is applied using only a single clamping anchor that can be pivoted in and out.
- the clamping device forms or comprises a toggle lever mechanism which triggers self-locking at a self-locking point in the clamping position and the displacement path of which is delimited by a stop which is preferably formed by the end of the groove of the slotted guide means that the advantage that is in fact already achieved in the case of known clamping devices is also equally realized with the solution according to the invention of a simple construction. However, there is also the possibility of providing a stop delimiting the displacement path elsewhere in the housing of the clamping device or in some other way to achieve the same effect.
- the clamping device is designed for a high clamping force, ensuring that the clamping effect is definitely maintained, with which forces and moments that occur specifically while the metallurgical vessel is being tilted during charging and emptying are taken into consideration.
- the clamping device is assigned an expansion element, with which tensile stresses otherwise occurring when the self-locking point is passed through are limited in their magnitude.
- the expansion element is expediently integrated in the clamping anchor.
- the expansion element comprises a spring assembly, formed by a number of cup springs.
- the clamping device is based on special kinematics.
- these kinematics are set in such a way that, during the transfer from the clamping position into the release position, in a first movement phase, the clamping head of the clamping anchor is moved such that it is lifted off the mating supporting surface on the locking bracket, consequently predominantly in a direction perpendicular to the mating supporting surface on the locking bracket, and that, in a further movement phase, the clamping head of the clamping anchor is moved with a predominantly pivoting movement out of the region of the insertion slot of the locking bracket.
- the special first movement phase which comprises the lifting of the clamping head off the mating supporting surface on the locking bracket, has the effect of avoiding horizontal forces acting on the clamping device as a result of a frictional horizontal movement of the clamping head.
- the slotted guide in the housing of the clamping device is formed by a slot which is arcuate in its longitudinal extent and in which a guiding bolt of the clamping anchor engages and is guided in a sliding manner.
- the arrangement of all the components of the clamping device in a common housing which is not an integrated part of the support ring means that the clamping device forms a preassembled module which can be easily installed on corresponding wall elements of the support ring. This in turn gives rise to advantages for the maintenance personnel and the availability of the installation, since each clamping device can be exchanged within an extremely short time in every case that maintenance work becomes necessary.
- Pneumatic cylinders are used with preference for actuating the clamping device.
- Damage to the clamping device, and in particular the pressure medium cylinder, caused by slag and steel being thrown out, in particular during the blowing phase in a steel-making converter, or by slag and metal skulls falling from the mouth of the converter, can be avoided by the locking bracket being surrounded by an enclosure that is open in the direction of the support ring and this enclosure being fastened to the metallurgical vessel.
- the pressure medium cylinder and the moving parts of the clamping device are accommodated in a protected manner in the housing of the clamping device and possibly also shielded by components of the support ring.
- FIG. 1 shows a prior-art converter supported in a support ring, in a schematic representation
- FIG. 2 shows the clamping device according to the invention in an intermediate position between the clamping position and the release position, in an oblique view
- FIG. 3 a shows the arrangement of the clamping devices according to the invention on the support ring in the case of a converter vessel that is not represented, in the clamping position,
- FIG. 3 b shows the arrangement of the clamping devices according to the invention on the support ring in the case of a converter vessel that is not represented, in the release position,
- FIG. 4 shows the clamping device according to the invention in the clamping position, in an intermediate position and in the release position
- FIG. 5 shows a longitudinal section through the clamping anchor with an expansion element
- FIG. 6 shows details of the slotted guide.
- FIG. 1 the basic construction of a converter installation in a steelworks is schematically represented in a side elevation.
- the converter 1 comprising a steel casing and a refractory lining, which lies against the inside of the latter but is not represented, is supported in a support ring 2 with a small distance from the converter.
- the thermal loading of the support ring caused by the hot converter vessel is kept at a low level.
- the support ring 2 is rotatably supported by means of two support pins 3 a , 3 b in a supporting framework 4 and provided with a tilting drive (not represented here), whereby the setting of a vertical or an inclined operating position of the converter for charging with feedstock, blowing the crude steel or tapping the liquid steel is made possible.
- a tilting drive not represented here
- the brackets 5 a , 5 b , and consequently the converter 1 are fixed in their predetermined position with respect to the support ring 2 , and kept in this position even in the tilted operating position of the converter, by corresponding clamping devices 6 a , 6 b , which according to the prior art are formed by screw connections or by a linkage that is actuated by a pressure medium.
