EP2988889A1 - Apparatus for continuous casting and method to assemble said apparatus for continuous casting - Google Patents
Apparatus for continuous casting and method to assemble said apparatus for continuous castingInfo
- Publication number
- EP2988889A1 EP2988889A1 EP14728320.4A EP14728320A EP2988889A1 EP 2988889 A1 EP2988889 A1 EP 2988889A1 EP 14728320 A EP14728320 A EP 14728320A EP 2988889 A1 EP2988889 A1 EP 2988889A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- support frame
- plates
- plate
- devices
- thrust
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D11/00—Continuous casting of metals, i.e. casting in indefinite lengths
- B22D11/04—Continuous casting of metals, i.e. casting in indefinite lengths into open-ended moulds
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D11/00—Continuous casting of metals, i.e. casting in indefinite lengths
- B22D11/04—Continuous casting of metals, i.e. casting in indefinite lengths into open-ended moulds
- B22D11/041—Continuous casting of metals, i.e. casting in indefinite lengths into open-ended moulds for vertical casting
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D11/00—Continuous casting of metals, i.e. casting in indefinite lengths
- B22D11/04—Continuous casting of metals, i.e. casting in indefinite lengths into open-ended moulds
- B22D11/057—Manufacturing or calibrating the moulds
Definitions
- the present invention concerns an apparatus for continuous casting that allows to cast metal products such as blooms, slabs with a rectangular section, billets and bars with a double "T" section, also known as "beam blanks".
- the apparatus for continuous casting according to the present invention is configured to allow to install a crystallizer of the plate type.
- the present invention also concerns a method to assemble the apparatus for continuous casting.
- Apparatuses are known for continuous casting comprising a support structure, hereafter indicated as mold body, provided to support a crystallizer.
- the mold body depending on its constructional configuration, can allow to install crystallizers of the tubular type or plate type.
- Crystallizers of the tubular type allow to obtain metal products with very simple and even cross section, for example blooms or billets with a round or square section, or with a more complex cross section but of limited size.
- Known crystallizers of the plate type are generally used for casting billets, blooms, slabs or Beam Blanks.
- Said crystallizers of the plate type comprise four plates connected to each other to define, with their surface which during use faces toward the inside, a casting cavity for the passage of the liquid metal.
- the plates of the crystallizer are reciprocally connected by means of a frame which is mounted in the mold body.
- the frame is provided with four frame elements, and one of the plates is associated to each of them.
- the four frame elements are reciprocally connected in correspondence to their lateral edges, enclosing the plates inside them.
- the plates are coupled with each other and are kept compact with each other in correspondence to respective connection edges by the action of reciprocal connection between the frame elements.
- connection means which can comprise holes, threaded or not, into which screws, stud bolts are screwed, centering or clamping pins are inserted and/or elastic elements are associated.
- the plates have lateral edges shaped to define together respective same-shape couplings.
- Direct connection means are not provided between the plates, since they could require an increase in thickness of the plates or could stiffen the structure too much, causing the onset of internal tensions because of thermal stresses.
- connection between the plates and the frame is particularly complex and uneconomic in terms of assembly time and the number of components used.
- some examples of connection between plates and support frame are shown in documents JP-A-S61.137651, US-A-4.002.317 and US-A-6.041.848. These known solutions are not only particularly complex and uneconomic in terms of time with regard to assembly, but also they do not guarantee a correct and precise reciprocal positioning of the various plates, to the detriment of the final quality of the cast product.
- a cooling liquid usually water
- the cooling liquid provides to keep the plates of the crystallizer constantly cooled.
- One purpose of the present invention is to make an apparatus for continuous casting that allows to assemble the crystallizers simply and quickly in the mold body.
- Another purpose of the present invention is to reduce the complexity of connection between the plates of a crystallizer of the plate type.
- the Applicant has devised, tested and embodied the present invention to overcome the shortcomings of the state of the art and to obtain these and other purposes and advantages.
- an apparatus for continuous casting comprises a support frame and a plurality of plates coupled to each other to define a tubular element, or crystallizer, provided with a casting cavity through which, during use, the molten metal is cast.
- Positioning members are provided to position the plates with respect to the support frame.
- the positioning members comprise on each occasion attachment devices or thrust devices.
- only a first plate of the plates is attached to a wall of the support frame, by means of corresponding attachment devices.
- thrust devices are associated to the other plates and are configured to thrust them toward the inside of the support frame and to compress them with respect to each other, in correspondence with respective connection edges and against the at least one first plate.
