JP2016215247A - Width control method for hot rolling - Google Patents

Width control method for hot rolling Download PDF

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JP2016215247A
JP2016215247A JP2015104084A JP2015104084A JP2016215247A JP 2016215247 A JP2016215247 A JP 2016215247A JP 2015104084 A JP2015104084 A JP 2015104084A JP 2015104084 A JP2015104084 A JP 2015104084A JP 2016215247 A JP2016215247 A JP 2016215247A
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width
slab
rolled
hot rolling
heating furnace
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JP6248981B2 (en
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将人 中澤
Masato Nakazawa
将人 中澤
清吾 武藤
Seigo Muto
清吾 武藤
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JFE Steel Corp
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Abstract

PROBLEM TO BE SOLVED: To provide a width control method for hot rolling that can stably achieve width reduction by preventing a slab (a material to be rolled) from curving even when a width reduction quantity of the slab is large in a hot rolling line for a steel plate.SOLUTION: The present invention relates to a width control method for hot rolling characterized in that: when a width of a material to be rolled is put in a target range after rolling by a rough rolling machine by performing width reduction of a slab using a width press device and a vertical rolling machine in combination in a hot rolling line where a continuous heating furnace, the width press device, and the rough rolling machine having the vertical roling machine are arranged, a temperature deviation in a width direction of the slab right before the slab is extracted from the continuous heating furnace is found; when the temperature deviation in the width direction of the slab is larger than a predetermined threshold, a pressure reduction quantity of the slab by the width press device is made less than a predetermined reference value or a lower-limit value of a reference range; and a width reduction quantity by the vertical rolling machine is increased to put a width of the rolled material having been roughly rolled within the target range.SELECTED DRAWING: Figure 1

Description

本発明は、鋼板の熱間圧延ラインにおいて、スラブ(被圧延材)の幅圧下を行うに際して、スラブの曲がりを防止して安定的に幅圧下を行うことを可能にする熱間圧延における幅制御方法に関する。   The present invention relates to width control in hot rolling that enables stable width reduction by preventing bending of a slab when performing width reduction of a slab (rolled material) in a hot rolling line of a steel sheet. Regarding the method.

鋼板の熱間圧延ラインにおいて、連続鋳造機にて製造された同一幅のスラブを、スラブ幅方向にスラブを送りつつ連続式加熱炉(以下、単に「加熱炉」ともいう)で加熱した後、製品仕様に応じた幅に造り分けるための装置として、スラブ幅方向に相対峙して設置された1対のプレス金型にてスラブを板幅方向に間欠的に圧下する幅プレス装置と、粗圧延機にスラブ幅方向に相対峙して設置された1対の縦ロール(竪ロール)にてスラブを板幅方向に連続的に圧下する(幅圧延する)縦ロール圧延機とが一般的である。   In a hot rolling line for steel sheets, a slab of the same width produced by a continuous casting machine is heated in a continuous heating furnace (hereinafter also simply referred to as “heating furnace”) while feeding the slab in the slab width direction. As a device for creating different widths according to the product specifications, a width press device that intermittently rolls down the slab in the plate width direction with a pair of press dies installed in a relative manner in the slab width direction, A vertical roll rolling mill is generally used that continuously rolls down the slab in the sheet width direction (width rolling) with a pair of vertical rolls (roller rolls) installed on the rolling mill in a relative heel direction in the slab width direction. is there.

この幅プレス装置による幅圧下では、通常、900〜2000mm程度の幅のスラブに対して最大300〜350mm程度の幅圧下が行われており、連続鋳造機にて同一幅に鋳造されたスラブから、製品仕様に応じた異なる幅の鋼板製品の製造を可能としている。   In the width reduction by this width press apparatus, the width reduction of about 300 to 350 mm at maximum is usually performed for the slab of about 900 to 2000 mm width, and from the slab cast to the same width by a continuous casting machine, It is possible to manufacture steel plate products with different widths according to product specifications.