- the clamping device 6 is represented in FIG. 2 in a possible embodiment as a preassembled module in the installation position in relation to a locking bracket 7 that is welded on the converter (not represented).
- the clamping device 6 comprises a housing 8 , which is made up of a number of steel plates and, as a welded structure, forms a frame for receiving the individual components of the clamping device 6 .
- One or more supporting plates 8 a , 8 b of the housing with a machined mounting surface make it possible for the entire clamping device to be mounted quickly at the intended positions of the support ring 2 ( FIGS. 3 a , 3 b ).
- slotted guides 10 which lie opposite each other and in which a clamping anchor 9 is guided in a sliding manner.
- a guiding bolt 11 of the clamping anchor 9 two of which are provided opposite each other, respectively engages in the groove of a slotted guide 10 .
- Pivoting levers 12 are pivotably mounted by their one end in a supporting bearing 13 in the supporting plates 8 c .
- a pressure medium cylinder 14 formed as a pneumatic cylinder, is tiltably supported in bearing housings 15 , which are likewise fastened to the supporting plates Bc.
- the pressure medium cylinder 14 acts with its piston rod 14 a on the other end of the pivoting lever 12 at the pivoting joint 16 .
- the clamping anchor 9 is preferably pivotably supported in a pivoting joint 17 in the middle of the pivoting lever 12 .
- the movement of the clamping anchor 9 is consequently definitively set by the pivoting movement of the pivoting lever 12 in the supporting bearing 13 and by the course of the slotted guide 10 .
- the clamping anchor 9 comprises a clamping anchor shank 18 and, at its end, a clamping head 19 , which has a greater diameter than the clamping anchor shank 18 . This produces an annular surface, which forms a supporting surface 20 on the underside of the clamping head 19 that is not visible in FIG. 2 .
- the clamping anchor 9 reaches through the locking bracket 7 , which has a U-shaped insertion slot 21 in the region where the clamping anchor shank 18 passes through.
- a mating supporting surface 22 is formed, the supporting surface 20 and the mating supporting surface 22 coming into congruent alignment in the clamping position.
- the clamping anchor 9 is provided with an expansion element 26 , which is represented in FIG. 5 in a longitudinal section.
- the clamping anchor shank 18 is made up of two parts, an upper clamping anchor shank 18 a , carrying the clamping head 19 , and a lower clamping anchor shank 18 b , mounted in the pivoting joint 17 .
- the upper clamping anchor shank 18 a is fastened in a positionally fixed manner in a housing 27 a of a two-part housing 27 a , 27 b of the expansion element.
- the lower clamping anchor shank 18 b passes through the bottom of the housing 27 b and carries a pressure disk 28 .
- a cup spring assembly 29 Inserted in an annular recess of the housing 27 b is a cup spring assembly 29 between the bottom of the housing 27 b and the pressure disk 28 .
- the two parts of the two-part housing are screwed to each other.
- This expansion element allows a lengthening of the clamping anchor shank 18 when the self-locking point of the kinematic system of the clamping device is passed through just before reaching the clamping position and in the very first phase of the releasing operation, whereby it is only made possible for the self-locking point to be passed through by the locking or releasing force that is to be applied by the pressure medium cylinder being limited.
- the slotted guide 10 is assigned to the supporting plates 8 c of the housing 8 of the clamping device lying opposite each other. It is substantially made up of arcuate guiding grooves 30 , in which the guiding bolt 11 engages in a sliding manner.
- the guiding bolt 11 is connected to the clamping anchor 9 and oriented such that it is perpendicular to the longitudinal axis of the clamping anchor and parallel to the pivoting axis of the pivoting joint 17 . In the clamping position, the guiding bolt 11 is in an end position in the guiding groove 30 , as represented in FIG. 6 .
- the wall of the guiding groove at this point forms a stop 31 limiting the clamping movement of the clamping device.
- the width of the groove is increased in this region, in order to create a free space for the guiding bolt if the support ring twists slightly as a result of the thermal influences.
- the arcuate form of the guiding groove is chosen such that there is an optimum lifting-off and clamping movement of the clamping anchor.
- the support ring 2 is represented in an oblique view with the centering devices 24 that are necessary for receiving a converter and with three clamping devices 6 .
- the centering devices 24 that are necessary for receiving a converter and with three clamping devices 6 .
- all that is indicated of the converter vessel itself are the locking brackets 7 .
- the representations of the figure show three centering devices 24 , which are substantially offset by 90° in relation to one another as they rise up from the supporting plate of the support ring and in which the converter to be mounted is centered in its position.
