JP2014180677A - Production device and production method for different thickness steel plate having plate thickness difference in plate width direction - Google Patents

Production device and production method for different thickness steel plate having plate thickness difference in plate width direction Download PDF

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JP2014180677A
JP2014180677A JP2013055599A JP2013055599A JP2014180677A JP 2014180677 A JP2014180677 A JP 2014180677A JP 2013055599 A JP2013055599 A JP 2013055599A JP 2013055599 A JP2013055599 A JP 2013055599A JP 2014180677 A JP2014180677 A JP 2014180677A
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plate
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rolling mill
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width direction
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JP6079344B2 (en
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Toshiyuki Shiraishi
利幸 白石
Koichi Sato
浩一 佐藤
Noriyuki Suzuki
規之 鈴木
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Nippon Steel Corp
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Nippon Steel and Sumitomo Metal Corp
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Abstract

PROBLEM TO BE SOLVED: To provide a production device and production method for a different thickness steel plate, capable of producing the different thickness steel plate at a low cost and producing a different thickness steel plate having plate thickness difference in a plate width direction.SOLUTION: Provided is a production device for a different thickness steel plate having plate thickness difference in a plate width direction comprising: a hot rolling mill of single stand type having a caliber work roll having a profile with diameter difference in a barrel length direction at least on one side; a pay-off reel for winding a metallic strip to an inlet side of the rolling mill; a heating device disposed between the pay-off reel and the hot rolling mill inlet side to heat the metallic strip; a cooling device disposed on an outlet side of the hot rolling mill to cool the metallic strip subjected to rolling; and a tension reel for winding the cooled metallic strip.

Description

本発明は、効率的に板幅方向に板厚差を有する方向の差厚鋼板を製造することが可能な圧延による製造装置および製造方法に関する。   The present invention relates to a rolling manufacturing apparatus and a manufacturing method capable of efficiently manufacturing a differential thickness steel sheet having a thickness difference in the sheet width direction.

近年、自動車の燃費を向上させるために、軽量化が推進されている。軽量化の具体的な方法としては、部材の鋼種を薄手化かつ高強度なものに変更する方法や、鋼よりも比重の軽いアルミニウム合金やマグネシウム合金に変更する方法や、部材の板厚分布を許容される性能が確保できる限界まで付与する方法などがある。   In recent years, weight reduction has been promoted in order to improve the fuel efficiency of automobiles. Specific methods for weight reduction include changing the steel grade of the member to a thinner and higher strength, changing to a lighter specific aluminum alloy or magnesium alloy, and the thickness distribution of the member. There is a method of giving to the limit where acceptable performance can be secured.

上述した方法のなかで、部材に板厚分布を付与した鋼板は、一般に差厚鋼板と呼ばれている。
差厚鋼板は、例えば、長さ1000mm〜2000mm程度、幅300〜600mm程度の材料に、長さで両端から300mmまでは板厚2mm、中央部は板厚1.6mmとした凹型のもの(板厚差2水準対象型)や逆に長手方向で両端から300mmまでは板厚1.8mm、中央部は板厚2.0mmとした凸型のもの(板厚差2水準対象型)などや、板厚をテーパー状に変化させたものや、板厚差が多水準の対称および非対称型のものまで、用途に応じてさまざまな種類がある。
Among the methods described above, a steel plate in which a thickness distribution is given to a member is generally called a differential thickness steel plate.
The difference thickness steel plate is, for example, a material having a length of about 1000 mm to 2000 mm and a width of about 300 to 600 mm, a concave type with a plate thickness of 2 mm from both ends to 300 mm and a center thickness of 1.6 mm (plate Contrary to the thickness difference 2 level target type), conversely in the longitudinal direction up to 300 mm from both ends, the convex thickness (plate thickness difference 2 level target type) with a plate thickness of 1.8 mm and a central portion of 2.0 mm thickness, etc. There are various types depending on the application, such as those in which the plate thickness is changed to a taper shape, and those in which the plate thickness difference is multi-level symmetrical and asymmetrical.

このような長手方向に板厚差を有する差厚鋼板は、圧延機を用いて圧延中にロールギャップを操作(圧下位置を操作)して製造されている(例えば特許文献1)。   Such a differential thickness steel sheet having a thickness difference in the longitudinal direction is manufactured by operating a roll gap (manipulating the reduction position) during rolling using a rolling mill (for example, Patent Document 1).