その際に、例えば、特許文献1で開示された技術では、まず幅プレス装置によってスラブの幅を粗く狭め、続いて縦ロール圧延機によってスラブの幅側面の不均一変形部を長手方向に均一に平坦化するようにしている。   In that case, for example, in the technique disclosed in Patent Document 1, first, the width of the slab is roughly narrowed by a width press device, and then the unevenly deformed portion of the width side surface of the slab is uniformly formed in the longitudinal direction by a vertical roll rolling mill. It is trying to flatten.

また、特許文献2に示されている通り、縦ロール圧延機では、幅圧下量が大きくなるほど、被圧延材の先尾端部の幅落ち量(定常部の幅に対して先尾端部の幅が狭くなる量)が大きくなることから、幅圧下量が大きい場合は、幅圧下の大部分を幅プレス装置によって行うことが一般的である。   Moreover, as shown in Patent Document 2, in the vertical roll rolling mill, as the width reduction amount increases, the width drop amount of the leading end portion of the material to be rolled (the width of the leading end portion with respect to the width of the steady portion). Therefore, when the amount of width reduction is large, most of the width reduction is generally performed by a width press device.

しかしながら、熱延鋼板の製造に供されるスラブの形状は、厚みに対する幅の比が3〜10程度と大きいことから、特に、幅プレス装置での幅圧下量が250mm程度以上の条件では、幅プレス装置での幅圧下により塑性不安定状態になる。   However, the shape of the slab used for manufacturing the hot-rolled steel sheet has a large width-to-thickness ratio of about 3 to 10, and the width of the slab in the width press apparatus is about 250 mm or more. A plastic unstable state occurs due to the width reduction in the press machine.

すなわち、図4に示すように、スラブ1が上方向または下方向へ座屈したり、図5に示すように、スラブ1が幅方向へ曲がりを生じたりしやすくなる。   That is, as shown in FIG. 4, the slab 1 tends to buckle upward or downward, and as shown in FIG. 5, the slab 1 tends to bend in the width direction.

図4に示すようなスラブの座屈現象を防止する技術としては、例えば、特許文献3に示されているように、幅プレス装置で幅圧下を行う際に、スラブを上下方向に挟み込むロールを適宜使用する技術がある。   As a technique for preventing the buckling phenomenon of the slab as shown in FIG. 4, for example, as shown in Patent Document 3, a roll that sandwiches the slab in the vertical direction when performing width reduction with a width press device is used. There are techniques to use as appropriate.

特開昭60−141301号公報JP 60-141301 A 特開2002−263702号公報JP 2002-263702 A 特開2011−140056号公報JP 2011-140056 A

しかしながら、前記特許文献3に記載する方法は、スラブを上下方向からロールで拘束するため、被圧延材の座屈防止には有効であるが、被圧延材の曲がり防止には寄与できない。被圧延材に大きな曲がりが発生すると、その後の粗圧延機の水平ロール圧延機により、曲がりが大きくなってガイド等に当り、圧延が困難となる。   However, the method described in Patent Document 3 is effective in preventing buckling of the material to be rolled since the slab is restrained by a roll from the up and down direction, but cannot contribute to prevention of bending of the material to be rolled. When a large bend occurs in the material to be rolled, the bend becomes large and hits a guide or the like by a horizontal roll mill of a subsequent rough rolling mill, making rolling difficult.

そのため、大きな曲がりが発生しやすい、幅圧下量が大きい被圧延材については、オペレータが幅プレス装置での幅圧下後の被圧延材を目視で確認し、曲がりが大きいことがわかると、圧延ラインを一旦停止し、当該被圧延材を圧延ライン上から除去するための処置を行うようにしており、そのために生産性が阻害されるという問題があった。   Therefore, with regard to the material to be rolled, which is likely to generate a large bend and has a large width reduction amount, the operator visually confirms the material to be rolled after the width reduction in the width press device and finds that the bend is large. Is temporarily stopped, and a treatment for removing the material to be rolled from the rolling line is performed, which has a problem that productivity is hindered.