- FIG. 3 a shows the clamping device in the clamping position A
- FIG. 3 b shows the clamping device in the release position B.
- the upper image shows the clamping device 6 and the locking bracket 7 in the clamping position.
- the guiding bolt 11 of the clamping anchor 9 is located in the lower end position of the slotted guide 10 and the pressure medium cylinder 14 is located in the end position provided for the clamping position.
- These positions are set in such a way that self-locking of the kinematic system is obtained and release of the clamping between the converter and the support ring is only possible after passing through the self-locking point when the pressure medium cylinder is subjected to corresponding pressure. This must involve overcoming the force of resistance applied by the cup spring assembly of the expansion element.
- the lifting movement of the clamping anchor, and in particular of the clamping head, off the mating supporting surface of the locking bracket is essentially determined by the slotted guide.
- a lifting of the clamping head 19 off the mating supporting surface 22 is brought about in a first movement phase of the clamping anchor by a movement that takes place predominantly in a direction perpendicularly away from the mating supporting surface.
- a pivoting movement is predominantly imposed on the clamping head.
- a position of the clamping anchor such as that represented in the middle image of the series of images is achieved.
- the clamping head is entirely outside the insertion slot 21 of the locking bracket 7 , as represented in the lower image of the series of images of FIG. 4 .
- the converter can be lifted off the support ring or inserted into the support ring.
- the clamping of the inserted converter is performed by reversing the sequence of steps involved in the described release operation.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Manufacturing & Machinery (AREA)
- Materials Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Carbon Steel Or Casting Steel Manufacturing (AREA)
- Clamps And Clips (AREA)
- Manufacture Of Iron (AREA)
- Furnace Housings, Linings, Walls, And Ceilings (AREA)
- Feeding, Discharge, Calcimining, Fusing, And Gas-Generation Devices (AREA)
- Vertical, Hearth, Or Arc Furnaces (AREA)
Abstract
Description
- The invention relates to a tiltable metallurgical vessel with a support ring which at least partially surrounds the metallurgical vessel at a distance from it, supporting brackets which are fastened to the metallurgical vessel resting on the support ring and the metallurgical vessel being releasably fixed on the support ring by a number of clamping devices which can be actuated by pressure medium cylinders, each clamping device interacting with a locking bracket fastened to the metallurgical vessel and the clamping device being formed in such a way that it can move from a release position, releasing the locking bracket, into a clamping position, clamping the locking bracket together with the support ring, and vice versa.
- Specifically, the invention relates to a clamping device for supporting and fastening a tiltable converter on a support ring which at least partially surrounds it at a distance.
- Metallurgical vessels of this type, as are predominantly used in steel works for producing and refining steel melts, are exchangeable vessels which have to be changed at intervals over the course of time in order for it to be possible for their refractory lining to be renewed or for other repairs to be carried out on them.
- Tiltable metallurgical vessels, such as converters, are exposed to high thermal loads on account of the metallic melts treated in them and release large amounts of heat to the environment through radiation. To keep the thermal loading on the supporting framework of the metallurgical vessel at a low level, the metallurgical vessel is therefore usually arranged in a support ring, which is designed either as a continuous annular welded structure or as an open horseshoe-shaped welded structure. The support ring can pivot about a horizontal axis and has support pins which are mounted in a supporting framework. The metallurgical vessel may be suspended in the support ring or rest on it or be supported on it. Possible design variants of this type are described in EP-B 0 029878 B1, in which a nonpositive connection is maintained between the support claws on the metallurgical vessel and support straps on the support ring by means of hasp screws. The tightened hasp screws reliably avoid lateral movement of the metallurgical vessel even in a tilted position of the vessel. However, manual unscrewing of the hasp screws not only takes up considerable time but is also extremely arduous work for the maintenance personnel on account of the action of heat, the release of dust, the risk of falling and the confined space available in this area, and can be carried out only with considerable expenditure on safety.
- To minimize the risk of accidents for the maintenance personnel and to make the installation work easier, the fastening systems have been improved. For example, DE 102 51 964 A1 discloses a quick-acting fastening for a metallurgical treatment vessel on a support ring with which opposing vessel brackets and support ring brackets can be clamped together in a secured closed position by means of a toggle closure and can be easily released in an opposite actuating direction (release position). For clamping and releasing these toggle closures, a hydraulic handling device to be manually fitted is proposed, but the basic problem of hazardous use for the maintenance personnel is not really solved.
