EP2193000A2 - Strip edge shape control apparatus and method in strip casting process - Google Patents
Strip edge shape control apparatus and method in strip casting processInfo
- Publication number
- EP2193000A2 EP2193000A2 EP08833282A EP08833282A EP2193000A2 EP 2193000 A2 EP2193000 A2 EP 2193000A2 EP 08833282 A EP08833282 A EP 08833282A EP 08833282 A EP08833282 A EP 08833282A EP 2193000 A2 EP2193000 A2 EP 2193000A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- edge
- strip
- wear
- dams
- upward
- 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.)
- Withdrawn
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
- B22D11/16—Controlling or regulating processes or operations
-
- 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
- B22D11/16—Controlling or regulating processes or operations
- B22D11/18—Controlling or regulating processes or operations for pouring
- B22D11/181—Controlling or regulating processes or operations for pouring responsive to molten metal level or slag level
- B22D11/185—Controlling or regulating processes or operations for pouring responsive to molten metal level or slag level by using optical means
-
- 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
- B22D11/06—Continuous casting of metals, i.e. casting in indefinite lengths into moulds with travelling walls, e.g. with rolls, plates, belts, caterpillars
- B22D11/0622—Continuous casting of metals, i.e. casting in indefinite lengths into moulds with travelling walls, e.g. with rolls, plates, belts, caterpillars formed by two casting wheels
-
- 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
- B22D11/06—Continuous casting of metals, i.e. casting in indefinite lengths into moulds with travelling walls, e.g. with rolls, plates, belts, caterpillars
- B22D11/0637—Accessories therefor
- B22D11/0648—Casting surfaces
- B22D11/066—Side dams
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D41/00—Casting melt-holding vessels, e.g. ladles, tundishes, cups or the like
- B22D41/50—Pouring-nozzles
Definitions
- the present invention relates to the control of the edge shape of a strip in strip casting, and more particularly to an apparatus and method for controlling the edge shape of a strip in a twin-roll strip casting process, which improve the quality of the strip by using cameras to photograph the edge portions of the strip being cast by strip casting, analyzing the photographs, and then controlling edge dams according to the edge shape of the strip.
- FIG. 1 is a view showing the construction of a strip casting apparatus according to the prior art. As shown in FIG. 1, an important process for strip casting generally occurs in a sump between two rolls 1 and 2 that rotate in directions opposite to each other.
- the molten steel When molten steel is supplied to the sump 9 through a submerged entry nozzle 5 from a tundish 4, the molten steel is solidified between a leader strip and the two rolls within 0.2 seconds and rolled.
- the molten steel, the leader strip that is solidified and a strip that is solidified and follows the leader strip generate roll separating force (RSF).
- the roll force is sensed by a load cell 10 placed at the rear part of the rolls. The sides of the two rolls are blocked with ceramic edge dams 8 in order to prevent molten steel from flowing out through the sides of the rolls.
- the solidification capability of molten steel is proportional to the cooling capability of the casting rolls.
- the solidification capability is influenced by the distance between the two rolls, that is, the roll gap, the casting speed (rotating speed) of the rolls, and the height of molten steel in the sump.
- the height of molten steel is measured using a height detection sensor 7.
- m general, when molten steel solidifies, it generates roll force between the rolls.
- the rolling reduction rate is influenced by the roll gap and the casting speed.
- the roll gap is measured using a distance measuring unit 3. For example, if the roll gap is excessively great or if the casting speed is excessively high, the solidification point will decrease below the temperature of the center line of roll nips, such that the roll force gradually decreases, thus causing the non- solidification of molten steel and strip breakdown. In the contrary case, the solidification point will increase, leading to high roll force. Therefore, the roll gap, the casting speed and the roll force are typical casting parameters indicating the solidification properties of the strip.
- the control of the height of molten steel fundamentally requires a high degree of precision and stability. Thus, it is sought to maintain the height of molten steel at a target value starting from immediately after the start of casting. Accordingly, the roll force may seem to result from the relationship between the roll gap and the casting speed.
- the sides of the two rolls are blocked with edge dams made of a ceramic material.
- edge dams made of a ceramic material.
- molten steel can flow into the gap. If molten steel flows into the gap, it will deteriorate the quality of the side of a cast strip, that is, the edge quality of the cast strip, thus reducing the value of the cast strip and abnormally wearing the ceramic material of the edge dam to make normal casting impossible.