また、板幅方向に板厚差を有する差厚鋼板の製造方法としては、熱間タンデム圧延機で製造する方法が、例えば特許文献2に開示されているが、このように板幅方向に板厚差の分布が非対称の場合には、キャンバーが発生するので、バッチ圧延ではコイル先端からは圧延できず、コイル先端が巻き取りリールに巻かれて、被圧延材の前後が巻き戻し及び巻き取り機構によって拘束されてから、ワークロールを斜動させて製造するか、連続圧延にしてコイル接合部から斜動させて製造しなければならないなどの制約が生じる。
前者は最終スタンドから巻き取りロールまで数十メートルの距離があるので歩留り落ちが大きいし、後者は上流で熱間コイルを接合して連続化するための装置が必要となり、設備コストの増大を招く。
この様に板幅方向にテーパー状の板厚差を有する差厚鋼板の熱間タンデム圧延機での製造方法については開示されているものの板幅方向にテーパー状以外の板厚差を有する差厚鋼板の熱間圧延機での具体的な製造については開示されておらず、熱間圧延機での板幅方向にテーパー状以外の板厚差を有する差厚鋼板の製造が要望されていた。
Moreover, as a manufacturing method of the differential thickness steel plate having a plate thickness difference in the plate width direction, a method of manufacturing with a hot tandem rolling mill is disclosed in, for example, Patent Document 2, but in this way the plate in the plate width direction is disclosed. When the distribution of thickness differences is asymmetric, camber is generated, so batch rolling cannot roll from the coil tip, the coil tip is wound on a take-up reel, and the material before and after the material to be rolled is unwound and wound. After being constrained by the mechanism, there is a restriction that the work roll must be tilted and manufactured, or it must be continuously rolled and tilted from the coil joint.
Since the former has a distance of several tens of meters from the final stand to the take-up roll, the yield drop is large, and the latter requires a device for joining the hot coil upstream to make it continuous, resulting in an increase in equipment cost. .
Thus, although the manufacturing method in the hot tandem rolling mill of the differential thickness steel plate having a taper thickness difference in the plate width direction is disclosed, the difference thickness having a plate thickness difference other than the taper shape in the plate width direction is disclosed. The specific production of a steel plate by a hot rolling mill is not disclosed, and there has been a demand for production of a differential thickness steel plate having a plate thickness difference other than a taper shape in the plate width direction of the hot rolling mill.

特開平3−281010号公報JP-A-3-281010 特開平4−84607号公報JP-A-4-84607

上述のように圧延機を用いて差厚鋼板を製造する方法を、ここでは、圧延法による差厚鋼板の製造方法と呼ぶ。
圧延法による差厚鋼板の製造方法において、圧延の長手方向に圧延厚さを変化させる方法においては、差厚鋼板の板厚部の異なる長さは一般に短いので、圧延機出側の板厚を測定してロールギャップを制御し、所望の差厚鋼板を製造することは、ロールバイト出口から板厚測定器までの距離による無駄時間の影響により困難である。また、入側板厚および入側速度と出側速度を検出しマスフロー一定則を用いて圧延機出側の板厚を推定し、その値を元にロールギャップを制御し、所望の差厚鋼板を製造することは、トラッキングの精度や幅広がりの影響および板厚と板速度検出器の設置による設備コストの上昇等の問題がある。
The method of manufacturing a differential thickness steel plate using a rolling mill as described above is referred to herein as a differential thickness steel plate manufacturing method by a rolling method.
In the method of manufacturing a differential thickness steel sheet by the rolling method, in the method of changing the rolling thickness in the longitudinal direction of rolling, the different lengths of the thickness part of the differential thickness steel sheet are generally short, so It is difficult to measure and control the roll gap to produce a desired differential thickness steel plate due to the effect of dead time due to the distance from the roll bite outlet to the plate thickness measuring instrument. In addition, the inlet side plate thickness and the inlet side velocity and outlet side velocity are detected, and the plate thickness on the outlet side of the rolling mill is estimated using a constant mass flow rule. The roll gap is controlled based on this value, and the desired differential thickness steel plate is obtained. Manufacturing has problems such as the effect of tracking accuracy and widening, and the increase in equipment cost due to the installation of the plate thickness and plate speed detectors.

従って、予め実験を行い、ロールギャップ(圧下位置)と板厚との関係を求め、ワークロールの回転数を高精度に求めて圧延長を推測し、推測された圧延長をもとに、所望とする板厚になるように前記ロールギャップを制御する方法(プリセット圧延方法)が一般的である。   Therefore, by conducting an experiment in advance, the relationship between the roll gap (rolling position) and the plate thickness is obtained, the number of rotations of the work roll is obtained with high accuracy, the rolling length is estimated, and the desired rolling length is determined based on the estimated rolling length. A method (preset rolling method) of controlling the roll gap so as to obtain a plate thickness of

上述のプリセット圧延方法の代わりに、予め実験を行いミルの変形特性を求め、圧延時の圧延荷重を測定し、ミルの変形特性と測定された圧延荷重からロールバイト出口の板厚を推定し、上述した推測された圧延長をもとに所望とする板厚になるように前記ロールギャップを制御する方法(絶対値圧延方法)もある。   Instead of the above-mentioned preset rolling method, experimenting in advance to determine the deformation characteristics of the mill, measuring the rolling load at the time of rolling, estimating the sheet thickness at the roll bite outlet from the deformation characteristics of the mill and the measured rolling load, There is also a method (absolute value rolling method) for controlling the roll gap so as to obtain a desired plate thickness based on the estimated rolling length described above.