- DE 25 11 610 A1 and EP 1 533 389 A1 already disclose embodiments of clamping devices which avoid the maintenance personnel being used directly for releasing the clamping elements on the support ring at a great height above the casting floor by the clamping and releasing operation being performed by hydraulic elements. In the embodiment according to FIG. 9 of DE 25 11 610 A1 and in the embodiment according to FIGS. 4a and 4b of EP 1 533 389 A1, the clamping device respectively comprises a pair of hooks with which a bracket on the converter can be engaged from behind in the manner of pincers, and consequently compressive forces acting in the direction of the support ring can be applied, fixing the converter in its position on the support ring. The arrangement of the linkage in the manner of a toggle lever mechanism ensures a self-locking clamping position of the clamping device. The embodiments of clamping devices that are otherwise represented in DE 25 11 610 A1 are much more sophisticated in their structural design and require successive actuation of pressure medium cylinders, a bearing bush locking element being pivoted into a clamping position in a first step and this bearing bush locking element being fixed by a tie anchor engaging over it in a second step. This last-cited embodiment is not suitable, however, for the specific location where it would be used.
- The present invention aims to avoid these disadvantages and difficulties and is based on the object of proposing a tiltable metallurgical vessel in a further embodiment in which the production of a secured connection and the opening of this secured connection between a metallurgical vessel and a support ring can be carried out with a minimal number of components in an environment that is largely protected from the action of heat and the discharge of slag.
- This object is achieved according to the invention by the clamping device comprising at least one housing, a clamping anchor, a pivoting lever and a pressure medium cylinder acting on the pivoting lever, by the clamping anchor being guided in a pivotably movable manner in a slotted guide in the housing and pivotably articulated on the pivoting lever and by the pivoting lever being pivotably supported in the housing.
- An expedient further refinement of the device according to the invention consists in that the clamping anchor has a clamping anchor shank and a clamping head with a supporting surface, in that the locking bracket has an insertion slot for receiving the clamping anchor shank and a mating supporting surface for supporting the clamping head, in that, in the clamping position, the supporting surface of the clamping head is pressed against the mating surface of the locking bracket and, in the release position, the clamping head is positioned outside the insertion slot and allows a movement lifting the metallurgical vessel off the support ring. With this special design of the clamping anchor and the locking bracket, a central clamping force acting perpendicularly on the locking bracket and parallel to the axis of the converter is applied using only a single clamping anchor that can be pivoted in and out.
- The fact that the clamping device forms or comprises a toggle lever mechanism which triggers self-locking at a self-locking point in the clamping position and the displacement path of which is delimited by a stop which is preferably formed by the end of the groove of the slotted guide means that the advantage that is in fact already achieved in the case of known clamping devices is also equally realized with the solution according to the invention of a simple construction. However, there is also the possibility of providing a stop delimiting the displacement path elsewhere in the housing of the clamping device or in some other way to achieve the same effect.
- The clamping device is designed for a high clamping force, ensuring that the clamping effect is definitely maintained, with which forces and moments that occur specifically while the metallurgical vessel is being tilted during charging and emptying are taken into consideration. In order that the self-locking point of the toggle lever mechanism can be passed through, it is necessary that the clamping device is assigned an expansion element, with which tensile stresses otherwise occurring when the self-locking point is passed through are limited in their magnitude. The expansion element is expediently integrated in the clamping anchor. Preferably, the expansion element comprises a spring assembly, formed by a number of cup springs.
- The clamping device is based on special kinematics. By arranging a special slotted guide in the housing of the clamping device, these kinematics are set in such a way that, during the transfer from the clamping position into the release position, in a first movement phase, the clamping head of the clamping anchor is moved such that it is lifted off the mating supporting surface on the locking bracket, consequently predominantly in a direction perpendicular to the mating supporting surface on the locking bracket, and that, in a further movement phase, the clamping head of the clamping anchor is moved with a predominantly pivoting movement out of the region of the insertion slot of the locking bracket. The special first movement phase, which comprises the lifting of the clamping head off the mating supporting surface on the locking bracket, has the effect of avoiding horizontal forces acting on the clamping device as a result of a frictional horizontal movement of the clamping head.
- The slotted guide in the housing of the clamping device is formed by a slot which is arcuate in its longitudinal extent and in which a guiding bolt of the clamping anchor engages and is guided in a sliding manner.