- edge dams are oscillated to remove the skull from the edge dams in a very small skull state at the same time at which the skull is produced.
- the oscillation of the edge dams additionally wears the seal plate of the edge dams to form an unnecessarily worn portion between the seal plate of the edge dams and the end face of the rolls, and if molten steel penetrates into and is solidified in that portion, burrs will be formed on a cast strip being produced, thus making the edge shape of the strip poor.
- the efficient control of the edge dams in a twin-roll strip casting process intended for long-term casting is important for producing a high-quality strip and also plays a key role in reducing the production cost by reducing the wear amount of the edge dams.
- the edge quality of a cast strip being produced is one of the most important indices determining the superiority and inferiority of the cast strip product. Such issues must be solved in order to improve quality and productivity, and thus a control method for solving them is required.
- the present invention has been made in order to solve the above- described problems occurring in the prior art, and it is an object of the present invention to provide an apparatus and method for controlling the edge shape of a strip in a twin-roll strip casting process, which comprise observing with a camera a strip being produced in situ, transmitting the observation results to an operation room, analyzing the edge quality of the strip through image processing, and then increasing or decreasing the wear rate and upward shift rate of the edge dams depending on the quality of the strip, thus improving the edge quality of the strip and increasing the life span of the expensive edge dams.
- the present invention provides an apparatus for controlling the edge shape of a strip in a twin-roll strip casting process, the apparatus comprising: an edge dam driving unit which is attached to edge dams attached to both sides of casting rolls so as to control the pressing force of the edge dams against the casting rolls and the upward shift of the edge dams according to the wear and upward shift rate of the edge dams; cameras which are disposed at the strip outlet side of the casting rolls so as to photograph the edge portions of the strip; and a control unit which analyzes the edge shape of the strip from images photographed by the cameras and outputs a signal controlling the wear and upward shift of the edge dams.
- the edge dam driving unit may include: an upward cylinder which is disposed at the upper area of the center of the side opposite the side of the edge dams that comes in contact with the casting rolls, so as to move the edge dams upward; and wear cylinders which are disposed at the left and right sides of the upper portion of the edge dams and at the lower portion of the center of the edge dams so as to press the edge dams against the casting rolls.
- the control unit may include: a main control unit which analyzes the strip edge images photographed by the cameras so as to calculate the wear and upward shift rate of the edge dams; an upward-shift control unit which outputs a signal driving the upward cylinder depending on the upward shift rate and target shift rate of the main control unit; an upward-cylinder servo-valve which drives the upward cylinder according to the driving signal of the upward-shift control unit; a wear control unit which outputs a signal driving the wear cylinders according to the wear rate calculated in the main control unit; and a wear cylinder servo-valve which drives the wear cylinders according to the driving signal of the wear control unit.
- the present invention provides a method for controlling the edge shape of a strip in a twin-roll casting process, the method comprising: a photographing step of photographing images of the edge portions of the strip using cameras disposed at the strip outlet sides of casting rolls; a control signal- producing step of analyzing the strip edge images photographed in the photographing step and outputting a control signal for a wear and upward shift rate; and an edge dam control step of controlling the wear and upward shift of edge dams according to the control signal output in the control signal-producing step.
- the control signal-producing step may include: an edge analysis step of calculating the burr thickness of the edge dams and the length of an edge fin; a step of outputting a signal for maintaining the edge dams at a default wear and upward shift rate set in the normal state of the edge dams, if the edge analysis step shows a burr thickness of less than 1 mm and no existence of an edge fin; a step of outputting a signal for additionally applying a wear and upward shift rate of 1 ⁇ m per m of the strip to the default wear and upward shift rate, if the edge analysis step shows a burr thickness of more than 1 mm but less than 5 mm and an edge fin length of less than 1 cm; and a step of outputting a signal for additionally applying a wear and upward shift rate of 1.5 ⁇ m per m of the strip to the default wear and upward shift rate, if the edge analysis step shows a burr thickness of more than 5 mm and an edge fin length of more than 1 cm.
- the edge dam control step may include the steps of: re-analyzing the edge portions of the strip after performing the control of the edge dams according to the signal output in the control signal-producing step; and controlling the edge dams so as to return to the default value of the edge dam wear and upward shift rate, if the edge portions are normal.
- the default value of the wear and upward shift rate of the edge dams may be set within the range of 0.5 to 5 ⁇ m per m of the strip.