これらのプリセット圧延方法および絶対値圧延方法では、材料は冷延焼鈍材や熱延酸洗材或いは熱延材であり、温度は常温で圧延される。圧延法の生産性を高くする(生産速度を速くする)ためには、高応答なロールギャップ制御が必要であり、従って高応答な油圧圧下装置が必須となるが、油圧圧下装置は高価なため設備コストが高くなり、製造コストを増大させるという問題を招く。
これらの圧延法による製造方法は板幅300〜600mm程度のスリット材で圧延されるため、少量多品種の生産には適しているものの、大量少品種の生産には製造コスト面(製造速度の面)の問題があったため、上述した大量少品種の差厚鋼板を低コストで製造したいという要望があった。
In these preset rolling methods and absolute value rolling methods, the material is a cold-rolled annealing material, a hot-rolled pickling material, or a hot-rolled material, and the temperature is rolled at room temperature. In order to increase the productivity of the rolling method (to increase the production speed), a highly responsive roll gap control is necessary. Therefore, a highly responsive hydraulic reduction device is essential, but the hydraulic reduction device is expensive. The equipment cost becomes high, causing the problem of increasing the manufacturing cost.
Since these rolling methods are rolled with a slit material having a plate width of about 300 to 600 mm, they are suitable for the production of a small variety of products. ), There was a demand to manufacture the above-mentioned large quantity and small variety of differential thickness steel sheets at low cost.

圧延の長手方向に圧延厚さを変化させる圧延法により製造された差厚鋼板は、圧延方向に圧下率が異なるので、圧延されたままでは材質にバラツキが生じる。この材質のバラツキをなくすために必要に応じて熱処理し、さらに必要に応じて表面にメッキ等が施される。この後プレス成形やホットプレス成形が行われて自動車用の部材が作成される。   The difference thickness steel plates manufactured by the rolling method that changes the rolling thickness in the longitudinal direction of rolling have different rolling reductions in the rolling direction. In order to eliminate the variation in the material, heat treatment is performed as necessary, and the surface is plated as necessary. Thereafter, press molding or hot press molding is performed to produce a member for an automobile.

これに対して、本発明は、板幅方向に板厚差のある差厚鋼板を製造することが可能な差厚鋼板の製造装置および製造方法を提供することを目的とし、大量少品種の差厚鋼板を低コストで製造することを可能とするものである。   On the other hand, the present invention aims to provide a manufacturing apparatus and a manufacturing method of a differential thickness steel sheet capable of manufacturing a differential thickness steel sheet having a difference in thickness in the sheet width direction, It is possible to manufacture a thick steel plate at a low cost.

上記目的を達成するため、本発明者らは、鋭意研究を行い、長手方向にロールギャップを制御しなくても、ワークロールの幅方向に、製品寸法分布に対応したロールプロフィルを付与し、かつ、熱間圧延をすることによって、圧下位置をほとんど操作しなくても、幅手方向に所望の板厚差を有する差厚鋼板を効率的に、かつ、長手方向に材質のバラツキの少ない差厚鋼板を製造可能な装置および方法を見いだした。   In order to achieve the above-mentioned object, the present inventors have conducted intensive research and provided a roll profile corresponding to the product size distribution in the width direction of the work roll, without controlling the roll gap in the longitudinal direction, and By carrying out hot rolling, the difference thickness steel plate having a desired thickness difference in the width direction can be efficiently obtained with little variation in material in the longitudinal direction, with little manipulation of the reduction position. We have found an apparatus and method that can manufacture steel sheets.