- The arrangement of all the components of the clamping device in a common housing which is not an integrated part of the support ring means that the clamping device forms a preassembled module which can be easily installed on corresponding wall elements of the support ring. This in turn gives rise to advantages for the maintenance personnel and the availability of the installation, since each clamping device can be exchanged within an extremely short time in every case that maintenance work becomes necessary.
- Pneumatic cylinders are used with preference for actuating the clamping device.
- Damage to the clamping device, and in particular the pressure medium cylinder, caused by slag and steel being thrown out, in particular during the blowing phase in a steel-making converter, or by slag and metal skulls falling from the mouth of the converter, can be avoided by the locking bracket being surrounded by an enclosure that is open in the direction of the support ring and this enclosure being fastened to the metallurgical vessel. In addition, the pressure medium cylinder and the moving parts of the clamping device are accommodated in a protected manner in the housing of the clamping device and possibly also shielded by components of the support ring.
- Further advantages and features of the present invention emerge from the following description of an exemplary embodiment, which is not restrictive, reference being made to accompanying figures, in which:
-
FIG. 1 shows a prior-art converter supported in a support ring, in a schematic representation, -
FIG. 2 shows the clamping device according to the invention in an intermediate position between the clamping position and the release position, in an oblique view, -
FIG. 3 a shows the arrangement of the clamping devices according to the invention on the support ring in the case of a converter vessel that is not represented, in the clamping position, -
FIG. 3 b shows the arrangement of the clamping devices according to the invention on the support ring in the case of a converter vessel that is not represented, in the release position, -
FIG. 4 shows the clamping device according to the invention in the clamping position, in an intermediate position and in the release position, -
FIG. 5 shows a longitudinal section through the clamping anchor with an expansion element, -
FIG. 6 shows details of the slotted guide. - In
FIG. 1 , the basic construction of a converter installation in a steelworks is schematically represented in a side elevation. The converter 1, comprising a steel casing and a refractory lining, which lies against the inside of the latter but is not represented, is supported in asupport ring 2 with a small distance from the converter. As a result, the thermal loading of the support ring caused by the hot converter vessel is kept at a low level. Thesupport ring 2, usually formed as a horseshoe-shaped frame structure, is rotatably supported by means of twosupport pins 3 a, 3 b in a supportingframework 4 and provided with a tilting drive (not represented here), whereby the setting of a vertical or an inclined operating position of the converter for charging with feedstock, blowing the crude steel or tapping the liquid steel is made possible. Welded on the steel outer shell of the converter are a number ofbrackets support ring 2 in bearings not represented any more specifically. Thebrackets support ring 2, and kept in this position even in the tilted operating position of the converter, bycorresponding clamping devices - The
clamping device 6 according to the invention is represented inFIG. 2 in a possible embodiment as a preassembled module in the installation position in relation to alocking bracket 7 that is welded on the converter (not represented). Theclamping device 6 comprises ahousing 8, which is made up of a number of steel plates and, as a welded structure, forms a frame for receiving the individual components of theclamping device 6. One or more supportingplates FIGS. 3 a, 3 b). Provided on two supportingplates 8 c that rise up perpendicularly from the supportingplate 8 a and are positioned parallel to each other are slottedguides 10, which lie opposite each other and in which a clampinganchor 9 is guided in a sliding manner. Here, a guidingbolt 11 of theclamping anchor 9, two of which are provided opposite each other, respectively engages in the groove of a slottedguide 10.Pivoting levers 12 are pivotably mounted by their one end in a supporting bearing 13 in the supportingplates 8 c. Apressure medium cylinder 14, formed as a pneumatic cylinder, is tiltably supported inbearing housings 15, which are likewise fastened to the supporting plates Bc. Thepressure medium cylinder 14 acts with itspiston rod 14 a on the other end of thepivoting lever 12 at the pivotingjoint 16. Theclamping anchor 9 is preferably pivotably supported in a pivotingjoint 17 in the middle of thepivoting lever 12. The movement of theclamping anchor 9 is consequently definitively set by the pivoting movement of thepivoting lever 12 in the supportingbearing 13 and by the course of theslotted guide 10. Theclamping anchor 9 comprises aclamping anchor shank 18 and, at its end, a clampinghead 19, which has a greater diameter than theclamping anchor shank 18. This produces an annular surface, which forms a supportingsurface 20 on the underside of theclamping head 19 that is not visible inFIG. 2 . With theclamping anchor shank 18, theclamping anchor 9 reaches through thelocking bracket 7, which has aU-shaped insertion slot 21 in the region where theclamping anchor shank 18 passes through. In the edge region of theU-shaped insertion slot 21, amating supporting surface 22 is formed, the supportingsurface 20 and themating supporting surface 22 coming into congruent alignment in the clamping position. - The clamping
