Guiding device for chocks of work rolls in roll stands

The device with movable bending blocks and actuators addresses the limitation of negative bending forces in roll stands, allowing high negative bending forces and flexibility across rolling operations with minimal structural changes.

JP7797699B2Active Publication Date: 2026-01-13SMS GROUP GMBH
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Patent Information

Application Number
JP2024559462
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-04-08
Filing Date
2023-03-22
Publication Date
2026-01-13
Estimated Expiration
2043-03-22

AI Technical Summary

Technical Problem

Existing roll stands are limited in their ability to apply negative bending forces, particularly for small roll diameters, which is necessary for certain rolling operations like skin-pass rolling at low rolling forces.

Method used

A device with movable bending blocks and multiple bending actuators, such as piston/cylinder units, allows for both positive and negative bending forces, enabling high negative bending forces with minimal structural modifications, and includes a cassette structure for modular flexibility and low friction.

Benefits of technology

Enables rolling with high negative bending forces and flexibility across various rolling operations with minimal additional structural effort, enhancing the application range of the roll stand and maintaining low friction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a device (2) for guiding chocks (12) arranged to support two work rolls (10) forming a roll gap of a roll stand (1) and a roll stand. The device (2) comprises two bending blocks (20) for accommodating one chock (12) each, at least one guide (15) for guiding the bending blocks (20) such that the bending blocks (20) are movable relative to one another along the guide (15), and a number of bending actuators (30) arranged to move the bending blocks (20) relative to one another along the guide (15).
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Description

[Technical Field]

[0001] The present invention relates to a device for guiding chocks configured to support work rolls that form the roll gap of a roll stand and to a roll stand for rolling strip-shaped rolled products, preferably for rolling cold strip in a cold rolling plant. [Background technology]

[0002] In the case of flat-rolled metal products, the slab or strip passes through one or more roll stands. A roll stand comprises at least two parallel-oriented work rolls that form a roll gap through which the strip passes for thickness reduction. In addition to the work rolls, roll stands usually also comprise backup rolls and / or intermediate rolls that cooperate with the work rolls for various reasons, such as stabilizing the work rolls, power transmission, etc.

[0003] The work rolls can distort under load, causing the rolled metal strip to have an inconsistent thickness across the strip width. Various measures are known to improve the flatness of the rolled product or generally to affect its cross section, such as crowning, axial shifting or bending of the work rolls by forces acting on the roll neck.

[0004] Systems for bending work rolls are described, for example, in German Patent No. 3906618 and WO 2008 / 080476. These systems are formed by a cassette structure with bending blocks guided on rods, which hold and guide chocks for supporting the work rolls. To bend the work rolls, the work rolls are usually tensioned against the respective backup rolls via piston / cylinder units, so that, in cooperation with a suitable backup roll profile, the work rolls are subjected to the desired positive bending, i.e., a bending convex with respect to the rolling surface of the rolled product.

[0005] However, in special cases, negative bending of the work rolls, i.e., bending them concavely relative to the rolling surface of the rolled product, is desired, for example, in skin-pass rolling at low rolling forces. However, such negative bending concepts are not possible with previous cassette-designed equipment or are limited to very low negative bending forces. This is particularly true for equipment with small roll diameters.

[0006] EP 0 623 401 A1 describes a bending block for bending rolls of a multi-roll roll stand, in which pairs of partial bending jaws are guided vertically one above the other. DE 10 2007 001 322 A1 describes a guide device for chocks of work rolls. [Prior art documents] [Patent documents]

[0007] [Patent Document 1] German Patent No. 3906618 [Patent Document 2] International Publication No. 2008 / 080476 [Patent Document 3] European Patent Application Publication No. 0623401 [Patent Document 4] German Patent Application Publication No. 102007001322 Summary of the Invention [Problem to be solved by the invention]

[0008] The object of the present invention is to provide an improved device for guiding chocks that are designed to support the work rolls that form the roll gap of a roll stand, as well as an improved roll stand for rolling strip-shaped rolled products, in particular to expand the range of application of the roll stand. [Means for solving the problem]

[0009] The problem is solved by a device having the features of claim 1 and a device according to claim 1 6 The problem is solved by a roll stand having the following features: Advantageous developments can be seen from the dependent claims, the following description of the invention and the description of preferred embodiments.