上記知見に基づく本発明は、
(1)少なくとも片方に、胴長方向に径差のあるプロフィルの孔型ワークロールを有する単スタンドの熱間圧延機と、該圧延機の入側に金属ストリップを巻戻すペイオフリールと、該ペイオフリールと該熱間圧延機入側の間に該金属ストリップを加熱する加熱装置と、該熱間圧延機出側に圧延された該金属ストリップを冷却する冷却装置と、冷却された該金属ストリップを巻取るテンションリールとを有する板幅方向に板厚差を有する差厚鋼板の製造装置であり
(2)上記(1)記載の板幅方向に板厚差を有する差厚鋼板の製造装置において、該単スタンドの熱間圧延機を一対のワークロールからなる2段圧延機とすることを特徴とする板幅方向に板厚差を有する差厚鋼板の製造装置であり、
(3)上記(1)記載の板幅方向に板厚差を有する差厚鋼板の製造装置において、該単スタンドの熱間圧延機を一対のワークロールと一対のバックアップロールからなる4段圧延機とし、孔型ワークロールのプロフィルと逆プロフィルを付与したバックアックロールを使用することを特徴とする板幅方向に板厚差を有する差厚鋼板の製造装置であり、
(4)上記(1)〜(3)の何れか1項記載の板幅方向に板厚差を有する板厚差を有する差厚鋼板の製造装置を用いて差厚鋼板を製造する方法において、少なくとも該熱間圧延機出側に板厚測定装置を設置し、該板厚測定装置の測定値と予め設定した板厚目標値との偏差を求め、該偏差を無くすようにロールギャップを修正することを特徴とする板幅方向に板厚差を有する差厚鋼板の製造方法、
である。
The present invention based on the above findings
(1) A single stand hot rolling mill having a perforated work roll having a profile having a diameter difference in the lengthwise direction on at least one side, a payoff reel for rewinding a metal strip on the entry side of the rolling mill, and the payoff A heating device for heating the metal strip between the reel and the hot rolling mill inlet side, a cooling device for cooling the metal strip rolled to the hot rolling mill outlet side, and the cooled metal strip It is a manufacturing apparatus for a differential thickness steel sheet having a sheet thickness difference in the sheet width direction having a tension reel for winding (2) In the manufacturing apparatus for a differential thickness steel sheet having a sheet thickness difference in the sheet width direction described in (1) above, The single-stand hot rolling mill is a two-stage rolling mill comprising a pair of work rolls, and is a production apparatus for a differential thickness steel sheet having a thickness difference in the sheet width direction,
(3) In the apparatus for manufacturing a differential thickness steel sheet having a thickness difference in the sheet width direction as described in (1) above, the single stand hot rolling mill is a four-high rolling mill comprising a pair of work rolls and a pair of backup rolls. And a differential thickness steel plate production apparatus having a plate thickness difference in the plate width direction, characterized by using a back-up roll imparted with a profile of a perforated work roll and a reverse profile,
(4) In the method of manufacturing a differential thickness steel sheet using the apparatus for manufacturing a differential thickness steel sheet having a thickness difference having a thickness difference in the sheet width direction according to any one of (1) to (3) above, Install a plate thickness measuring device at least on the outlet side of the hot rolling mill, determine the deviation between the measured value of the plate thickness measuring device and a preset plate thickness target value, and correct the roll gap so as to eliminate the deviation A method for producing a differential thickness steel sheet having a thickness difference in the sheet width direction,
It is.

本発明によれば、板幅方向に板厚差のある差厚鋼板を、高価な高応答性の油圧圧下装置を使用せずに、高速かつ低コストで製造することが可能な差厚鋼板の製造装置および製造方法を提供することができる。なお、本発明によれば孔型圧延なので板幅方向に急峻な板厚差を付けることができる。   According to the present invention, a differential thickness steel sheet that can be manufactured at a high speed and at a low cost without using an expensive highly responsive hydraulic reduction device, with a differential thickness steel sheet having a thickness difference in the sheet width direction. A manufacturing apparatus and a manufacturing method can be provided. In addition, according to this invention, since it is a hole type rolling, a steep plate | board thickness difference can be given in a board width direction.

本発明の製造装置の例の側面図である。It is a side view of the example of the manufacturing apparatus of this invention. ワークロールプロフィルと差厚鋼板の断面の一例を示す図である。It is a figure which shows an example of the cross section of a work roll profile and a difference thickness steel plate. ワークロールプロフィルに対応したプロフィルを備えたバックアップロールを具備する4段圧延機のロールセットを示す図である。It is a figure which shows the roll set of the 4-high rolling mill which comprises the backup roll provided with the profile corresponding to a work roll profile.

以下、本発明の実施の形態について図面を参照して説明する。   Hereinafter, embodiments of the present invention will be described with reference to the drawings.

図1は本発明の製造装置の1例を示す側面図である。
以下、本発明の実施の形態について図面を参照して説明する。なお、本明細書および図面において、実質的に同一の機能構成を有する構成要素については、同一の符号を付することにより重複説明を省略する。
FIG. 1 is a side view showing an example of the manufacturing apparatus of the present invention.
Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the present specification and drawings, components having substantially the same functional configuration are denoted by the same reference numerals, and redundant description is omitted.

図1は本発明の圧延装置の1例を示す側面図である。
図1において、被圧延材の金属ストリップSはペイオフリール1にセットされ、デフレクターロール2を経由し、例えば誘導方式等による加熱装置3により、所望の温度になるように温度計4でモニタリングしながら加熱される。所望の温度に加熱された金属ストリップSは圧延機へと移送される。該圧延機入側には張力を測定するためのテンションロール5が配備されている。
FIG. 1 is a side view showing an example of a rolling apparatus according to the present invention.
In FIG. 1, a metal strip S of a material to be rolled is set on a payoff reel 1 and is monitored by a thermometer 4 so as to reach a desired temperature via a deflector roll 2 by, for example, a heating device 3 by an induction method or the like. Heated. The metal strip S heated to a desired temperature is transferred to a rolling mill. A tension roll 5 for measuring the tension is provided on the entrance side of the rolling mill.