本発明は、上記のような事情に鑑みてなされたものであり、鋼板の熱間圧延ラインにおいて、スラブの幅圧下量が大きい場合であっても、スラブの曲がりを防止して安定的に幅圧下を行うことを可能にする熱間圧延における幅制御方法を提供することを目的とするものである。   The present invention has been made in view of the above circumstances, and in the hot rolling line of a steel sheet, even when the width reduction amount of the slab is large, the bending of the slab is prevented and the width is stably increased. An object of the present invention is to provide a width control method in hot rolling that enables reduction.

本発明者らは、鋼板の熱間圧延ラインにおいて、幅圧下後の被圧延材の曲がりがどのような操業条件に起因して発生しているかを鋭意調査したところ、図2に示すように、幅プレス装置によるスラブの幅圧下量が大きく、かつ、加熱炉抽出直前のスラブ幅方向温度偏差が大きい場合に、幅圧下後の被圧延材が大きく曲がることを見出した。ここで、スラブ幅方向温度偏差は、加熱炉装入側になったスラブ幅端面の温度と加熱炉抽出側になったスラブ幅端面の温度との差である。   In the hot rolling line of the steel sheet, the present inventors have conducted an earnest investigation as to what operation condition caused the bending of the material to be rolled after the width reduction, as shown in FIG. It has been found that when the width reduction amount of the slab by the width press apparatus is large and the temperature deviation in the slab width direction immediately before extraction in the heating furnace is large, the material to be rolled after the width reduction is bent greatly. Here, the temperature deviation in the slab width direction is a difference between the temperature of the slab width end face on the heating furnace charging side and the temperature of the slab width end face on the heating furnace extraction side.

また、加熱炉抽出後の被圧延材の幅方向温度偏差の推移を調査したところ、図3に示すように、加熱炉抽出直前のスラブ幅方向温度偏差における幅方向温度偏差は、粗圧延後の被圧延材(バー)の幅方向温度偏差には、現れにくいことがわかった。   Moreover, when the transition of the width direction temperature deviation of the material to be rolled after the heating furnace extraction was examined, as shown in FIG. 3, the width direction temperature deviation in the slab width direction temperature deviation immediately before the heating furnace extraction is It turned out that it does not appear easily in the temperature deviation in the width direction of the material to be rolled (bar).

このため、加熱炉抽出直前のスラブの幅方向温度偏差が大きくても、粗圧延機の縦ロール圧延機による幅圧下においては、曲がりが発生していないものと考えられる。   For this reason, even if the temperature deviation in the width direction of the slab immediately before extraction of the heating furnace is large, it is considered that no bending occurs in the width reduction by the vertical roll mill of the rough rolling mill.

本発明は、上記の知見に基づいて想到したものであり、以下の特徴を有している。   The present invention has been conceived based on the above findings and has the following characteristics.

[1]連続式加熱炉と、幅プレス装置と、縦ロール圧延機を有する粗圧延機とを配置した熱間圧延ラインにおいて、幅プレス装置と縦ロール圧延機を併用してスラブの幅圧下を行って、粗圧延機で圧延後の被圧延材の幅を目標範囲にするに際して、連続式加熱炉からスラブを抽出する直前におけるスラブの幅方向の温度偏差を求め、そのスラブの幅方向の温度偏差が予め定めた閾値より大きい場合には、幅プレス装置によるスラブの幅圧下量を、予め定めた基準値または基準範囲の下限値よりもさらに低減して、また、縦ロール圧延機による幅圧下量を増加させて、粗圧延後の被圧延材の幅を目標範囲にすることを特徴とする熱間圧延における幅制御方法。   [1] In a hot rolling line in which a continuous heating furnace, a width press apparatus, and a rough rolling mill having a vertical roll mill are arranged, the width reduction of the slab is reduced by using the width press apparatus and the vertical roll mill in combination. When the width of the material to be rolled after rolling with a rough rolling mill is set to the target range, the temperature deviation in the width direction of the slab immediately before extracting the slab from the continuous heating furnace is obtained, and the temperature in the width direction of the slab When the deviation is larger than a predetermined threshold value, the width reduction amount of the slab by the width press device is further reduced below the predetermined reference value or the lower limit value of the reference range, and the width reduction by the vertical roll mill A width control method in hot rolling, characterized in that the amount is increased so that the width of the material to be rolled after rough rolling is within a target range.