[0010] The device according to the invention, also referred to herein as a "guide device", is used to guide chocks for work rolls in a roll stand. The roll stand is configured for rolling a strip-shaped rolled product, preferably for rolling cold strip in a cold rolling mill. The rolled product is preferably a steel sheet, but other metals and alloys, such as aluminum, copper and magnesium, are also contemplated.

[0011] The apparatus includes two bending blocks each for receiving one of the chocks, at least one guide for guiding the bending blocks such that the bending blocks are movable relative to one another along the guides, and a plurality of bending actuators configured to move the bending blocks relative to one another along the guides.

[0012] In other words, the bending actuator is configured to apply a bending force to the work roll while being mounted between the bending blocks. This can be a positive bending force, in which case the bending blocks are moved apart along the guide, so that the work roll, in cooperation with the backup roll, tends to bend convexly relative to the rolling surface of the rolled product. Optionally, a negative bending force can be achieved by moving the bending blocks toward each other. Rolling under a negative bending force can be performed, for example, in a skin-pass mode, by lifting the upper backup roll, i.e., using only a negative bending force as the rolling load.

[0013] A guide device with multiple bending actuators allows rolling with relatively high negative bending forces for special rolling operations. Furthermore, normal rolling applications can be carried out with positive and low negative bending forces, which expands the application range of a roll stand equipped with one or more guide devices with only minor additional structural effort, i.e., without the use of special adjustment cylinders or similar systems. In addition, the bending system has particularly low friction.

[0014] According to the present invention,Just three bending actuators are provided per guide device, which allows the range of application to be maximized with only minor structural modifications and while maintaining the conventional device.

[0015] song The bending actuators are each configured as a piston / cylinder unit having a bending cylinder and a bending piston supported and movable within the bending cylinder. The bending cylinder is arranged or introduced into one of the bending blocks, while the corresponding bending piston is fixed to the other bending block via a bending piston rod. The piston / cylinder units are preferably operated hydraulically. The application of such a piston / cylinder unit allows the bending actuator to act perpendicularly on the guided bending blocks, which in turn allow for a cassette structure that accommodates chocks. The cassette structure allows for a space-saving and flexible modular construction.

[0016] According to the present invention, the three piston / cylinder units are arranged in the axial direction of the work roll, with two outer piston / cylinder units and one central piston / cylinder unit, and the central piston / The cylinder unit consists of an outer piston / It is installed inversely to the cylinder unit, which improves the cooling effect when applying bending force. / A particularly space-saving installation of the cylinder unit is possible.

[0017] The piston / cylinder units can be used together or alternatively, and in particular in the case of three piston / cylinder units, only the outer piston / cylinder unit or only the inner piston / cylinder unit can be used.

[0018] The piston ring side of the piston / cylinder unit can also be used for power transmission. This means that in the case of, for example, three piston / cylinder units, negative bending forces can be available from the piston face of the central piston / cylinder unit and the piston ring faces of the outer piston / cylinder units, or only from the piston face of the central piston / cylinder unit. The opposite is true for positive bending.

[0019] Preferably, the bending blocks are arranged vertically in their installed position, i.e., in the direction of gravity, one above the other, thereby defining an upper bending block and a lower bending block, which are thus associated with the upper and lower work rolls in the installed state. The bending cylinders of the outer piston / cylinder units are preferably arranged in the lower bending block, while the bending cylinders of the central piston / cylinder unit are arranged in the upper bending block.

[0020] It should be noted that spatial relationship terms such as "above," "below," "up and down," "above," "below," "horizontal," "vertical," etc. are primarily determined by the intended mounting position of the guide device within the roll stand.

[0021] Preferably, the bending blocks each comprise at least one guide bush which is in sliding contact with the guide, whereby a reliable guiding of the bending blocks is achieved with a simple construction.

[0022] Preferably, one or more guides are formed as circular guides, i.e., rod- or cylinder-shaped bodies. The application of circular guides ensures a clear guide relationship without the risk of oversetting that occurs with nested flat guides, ensures problem-free lubrication, and requires only minimal mechanical engineering effort to seal the guide device. Circular guides can be manufactured inexpensively with minimal design effort and are easy to assemble and maintain.