anchor 9 is provided with anexpansion element 26, which is represented inFIG. 5 in a longitudinal section. The clampinganchor shank 18 is made up of two parts, an upperclamping anchor shank 18 a, carrying the clampinghead 19, and a lowerclamping anchor shank 18 b, mounted in the pivoting joint 17. The upperclamping anchor shank 18 a is fastened in a positionally fixed manner in ahousing 27 a of a two-part housing clamping anchor shank 18 b passes through the bottom of thehousing 27 b and carries apressure disk 28. Inserted in an annular recess of thehousing 27 b is acup spring assembly 29 between the bottom of thehousing 27 b and thepressure disk 28. The two parts of the two-part housing are screwed to each other. This expansion element allows a lengthening of the clampinganchor shank 18 when the self-locking point of the kinematic system of the clamping device is passed through just before reaching the clamping position and in the very first phase of the releasing operation, whereby it is only made possible for the self-locking point to be passed through by the locking or releasing force that is to be applied by the pressure medium cylinder being limited. - The slotted
guide 10 is assigned to the supportingplates 8 c of thehousing 8 of the clamping device lying opposite each other. It is substantially made up of arcuate guidinggrooves 30, in which the guidingbolt 11 engages in a sliding manner. The guidingbolt 11 is connected to theclamping anchor 9 and oriented such that it is perpendicular to the longitudinal axis of the clamping anchor and parallel to the pivoting axis of the pivoting joint 17. In the clamping position, the guidingbolt 11 is in an end position in the guidinggroove 30, as represented inFIG. 6 . The wall of the guiding groove at this point forms astop 31 limiting the clamping movement of the clamping device. The width of the groove is increased in this region, in order to create a free space for the guiding bolt if the support ring twists slightly as a result of the thermal influences. The arcuate form of the guiding groove is chosen such that there is an optimum lifting-off and clamping movement of the clamping anchor. - In
FIGS. 3 a and 3 b, thesupport ring 2 is represented in an oblique view with the centeringdevices 24 that are necessary for receiving a converter and with threeclamping devices 6. To provide a clearly presented representation, all that is indicated of the converter vessel itself are the lockingbrackets 7. The representations of the figure show three centeringdevices 24, which are substantially offset by 90° in relation to one another as they rise up from the supporting plate of the support ring and in which the converter to be mounted is centered in its position. Of the threeclamping devices 6 that are arranged in a distributed manner on the horseshoe-shaped support ring, one clamping device respectively adjoins the end faces of the support ring and a further clamping device is positioned centrally on the outer lateral surface of the support ring. The clamping devices are formed as a preassembled module and mounted as such on the support ring. The pressuremedium cylinders 14 are arranged in a specially protected region on the underside of the support ring. However, it is also possible to integrate the clamping devices in the support ring by the way in which they are constructed.FIG. 3 a shows the clamping device in the clamping position A andFIG. 3 b shows the clamping device in the release position B. Hereafter, the operation of clamping a converter to the support ring and releasing it is described in detail on the basis of the two operating positions and an intermediate position of the clamping device that are schematically represented in a series of images inFIG. 4 : - The upper image shows the
clamping device 6 and thelocking bracket 7 in the clamping position. The guidingbolt 11 of theclamping anchor 9 is located in the lower end position of the slottedguide 10 and thepressure medium cylinder 14 is located in the end position provided for the clamping position. These positions are set in such a way that self-locking of the kinematic system is obtained and release of the clamping between the converter and the support ring is only possible after passing through the self-locking point when the pressure medium cylinder is subjected to corresponding pressure. This must involve overcoming the force of resistance applied by the cup spring assembly of the expansion element. The lifting movement of the clamping anchor, and in particular of the clamping head, off the mating supporting surface of the locking bracket is essentially determined by the slotted guide. When the pressure medium cylinder is subjected to further pressure, a lifting of the clampinghead 19 off themating supporting surface 22 is brought about in a first movement phase of the clamping anchor by a movement that takes place predominantly in a direction perpendicularly away from the mating supporting surface. In a further movement phase, a pivoting movement is predominantly imposed on the clamping head. In this phase, a position of the clamping anchor such as that represented in the middle image of the series of images is achieved. When the pressure medium cylinder is subjected to further pressure, the guidingbolt 11 of theclamping anchor 9 moves to the upper end point of the slottedguide 10 and thepressure medium cylinder 14 reaches the end position that corresponds to the release position of the clamping anchor. In this position, the clamping head is entirely outside theinsertion slot 21 of thelocking bracket 7, as represented in the lower image of the series of images ofFIG. 4 . In this release position, the converter can be lifted off the support ring or inserted into the support ring. The clamping of the inserted converter is performed by reversing the sequence of steps involved in the described release operation.