[2]連続式加熱炉からスラブを抽出する直前におけるスラブの幅方向の温度偏差が予め定めた閾値を超える場合には、幅プレス装置によるスラブの幅圧下量を250mm以下とすることを特徴とする前記[1]に記載の熱間圧延における幅制御方法。   [2] When the temperature deviation in the width direction of the slab immediately before extracting the slab from the continuous heating furnace exceeds a predetermined threshold, the width reduction amount of the slab by the width press device is 250 mm or less. The width control method in hot rolling as described in [1] above.

本発明によれば、鋼板の熱間圧延ラインにおいて、幅プレス装置および縦ロール圧延機によるスラブ(被圧延材)の幅圧下量が大きい場合であっても、スラブの曲がりを防止して安定的に幅圧下を行うことが可能になる。その結果、スラブの曲がりによる熱間圧延ラインの生産性の阻害を防ぐことができる。   According to the present invention, in a hot rolling line for steel sheets, even when the width reduction amount of a slab (rolled material) by a width press apparatus and a vertical roll mill is large, the bending of the slab is prevented and stable. It becomes possible to perform width reduction. As a result, it is possible to prevent the productivity of the hot rolling line from being hindered due to the bending of the slab.

本発明の一実施形態における鋼板の熱間圧延ラインの構成図である。It is a block diagram of the hot rolling line of the steel plate in one Embodiment of this invention. 幅プレス装置によるスラブの幅圧下量と加熱炉抽出直前のスラブ幅方向温度偏差と曲がり発生との関係を示した図である。It is the figure which showed the relationship between the width reduction amount of the slab by a width press apparatus, the slab width direction temperature deviation just before extraction with a heating furnace, and bending generation | occurrence | production. 加熱炉抽出直前のスラブ幅方向温度偏差と、粗圧延後におけるバー幅方向の温度偏差との関係を示した図である。It is the figure which showed the relationship between the temperature deviation of the slab width direction just before heating furnace extraction, and the temperature deviation of the bar width direction after rough rolling. スラブの座屈現象を示した図である。It is the figure which showed the buckling phenomenon of the slab. スラブの曲がり現象を示した図である。It is the figure which showed the bending phenomenon of the slab.

本発明の一実施形態を図面に基づいて説明する。   An embodiment of the present invention will be described with reference to the drawings.

図1は、本発明の一実施形態における鋼板の熱間圧延ラインの構成図である。図1に示すように、この熱間圧延ラインでは、連続式加熱炉(以下、単に「加熱炉」ともいう)11で加熱されたスラブ(図示せず)が、幅プレス装置12でまず幅圧下され、その後、粗圧延機13に備え付けられた縦ロール圧延機14により、さらに幅圧下され、粗圧延機13に備え付けられた水平ロール圧延機15での圧延と、仕上圧延機16での圧延を経て、巻取機17で巻き取られる。   FIG. 1 is a configuration diagram of a hot rolling line for steel plates in one embodiment of the present invention. As shown in FIG. 1, in this hot rolling line, a slab (not shown) heated in a continuous heating furnace (hereinafter also simply referred to as “heating furnace”) 11 is first subjected to width reduction by a width press device 12. After that, the width is further reduced by the vertical roll rolling mill 14 provided in the rough rolling mill 13, and rolling in the horizontal roll rolling mill 15 provided in the rough rolling mill 13 and rolling in the finish rolling mill 16 are performed. Then, it is wound up by the winder 17.

そして、制御装置(PLC;プログラマブル ロジック コントローラ)22が、連続式加熱炉11、幅プレス装置12、粗圧延機13(縦ロール圧延機14、水平ロール圧延機15)、仕上圧延機16、巻取機17を制御しており、制御装置22を制御する制御計算機(PC;プロセスコンピュータ)21が、被圧延材の諸元をもとにして、幅プレス装置12と縦ロール圧延機14とで、それぞれどの程度の幅圧下量とするかを判断して、制御装置22に指示している。   And the control apparatus (PLC; Programmable logic controller) 22 is a continuous heating furnace 11, the width press apparatus 12, the rough rolling mill 13 (the vertical roll rolling mill 14, the horizontal roll rolling mill 15), the finish rolling mill 16, and winding-up. The machine 17 is controlled, and a control computer (PC; process computer) 21 for controlling the control device 22 is based on the specifications of the material to be rolled, with the width press device 12 and the vertical roll rolling mill 14, It is determined to what extent the width reduction amount is set, and the control device 22 is instructed.