- the first plate in practice constitutes a reference system for positioning the other plates.
- the action of compression exerted by the thrust devices compacts the plates with respect to each other, defining the casting crystallizer.
- the action of indirect connection of the thrust devices allows the other plates, unlike the first one, to adapt to possible deformations/dilations that can arise due to heat stresses. In this way the onset of internal tensions can be prevented, which could deform the crystallizer as a whole and compromise its working life.
- the thrust devices comprise thruster elements mounted on the support frame and configured to thrust the other plates, unlike the first one, toward the inside of the frame. In this way the thruster elements allow to regulate the reciprocal pressure between the plates.
- the thrust devices comprise elastic blocks attached to the external surface of the plates not constrained to the wall of the support frame and the thruster elements, mounted on the latter, and configured to compress the elastic blocks.
- the present invention also concerns a method to assemble a casting apparatus as described above.
- - fig. 1 is a schematic representation in section of an apparatus for continuous casting according to the present invention
- - fig. 2 is a section view from II to II in fig. 1 ;
- - fig. 3 is a section view from III to III in fig. 1 ;
- - fig. 4 shows an enlarged detail of fig. 3;
- an apparatus for continuous casting is indicated in its entirety by the reference number 10 and comprises a support structure Or mold body 11, to which a plate-type mold 12 is associated.
- the mold 12 develops longitudinally along a longitudinal axis Z which can have a rectilinear development, if the apparatus 10 is installed in a continuous casting machine of the vertical type, or it can have a slightly curved development if the apparatus 10 is installed in a curved continuous casting machine.
- the mold 12 comprises a support frame 26 and a tubular element or crystallizer 27, disposed in the support frame 26.
- the support frame 26 can also have a tubular configuration as shown in figs. 1-3 or, alternatively, it may be provided with a plurality of frame elements suitably connected with each other to allow to insert the crystallizer 27 inside it.
- the frame elements can comprise, for example, a plurality of plates, blades or metal sheets solidly coupled with each other, for example by welding.
- interspace 51 is defined, which takes into account possible heat dilations to which the crystallizer 27 is subjected during use.
- the crystallizer 27 comprises a plurality of plates 28a, 28b, 29a and 29b connected to each other, in ways which will be described hereafter, to define a through casting cavity 30 for the passage of the melted metal.
- the through cavity 30 has substantially the same section shape as that of the product that is cast, in this case a double "T" shape to obtain products such as beam blanks.
- Each plate 28a, 28b, 29a and 29b is provided with a plurality of passage channels 31 for the cooling water that extend through for the entire length of the plate 28a, 28b, 29a, 29b.
- the passage channels 31 can be made completely in the thickness of each plate 28a, 28b, 29a, 29b, using holing operations for example, as shown in figs. 1-3.
- Other forms of embodiment, not shown in the drawings, possibly combinable with forms of embodiment described here, provide that the passage channels 31 are defined by longitudinal grooves open toward the outside and subsequently closed by closing elements.
- Each passage channel 31 has an entrance end 32a and an exit end 32b located in fluidic communication by means of connection channels 33a and 33b made transversely in the thickness of each plate 28a, 28b, 29a and 29b.
- the entrance ends 32a are closed in their end part by a closing flange 34, attached in the mold body 1 1.
- exit ends 32b are closed by an upper flange 24, also attached to the mold body 11.
- Each plate 28a, 28b, 29a and 29b is provided in its turn with respective connection edges 35 (fig. 3) suitably shaped to define reciprocal same-shape couplings between the plates 28a, 28b, 29a and 29b.
- connection members are attached, in a known manner, to the support frame 26, and provide to feed and discharge the cooling liquid to/from the passage channels 31.
- connection members comprise entrance sleeves 37a and exit sleeves 37b, fluidically connected respectively to the entrance ends 32a and the exit ends 32b of the passage channels 31.
- Some forms of embodiment can provide that the entrance sleeves 37a and/or the exit sleeves 37b serve one or more passage channels 31.
- Positioning members 50 are provided to position the crystallizer 27 with respect to the support frame 26.
- the positioning members 50 are suitable to determine the reciprocal positioning of the plates 28a, 28b, 29a, 29b and the external walls of the support frame 26.
- the positioning members 50 comprise attachment devices 52 provided to attach a first plate 28a of the crystallizer 27 to a wall of the support frame 26.
- the attachment devices 52 are configured to maintain, during use, the first plate 28a in a fixed and reciprocally predetermined position with respect to the support frame 26. In this way the first plate 28a defines a reference and precise positioning system for all the other plates 28b, 29a, 29b.