圧延機は2段圧延機であり、1対のワークロール6から構成されている。上ワークロールのチョック上部にはパスラインを調整するための電動圧下装置7が配備されている。図示してはいないが、上ワークロールのチョック上部には、ロードセルが配備されており圧延荷重が測定される。   The rolling mill is a two-stage rolling mill and is composed of a pair of work rolls 6. An electric reduction device 7 for adjusting the pass line is provided on the upper work roll chock. Although not shown in the drawing, a load cell is provided at the upper part of the upper work roll chock, and the rolling load is measured.

さらに、図2に示すように、少なくとも一方のワークロール6には、板幅方向に、差厚鋼板の製品寸法分布に対応したロールプロフィルが付与されている。なお、このロールプロフィルは板幅方向に急峻な板厚差を付けることができる。
圧延機出側には圧延された金属ストリップの板厚を測定する板厚計10が設置されており、板厚計からの板厚測定値と、予め設定した板厚目標値との偏差に応じて、油圧圧下装置8によりロールギャップが制御される。図2の下部に示した金属ストリップSは、下ワークロールに平坦なプロフィルを有するロールを配置して圧延した場合に得られるストリップ断面を示す。
Further, as shown in FIG. 2, at least one work roll 6 is provided with a roll profile corresponding to the product size distribution of the differential thickness steel sheet in the plate width direction. This roll profile can give a steep plate thickness difference in the plate width direction.
A thickness gauge 10 for measuring the thickness of the rolled metal strip is installed on the exit side of the rolling mill, and according to the deviation between the thickness measurement value from the thickness gauge and a preset thickness target value. Thus, the roll gap is controlled by the hydraulic pressure reducing device 8. The metal strip S shown in the lower part of FIG. 2 shows a strip cross section obtained when a roll having a flat profile is placed on the lower work roll and rolled.

圧延機の下流には圧延後の金属ストリップを冷却するための冷却装置11と、冷却後の金属ストリップの温度を測定する温度計12が設置されており、温度計からの温度測定値と、予め設定した板温度標値との偏差に応じて冷却装置11により、冷却条件(例えば冷媒の流量)が制御される。その後、冷却制御された金属ストリップは、デフレクターロール13を経由し、テンションリール14に巻き取られる。   A cooling device 11 for cooling the rolled metal strip and a thermometer 12 for measuring the temperature of the cooled metal strip are installed downstream of the rolling mill. The cooling device 11 controls the cooling condition (for example, the flow rate of the refrigerant) according to the deviation from the set plate temperature standard value. Thereafter, the metal strip whose cooling is controlled is wound around the tension reel 14 via the deflector roll 13.

なお、図示していないが、圧延機の上流には、金属ストリップSの水平方向の位置を固定するために、ローラーガイドが数カ所設けられている。また、図示していないが、メインタンクから圧延機入側で潤滑とワークロールの摩耗減少および上記孔型ワークロールへの金属ストリップのメタルフローが容易になるように、また、4段圧延機の場合に孔型ワークロールとバックアップロール間の胴長方向の径差により生じる周速差による滑りの影響を低減するために、低濃度の圧延潤滑油(エマルション潤滑油)がロールバイト入り口とロール表面に、圧延機出側でワークロール冷却のためのクーラント(エマルション圧延潤滑油)が供給されている。図示していないが、このエマルション潤滑油は圧延機の下部に設けられた潤滑油回収層に集められ、上記メインタンクへ戻される。   Although not shown, several roller guides are provided upstream of the rolling mill in order to fix the horizontal position of the metal strip S. Although not shown, lubrication and wear reduction of the work roll are facilitated from the main tank to the rolling mill and metal flow of the metal strip to the perforated work roll is facilitated. In order to reduce the effect of slippage due to the difference in peripheral speed caused by the diameter difference between the perforated work roll and the backup roll, a low concentration of rolling lubricant (emulsion lubricant) is applied to the roll bite entrance and roll surface. In addition, coolant (emulsion rolling lubricant) for cooling the work roll is supplied on the exit side of the rolling mill. Although not shown, the emulsion lubricant is collected in a lubricant recovery layer provided at the lower part of the rolling mill and returned to the main tank.