ちなみに、従来の方法では、幅プレス装置12による設備仕様による幅圧下量の上限値Wuは、設備の仕様により異なるものの、おおむね300mm〜350mmとして設定している。   Incidentally, in the conventional method, although the upper limit value Wu of the width reduction amount by the equipment specifications by the width press device 12 varies depending on the equipment specifications, it is generally set as 300 mm to 350 mm.

これに対して、この実施形態においては、連続式加熱炉11からスラブを抽出する直前におけるスラブの幅方向の温度偏差を求め、そのスラブの幅方向の温度偏差が予め定めた閾値より大きい場合には、幅プレス装置12によるスラブの幅圧下量の上限値を、予め定めた上限値よりも低減し、それによって幅圧下量が不足する分は、縦型ロール圧延機14による幅圧下量を増加させることによって、粗圧延後(水平ロール圧延機15で圧延後)の被圧延材の幅が目標範囲となるようにしている。なお、スラブは連続式加熱炉11のスラブ送り方向にスラブ幅方向を一致させて送りながら加熱する。   On the other hand, in this embodiment, when the temperature deviation in the width direction of the slab immediately before extracting the slab from the continuous heating furnace 11 is obtained and the temperature deviation in the width direction of the slab is larger than a predetermined threshold value. Reduces the upper limit value of the width reduction amount of the slab by the width press device 12 from a predetermined upper limit value, thereby increasing the width reduction amount by the vertical roll mill 14 due to the insufficient width reduction amount. By doing so, the width of the material to be rolled after rough rolling (after rolling by the horizontal roll mill 15) is set to be within the target range. The slab is heated while being fed with the slab width direction aligned with the slab feed direction of the continuous heating furnace 11.

ここで、連続式加熱炉11からの抽出直前におけるスラブの幅方向温度偏差を求める際には、制御計算機21によって、連続式加熱炉11内雰囲気による入出熱を算出するために取得した炉温の実績と、加熱炉11内のスラブからの熱放射による入出熱を算出するためにスラブ配置から計算される形態係数を用いて、3次元熱伝導方程式の数値計算(逐次計算)で、加熱炉11抽出直前における、加熱炉11装入側のスラブ幅端面の温度Tcと、加熱炉11抽出側のスラブ幅端面の温度Teを算出し、スラブ幅方向の温度偏差ΔTを下記の(1)式として求める。   Here, when the temperature deviation in the width direction of the slab immediately before extraction from the continuous heating furnace 11 is obtained, the control computer 21 calculates the temperature of the furnace acquired to calculate the input / output heat due to the atmosphere in the continuous heating furnace 11. Using the results and the form factor calculated from the slab arrangement to calculate the heat input and output due to thermal radiation from the slab in the heating furnace 11, numerical calculation (sequential calculation) of the three-dimensional heat conduction equation Immediately before the extraction, the temperature Tc of the slab width end face on the heating furnace 11 charging side and the temperature Te of the slab width end face on the heating furnace 11 extraction side are calculated, and the temperature deviation ΔT in the slab width direction is expressed by the following equation (1): Ask.

ΔT=|Tc−Te| ・・・(1)     ΔT = | Tc−Te | (1)

なお、スラブ長手方向の特定の位置を代表させることにより、2次元熱伝導方程式の数値計算で、TcとTeを算出してもよい。   Note that Tc and Te may be calculated by numerical calculation of the two-dimensional heat conduction equation by representing a specific position in the longitudinal direction of the slab.

また、スラブの温度を実測して、TcとTeを算出してもよい。   Further, Tc and Te may be calculated by actually measuring the temperature of the slab.

