Cooling of an obliquely positioned flat rolled product
10960447 ยท 2021-03-30
Assignee
Inventors
Cpc classification
B21B37/74
PERFORMING OPERATIONS; TRANSPORTING
B21B41/00
PERFORMING OPERATIONS; TRANSPORTING
B21B39/02
PERFORMING OPERATIONS; TRANSPORTING
B21B45/0209
PERFORMING OPERATIONS; TRANSPORTING
B21B43/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A flat rolled metal product (1) is first hot-rolled in at least one rolling stand (2), then fed to a cooling zone (5) arranged downstream of the rolling stand (2) and finally cooled in the cooling zone (5). During the rolling in the rolling stand (2), the flat rolled product (1) is oriented horizontally. Before running into the cooling zone (5) and/or when running into the cooling zone (5), the flat rolled product (1) is turned by a first acute angle (a) about an axis running in the transporting direction (x), so that after completion of the turning about the axis the flat rolled product (1) is oriented obliquely. The flat rolled product (1) is cooled in the cooling zone (5) while it is oriented obliquely. The product (1) is then returned to horizontal orientation.
Claims
1. A production method for flat rolled metal product, comprising: hot rolling the flat rolled product in at least one rolling stand; then feeding the rolled product in a horizontal transporting direction at a transport speed to a cooling zone arranged downstream of the rolling stand and then cooling the rolled product in the cooling zone; orienting the flat rolled product horizontally during the rolling in the rolling stand; before running the flat rolled product into the cooling zone, turning the flat rolled product through a first acute angle () about an axis running in the transporting direction such that after completion of the turning of the flat rolled product about the axis, the flat rolled product is oriented obliquely to the horizontal transporting direction, and cooling the flat rolled product in the cooling zone while it is oriented obliquely; wherein turning the flat rolled product through the first acute angle () comprising: maintaining the horizontal positioning of the flat rolled product viewed in the width direction of the flat rolled product, at one side edge of the flat rolled product and raising of the flat rolled product at the other side edge, thereof, or maintaining the horizontal positioning of the flat rolled product, viewed in the width direction of the flat rolled product, at one side edge and lowering of the flat rolled product at the other side edge thereof, or raising the horizontal positioning of the flat rolled product, viewed in the width direction of the flat rolled product, at one side edge of the flat rolled product and lowered at the other side edge of the flat rolled product; guiding and supporting of the flat rolled product from the rolling stand to the cooling zone and in the cooling zone by a series of sequential transport rollers arranged in the transporting direction; rolling the transport rollers about first axes of rotation; and affecting the raising and/or lowering of the flat rolled product step by step by a corresponding orientation of the first axes of rotation of sequentially arranged transport rollers.
2. The production method as claimed in claim 1, further comprising running out the flat rolled product from the cooling zone and while the running out is occurring and/or after the running out from the cooling zone, turning the flat rolled product back through the first acute angle () about the axis such that after completion of the reverse turning movement, the flat rolled product is again oriented horizontally.
3. The production method as claimed in claim 1 wherein the first acute angle () lies in the range between 5 and 30.
4. The production method as claimed in claim 1, further comprising in the section in which the flat rolled product is oriented obliquely, fixing the flat rolled product fixing the flat rolled product in position by a guide device, and arranging the guide device at the side of the flat rolled product, viewed in the width direction of the flat rolled product.
5. The production method as claimed in claim 4 further comprising arranging holdback rollers of the guide device sequentially in series, viewed in the transporting direction of the flat rolled product, wherein the holdback rollers are rotatable about second axes of rotation, and the second axes of rotation form a second acute angle () with the width direction of the flat rolled product, and the arms of the angle both having an upwardly-directed component.
6. The production method as claimed in claim 5, wherein a sum of the first acute angle () and the second acute angle () is less than 90.
7. The production method as claimed in claim 5, wherein the sum of the first acute angle () and the second acute angle () is greater than 75.
8. The production method as claimed in claim 1, wherein the transport speed (v) is greater than 11.5 m/s.
9. The production method as claimed in claim 1 wherein the first acute angle () lies in the range between 10 and 25.
10. The production method as claimed in claim 1 wherein the first acute angle () lies in the range between 15 to 20.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above-described characteristics, features and advantages of this invention, as well as the manner in which they are achieved, will become clearer and more readily understandable taken in conjunction with the following description of the exemplary embodiments, which are explained in more detail in connection with the schematic drawings, in which:
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DESCRIPTION OF THE EMBODIMENT VARIANTS
(11) According to
(12) The flat rolled product 1 extends in a transporting direction x over a length 1. If the flat rolled product 1 is a strip, the length 1 may amount to a fair number of meters. In particular, the length 1 in this case lies generally in the two- or three-digit meter range. With very thin strips, the length 1 may even amount to more than 1 km. In the case of a heavy plate, the length 1 lies in the range of a few meters, generally around 100 m at maximum. In a width direction y, the flat rolled product 1 extends over a width b. The width b may bebut is not necessarily1 m and greater.
(13) Only the working rolls 3 of the rolling stand 2 are shown in
(14) The rolls 3 are rotatable about roll axes 4. The roll axes 4 run horizontally and are arranged one above the other. Accordingly, the flat rolled product 1 is oriented horizontally during the rolling in the rolling stand 2. After the rolling in the rolling stand 2, the flat rolled product 1 runs out from the rolling stand 2 in a horizontal transporting direction x and at a transport speed v. In certain circumstances the transport speed v may be greater than 11.5 m/s, in particular greater than 15 m/s.