[0023] The problem is further solved by a roll stand for rolling a strip-shaped rolled product, preferably for rolling cold strip in a cold rolling plant, characterized in that the roll stand comprises at least one guide device according to any one of the above-mentioned embodiment variations, preferably two guide devices.

[0024] The features, technical effects, advantages and embodiments described with respect to the guide device apply equally to the roll stand.

[0025] Particularly preferably, the roll stand has two chocks, two corresponding work rolls supported in the chocks and forming a roll gap in which the rolled product transportable in the transport direction can be formed, and two guide devices, in other words the work rolls are held and guided on both sides by the guide devices via the corresponding chocks.

[0026] Preferably, the roll stand further comprises two backup rolls that are capable of correspondingly contacting the work rolls for supporting the work rolls. The roll stand is therefore preferably designed as a four-roll stand (quad-roll stand). However, the guide device can also be used in a six-roll stand (six-high roll stand).

[0027] Preferably, the roll stand comprises two roll housings each defining a housing window, and holding elements are fixed to or integrally formed with the roll housings on both sides of each roll housing in the housing windows, and the holding elements hold one or more guides, whereby the roll housings serve as a stage or frame for fixing the guide devices via corresponding holding elements.

[0028] Preferably, the roll stand is configured for skin-pass rolling, with at least one of the work rolls having a structured rolling surface. A special use of the roll stand is for skin-pass rolling at low rolling forces. In reduction mode, rolling forces currently range from 11,000 kN to 35,000 kN, whereas in skin-pass mode, rolling forces of only about 400 kN may be required. These rolling forces can be achieved with the described new bending block with three piston / cylinder units. Therefore, no original roll adjustment is used. In skin-pass mode, the upper backup roll can be lifted, and the rolled product can be formed with only negative bending forces as rolling forces.

[0029] Preferably, each chock has two guide surfaces that are in substantially complete contact with the corresponding bending block, so that the chock always rests on the entire guide surface in the installed state.

[0030] Further advantages and features of the present invention will become apparent from the following description of the preferred embodiments. Any feature described therein may be implemented alone or in combination with one or more of the above features, unless such features are inconsistent. The following description of the preferred embodiments is made with reference to the accompanying drawings.

[0031] Another preferred embodiment of the present invention will be explained in detail by the following description of the figures. [Brief explanation of the drawings]

[0032] [Figure 1] FIG. 1 is a side view including a stepped section of a roll stand having a bending block for bending a work roll. [Figure 2] FIG. 1 is a perspective view of a device for guiding chocks having a combination of upper and lower bending blocks that are adjustable relative to one another. [Figure 3] 3 is a perspective cross-sectional view of the device according to the embodiment of FIG. 2; DETAILED DESCRIPTION OF THE INVENTION

[0033] In the following, preferred embodiments will be described with reference to the drawings, in which elements having the same, similar or identical functions are provided with the same reference numerals, and redundant descriptions of these elements will be omitted.

[0034] Figure 1 shows a roll stand 1 in the form of a stepped cross section. The roll stand 1 is used to roll strip-shaped rolled products that can be transported in a transport direction (horizontal in Figure 1), in particular for rolling cold strip in cold rolling mills. The rolled products are preferably steel sheets, but other metals and alloys, such as aluminum, copper and magnesium, are also conceivable.

[0035] According to this embodiment, the roll stand 1 is designed as a four-roll stand (quad-roll stand) having two parallel-extending and opposing work rolls 10 forming a roll gap and two corresponding backup rolls 11 in contact with the work rolls 10 to support them accordingly.

[0036] The work roll 10 can have a flat rolling surface or can be structured, i.e., its rolling surface can have a texture that is transferred to the rolled product by rolling. During skin-pass rolling, the rolled product usually undergoes only slight reduction and elongation. Skin-pass rolling can modify the mechanical properties of the rolled product, for example, improving the formability (deep drawing and / or stretch forming properties) of the product. In this way, irregularities that were introduced during, for example, the annealing process or rolling can be eliminated. In addition, skin-pass rolling can set the desired roughness and surface structure of the rolled product by using a correspondingly structured work roll 10.