そして、ΔTが予め定めた閾値を超える場合には、制御計算機21は、幅プレス装置12による幅圧下量の上限値Wutを、幅プレス装置12の設備仕様に基づく幅圧下量の基準値(または、基準範囲の下限値)Wuに比べて少ない値として設定する。例えば、幅プレス装置12の設備仕様に基づく幅圧下量の基準範囲が300mm〜350mmであれば、Wu=300mmとして、Wut<300mmとする。   When ΔT exceeds a predetermined threshold, the control computer 21 sets the upper limit value Wut of the width reduction amount by the width press device 12 as the reference value (or the width reduction amount based on the equipment specifications of the width press device 12). The lower limit value of the reference range) is set to a value smaller than Wu. For example, if the reference range of the width reduction amount based on the equipment specifications of the width press device 12 is 300 mm to 350 mm, Wu = 300 mm and Wut <300 mm.

このとき、当初予定していた縦ロール圧延機14による幅圧下量のままで、被圧延材(バー)の幅が目標範囲になる場合には、縦ロール圧延機14による幅圧下量を当初予定していた通りにすればよいが、当初予定していた縦ロール圧延機14による幅圧下量のままでは、被圧延材(バー)の幅が目標範囲にならない場合には、制御計算機21は、幅圧下量の不足分を補うように、縦ロール圧延機14による幅圧下量を増加して設定する。   At this time, when the width of the material to be rolled (bar) is within the target range with the originally planned width reduction amount by the vertical roll rolling mill 14, the width reduction amount by the vertical roll rolling mill 14 is initially planned. However, if the width of the material to be rolled (bar) does not fall within the target range with the amount of width reduction by the vertical roll mill 14 originally planned, the control computer 21 In order to compensate for the shortage of the width reduction amount, the width reduction amount by the vertical roll mill 14 is increased and set.

このようにして、スラブの曲がりが発生する可能性の高い、加熱炉11抽出直前におけるスラブ幅方向温度偏差が大きくて、幅プレス装置12の幅圧下量が大きい場合には、幅プレス装置12による幅圧下量を少なくして、粗圧延後のバーの幅を目標範囲としつつ、スラブの曲がりを防止することができる。   In this way, when the temperature deviation in the slab width direction immediately before extraction of the heating furnace 11 is high and the width reduction amount of the width press device 12 is large, the width press device 12 is likely to cause slab bending. It is possible to prevent the bending of the slab while reducing the width reduction amount and setting the bar width after the rough rolling to the target range.

以下に、本発明の実施例を示す。   Examples of the present invention are shown below.

図2に示す実績データの例では、加熱炉11抽出直前のスラブ幅方向温度偏差ΔTがおおむね55℃を超えると、スラブの曲がりによるトラブルが発生することがわかったので、ΔTの閾値を55℃として設定した。そして、ΔTが閾値55℃を超えたときの、幅プレス装置12の幅圧下量の上限値Wutを250mmとして設定した。   In the example of the actual data shown in FIG. 2, it has been found that if the temperature deviation ΔT in the slab width direction immediately before extraction of the heating furnace 11 exceeds 55 ° C., a trouble due to the bending of the slab occurs. Set as. And the upper limit Wut of the width reduction amount of the width press apparatus 12 when (DELTA) T exceeded the threshold value 55 degreeC was set as 250 mm.

このようにして、幅プレス装置12による幅圧下量と縦ロール圧延機14による幅圧下量を設定すると、従来発生していたスラブの曲がりが全く無くなり、スラブの曲がりによる熱間圧延ラインの生産性の阻害を防ぐことができた。   In this way, when the width reduction amount by the width press device 12 and the width reduction amount by the vertical roll mill 14 are set, the bending of the slab that has occurred conventionally is completely eliminated, and the productivity of the hot rolling line by the bending of the slab is eliminated. It was possible to prevent the inhibition.