(15) The apparatus further comprises a cooling zone 5. The cooling zone 5 is arranged downstream of the rolling stand 2. After running out from the rolling stand 2, the flat rolled product 1 is therefore fed to the cooling zone 5. The flat rolled product 1 is cooled in the cooling zone 5.
(16) The flat rolled product 1 is cooled in the cooling zone 5 while it is oriented obliquely. In the present context oriented obliquely means that the flat rolled product 1 is turned according to the schematic view in
(17) The apparatus has transport rollers 8 for transporting the flat rolled product 1 from the rolling stand to the cooling zone 5 and for transporting the flat rolled product 1 through the cooling zone 5 (and generally also downstream thereof). The transport rollers 8 are arranged sequentially in series, viewed in the transporting direction x. They have first axes of rotation 9 about which the transport rollers 8 are rotatable. The transport rollers 8 are therefore arranged between the rolling stand 2 and the cooling zone 5, in the cooling zone 5 and generally also downstream of the cooling zone 5. The flat rolled product 1 is guided and supported by means of the transport rollers 8 from the rolling stand 2 to the cooling zone 5, guided and supported through the cooling zone 5 andat least as a general rulealso guided and supported downstream of the cooling zone 5. The flat rolled product 1 is guided in the horizontal transport direction x. Some of the reference numerals for the transport rollers 8 and the first axes of rotation 9 are additionally designated in the figures by a suffixed lowercase letter (a, b, . . . ) so that they can be differentiated from one another if necessary. Insofar as reference is made hereinafter generally only to the transport rollers 8 and the first axes of rotation 9, the suffixed lowercase letter is omitted.
(18) In the vicinity of the rolling stand 2, the first axes of rotation 9 of the transport rollers 8 are oriented horizontally, according to the schematic view in
(19) In order to position the flat rolled product 1 obliquely, the flat rolled product 1 is turned through the first acute angle about an axis running in the transporting direction x. After completion of the turning movement about the axis, the flat rolled product 1 is therefore oriented obliquely, as is shown in
(20) In order to turn the flat rolled product 1 through the acute angle , the transport rollers 8 are oriented prior to the run-in into the cooling zone 5 and/or during the run-in in the cooling zone 5 in such a way that the first axes of rotation 9 of sequentially arranged transport rollers 8 progressively run more and more obliquely until the first acute angle is reached. The increase in angle from transport roller 8 to transport roller 8 is generally uniform in this case. If, according to the schematic shown in
(21) Analogous statements also apply of course when the flat rolled product 1 is turned by means of more or fewer than five transport rollers 8a to 8e.
(22) It is possible, according to the schematic shown in
(23) Thus, irrespective of which of the embodiments of
(24) The schematic diagrams of
(25) Let it be assumed that the first acute angle equals 20 and the flat rolled product 1 is to be pivoted according to the schematics in
(26) After running out from the cooling zone 5in individual cases already when running out from the cooling zone 5the flat rolled product 1 is turned once again. In individual cases it may be beneficial to continue turning the flat rolled product 1 until the flat rolled product 1 is oriented completely vertically. Generally, however, the flat rolled product 1 is turned back through the first acute angle about the axis running in the transporting direction x such that after completion of the reverse turning movement the flat rolled product 1 is oriented horizontally once again. This can clearly be seen from the schematic view shown in
(27) The reverse turning of the flat rolled product 1 is generally accomplished totally analogously to the turning of the flat rolled product 1. In particular, the flat rolled product 1 is also supported on the associated transport rollers 8 during the reverse turning movement. Downstream of the run-out from the cooling zone 5 and/or in the run-out from the cooling zone 5, the first axes of rotation 9 progressively run less and less obliquely until the horizontal H is reached. If, according to the schematic shown in
(28) Analogous statements also apply of course when the flat rolled product 1 is turned back by means of more or fewer than five transport rollers 8f to 8j.
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(30) The schematic diagram of
(31) According to the schematic shown in
(32) Also in the case where the second angle is an acute angle, the sum of the first acute angle and the second acute angle R may be even greater than 90 or, according to the schematic shown in
(33) The present invention has many advantages. In particular, even given a relatively small value for the first acute angle of, for example, just 20, the coolant spontaneously drains away quickly and reliably to the side from the top surface of the flat rolled product 1. The sideways draining away of the coolant is facilitated in particular by the vapor film which very quickly forms between the flat rolled product 1 and the coolant on the top surface of the flat rolled product 1. Furthermore, the gravitational force of the flat rolled product 1 leads to a precise lateral guidance of the flat rolled product 1. Finally, productivity can be increased because higher transport speeds v are possible than in the prior art.
(34) Although the invention has been illustrated and described in more detail on the basis of the preferred exemplary embodiment, the invention is not limited by the disclosed examples and other variants may be derived herefrom by the person skilled in the art without leaving the scope of protection of the invention.
LIST OF REFERENCE SIGNS
(35) 1 Rolled product 2 Rolling stand 3 Working rolls 4 Roll axes 5 Cooling zone 6, 7 Side edges 8 Transport rollers 9, 12 Axes of rotation 10 Hydraulic actuators 11 Guide device 13, 14 Arms of the second angle b Width d Thickness H Horizontal l Length v Transport speed x Transport direction y Width direction First acute angle Second angle