- first plate 28a is the one disposed toward the extrados of the curve of the mold 12.
- the attachment devices 52 comprise a plurality of screws 53 that can be associated with the first plate 28a.
- the screws 53 can be inserted in through holes 54 made in the thickness of the support frame 26.
- the screws 53 screw into threaded holes 55 made on the external surface of the first plate 28a and transverse to the longitudinal axis Z.
- Some forms of embodiment of the present invention provide that the wall of the support frame 26 to which the first plate 28a is attached is provided with reference elements, such as protruding abutment portions, which define references for the correct positioning of the first plate 28a with respect to the support frame 26, and consequently also for the other plates 28b, 29a and 29b.
- reference elements such as protruding abutment portions
- Thrust devices 57 are provided to determine the reciprocal positioning of a second plate 28b, opposite the first plate 28a, of a third plate 29a that is positioned in two first connection edges 35 of the first 28a and the second 28b plate, and of a fourth plate 29b, opposite the third plate 29a, which is positioned in two second connection edges 35 of the third plate 29a and the fourth plate 29b.
- the thrust devices 57 are configured to compress, in correspondence with their respective connection edges, the second plate 28b, the third plate 29a and the fourth plate 29b against the first plate 28a.
- the action of compression is exerted in combination with a thrusting action of the plates 28b, 29a, 29b toward the inside of the support frame 26.
- the thrust devices 57 can be chosen from a group comprising threaded elements, screws, nuts, pins, actuators, worm screw mechanisms, rack mechanisms, motors or a possible combination thereof.
- thrust devices 57 are mounted on the support frame 26 and have a terminal contact end that is selectively movable toward the inside of the support frame 26 and that contacts, during use, the plates 28b, 29a, 29b.
- the thrust devices 57 comprise one or more screws mounted in through holes made in the thickness of the walls of the support frame 26.
- the screws are made to protrude toward the inside of the support frame 26 and, by adjusting the entity of screwing, it is possible to regulate the thrust action exerted on the plates 28b, 29a, 29b.
- the thrust devices 57 are mounted on the support frame 26 and are configured to thrust the plates 28b, 29a, 29b toward the inside of the support frame 26, in order to compress them with respect to each other and against the first plate 28a.
- the thrust devices 57 comprise a plurality of elastic blocks 58 attached to the external surface of the second plate 28b, of the third plate 29a and of the fourth plate 29b, in this case to the external surface of the fourth plate 29b, and on which thruster elements 64 act during use.
- the thruster elements 64 are mounted on the external surface of the support frame 26 and are configured to compress the elastic blocks 58.
- the elastic blocks 58 comprise a containing body 59 with a substantially cylindrical shape, provided to contain a plurality of elastic elements 60 inside it.
- the elastic elements 60 comprise cup type springs, although in other forms of embodiment the elastic elements 60 can comprise compression springs of the helical type, conical disc springs or leaf springs or suchlike.
- the containing body 59 comprises a container 61 provided with an aperture 65 for the introduction of the elastic elements 60.
- the aperture 65 of the container 61 is partly closed by a lid 62 that provides to maintain the elastic elements 60 compressed inside the container 61, and generates a first preloading thereof.
- the container 61 is housed, by mechanical interference, in a respective blind hole 63 made in the thickness of the second plate 28b, the third plate 29a and the fourth plate 29b.
- the reciprocal connection between the container 61 and the lid 62 can be the threaded type or, in other forms of embodiment, by same-shape coupling or interference, for example providing snap-in attachment teeth of the non- releasable type.
- the lid 62 is provided with a hole 67 which allows the thruster elements 64 to cooperate with the elastic elements 60. Inside the container 61, and between the elastic elements 60 and the lid 62, a small plate 66 is interposed that protrudes toward the outside through the hole 67.
- Suitable abutments 68 are provided in the small plate 66 and in the lid 62, to prevent the small plate 66 from exiting from the container 61.
- the thruster elements 64 comprise a thrust screw 69 which is screwed into a threaded hole 70 made through through the thickness of the support frame 26.
- the threaded hole 70 is made in a position coordinated to the one in which the blind hole 63 is provided for housing the elastic block 58.
- each second attachment device 57 presses against the small plate 66, compressing the elastic elements 60 inside the containing body 59.
- the overall effect of compression of the elastic elements 60 therefore translates into an effect of compression of the second plate 28b, the third plate 29a and the fourth plate 29b against the first plate 28a, which is the only one directly attached to the support frame 26.