1 スラブ
11 連続式加熱炉
12 幅プレス装置
13 粗圧延機
14 縦ロール圧延機
15 水平ロール圧延機
16 仕上圧延機
17 巻取機
21 制御計算機
22 制御装置
DESCRIPTION OF SYMBOLS 1 Slab 11 Continuous heating furnace 12 Width press apparatus 13 Rough rolling mill 14 Vertical roll rolling mill 15 Horizontal roll rolling mill 16 Finishing rolling mill 17 Winding machine 21 Control computer 22 Control apparatus

Claims (2)

連続式加熱炉と、幅プレス装置と、縦ロール圧延機を有する粗圧延機とを配置した熱間圧延ラインにおいて、幅プレス装置と縦ロール圧延機を併用してスラブの幅圧下を行って、粗圧延機で圧延後の被圧延材の幅を目標範囲にするに際して、連続式加熱炉からスラブを抽出する直前におけるスラブの幅方向の温度偏差を求め、そのスラブの幅方向の温度偏差が予め定めた閾値より大きい場合には、幅プレス装置によるスラブの幅圧下量を、予め定めた基準値または基準範囲の下限値よりもさらに低減して、また、縦ロール圧延機による幅圧下量を増加させて、粗圧延後の被圧延材の幅を目標範囲にすることを特徴とする熱間圧延における幅制御方法。   In a hot rolling line in which a continuous heating furnace, a width press apparatus, and a rough rolling mill having a vertical roll mill are arranged, the width reduction of the slab is performed by using both the width press apparatus and the vertical roll mill, When setting the width of the material to be rolled after rolling with a rough rolling mill to the target range, the temperature deviation in the width direction of the slab immediately before extracting the slab from the continuous heating furnace is obtained, and the temperature deviation in the width direction of the slab is determined in advance. If the threshold is larger than the predetermined threshold, the width reduction amount of the slab by the width press device is further reduced below the predetermined reference value or the lower limit value of the reference range, and the width reduction amount by the vertical roll mill is increased. A width control method in hot rolling, characterized in that the width of the material to be rolled after rough rolling is set to a target range. 連続式加熱炉からスラブを抽出する直前におけるスラブの幅方向の温度偏差が予め定めた閾値を超える場合には、幅プレス装置によるスラブの幅圧下量を250mm以下とすることを特徴とする請求項1に記載の熱間圧延における幅制御方法。   When the temperature deviation in the width direction of the slab immediately before extracting the slab from the continuous heating furnace exceeds a predetermined threshold, the width reduction amount of the slab by the width press device is 250 mm or less. A width control method in hot rolling according to 1.
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CN112547797A (en) * 2020-11-23 2021-03-26 山西太钢不锈钢股份有限公司 Comprehensive control method for width and side turning of 430 stainless steel
CN114082792A (en) * 2021-10-19 2022-02-25 首钢集团有限公司 Method for adjusting width of heated plate blank
CN115283436A (en) * 2022-08-26 2022-11-04 广西广盛新材料科技有限公司 Control method, system and control equipment for strip steel production

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JPH03238101A (en) * 1990-02-16 1991-10-23 Ishikawajima Harima Heavy Ind Co Ltd Edging method and edging equipment
JP2002263702A (en) * 2001-03-08 2002-09-17 Nkk Corp Method for rolling reduction for slab width

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JPS63188402A (en) * 1987-01-30 1988-08-04 Sumitomo Metal Ind Ltd Width sizing method for hot slab
JPH03238101A (en) * 1990-02-16 1991-10-23 Ishikawajima Harima Heavy Ind Co Ltd Edging method and edging equipment
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Publication number Priority date Publication date Assignee Title
CN112547797A (en) * 2020-11-23 2021-03-26 山西太钢不锈钢股份有限公司 Comprehensive control method for width and side turning of 430 stainless steel
CN112547797B (en) * 2020-11-23 2022-07-08 山西太钢不锈钢股份有限公司 Comprehensive control method for width and side turning of 430 stainless steel
CN114082792A (en) * 2021-10-19 2022-02-25 首钢集团有限公司 Method for adjusting width of heated plate blank
CN115283436A (en) * 2022-08-26 2022-11-04 广西广盛新材料科技有限公司 Control method, system and control equipment for strip steel production

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