- control signal-producing step and the edge dam control step may be manually carried out.
- the present invention provides the effect of improving the quality and productivity of a strip in a twin-roll strip casting process.
- the present invention provides the effect of allowing an expensive edge dam to be used for a long period of time.
- the present invention provides the effects of suppressing the generation of strip scraps and extending the life span of an edge dam, thus reducing production cost.
- FIG. 1 is a view showing the construction of a strip casting apparatus according to the present invention.
- FIG. 2 is a block diagram of an apparatus for controlling the edge shape of a strip in a twin-roll strip casting process (hereinafter referred to as "edge shape control apparatus") according to an embodiment of the present invention.
- FIG. 3 is a view showing the position of cylinders attached to an edge dam.
- FIG. 4 is a flowchart showing the processing procedure of the inventive method for controlling the edge shape of a strip in a twin-roll strip casting process.
- FIG. 2 is a block diagram showing the construction of an apparatus for controlling the edge shape of a strip in a twin-roll strip casting process
- FIG. 3 is a view showing the position of cylinders attached to an edge dam.
- the edge shape control apparatus comprises an edge dam driving unit 100 which is attached to both sides of casting rolls so as to control the pressing force of the edge dams against the casting rolls and the upward shift of the edge dams depending on the wear and upward shift rate of the edge dams; cameras 200 which are disposed at both sides of the edge dams at the outlet side of the casting rolls 12 through which a strip 12 is discharged, the cameras serving to photograph the edge portion of the strip; and a control unit 300 which analyzes the images photographed by the cameras 200 so as to analyze the burr thickness and edge fin length of the edge portion and outputs to the edge dam driving unit 100 a signal controlling the wear and upward shift rate of the edge dams according to the thickness of a burr and the length of an edge fin.
- the edge dam driving unit 100 comprises: an upward cylinder 101 which is disposed at the upper area of the center of the side opposite the side of the edge dams that comes in contact with the casting rolls, so as to move the edge dam upward; and a wear cylinder 102 which is disposed horizontally at the back side of the edge dams so as to control the forward and backward movement of the edge dams 100 with respect to the casting rolls.
- the upward cylinder 101 which is disposed at the upper area is connected to the upper portion 111 of the back side of the edge dam 110 as shown in FIG. 3.
- the wear cylinder 102 is disposed at the back side of the edge dam 110 in order to move the edge dam forward and backward with respect to the casting rolls.
- the wear cylinder 102 may also be disposed at the back side of the edge dams at each of both sides 112 and 113 of the upper portion of the edge dams and the lower portion 114 of the center of the edge dams.
- the cameras 200 are disposed at a strip outlet side through which a cast strip is discharged.
- the cameras photograph the edge portion of the strip 12 with a resolution allowing the edge portion to be analyzed up to a millimeter scale, and output the photographed images to the control unit 300.
- the control unit 300 comprises: a main control unit 310 which analyzes the strip edge images photographed by the cameras 200 so as to calculate the wear and upward shift rate of the edge dams; an upward-shift control unit 320 which outputs a signal driving the upward cylinder 101 depending on the upward shift rate and target shift rate of the main control unit 310; a first DA converter 321 which converts the driving signal of the upward-shift control unit 320 to an analog signal; a servo-valve 322 which drives the upward cylinder 101 according to the output signal of the first DA converter 321; a first distance measuring sensor 323 which is disposed at each of the casting rolls 1 and 2 so as to sense the upward moving distance of the edge dam 110; a first AD converter 324 which converts the output signal of the first distance measuring sensor 323 to a digital signal and then outputs the digital signal to the upward shift control unit 320; a wear control unit 330 which outputs a signal driving the wear cylinder 102 according to the edge dam wear rate and target wear rate of the main control unit 320;
- the edge shape control apparatus of the present invention performs the control of the pressing force of the edge dam against the casting rolls and the upward shift of the edge dam to the default set wear and upward shift rate of the edge dam while performing casting as in the prior art.
- the default set wear and upward shift rate of the edge dam can be set within the range of 0.5-5 ⁇ m per m of a strip.
- the cameras 200 continuously photograph images of the edge portions of the strip being cast and discharged and output the images to the control unit 300 (Sl).
- control unit 300 analyzes the strip edge images photographed by the cameras 200 and determines whether the state of the strip edge is poor (S2 and S3). If the state of the edge is determined to be poor, the control unit 300 produces and outputs a signal for controlling the wear and upward shift of the edge dams. An example of the wear and upward shift rate of the edge dams will now be described.
