JPS6267122A - Method for preventing meandering of metal strip - Google Patents
Method for preventing meandering of metal stripInfo
- Publication number
- JPS6267122A JPS6267122A JP20624685A JP20624685A JPS6267122A JP S6267122 A JPS6267122 A JP S6267122A JP 20624685 A JP20624685 A JP 20624685A JP 20624685 A JP20624685 A JP 20624685A JP S6267122 A JPS6267122 A JP S6267122A
- Authority
- JP
- Japan
- Prior art keywords
- metal strip
- zone
- strip
- annealing furnace
- steepness
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Landscapes
- Registering, Tensioning, Guiding Webs, And Rollers Therefor (AREA)
- Heat Treatment Of Strip Materials And Filament Materials (AREA)
Abstract
Description
【発明の詳細な説明】
(産業上の利用分野)
本発明は、ブリキ原板、自動車用鋼板、ステンレス鋼板
等の金属ストリップを処理する連続焼鈍炉において、該
焼鈍炉の加熱帯の前半部で金属ストリップが蛇行するこ
とを防止する分野に関するものである。Detailed Description of the Invention (Industrial Application Field) The present invention provides a continuous annealing furnace for processing metal strips such as tin plates, automobile steel plates, stainless steel plates, etc. It relates to the field of preventing strips from meandering.
(従来の技術)
一般に金属ストリップの連続熱処理炉には、金属ストリ
ップ搬送のため多数のハースロールが使用される。例え
ば第2図に示すように竪型連続焼鈍炉においては、加熱
帯2、均熱帯3、徐冷帯4、急冷帯5に夫々多数のハー
スロール6が設けられており、金属ストリップ1を、こ
のハースロール6に順次巻き掛けて矢印Aから矢印Bの
方向に焼鈍炉を通過させて所定の熱処理を行うようにな
っている。この焼鈍炉の加熱帯前半部では、低温の金属
ストリップがハースロール6に当接するためにハースロ
ール6の温度分布(以下サーマルクラウンと称す)は第
3図の実線に示すような温度分布をしている。そして、
ラインスピードが上る程、このハースロール6の温度は
分布は第3図の点線に示すように大きな凹型となる。こ
のような凹型をしたプロフィールのロールにおいては、
金属ストラツプの形状が耳伸びや腹伸びの状態であると
、直ちに張力のアンバランスが生じて金属ストリップは
大きく蛇行してしまう。そのために、第4図に示すよう
にラインスピードを減速して、ロールエツジ部の温度と
ロールセンタ一部の温度差を少なく、即ちサーマルクラ
ウンが小さくなるようにして操業せざるを得ないので能
率が低下してしまう。また、これに対処するためにロー
ルの初期クラウンを大きくすると、ラインスピードが遅
くなるとクラウンが凸形状になりヒートバックルを起す
。(Prior Art) Generally, a continuous heat treatment furnace for metal strip uses a large number of hearth rolls for conveying the metal strip. For example, as shown in FIG. 2, in a vertical continuous annealing furnace, a large number of hearth rolls 6 are provided in each of the heating zone 2, soaking zone 3, slow cooling zone 4, and rapid cooling zone 5. The material is sequentially wound around this hearth roll 6 and passed through an annealing furnace in the direction of arrow A to arrow B to perform a predetermined heat treatment. In the first half of the heating zone of this annealing furnace, the low-temperature metal strip comes into contact with the hearth roll 6, so the temperature distribution of the hearth roll 6 (hereinafter referred to as thermal crown) is as shown by the solid line in Figure 3. ing. and,
As the line speed increases, the temperature distribution of the hearth roll 6 becomes more concave as shown by the dotted line in FIG. In a roll with such a concave profile,
If the shape of the metal strap is stretched at the edges or at the sides, the tension will immediately become unbalanced and the metal strip will meander significantly. Therefore, as shown in Figure 4, it is necessary to reduce the line speed and reduce the temperature difference between the roll edge and the roll center, in other words, to reduce the thermal crown, which improves efficiency. It will drop. Additionally, if the initial crown of the roll is made larger to deal with this, the crown becomes convex as the line speed becomes slower, causing heat buckling.
そこで、ハースロールのクラウン量を制御することで金
属ストリップを安定した状態で搬送する試みが多数提案
されている。例えば、特開昭57−177930号公報
および実開昭58−10546号公報にはハースロール
を加熱、冷却することでクラウン量を制御することが、
また実開昭55−172359号公報にはベンディング
装置を設けてクラウン量を調整することが開示されてい
る。Therefore, many attempts have been made to transport the metal strip in a stable state by controlling the crown amount of the hearth roll. For example, Japanese Unexamined Patent Application Publication No. 57-177930 and Japanese Utility Model Application No. 58-10546 disclose that the amount of crown is controlled by heating and cooling the hearth roll.
Further, Japanese Utility Model Application Publication No. 55-172359 discloses that a bending device is provided to adjust the crown amount.