- Assembling the crystallizer 12 with the support frame 26 comprises a first operation of coupling only the first plate 28a inside the support frame 26, disposing it in contact against a wall of the latter. If necessary, it may be provided to interpose the spacer 56 between the first plate 28a and the support frame 26 as described above.
- the first plate 28a is attached in the support frame 26 by the attachment devices 52 which exert a holding action of the first plate 28a against the wall of the support frame 26.
- a subsequent operation is provided to introduce the second plate 28b, the third plate 29a and the fourth plate 29b inside the support frame 26, disposing them in reciprocal contact with their connection edges 35 and with the connection edges 35 of the first plate 28a.
- Some forms of embodiment provide that the operation of introducing the second plate 28b, the third plate 29a, and the fourth plate 29b into the support frame 26 occurs simultaneously.
- dedicated equipment can be provided that, before the insertion, reciprocally connects the second plate 28b, the third plate 29a and the fourth plate 29b, disposing them in the position they will assume during use.
- the equipment together with the second plate 28b, the third plate 29a and the fourth plate 29b is used to allow the simultaneous insertion of the latter inside the support frame 26.
- the thrust devices 57 are activated. The activation of the thrust devices 57 allows to compress the second plate 28b, the third plate 29a and the fourth plate 29b against the first plate 28a.
- the positioning members 50 comprise first positioning devices 71a and 71b (figs. 1 - 6) provided to determine a precise positioning of the first plate 28a and the second plate 28b, and second positioning devices 72 provided to determine a precise positioning of the third plate 29a and the fourth plate 29b with respect to the support frame 26 in an axial direction, that is, along the longitudinal axis Z, and a transverse direction.
- the first positioning devices 71a, 71b and the second positioning devices 72 comprise a plurality of pins 73 (figs. 5 and 6) suitable to be inserted in respective through holes 74 made in the thickness of the support frame 26 and according to an axis that is located transverse to the longitudinal axis Z.
- connection members 75 which, in this case, comprise screws 76 inserted into through holes 77 made in a head 78 of the pin 73.
- Each first positioning device 71a, 71b (figs. 5 and 6) comprises a first housing seating 79, respectively 80, made blind in the thickness of the first 28a and the second 28b plate.
- the first housing seatings 79 of the first positioning devices 71a are configured to constrain the position of the first 28a and the second 28b plate with respect to the support frame 26 both in a direction parallel to the longitudinal axis Z and also in a transverse direction, for example orthogonal, to the longitudinal axis Z.
- the first housing seatings 80 of the first positioning devices 71b are configured to constrain the position of the plates 28a, 28b in a transverse direction, in this specific case, orthogonal, to the longitudinal axis Z and to leave the movement free in a direction parallel to the longitudinal axis Z.
- Each second positioning device 72 comprises a second housing seating 81 made blind in the thickness of the third 29a and the fourth 29b plate (figs. 2 and 3).
- the second housing seatings 81 of the second positioning devices 72 are configured to constrain the position of the plates 29a, 29b in a direction parallel to the longitudinal axis Z and to leave the movement free in a transverse direction, in this specific case, orthogonal, to the longitudinal axis Z, to allow any necessary adaption if the plates 28a, 28b, 29a, 29b are regenerated and if the thickness of the spacer 56 is modified.
- the first plate 28a changes its total thickness and, in order to maintain the positioning of the internal profile unchanged with respect to the machine, a spacer 56 is inserted, with a calibrated thickness with respect to the support frame 26. These operations produce very slight movements of the theoretical center of the plates 28b, 29a, 29b.
- the positioning of the crystallizer 27 in the support frame 26 is given by the abutment to which the first plate 28a is attached.
- a rigid positioning constraint makes it impossible to assemble the crystallizer 27 in the support frame 26.
- both the first housing seatings 80 and the second housing seatings 81 have a greater size compared to the size of the diameter of the pin 73 in the direction in which a movement of the plates 28a, 28b, 29a, 29b is allowed, while they have a tolerance coupling, play coupling or interference coupling in the direction in which movement is prevented.
- the freedom of movement of the plates 28a, 28b, 29a, 29b with respect to the pins 73 allows to take into account possible thermal dilations to which the latter are subjected during use, and thus prevent the onset of internal stresses that could deform the crystallizer 27, generating cast products with unwanted geometric and microstructural characteristics, as well as reducing the useful life of the crystallizer 27 itself.