- the main control unit If the burr thickness of the edge portion is less than 1 mm and no edge fin exists in the strip images photographed by the cameras 200, the main control unit
- the 310 outputs a signal maintaining the edge dams at the wear and upward shift rate set at a default value in the normal state of the edge dams.
- the wear and upward shift rate set at a default value in the normal state of the edge dams can be set within the range of 0.5 to 5 ⁇ m per m of the strip as described above. If the burr thickness of the strip edge is more than 1 mm but less than 5 mm and the length of the edge fin is less than 1 cm, the main control unit 310 outputs a signal for additionally applying a wear and upward shift rate of 1 ⁇ m per m of the strip to the default set value.
- the main control unit 310 outputs a signal for additionally applying a wear and upward shift rate of 1.5 ⁇ m per m of the strip to the default set value.
- Such output signals of the main control unit 310 are input into the shift control unit 320 and the wear control unit 330 so as to drive the upward cylinder 101 and wear cylinder 102 connected to the back side of the edge dam 110, thus controlling the pressing force of the edge dam against the casting rolls and the upward shift of the edge dam (S4).
- the edge portions of the strip 12 which is produced while controlling the wear and upward shift rate of the edge dam 110 are continuously photographed with the cameras 200 in order to determine whether the state of the edge portions has been restored to the normal state (S5).
- control unit 300 continually controls the wear and upward shift of the edge dam according to the edge dam wear and upward shift rate output in step S4. However, if the state of the edge portions has returned to the normal state, the edge dam wear and upward shift rate of the edge dam returns to the initially set default value, and the pressing force of the edge dam against the casting rolls and the upward shift rate of the edge dam are controlled (S6).
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Continuous Casting (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR1020070097701A KR100977783B1 (en) | 2007-09-28 | 2007-09-28 | Edge shape control device and method of cast strip in twin roll sheet metal manufacturing process |
| PCT/KR2008/005697 WO2009041777A2 (en) | 2007-09-28 | 2008-09-25 | Strip edge shape control apparatus and method in strip casting process |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2193000A2 true EP2193000A2 (en) | 2010-06-09 |
| EP2193000A4 EP2193000A4 (en) | 2015-01-28 |
Family
ID=40512022
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP08833282.0A Withdrawn EP2193000A4 (en) | 2007-09-28 | 2008-09-25 | Strip edge shape control apparatus and method in strip casting process |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US20110073271A1 (en) |
| EP (1) | EP2193000A4 (en) |
| JP (1) | JP5127926B2 (en) |
| KR (1) | KR100977783B1 (en) |
| CN (1) | CN101801562B (en) |
| AU (1) | AU2008304045B2 (en) |
| WO (1) | WO2009041777A2 (en) |
Families Citing this family (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP3813930B2 (en) | 2002-01-09 | 2006-08-23 | 松下電器産業株式会社 | Processor and program execution method |
| KR101243117B1 (en) * | 2009-12-17 | 2013-03-12 | 주식회사 포스코 | Method for controlling edge dam in twin roll strip casting process |
| CN102198495B (en) * | 2010-03-26 | 2013-05-29 | 宝山钢铁股份有限公司 | Method for controlling side seal of twin roll thin strip casting and device |
| JP5837758B2 (en) | 2011-04-27 | 2015-12-24 | キャストリップ・リミテッド・ライアビリティ・カンパニー | Twin roll casting apparatus and control method thereof |
| KR101309920B1 (en) * | 2011-12-13 | 2013-09-17 | 주식회사 포스코 | Apparatus and method of measuring edge dam |
| KR101372681B1 (en) | 2011-12-21 | 2014-03-10 | 주식회사 포스코 | Method and system for reducing edge bulging in twin roll strip casting process |