図1に示した装置を用いて、探索実験を行った。
金属ストリップSは60キロハイテンと呼ばれる引っ張り強さが600MPaの材料であり、板厚3.06mm、板幅1600mmの熱延酸洗材(白皮材とよばれる表面の酸化スケールが除去されたコイル)である。このストリップSはペイオフリールに装着された後、圧延機を経由して、テンションリールに接続される。
圧延機のワークロールは直径500mm、胴長2000mmである。通電加熱装置は、例えば特開2010−44923号公報に開示された装置が好ましい。また、図示してはいないが圧延機出側から板厚計の間に圧延後の金属ストリップ表面に残存する潤滑油を除去するための水切りロールが設置されている。
A search experiment was conducted using the apparatus shown in FIG.
The metal strip S is a material having a tensile strength of 600 MPa called 60 kg high tensile strength, a hot rolled pickling material having a plate thickness of 3.06 mm and a plate width of 1600 mm (a coil from which the oxide scale on the surface called white skin material has been removed) ). After the strip S is mounted on a payoff reel, it is connected to a tension reel via a rolling mill.
The work roll of the rolling mill has a diameter of 500 mm and a body length of 2000 mm. For example, an apparatus disclosed in Japanese Patent Application Laid-Open No. 2010-44923 is preferable as the electric heating apparatus. Although not shown, a draining roll for removing the lubricating oil remaining on the surface of the metal strip after rolling is installed between the thickness gauge from the exit side of the rolling mill.

今回目標とする差厚鋼板のサイズは、全長1600mmで、両端から300(公差0〜+10)mm内側までは板厚1.85mmそれ以外の1000mm(は板厚2.90mmの凸型の板幅400mmの差厚鋼板である。   The target size of the differential thickness steel plate is 1600mm in total length, 1.85mm from the both ends to the inside of 300 (tolerance 0 to +10) mm, and 1000mm other than that (projected plate with a thickness of 2.90mm) It is a differential thickness steel plate having a width of 400 mm.

上ワークロールを上記差厚鋼板のプロフィルに一致するように加工した。
すなわちロール胴長方向でロール中央部1000mmはロール端部よりも半径当たり1.05mm小さくなる凹型のロールプロフィルに加工した。従ってこのロールで圧延された板は、該ロールプロフィルに沿った断面形状となる。
このロールを用いて差厚鋼板の中央部の板厚が目標値になるようにロールギャップを調整して圧延をした。
The upper work roll was processed to match the profile of the above-mentioned differential thickness steel plate.
That is, in the roll body length direction, the center part of the roll 1000 mm was processed into a concave roll profile that was 1.05 mm per radius smaller than the roll end. Therefore, the plate rolled with this roll has a cross-sectional shape along the roll profile.
Using this roll, rolling was performed by adjusting the roll gap so that the thickness of the central portion of the differential thickness steel plate became a target value.

まず、常温で圧延した結果、差厚鋼板の板厚段差部において、圧延により生じた剪断力により、鋼板が圧延方向に切れ目が生じ、板幅方向に分離した。したがって、常温では所望の差厚鋼板を製造することはできなかった。   First, as a result of rolling at room temperature, the steel plate was cut in the rolling direction and separated in the plate width direction by the shearing force generated by rolling at the plate thickness step portion of the differential thickness steel plate. Therefore, the desired differential thickness steel sheet could not be manufactured at room temperature.

そこで、圧延機入側に設けた加熱装置により、材料を加熱して圧延を行った。材料温度600℃以上では、常温時に発生した鋼板が圧延方向に分離することは防止できたが、600℃での圧延では、圧延後の板形状の平坦度が良くなかった。   Therefore, the material was heated and rolled by a heating device provided on the inlet side of the rolling mill. When the material temperature was 600 ° C. or higher, it was possible to prevent the steel plate generated at room temperature from separating in the rolling direction, but in rolling at 600 ° C., the flatness of the plate shape after rolling was not good.

加熱温度を800℃以上にすると、圧延時のロールバイト内での板幅方向のメタルフローが良好になるために、圧延後の板形状の平坦度も良くなった。
本発明では、材料の入側温度を800℃以上にすることが好ましいことが分かった。なお、同様の実験を切り板(長さ5m)で実施したところ、加熱温度を800℃以上にすると、圧延後の板形状の平坦度は良好であったが、大きな圧延方向の反り(L反り)が発生し、別ラインで矯正する必要があった。
When the heating temperature was set to 800 ° C. or higher, the metal flow in the plate width direction in the roll bite during rolling was good, and the flatness of the plate shape after rolling was also improved.
In this invention, it turned out that it is preferable to make the entrance temperature of material into 800 degreeC or more. In addition, when the same experiment was carried out with a cut plate (5 m in length), when the heating temperature was set to 800 ° C. or higher, the flatness of the plate shape after rolling was good, but a large warpage in the rolling direction (L warpage). ) Occurred and had to be corrected on a separate line.

