JPS61245912A - Method for descaling austenitic stainless steel plate or steel strip - Google Patents
Method for descaling austenitic stainless steel plate or steel stripInfo
- Publication number
- JPS61245912A JPS61245912A JP8843085A JP8843085A JPS61245912A JP S61245912 A JPS61245912 A JP S61245912A JP 8843085 A JP8843085 A JP 8843085A JP 8843085 A JP8843085 A JP 8843085A JP S61245912 A JPS61245912 A JP S61245912A
- Authority
- JP
- Japan
- Prior art keywords
- sheet
- strip
- descaling
- austenitic stainless
- stainless steel
- 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.)
- Pending
Links
Classifications
-
- C—CHEMISTRY; METALLURGY
- C23—COATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; CHEMICAL SURFACE TREATMENT; DIFFUSION TREATMENT OF METALLIC MATERIAL; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL; INHIBITING CORROSION OF METALLIC MATERIAL OR INCRUSTATION IN GENERAL
- C23G—CLEANING OR DE-GREASING OF METALLIC MATERIAL BY CHEMICAL METHODS OTHER THAN ELECTROLYSIS
- C23G1/00—Cleaning or pickling metallic material with solutions or molten salts
- C23G1/02—Cleaning or pickling metallic material with solutions or molten salts with acid solutions
- C23G1/08—Iron or steel
- C23G1/086—Iron or steel solutions containing HF
Landscapes
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- General Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Mechanical Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Cleaning And De-Greasing Of Metallic Materials By Chemical Methods (AREA)
Abstract
Description
【発明の詳細な説明】
〔産業上の利用分野〕
本発明は、オーステナイト系ステンレス鋼の熱延鋼板ま
たは熱延鋼帯(以下総称して熱延板という)の表面酸化
スケールを高速で脱スケールする方法に関するものであ
る・
〔従来の技術〕
一般にステンレス鋼板及び鋼帯の製造方法は。[Detailed Description of the Invention] [Field of Industrial Application] The present invention is a method for rapidly descaling the surface oxidation scale of austenitic stainless steel hot-rolled steel sheets or hot-rolled steel strips (hereinafter collectively referred to as hot-rolled sheets). [Prior art] In general, this is a method for manufacturing stainless steel plates and steel strips.
連続鋳造スラブを均熱処理し、熱間圧延によシ2〜8■
の厚さの熱延板を製造し1次に熱延板を必要に応じて焼
鈍、もしくは熱延のまま脱スケールし製品板厚まで冷間
圧延することからなる。Continuously cast slab is soaked and hot rolled 2~8■
First, the hot-rolled sheet is annealed as necessary, or descaled as hot-rolled, and then cold-rolled to the product thickness.
熱延板の脱スケールは、ショットプラストなどの機械的
処理を行なった後、硝酸と弗酸の混酸で酸洗することに
よシ行なわれ1通常用いられる酸濃度はオーステナイト
系ステンレス鋼の場合、硝酸(HNO3) カ5〜15
% 、弗酸(HF)が1〜5esである(「ステンレ
ス鋼便覧」昭和48年版P、−842)。しかして通常
連続ラインで脱スケールするため、酸液を35〜70℃
に加熱し、浸漬、スプレー等の方法を用いる。Descaling of hot-rolled sheets is carried out by mechanical treatment such as shot blasting, followed by pickling with a mixed acid of nitric acid and hydrofluoric acid.1 The acid concentration usually used is: Nitric acid (HNO3) Ka5-15
%, hydrofluoric acid (HF) is 1 to 5 es ("Stainless Steel Handbook" 1978 edition P, -842). However, since descaling is usually carried out in a continuous line, the acid solution is heated at 35 to 70°C.
heat, and use methods such as dipping and spraying.
本発明は熱延板の脱スケール時間を短縮し、高速で酸洗
脱スケールを完了する事を目的とするオーステナイトス
テンレス鋼板または鋼帯の製造方法に関するものである
。The present invention relates to a method for producing an austenitic stainless steel plate or steel strip, which aims to shorten the descaling time of hot rolled sheets and complete pickling descaling at high speed.
〔問題点を解決するための手段・作用〕本発明者は、1
8 Cr−8Ni型オーステナイト系ステンレス鋼の熱
延板を機械的に脱スケールした後硝弗酸酸洗すると脱ス
ケール時間が長く、更にホットコイルのスラブ加熱、熱
延条件の変化等の影響によシスケール厚みが変シ脱スケ
ール時間を引き延す場合があることを見出した。[Means/effects for solving the problem] The present inventor has 1
8 If hot-rolled sheets of Cr-8Ni type austenitic stainless steel are mechanically descaled and then pickled with nitric fluoride acid, the descaling time is long, and furthermore, due to the effects of hot coil slab heating, changes in hot rolling conditions, etc. It has been found that the scale thickness can prolong the descaling time.
