The present invention relates to a method for shape control in a rolling mill and a device for shape control in the rolling mill.
In rolling mills such as continuous cold rolling mills, a method is employed in which the shape of a steel sheet is measured after rolling, and then the result of the measurement is fed back to a rolling mill to control the shape of the steel sheet to within an allowable range. Furthermore, another method is employed in which a sheet thickness gauge or both a sheet thickness gauge and a sheet passing speedometer are provided in each of rolling stands to perform roll gap control or roll speed control in each of the rolling stands (see Patent Literature 1).
Patent Literature 1: Japanese Patent Application Laid-open No. 2012-110939
However, the above-described methods are for controlling the thickness of a steel sheet to within an allowable range, and therefore effective in reducing sheet thickness defects, but are not effective in preventing sheet breakage. Especially, there has been the problem that, when a steel sheet has a width of 1200 mm or wider, such wide steel sheet is prone to cause breakage more easily due to a shape defect.
The present invention is proposed in view of the above-described problem, and an object of the present invention is to provide a method for shape control in a rolling mill and a device for shape control in the rolling mill, the method and the device being capable of substantially preventing the breakage of even a wide steel sheet without increasing the cost of, for example, equipment modifications.
A method for shape control in a rolling mill according to the present invention includes: a measurement step of measuring a shape of a steel sheet on a delivery side of the rolling mill; and a control step of controlling the rolling mill in a manner that the shape of the steel sheet falls within an allowable range, based on the shape of the steel sheet measured at the measurement step, wherein the control step includes a step of setting a control gain smaller than a control gain for a width of a steel sheet as a target for rolling being equal to or smaller than the predetermined value when the steel sheet as the target for rolling has a width greater than a predetermined value.
A device for shape control in a rolling mill according to the present invention includes: a measurement unit configured to measure a shape of a steel sheet on a delivery side of the rolling mill; and a control unit configured to control the rolling mill in a manner that the shape of the steel sheet falls within an allowable range, based on the shape of the steel sheet measured by the measurement unit, wherein the control unit sets a control gain smaller than a control gain for a width of a steel sheet as a target for rolling being equal to or smaller than the predetermined value when the steel sheet as the target for rolling has a width greater than a predetermined value.
A method for shape control in a rolling mill and a device for shape control in the rolling mill according to the present invention can prevent the breakage of even a wide steel sheet without increasing the cost of, for example, equipment modifications.
First, the concepts of a method for shape control in a rolling mill and a device for shape control in the rolling mill according to the present invention will be described with reference to
In contrast, as illustrated in
The control gain of an actuator has conventionally been set to a constant value, regardless of the width of a steel sheet. Here, the control gain indicates an operation amount of the actuator configured to control a shape. When a deviation of a detected shape from a target shape becomes a predetermined value or larger, the actuator operates to perform shape control. The amount of this operation is defined as control gain. However, in the case where the width of a steel sheet is greater than a predetermined width, for example, greater than 1200 mm, the use of the same value of the control gain results in overcontrol, which leads to increased shape distortion, so that the risk of breakage of the steel sheet is incurred. Therefore, in the present invention, the width of a steel sheet that is prone to cause distortion of the shape of the steel sheet is defined beforehand as a predetermined sheet width. When the width of a steel sheet as a target for rolling exceeds the predetermined sheet width, the control gain of the actuator configured to control the shape of the steel sheet is made smaller than a control gain for the width of the steel sheet as a target for rolling being the predetermined sheet width or smaller. Specifically, in the case of examples illustrated in
Next, examples of a method for shape control in a rolling mill and a device for shape control in the rolling mill according to the present invention will be described with reference to
In Examples, in a continuous cold rolling mill 1 illustrated in
In Examples, the thickness of the steel sheet S was 0.1 to 3.5 mm and the rolling speed thereof was 30 to 2000 rpm. The width of the steel sheet S was within a range of 600 to 1300 mm. Furthermore, based on past operational performance, the width of the steel sheet S subjected to the change of control gain was set to 1200 mm, which was a limit beyond which the risk of breakage caused by shape distortion increased. Then, rolling with the same control gain as that in the case of a sheet width of 1200 mm or smaller (Conventional Example: normal gain), rolling with one-half of the control gain in the case of a sheet width of 1200 mm or smaller (Invention Example 1: ½ gain value), and rolling with one-quarter of the control gain in the case of a sheet width of 1200 mm or smaller (Invention Example 2: ¼ gain value) were performed in terms of the respective numbers of passing sheets (the number of coils) illustrated in
Embodiments to which the invention established by the inventors were described above. However, the invention is not limited by the description and drawings that constitute a part of the present disclosure according to the present embodiments. For example, the invention is applicable to single-stand rolling mills such as a Sendzmir mill. In other words, other embodiments, examples, and operational techniques, and the likes made by those skilled in the art, based on the present embodiments, should be all included in the scope of the present invention.
According to the present invention, a method for shape control in a rolling mill and a device for shape control in the rolling mill can be provided, the method and the device being capable of substantially preventing the breakage of even a wide steel sheet without increasing the cost of, for example, equipment modifications.
1 continuous cold rolling mill
2
a,
2
b reel
3
a to 3e rolling stand
10 shape measuring device
11 controller
S steel sheet
Number | Date | Country | Kind |
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2020-050557 | Mar 2020 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2021/005355 | 2/12/2021 | WO |