(実施例)
図1に示した装置を用いて、長手方向に板厚差を有する差厚鋼板を製造した。素材等は上述した差厚鋼板のサンプルを製造した条件と同じであり、本発明で製造する長手方向に板厚差を有する差厚鋼板の寸法も上述した条件と同じである。
(Example)
Using the apparatus shown in FIG. 1, a differential thickness steel sheet having a thickness difference in the longitudinal direction was manufactured. The material and the like are the same as the conditions for manufacturing the above-described sample of the differential thickness steel sheet, and the dimensions of the differential thickness steel sheet having a thickness difference in the longitudinal direction manufactured in the present invention are also the same as the above-described conditions.

本発明の実施例では、圧延機出側の板厚計で中央部の板厚が2.90mmになるように圧下位置を制御して圧延をした。   In the examples of the present invention, rolling was performed by controlling the reduction position so that the thickness of the central portion was 2.90 mm with the thickness gauge on the delivery side of the rolling mill.

従来技術としては、上下ともフラットなワークロールを用いて、予め板幅400mmの金属ストリップを圧延実験によって求めた圧延荷重(圧下位置)と板厚の関係を用い、ワークロールの回転速度から圧延長を推定し、その推定値を元に差厚鋼板の板厚の目標値を与え、その板厚の目標値になるように圧延機のロールギャップを制御した。このとき加熱は行っていない。   As a prior art, using a work roll that is flat on both the top and bottom, using a relationship between a rolling load (rolling position) and a plate thickness obtained in advance by a rolling experiment on a metal strip having a plate width of 400 mm, the rolling length is determined from the rotation speed of the work roll. And a target value of the thickness of the differential thickness steel sheet was given based on the estimated value, and the roll gap of the rolling mill was controlled so as to be the target value of the thickness. At this time, heating is not performed.

本発明の場合、従来技術で上述したワークロールの回転速度から圧延長を推定し、その推定値を元に差厚鋼板の板厚の目標値を与え、その板厚の目標値になるように圧延機のロールギャップを制御する必要が無いので設備コストが安価にできる。また、圧延方向に高応答速度で圧下位置を変化させる必要がないので、通常の圧延速度で操業を行うことが可能である。さらに品質(硬度)のバラツキも少なくすることができる。   In the case of the present invention, the rolling length is estimated from the rotation speed of the work roll described above in the prior art, and a target value for the thickness of the differential thickness steel sheet is given based on the estimated value so that the target value of the thickness is obtained. Since it is not necessary to control the roll gap of the rolling mill, the equipment cost can be reduced. Moreover, since it is not necessary to change the reduction position at a high response speed in the rolling direction, it is possible to operate at a normal rolling speed. Furthermore, variations in quality (hardness) can be reduced.

本発明の実施例では上述した差厚鋼板を圧延速度300m/minで板厚精度±10%内で製造することができ、品質(硬度)のバラツキも5%以内であった。   In the examples of the present invention, the above-described differential thickness steel sheets could be manufactured within a sheet thickness accuracy of ± 10% at a rolling speed of 300 m / min, and the variation in quality (hardness) was also within 5%.

図3は、板幅方向に径差を有するプロフィル付きワークロール6と組み合わせるバックアップロール15の例を示す。この例では、ワークロール6のプロフィルに対して、その凹凸を補償する形状のプロフィルをバックアップロール15に付与している。
図2の下部に示した差厚分布を有する鋼板を圧延する場合、中央の厚さ2.90mmの部分の板幅は1000mmであるのに対し、両側の厚さ1.85mmの部分の板幅は左右合計でも600mmであるので、中央部の厚さ2.90mmの板幅1000mmの部分において、バックアップロールで、ワークロールを支持する圧延方法が、ヘルツ圧力低減と、安定操業の面で、好ましい。
FIG. 3 shows an example of the backup roll 15 combined with the work roll 6 with a profile having a diameter difference in the plate width direction. In this example, a profile having a shape that compensates for the unevenness is imparted to the backup roll 15 with respect to the profile of the work roll 6.
When rolling the steel sheet having the difference thickness distribution shown in the lower part of FIG. 2, the plate width of the portion having a thickness of 2.90 mm at the center is 1000 mm, whereas the plate width of the portion having a thickness of 1.85 mm on both sides. Is 600 mm in total in the left and right, and therefore, a rolling method for supporting the work roll with a backup roll in the portion with a plate width of 1000 mm having a thickness of 2.90 mm in the center is preferable in terms of Hertz pressure reduction and stable operation. .

本発明によれば、板幅方向に板厚差のある差厚鋼板を、高価な高応答性の油圧圧下装置を使用せずに、高速かつ低コストで製造することができ、かつ、大量少品種の製造が可能であるので、自動車部品や鉄鋼製品の軽量化及び製造コストの削減が可能となり、産業上の利用価値は大なるものがある。   According to the present invention, a differential thickness steel sheet having a thickness difference in the sheet width direction can be manufactured at high speed and at low cost without using an expensive highly responsive hydraulic reduction device, and a large amount of steel sheets can be reduced. Since it is possible to manufacture various varieties, it is possible to reduce the weight of automobile parts and steel products and reduce the manufacturing cost, and the industrial utility value is large.