- lining bushings can be inserted, made with anti-wear material, that is, a material harder than the material that the plates 28a, 28b, 29a, 29b are made of.
- the bushings can be inserted by interference into the first housing seatings 79, 80 and/or the second housing seatings 81, and can in turn have a seating, circular or oblong in shape, in which the end parts of the pins 73 are disposed, as described above.
- the seatings of the bushings can be configured to allow a movement of the plates 28a, 28b, 29a, 29b in a vertical, horizontal or transverse direction with respect to the longitudinal axis Z.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Manufacturing & Machinery (AREA)
- Continuous Casting (AREA)
- Casting Devices For Molds (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IT000054A ITUD20130054A1 (en) | 2013-04-23 | 2013-04-23 | APPARATUS FOR THE CONTINUOUS CASTING AND ASSEMBLY METHOD OF THE AID DEVICE FOR CONTINUOUS CASTING |
| PCT/IB2014/060923 WO2014174446A1 (en) | 2013-04-23 | 2014-04-23 | Apparatus for continuous casting and method to assemble said apparatus for continuous casting |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2988889A1 true EP2988889A1 (en) | 2016-03-02 |
| EP2988889B1 EP2988889B1 (en) | 2017-06-07 |
Family
ID=48579414
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP14728320.4A Active EP2988889B1 (en) | 2013-04-23 | 2014-04-23 | Apparatus for continuous casting and method to assemble said apparatus for continuous casting |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US20160067770A1 (en) |
| EP (1) | EP2988889B1 (en) |
| CN (1) | CN105555437A (en) |
| IT (1) | ITUD20130054A1 (en) |
| WO (1) | WO2014174446A1 (en) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117862435B (en) * | 2024-03-11 | 2024-05-28 | 烟台一诺电子材料有限公司 | Aluminum strip casting forming device |
Family Cites Families (10)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2893080A (en) * | 1954-03-26 | 1959-07-07 | Norman P Goss | Apparatus for the continuous casting of metals |
| DE2405598B2 (en) * | 1974-02-06 | 1975-11-27 | Gebr. Boehler & Co Ag, Wien, Niederlassung Gebr. Boehler & Co Ag Wien, Verkaufsniederlassung Buederich, 4005 Buederich | Segment mold |
| FR2365389A1 (en) * | 1976-09-28 | 1978-04-21 | Fives Cail Babcock | DEVICE FOR ADJUSTING ONE OF THE TWO FRONT PLATES OF A LINGOTIERE OF CONTINUOUS CASTING |
| JPS61137651A (en) * | 1984-12-10 | 1986-06-25 | Kawasaki Heavy Ind Ltd | Mold device for horizontal and continuous casting |
| CH670779A5 (en) * | 1986-04-15 | 1989-07-14 | Concast Standard Ag | |
| DE3735883A1 (en) * | 1987-10-23 | 1989-05-03 | Thyssen Stahl Ag | CHOCOLATE TO CONTINUOUSLY |
| DE3831595A1 (en) * | 1988-09-14 | 1990-03-22 | Mannesmann Ag | METHOD AND DEVICE OF A HORIZONTAL CONTINUOUS CASTING DEVICE FOR METALS |
| DE3833014C2 (en) * | 1988-09-29 | 2001-07-26 | Sms Demag Ag | Continuous casting mold |
| US6041848A (en) * | 1998-01-13 | 2000-03-28 | Sms Concast Division Of Sms-Schloemann Siemag Inc. | Adjustable continuous casting mold |
| CN202224616U (en) * | 2011-08-16 | 2012-05-23 | 中冶连铸技术工程股份有限公司 | Flexible vibration device for continuous casting |
-
2013
- 2013-04-23 IT IT000054A patent/ITUD20130054A1/en unknown
-
2014
- 2014-04-23 US US14/786,521 patent/US20160067770A1/en not_active Abandoned
- 2014-04-23 WO PCT/IB2014/060923 patent/WO2014174446A1/en not_active Ceased
- 2014-04-23 EP EP14728320.4A patent/EP2988889B1/en active Active
- 2014-04-23 CN CN201480035967.1A patent/CN105555437A/en active Pending
Non-Patent Citations (1)
| Title |
|---|
| See references of WO2014174446A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| US20160067770A1 (en) | 2016-03-10 |
| EP2988889B1 (en) | 2017-06-07 |
| WO2014174446A1 (en) | 2014-10-30 |
| CN105555437A (en) | 2016-05-04 |
| ITUD20130054A1 (en) | 2014-10-24 |
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