Claims (19)
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
ATA1475/05 | 2005-09-09 | ||
AT0147505A AT502333B1 (en) | 2005-09-09 | 2005-09-09 | TILTABLE METALLURGICAL TANK |
PCT/EP2006/008501 WO2007028535A1 (en) | 2005-09-09 | 2006-08-31 | Tiltable metallurgical vessel |
Publications (1)
Publication Number | Publication Date |
---|---|
US20080265474A1 true US20080265474A1 (en) | 2008-10-30 |
Family
ID=37441998
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US12/065,567 Abandoned US20080265474A1 (en) | 2005-09-09 | 2006-08-31 | Tiltable Metallurgical Vessel |
Country Status (11)
Country | Link |
---|---|
US (1) | US20080265474A1 (en) |
EP (1) | EP1920076B1 (en) |
KR (1) | KR20080053358A (en) |
CN (1) | CN101263232B (en) |
AT (2) | AT502333B1 (en) |
BR (1) | BRPI0615886A2 (en) |
DE (1) | DE502006002964D1 (en) |
ES (1) | ES2322399T3 (en) |
RU (1) | RU2410443C2 (en) |
WO (1) | WO2007028535A1 (en) |
ZA (1) | ZA200802973B (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US11168374B2 (en) * | 2017-12-20 | 2021-11-09 | Primetals Technologies Austria GmbH | Tiltable exchangeable metallurgical vessel and method for fixing and releasing a tiltable metallurgical vessel |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
AT509202B1 (en) * | 2010-06-17 | 2011-07-15 | Siemens Vai Metals Tech Gmbh | TILT CONVERTER |
CN102766721A (en) * | 2012-07-03 | 2012-11-07 | 安徽浙泰不锈钢集团有限公司 | Steelmaking furnace |
ITMI20130046A1 (en) * | 2013-01-15 | 2014-07-16 | Danieli Off Mecc | TILTING CONVERTER |
DE102019212745A1 (en) * | 2019-08-26 | 2021-03-04 | Sms Group Gmbh | Converter with exchangeable vessel |
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US4049249A (en) * | 1975-03-12 | 1977-09-20 | Vereinigte Osterreichische Eisen - Und Stahlwerke - Alpine Montan Aktiengesellschaft | Tiltable converter |
US4131018A (en) * | 1976-09-06 | 1978-12-26 | Kraftwerk Union Aktiengesellschaft | Elbow or bent tube manipulator, especially for ultrasonic testing in nuclear reactor installation |
US4195824A (en) * | 1978-01-27 | 1980-04-01 | Demag, Aktiengesellschaft | Jig for tension elements for metallurgic vessels, particularly alternating converters |
US4426069A (en) * | 1978-08-07 | 1984-01-17 | Pennsylvania Engineering Corporation | Mettalurgical vessel suspension system |
US4700929A (en) * | 1984-03-24 | 1987-10-20 | Mannesmann Ag | Mounting a metallurgical vessel |
US6806424B2 (en) * | 2000-05-16 | 2004-10-19 | Moeller Gmbh | Connecting terminal |
US20060131796A1 (en) * | 2002-11-08 | 2006-06-22 | Bernd Schubert | Vessel for the metallurgical treatment of pig iron, steel melts and similar, in particular a converter vessel |
Family Cites Families (5)
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DE9211926U1 (en) * | 1992-09-04 | 1992-12-17 | Voest-Alpine Industrieanlagenbau Ges.m.b.H., Linz | Tilting converter |
CN1041330C (en) * | 1994-12-20 | 1998-12-23 | 首钢总公司 | Removable converter |
CN2426882Y (en) * | 1999-11-24 | 2001-04-18 | 机械工业部西安重型机械研究所 | Self-controling tilting device of metal container for high-temperature liquid |
CN2401566Y (en) * | 1999-12-30 | 2000-10-18 | 中国冶金建设集团包头钢铁设计研究总院 | Three-point hanged converter |
AT412478B (en) * | 2003-11-11 | 2005-03-25 | Voest Alpine Ind Anlagen | Tiltable metallurgical vessel e.g. converter, is detachably fixed with hydraulically-operated clamping devices at support ring that partly surrounds vessel, where each clamping device includes one self-locking clamping unit |
-
2005