1 ペイオフリール
2 デフレクターロール
3 加熱装置
4 温度計
5 テンションロール
6 ワークロール
7 電動圧下装置
8 油圧圧下装置
9 テンションロール
10 板厚計
11 冷却装置
12 温度計
13 デフレクターロール
14 テンションリール
15 バックアップロール
S 金属ストリップ
DESCRIPTION OF SYMBOLS 1 Payoff reel 2 Deflector roll 3 Heating device 4 Thermometer 5 Tension roll 6 Work roll 7 Electric reduction device 8 Hydraulic reduction device 9 Tension roll 10 Thickness meter 11 Cooling device 12 Thermometer 13 Deflector roll 14 Tension reel 15 Backup roll S Metal strip

Claims (4)

少なくとも片方に、胴長方向に径差のあるプロフィルの孔型ワークロールを有する単スタンドの熱間圧延機と、該熱間圧延機の入側に金属ストリップを巻戻すペイオフリールと、該ペイオフリールと該熱間圧延機入側の間に該金属ストリップを加熱する加熱装置と、該熱間圧延機出側に圧延された該金属ストリップを冷却する冷却装置と、冷却された該金属ストリップを巻取るテンションリールとを有する板幅方向に板厚差を有する差厚鋼板の製造装置。   A single stand hot rolling mill having at least one profiled work roll having a diameter difference in the lengthwise direction, a payoff reel for rewinding a metal strip on the entry side of the hot rolling mill, and the payoff reel And a heating device for heating the metal strip between the inlet side of the hot rolling mill, a cooling device for cooling the metal strip rolled to the outlet side of the hot rolling mill, and winding the cooled metal strip. An apparatus for producing a differential thickness steel plate having a thickness difference in a plate width direction having a tension reel. 請求項1記載の板幅方向に板厚差を有する差厚鋼板の製造装置において、該単スタンドの熱間圧延機を一対のワークロールからなる2段圧延機とすることを特徴とする板幅方向に板厚差を有する差厚鋼板の製造装置。   In the manufacturing apparatus of the difference thickness steel plate which has a plate | board thickness difference in the plate | board width direction of Claim 1, The hot rolling mill of this single stand is made into the two-stage rolling mill which consists of a pair of work roll, The board width characterized by the above-mentioned. An apparatus for manufacturing a differential thickness steel plate having a difference in thickness in the direction. 請求項1記載の板幅方向に板厚差を有する差厚鋼板の製造装置において、該単スタンドの熱間圧延機を一対のワークロールと一対のバックアップロールからなる4段圧延機とし、該差厚鋼板を圧延する際の圧延荷重が、孔型ワークロールのプロフィルと逆プロフィルを付与したバックアックロールを使用することを特徴とする板幅方向に板厚差を有する差厚鋼板の製造装置。   The apparatus for producing a differential thickness steel sheet having a thickness difference in the sheet width direction according to claim 1, wherein the single stand hot rolling mill is a four-stage rolling mill comprising a pair of work rolls and a pair of backup rolls. An apparatus for producing a differential thickness steel sheet having a sheet thickness difference in the sheet width direction, wherein a backing roll having a profile of a perforated work roll and a reverse profile is used as a rolling load when rolling the thick steel sheet. 請求項1〜3の何れか1項に記載の板幅方向に板厚差を有する板厚差を有する差厚鋼板の製造装置を用いて差厚鋼板を製造する方法において、少なくとも該熱間圧延機出側に板厚測定装置を設置し、該板厚測定装置の測定値と予め設定した板厚目標値との偏差を求め、該偏差を無くすようにロールギャップを修正することを特徴とする板幅方向に板厚差を有する差厚鋼板の製造方法。   In the method of manufacturing a differential thickness steel plate using the manufacturing apparatus of the differential thickness steel plate which has a plate thickness difference which has a plate thickness difference in the plate width direction of any one of Claims 1-3, At least this hot rolling A plate thickness measuring device is installed on the machine exit side, a deviation between a measured value of the plate thickness measuring device and a preset plate thickness target value is obtained, and a roll gap is corrected so as to eliminate the deviation. A method for producing a differential thickness steel sheet having a thickness difference in the sheet width direction.
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JP2014226692A (en) * 2013-05-22 2014-12-08 新日鐵住金株式会社 Manufacturing apparatus and manufacturing method for differential thickness steel plate having plate thickness difference in plate width direction
CN110315245A (en) * 2018-03-30 2019-10-11 上海梅山钢铁股份有限公司 Strip steel taping head position control method

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