[0037] The work rolls 10 are held and rotatably supported by chocks 12. The chocks 12 are adapted to the work rolls 10 on the one hand and are compatible for use with bending blocks 20, which will be described in detail below, on the other hand, so that the roll stand 1 can be used modularly with work rolls 10 of different diameters, shapes and textures. In this sense, the chocks 12 constitute the mounting interface between the work rolls 10 and the bending blocks 20.

[0038] The roll stand 1 has two roll housings 13 (only one roll housing 13 is visible in the cross-sectional view of FIG. 1 ), which serve as stages or frames for fixing various components and define a housing window. Within the housing window, on either side of the roll housing 13, holding elements 14 are fixed or integrally connected thereto. Each holding element 14 holds one or more guides 15, preferably formed as circular guides, i.e., rod-shaped or cylindrical bodies.

[0039] On the guides 15, bending blocks 20 for the chocks 12 are guided. The bending blocks 20 are accordingly provided with guide bushes 21 which are in sliding contact with the guides 15. Each bending block 20 is preferably provided with an anti-twist device, for example in the form of a sliding strip, on the rear side of the bending block 20.

[0040] Here, a distinction is made between upper chocks 12 configured to support the upper work roll 10 and lower chocks 12 configured to support the lower work roll 10. Similarly, two lower bending blocks 20 and two upper bending blocks 20 are provided, respectively, which hold the corresponding chocks on either side and guide them vertically along guides 15.

[0041] 2 and 3 show in perspective views an apparatus 2, also referred to herein as a "guiding apparatus," for guiding the chocks 12. The guiding apparatus 2 comprises a combination of upper and lower bending blocks 20 that are adjustable relative to one another along a guide 15. Here, FIG. 3 is a cross-sectional perspective view showing in detail the arrangement of a bending actuator 30 for adjusting or shifting the bending blocks 20.

[0042] 2 and 3, it can be seen that for each device 2, ie for each combination of upper and lower bending blocks 20, there are a plurality of bending actuators 30, in this preferred embodiment just three.

[0043] The bending actuator 30 is configured to apply a bending force while mounted between the upper and lower bending blocks 20, moving them relative to one another along the guide 15. This can be a positive bending force, in which case the bending blocks 20 are moved apart along the guide 15, which tends to bend the work rolls 10, in cooperation with the backup rolls 11, convexly relative to the rolling surface of the rolled product. Optionally, a negative bending force can be applied, moving the bending blocks 20 toward one another. Rolling under a negative bending force can be performed, for example, in a skin-pass mode, by lifting the upper backup roll 12 (shown on the left in FIG. 1 ), i.e., using only a negative bending force as the rolling load, and therefore typically with a relatively low rolling load.

[0044] The bending actuators 30 are preferably realized as piston / cylinder units, each having a bending cylinder 31 in which a bending piston 32 is movably supported. The bending cylinders 31 are respectively introduced or arranged in the corresponding bending block 20, while the corresponding bending piston 32 is fixed to the corresponding bending block 20 via a bending piston rod 33. The operation of the piston / cylinder units is preferably carried out hydraulically. However, the bending actuators 30 can also be configured differently, for example electrically, magnetically, pneumatically, etc.

[0045] In the cassette configuration described here, the bending actuators 30 act perpendicularly on the positively guided bending blocks 20, which in turn house the chocks 12. In the installed state, the chocks 12 preferably rest over the entire guide surface 12a, i.e., the chocks are in contact with the corresponding bending block 20 with each substantially the entire guide surface 12a, as shown in Figure 1. Any axial shift of the work rolls 10 is effected within the bending blocks 20, i.e., the bending system does not have to be moved together.

[0046] In this embodiment, exactly three bending actuators 30 are installed for each combination of upper and lower bending blocks 20, thereby significantly increasing the negative bending force. The bending actuators 30 are preferably located on the guide surface side and on a line parallel to the axial direction of the work roll 10.

[0047] In the case of three piston / cylinder units, the central piston / cylinder unit is preferably installed opposite to the outer piston / cylinder units, which allows for an increased force action when applying bending forces and also allows for a particularly space-saving installation of the piston / cylinder units. Furthermore, it is possible to use only the outer piston / cylinder units or only the inner piston / cylinder units.