| JP5924246B2 (en) * | 2012-11-22 | 2016-05-25 | トヨタ自動車株式会社 | Pull-up continuous casting apparatus, pull-up continuous casting method, and solidification interface detection apparatus |
| US10239143B2 (en) * | 2013-12-23 | 2019-03-26 | Posco | Slab scarfing apparatus and method for controlling the same |
| KR101620700B1 (en) * | 2014-07-24 | 2016-05-13 | 주식회사 포스코 | Twin roll strip casting method |
| CN112247085B (en) * | 2020-09-07 | 2021-10-19 | 东北大学 | Control method and device for side seal pressing mechanism of thin strip continuous casting |
| JP7556278B2 (en) * | 2020-12-08 | 2024-09-26 | Ubeマシナリー株式会社 | Quality control method for die castings |
| CN115519096B (en) * | 2022-09-19 | 2023-08-01 | 江苏中科云控智能工业装备有限公司 | State detection system and method for die casting deburring equipment based on big data |
Family Cites Families (15)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS6210936U (en) * | 1985-07-04 | 1987-01-23 | ||
| JPH0232347U (en) * | 1988-08-23 | 1990-02-28 | ||
| JPH04322843A (en) * | 1991-04-20 | 1992-11-12 | Nippon Steel Corp | Method and device for controlling pressing force to side weir in continuous caster for cast strip |
| JPH05161945A (en) * | 1991-12-13 | 1993-06-29 | Nippon Steel Corp | Twin drum type strip continuous casting method |
| JP3021170B2 (en) * | 1992-03-24 | 2000-03-15 | 三菱重工業株式会社 | Twin-drum continuous casting machine |
| KR100333070B1 (en) * | 1997-12-20 | 2002-10-18 | 주식회사 포스코 | Edge Dam Position Control Method in Twin Roll Sheet Casting Machine |
| JP3540980B2 (en) * | 1999-07-16 | 2004-07-07 | 新日本製鐵株式会社 | Twin-drum continuous casting method and apparatus |
| JP2001058244A (en) * | 1999-08-24 | 2001-03-06 | Nippon Steel Corp | Side dam wear amount detection method, side dam wear amount detection device, side dam position control method, and side dam position control device for twin drum continuous casting facility |
| JP2001205400A (en) * | 2000-01-26 | 2001-07-31 | Nippon Steel Corp | Twin drum strip continuous casting method and casting apparatus |
| US6296496B1 (en) * | 2000-08-16 | 2001-10-02 | Hon Hai Precision Ind. Co., Ltd. | Electrical connector and method for attaching the same to a printed circuit board |
| KR100554734B1 (en) * | 2001-08-24 | 2006-02-24 | 주식회사 포스코 | Edge Skull Search in Sheet Metal Casting Process |
| KR100605709B1 (en) * | 2001-12-21 | 2006-08-01 | 주식회사 포스코 | Edge non-solidification method and apparatus using brush roll control in twin roll type sheet manufacturing apparatus |
| KR100584751B1 (en) * | 2001-12-22 | 2006-05-30 | 주식회사 포스코 | Gas layer thickness control device of casting roll surface of twin roll sheet casting machine |
| JP3747007B2 (en) * | 2002-04-09 | 2006-02-22 | 新日本製鐵株式会社 | Twin drum type continuous casting method and apparatus |
| KR101059204B1 (en) * | 2004-06-28 | 2011-08-24 | 주식회사 포스코 | Automatic control of scull removal using image processing |
-
2007
- 2007-09-28 KR KR1020070097701A patent/KR100977783B1/en not_active Expired - Fee Related
-
2008
- 2008-09-25 US US12/676,796 patent/US20110073271A1/en not_active Abandoned
- 2008-09-25 WO PCT/KR2008/005697 patent/WO2009041777A2/en not_active Ceased
- 2008-09-25 EP EP08833282.0A patent/EP2193000A4/en not_active Withdrawn
- 2008-09-25 CN CN2008801074772A patent/CN101801562B/en not_active Expired - Fee Related
- 2008-09-25 JP JP2010522828A patent/JP5127926B2/en not_active Expired - Fee Related
- 2008-09-25 AU AU2008304045A patent/AU2008304045B2/en not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| JP5127926B2 (en) | 2013-01-23 |
| WO2009041777A3 (en) | 2009-06-11 |
| WO2009041777A2 (en) | 2009-04-02 |
| EP2193000A4 (en) | 2015-01-28 |
| AU2008304045A1 (en) | 2009-04-02 |
| JP2010536580A (en) | 2010-12-02 |
| KR100977783B1 (en) | 2010-08-24 |
| AU2008304045B2 (en) | 2011-10-06 |
| KR20090032443A (en) | 2009-04-01 |
| CN101801562B (en) | 2013-03-06 |
| US20110073271A1 (en) | 2011-03-31 |
| CN101801562A (en) | 2010-08-11 |
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