(発明が解決しようとする問題点)
しかしながら、前述の技、術を実操業に適用するにはク
ラウン量の測定手段およびその制御手段を各ハースロー
ル毎に設けなければならず、コスト面等に多くの問題点
が残されている。(Problems to be Solved by the Invention) However, in order to apply the above-mentioned techniques and techniques to actual operations, it is necessary to provide a means for measuring the amount of crown and a means for controlling the crown amount for each hearth roll, which reduces costs. Many problems remain.
本発明の目的は、従来のように各ハースロール毎にクラ
ウン量の測定手段およびその制御手段を設けることなく
、加熱帯の前半部でのサーマルクラウンの影響によって
生じる金属ストリップの蛇行を防止する方法を提供する
ことにある。An object of the present invention is to prevent meandering of a metal strip caused by the influence of thermal crown in the front half of a heating zone without providing a means for measuring the amount of crown and a means for controlling it for each hearth roll as in the conventional method. Our goal is to provide the following.
(問題点を解決するための手段)
本発明は、第1図に示すように竪型連続焼鈍炉の加熱帯
2の入側で形状矯正装置、例えばレベラー8により金属
ストリップを平坦に矯正し通板することにより、35抛
pm以上のラインスピードで稼動している竪型連続焼鈍
炉の加熱帯前半部での金属ストリップの蛇行を防止する
ことである。(Means for Solving the Problems) As shown in FIG. 1, the present invention aims at flattening the metal strip by using a shape straightening device, for example, a leveler 8, on the entry side of the heating zone 2 of a vertical continuous annealing furnace. The purpose of this plate is to prevent the metal strip from meandering in the front half of the heating zone of a vertical continuous annealing furnace operating at a line speed of 35 pm or higher.
また、加熱帯2の最大加熱能力A T/Hと急峻度ハ
ツブの形状を矯正すると金属ストリップの蛇行が防止で
きる。Furthermore, by correcting the maximum heating capacity AT/H of the heating zone 2 and the shape of the steepness hub, meandering of the metal strip can be prevented.
この急峻λは、第6図に示すように金属ストリップ1の
波長をP、波の高さをHとした場合、λ=二×100と
定義される。This steepness λ is defined as λ=2×100, where P is the wavelength of the metal strip 1 and H is the height of the wave as shown in FIG.
(作 用)
本発明はラインスピードが350mpm以上で稼動する
竪型連続焼鈍炉を対象としているが、その理由はライン
スピードと200+mm以上の蛇行発生回数が第7図に
示すような関係となるので、ラインスピードが350m
pm未満で稼動させる場合は金属ストリップを平坦に矯
正する必要がないからである。(Function) The present invention is directed to a vertical continuous annealing furnace that operates at a line speed of 350 mpm or more, and the reason for this is that the line speed and the number of occurrences of meandering of 200+ mm or more have a relationship as shown in Figure 7. , line speed is 350m
This is because when operating at less than pm, there is no need to flatten the metal strip.
また、最大加熱能力A T/Hと急峻度λの関係をハ
炉の入側の金属ストリップ形状と通板車数の関係につい
てのデータをとると第8図のようになる。Further, the relationship between the maximum heating capacity AT/H and the steepness λ is as shown in FIG. 8 by taking data on the relationship between the shape of the metal strip on the entrance side of the furnace and the number of passing cars.
この図からもわかるように急峻度λと通板車数は反比例
の関係となり、かかるデータを重回帰分析したところ、
通板車数(T/H) X急峻度(λ)=86.4なる関
係が得られた。したがって、この関係よりになるように
入側の金属ストリップの形状を矯正することにより、加
熱帯の加熱能力を最大限に発揮できるからである。As can be seen from this figure, the steepness λ and the number of vehicles passing the plate are inversely proportional, and a multiple regression analysis of this data revealed that
The following relationship was obtained: number of passing trucks (T/H) x steepness (λ) = 86.4. Therefore, by correcting the shape of the metal strip on the entrance side so as to satisfy this relationship, the heating ability of the heating zone can be maximized.
(実施例)
連続焼鈍炉の加熱帯前半部で、蛇行の激しい中挟の金属
ストリップを急峻度λ、即ち矯正率を変えて通板した結
果を第5図に示す。この図かられかるように、連続焼鈍
炉の入側の金属ストリップが平坦な程、蛇行の起りにく
い高速のラインスピードで安定した操業が可能になった
。例えば、ブリキ原板の場合で板厚0.311ns、板
幅700++mの金属ストリップを連続焼鈍するときに
、連続焼鈍炉入側の急峻度を1%程度に押えることで従
来の平均ラインスピードが400mpm位であったもの
が、本発明の方法によれば550IIlpI11までス
ピードアップできた。(Example) FIG. 5 shows the results of threading a heavily meandering interposed metal strip with varying steepness λ, ie, straightening rate, in the first half of the heating zone of a continuous annealing furnace. As can be seen from this figure, the flatter the metal strip on the entrance side of the continuous annealing furnace, the more stable the operation at a high line speed with less meandering. For example, when continuously annealing a metal strip with a thickness of 0.311 ns and a width of 700 ++ m in the case of a tin plate, by keeping the steepness at the entrance of the continuous annealing furnace to about 1%, the conventional average line speed can be reduced to about 400 mpm. However, according to the method of the present invention, the speed could be increased to 550IIlpI11.