[0048] The piston ring side of the piston / cylinder units can also be used for power transmission. This means that negative bending forces are available from the piston face of the central piston / cylinder unit and the piston ring faces of the outer piston / cylinder units, or alternatively only from the piston face of the central piston / cylinder unit. The opposite is true for positive bending.

[0049] Preferably, the bending cylinders 31 of the outer piston / cylinder units reside in the lower bending block 20, while the bending cylinders 31 of the central piston / cylinder unit are mounted in the upper bending block 20.

[0050] The roll stand 1 described here allows rolling with relatively high negative bending forces for special rolling operations. Furthermore, normal rolling applications can be carried out with both positive and negative bending forces, which increases the flexibility of the roll stand's application with only minor additional constructional efforts, i.e., without the use of special adjustment cylinders or similar systems. In addition, the bending system has particularly low friction.

[0051] A special use of the roll stand 1 is in skin-passing at low rolling loads, for example 400 kN to 500 kN. In these low-load skin-passing modes, the upper backup roll 11 is raised and the rolled product is skin-passed with only a negative bending force as the rolling load. For this purpose, a distance measuring system (not shown) is preferably installed in the bending block 20, so that skin-pass load control can be performed without a separate adjusting cylinder.

[0052] Where applicable, all individual features described in the embodiments can be combined with and / or substituted for one another without departing from the scope of the invention. The present application relates to the invention described in the claims, but may also include the following as other aspects. 1. A device (2) for guiding a chock (12) configured to support a work roll (10) forming a roll gap of a roll stand (1), comprising: The device (2) comprises two bending blocks (20) each for accommodating one chock (12), at least one guide (15) for guiding the bending blocks (20) so that the bending blocks (20) are movable relative to one another along the guide (15), and a plurality of bending actuators (30) configured to move the bending blocks (20) relative to one another along the guide (15). 2. 2. The device (2) according to claim 1, characterized in that exactly three bending actuators (30) are provided. 3. 3. The device (2) according to claim 1 or 2, characterized in that the bending actuators (30) are configured as piston / cylinder units each having a bending cylinder (31) and a bending piston (32) supported and movable within the bending cylinder, the bending cylinder (31) being provided on one of the bending blocks (20), while the corresponding bending piston (32) is fixed to the other bending block (20) via a bending piston rod (33). 4. The three piston / cylinder units (30) are arranged in the axial direction of the work roll (10) so as to include two outer piston / cylinder units (30) and one central piston / cylinder unit (30), and the central piston / The cylinder unit (30) is an outer piston / The device (2) according to the above items 2 and 3, characterized in that it is installed inversely to the cylinder unit (30). 5. 5. The device (2) according to claim 4, characterized in that both bending blocks (20) are arranged vertically one above the other in their mounting position, thereby forming an upper bending block (20) and a lower bending block (20), and the bending cylinder (31) of the outer piston / cylinder unit (30) is arranged in the lower bending block (20), while the bending cylinder (31) of the central piston / cylinder unit (30) is arranged in the upper bending block (20). 6. 6. The device (2) according to any one of claims 1 to 5, characterized in that the bending block (20) is provided with at least one guide bush (21), preferably two guide bushes (21), each in sliding contact with a corresponding guide (15). 7. 7. The device (2) according to any one of the above items 1 to 6, characterized in that at least two guides (15) are provided. 8. 8. The device (2) according to any one of the above items 1 to 7, characterized in that one or more guides (15) are formed as circular guides. 9. A roll stand (1) for rolling a strip-shaped rolled product, preferably for rolling a cold strip in a cold rolling facility, characterized in that the roll stand (1) comprises at least one device (2) according to any one of 1 to 8 above. 10. 10. The roll stand (1) according to claim 9, characterized in that the roll stand comprises two chocks (12), two work rolls (10) supported in the chocks and forming a roll gap capable of forming a rolled product transportable in the transport direction, and two devices (2) according to any one of claims 1 to 10, and the roll stand (1) preferably further comprises two backup rolls (11) capable of correspondingly contacting the work rolls (10). 11. 11. A roll stand (1) according to claim 9 or 10, characterized in that the roll stand comprises two roll housings (13) each defining one housing window, and holding members (14) are fixed to or formed integrally with the roll housings (13) within the housing windows on both sides of the roll housings (13), and the holding members (14) hold one or more guides (15). 12. 12. The roll stand (1) according to any one of items 9 to 11 above, characterized in that the roll stand is configured for skin pass rolling, and preferably at least one of the work rolls (10) has a structured rolling surface. 13. A roll stand (1) according to any one of items 9 to 12 above, characterized in that the chocks (12) each have two guide surfaces (12a), each of which is in substantially complete contact with the corresponding bending block (20). [Explanation of symbols]