- 2005-09-09 AT AT0147505A patent/AT502333B1/en not_active IP Right Cessation
-
2006
- 2006-08-31 ZA ZA200802973A patent/ZA200802973B/en unknown
- 2006-08-31 CN CN2006800331898A patent/CN101263232B/en not_active Expired - Fee Related
- 2006-08-31 AT AT06791745T patent/ATE423857T1/en active
- 2006-08-31 WO PCT/EP2006/008501 patent/WO2007028535A1/en active Application Filing
- 2006-08-31 ES ES06791745T patent/ES2322399T3/en active Active
- 2006-08-31 EP EP06791745A patent/EP1920076B1/en not_active Not-in-force
- 2006-08-31 BR BRPI0615886-2A patent/BRPI0615886A2/en not_active IP Right Cessation
- 2006-08-31 KR KR1020087008207A patent/KR20080053358A/en not_active Application Discontinuation
- 2006-08-31 US US12/065,567 patent/US20080265474A1/en not_active Abandoned
- 2006-08-31 DE DE502006002964T patent/DE502006002964D1/en active Active
- 2006-08-31 RU RU2008113841/02A patent/RU2410443C2/en not_active IP Right Cessation
Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4049249A (en) * | 1975-03-12 | 1977-09-20 | Vereinigte Osterreichische Eisen - Und Stahlwerke - Alpine Montan Aktiengesellschaft | Tiltable converter |
US4131018A (en) * | 1976-09-06 | 1978-12-26 | Kraftwerk Union Aktiengesellschaft | Elbow or bent tube manipulator, especially for ultrasonic testing in nuclear reactor installation |
US4195824A (en) * | 1978-01-27 | 1980-04-01 | Demag, Aktiengesellschaft | Jig for tension elements for metallurgic vessels, particularly alternating converters |
US4426069A (en) * | 1978-08-07 | 1984-01-17 | Pennsylvania Engineering Corporation | Mettalurgical vessel suspension system |
US4700929A (en) * | 1984-03-24 | 1987-10-20 | Mannesmann Ag | Mounting a metallurgical vessel |
US6806424B2 (en) * | 2000-05-16 | 2004-10-19 | Moeller Gmbh | Connecting terminal |
US20060131796A1 (en) * | 2002-11-08 | 2006-06-22 | Bernd Schubert | Vessel for the metallurgical treatment of pig iron, steel melts and similar, in particular a converter vessel |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US11168374B2 (en) * | 2017-12-20 | 2021-11-09 | Primetals Technologies Austria GmbH | Tiltable exchangeable metallurgical vessel and method for fixing and releasing a tiltable metallurgical vessel |
Also Published As
Publication number | Publication date |
---|---|
CN101263232B (en) | 2010-07-07 |
CN101263232A (en) | 2008-09-10 |
WO2007028535A1 (en) | 2007-03-15 |
RU2008113841A (en) | 2009-10-20 |
DE502006002964D1 (en) | 2009-04-09 |
ZA200802973B (en) | 2009-10-28 |
RU2410443C2 (en) | 2011-01-27 |
EP1920076B1 (en) | 2009-02-25 |
BRPI0615886A2 (en) | 2011-05-31 |
AT502333B1 (en) | 2007-12-15 |
EP1920076A1 (en) | 2008-05-14 |
ES2322399T3 (en) | 2009-06-19 |
AT502333A1 (en) | 2007-03-15 |
KR20080053358A (en) | 2008-06-12 |
ATE423857T1 (en) | 2009-03-15 |
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Legal Events
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Owner name: SIEMENS VAI METALS TECHNOLOGIES GMBH & CO., AUSTRI Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:GRUBER, RUDOLF;HIRSCHMANNER, MARTIN;LOSBICHLER, GERHARD;AND OTHERS;REEL/FRAME:020652/0252 Effective date: 20080310 |
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Owner name: SIEMENS VAI METALS TECHNOLOGIES GMBH, AUSTRIA Free format text: MERGER;ASSIGNOR:SIEMENS VAI METALS TECHNOLOGIES GMBH & CO;REEL/FRAME:026428/0032 Effective date: 20100630 |
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STCB | Information on status: application discontinuation |
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