(発明の効果)
以上説明したように、本発明によれば連続焼鈍炉入側で
金属ストリップを平坦にすることにより、連続焼鈍炉の
加熱帯前半部での金属ストリップの蛇行を防止できると
ともに歩留りの低下を招くことなく安定した操業が可能
となり、生産性が向上し、品質も向上できる。(Effects of the Invention) As explained above, according to the present invention, by flattening the metal strip on the entry side of the continuous annealing furnace, meandering of the metal strip in the front half of the heating zone of the continuous annealing furnace can be prevented and the yield can be improved. It is possible to operate stably without causing a decline in productivity, improve productivity, and improve quality.
第1図は本発明の方法を実施する場合に用いる装置の一
例を示す図であり、
第2図は連続焼鈍炉の概観を示す図であり、第3図はハ
ースロールの温度分布を示す図である。
第4図はラインスピード、ハースロールセンタ一温度及
びロールエツジ温度の関係を示す図であり、
第5図は急峻度とラインスピードの関係を示す図であり
、
第6図は急峻度を定義するための図である。
また、第7図はラインスピードと蛇行発生回数の関係を
示す図であり、
第8図は急峻度と通板車数の関係を表す図である。FIG. 1 is a diagram showing an example of the apparatus used when carrying out the method of the present invention, FIG. 2 is a diagram showing an overview of a continuous annealing furnace, and FIG. 3 is a diagram showing the temperature distribution of the hearth roll. It is. Figure 4 is a diagram showing the relationship between line speed, hearth roll center temperature and roll edge temperature, Figure 5 is a diagram showing the relationship between steepness and line speed, and Figure 6 is a diagram to define steepness. This is a diagram. Moreover, FIG. 7 is a diagram showing the relationship between line speed and the number of occurrences of meandering, and FIG. 8 is a diagram showing the relationship between steepness and the number of vehicles passing.
Claims (1)
ドで金属ストリップを連続焼鈍するにあたり、該炉の入
側で予め平坦に矯正した金属ストリップを前記炉に導入
通板させることを特徴とする金属ストリップの蛇行防止
方法。 2、最大加熱能力A T/Hと急峻度λの関係がλ≦8
6.4/Aになるように金属ストリップを矯正すること
を特徴とする特許請求の範囲第1項記載の金属ストリッ
プの蛇行防止方法。[Claims] 1. When continuously annealing a metal strip at a line speed of 350 mpm or more in a vertical continuous annealing furnace, a metal strip that has been flattened in advance on the entrance side of the furnace is introduced into the furnace and passed through it. A method for preventing meandering of metal strips. 2. The relationship between maximum heating capacity A T/H and steepness λ is λ≦8
A method for preventing meandering of a metal strip according to claim 1, characterized in that the metal strip is straightened so that the angle becomes 6.4/A.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP20624685A JPS6267122A (en) | 1985-09-20 | 1985-09-20 | Method for preventing meandering of metal strip |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP20624685A JPS6267122A (en) | 1985-09-20 | 1985-09-20 | Method for preventing meandering of metal strip |
Publications (2)
Publication Number | Publication Date |
---|---|
JPS6267122A true JPS6267122A (en) | 1987-03-26 |
JPS64444B2 JPS64444B2 (en) | 1989-01-06 |
Family
ID=16520157
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP20624685A Granted JPS6267122A (en) | 1985-09-20 | 1985-09-20 | Method for preventing meandering of metal strip |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS6267122A (en) |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5090567A (en) * | 1973-12-13 | 1975-07-19 | ||
JPS56116837A (en) * | 1980-02-21 | 1981-09-12 | Kawasaki Steel Corp | Continuous annealing equipment line |
JPS6199633A (en) * | 1984-10-18 | 1986-05-17 | Mitsubishi Heavy Ind Ltd | Continuous annealing line of beltlike sheet |
-
1985
- 1985-09-20 JP JP20624685A patent/JPS6267122A/en active Granted
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5090567A (en) * | 1973-12-13 | 1975-07-19 | ||
JPS56116837A (en) * | 1980-02-21 | 1981-09-12 | Kawasaki Steel Corp | Continuous annealing equipment line |
JPS6199633A (en) * | 1984-10-18 | 1986-05-17 | Mitsubishi Heavy Ind Ltd | Continuous annealing line of beltlike sheet |
Also Published As
Publication number | Publication date |
---|---|
JPS64444B2 (en) | 1989-01-06 |
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