[0053] 1 roll stand 2. Device for guiding chocks 10 Work Rolls 11 Backup Role 12 Chock 12a Guide surface 13 Roll housing 14 Retaining member 15 Guide 20 Bending Block 21 Guide bush 30 bending actuator 31 Bending Cylinder 32 Bent Piston 33 Bent Piston Rod

Claims

1. A device (2) for guiding a chock (12) configured to support a work roll (10) forming a roll gap of a roll stand (1), comprising: The device (2) comprises two bending blocks (20) for accommodating one chock (12) each, at least one guide (15) for guiding the bending blocks (20) so that the bending blocks (20) are movable relative to one another along the guides (15), and exactly three bending actuators (30) configured to move the bending blocks (20) relative to one another along the guides (15); The bending actuators (30) are each configured as a piston / cylinder unit having a bending cylinder (31) and a bending piston (32) supported and movable within the bending cylinder, the bending cylinder (31) being provided on one of the bending blocks (20), while the corresponding bending piston (32) is fixed to the other bending block (20) via a bending piston rod (33); the three piston / cylinder units (30) are arranged in the axial direction of the work roll (10) to include two outer piston / cylinder units (30) and one central piston / cylinder unit (30), and the arrangement of the bending cylinders (31) and bending pistons (32) of the central piston / cylinder unit (30) in both bending blocks (20) is reversed to the arrangement of the bending cylinders (31) and bending pistons (32) of the outer piston / cylinder units (30) in both bending blocks (20); A device (2) characterized by:

2. 2. The device (2) according to claim 1, characterized in that both bending blocks (20) are arranged vertically one above the other in their mounting position, thereby defining an upper bending block (20) and a lower bending block (20), the bending cylinders (31) of the outer piston / cylinder units (30) being arranged in the lower bending block (20) while the bending cylinders (31) of the central piston / cylinder unit (30) being arranged in the upper bending block (20).

3. 2. Device (2) according to claim 1, characterized in that the bending blocks (20) each comprise at least one guide bush (21) in sliding contact with a corresponding guide (15).

4. 2. Device (2) according to claim 1, characterized in that at least two guides (15) are provided.

5. 2. Device (2) according to claim 1, characterized in that the guide(s) (15) are formed as cylindrical guides.

6. A roll stand (1) for rolling strip-shaped rolled products, characterized in that the roll stand (1) comprises at least one device (2) according to any one of claims 1 to 5.

7. 10. The roll stand (1) according to claim 6, characterized in that the roll stand (1) comprises two chocks (12), two work rolls (10) supported in the chocks and forming a roll gap in which a rolled product transportable in the transport direction can be shaped, and two devices (2) according to any one of claims 1 to 5, and the roll stand (1) comprises two backup rolls (11) that can come into contact with the work rolls (10) accordingly.

8. 8. The roll stand (1) according to claim 7, characterized in that the roll stand comprises two roll housings (13) each defining one housing window, and holding elements (14) are fixed to or formed integrally with the roll housings (13) on both sides within the housing windows, and the holding elements (14) hold one or more guides (15).

9. 8. The roll stand (1) according to claim 7, characterized in that the roll stand is configured for skin-pass rolling and at least one of the work rolls (10) is provided with a structured rolling surface.

10. 8. A roll stand (1) according to claim 7, characterized in that the chocks (12) each have two guide surfaces (12a), each of which is in substantially complete contact with the corresponding bending block (20).

Citation Information

Patent Citations

  • guide device for the chocks of work rolls

    DE102007001322A1

  • Guide device

    DE3906618A1

  • Bending block for bending the rolls of multiroll rolling stands

    EP0623401A1

  • Bending block for bending roll of multistage roll type mill stand

    JP1994344014A

  • Rolling mill and method for rolling rolled strip

    JP2009537330A