ところで、高速で熱延板の脱スケールを完了するために
は1)熱延板を浸漬後酸洗液と早く反応を開始すること
、2)反応開始後安定的且つ継続して熱延板と酸液が反
応することが重要であると考えた。By the way, in order to complete the descaling of the hot-rolled sheet at high speed, 1) the reaction with the pickling solution must be started quickly after the hot-rolled sheet is immersed, and 2) the reaction with the hot-rolled sheet must be stable and continuous after the start of the reaction. We thought that it was important for the acid solution to react.
そこで通常通シ1機械的に脱スケールした鋼板の硝弗酸
中での酸洗開始について研究した結果鋼板表面温度の影
響が大きい事が判明し九。Therefore, as a result of research on the initiation of pickling in nitric-fluoric acid of mechanically descaled steel sheets, it was found that the surface temperature of the steel sheet has a large effect.9.
すなわち50℃程度の硝弗酸中での酸洗実験において熱
延板を予熱しないで浸漬した場合20秒間は反応が開始
せず、その後水素を発生して急速に酸洗が進み60秒で
終了した。一方鋼板表面を70℃に予熱して酸洗液に浸
漬すると浸漬直後に酸洗反応が始ま#)25秒で酸洗が
完了した。In other words, in a pickling experiment in nitric-fluoric acid at about 50°C, when a hot-rolled sheet is immersed without preheating, the reaction does not start for 20 seconds, and then hydrogen is generated and pickling progresses rapidly and ends in 60 seconds. did. On the other hand, when the surface of the steel plate was preheated to 70° C. and immersed in the pickling solution, the pickling reaction started immediately after the immersion, and the pickling was completed in 25 seconds.
この様に特に浸漬時間が30秒以下の高速酸洗を目標と
する場合において鋼板表面を予熱するとその効果が顕著
に現われ、酸洗時間を大幅に短縮できる。As described above, when high-speed pickling with an immersion time of 30 seconds or less is targeted, the effect of preheating the surface of the steel plate becomes noticeable and the pickling time can be significantly shortened.
鋼板表面の予熱効果は予熱温度が40℃以上で効果が大
きく、高温程有効であるが、150℃を超えると鋼板表
面の温度分布が不均一となり、又作用効果が飽和する。The effect of preheating the steel plate surface is greater when the preheating temperature is 40°C or higher, and the higher the temperature, the more effective it is, but if it exceeds 150°C, the temperature distribution on the steel plate surface becomes uneven and the effect is saturated.
酸洗方法は浸漬法で試み上記の結果を得た。スプレー法
においても鋼板表面予熱の効果はより顕著で大幅な酸洗
時間の短縮が達成された。A dipping method was used as the pickling method and the above results were obtained. In the spray method, the effect of preheating the steel plate surface was even more pronounced, and a significant reduction in pickling time was achieved.
さらに本発明者は18 Cr −8Nl型オーステナイ
ト系ステンレス鋼の熱延板を予熱した場合の高速酸洗液
の液組成について検討した結果次の事が明らかになった
。Further, the present inventor investigated the liquid composition of a high-speed pickling solution when a hot-rolled sheet of 18 Cr-8Nl type austenitic stainless steel is preheated, and as a result, the following became clear.
硝弗酸混合液中のHNO3が10θ〜4ooII/l。HNO3 in the nitric-fluoric acid mixture is 10θ to 4ooII/l.
HFが75〜4001!/lの濃度範囲である場合K、
脱スケール時間が短く、且つ脱スケール後の表面肌が優
れたものが得られること、すなわち、この硝弗酸濃度範
囲の硝弗酸混合液中で、熱延後焼鈍を行なった鋼板、熱
延ままの鋼板を予熱して酸洗を行なうと脱スケールが短
時間に完了し、脱スケール後に粒界腐食のない優れた表
面が得られる。HF is 75-4001! K if the concentration range is /l,
The descaling time is short and the surface texture after descaling is excellent. In other words, steel sheets that are hot rolled and then annealed in a nitric hydrofluoric acid mixture having a concentration range of nitric hydrofluoric acid, If the raw steel plate is preheated and pickled, descaling will be completed in a short time and an excellent surface free of intergranular corrosion will be obtained after descaling.
尚酸洗液の温度は通常の温度でよく、90℃以下とする
のが好ましい。The temperature of the pickling solution may be a normal temperature, and is preferably 90°C or lower.
本発明に従ったこの高速酸洗法においてもメカニカルデ
スケーリングの作用は重要で従来から使用されているシ
ョツトブラスト法、黒皮冷延法。The action of mechanical descaling is also important in this high-speed pickling method according to the present invention, which is different from the conventionally used shot blasting method and black skin cold rolling method.
砂鉄粒を含有した高圧水吹きつけ法等は有効であシ、特
にスケールの厚みの薄い熱延板焼鈍省略材の場合は従来
よりも軽度の適用で有効である。A high-pressure water spraying method containing iron sand particles is effective, especially in the case of hot-rolled sheet annealed materials with thin scales, and is effective with lighter application than conventional methods.
本発明の実施例を次に説明する。 Examples of the present invention will now be described.
通常の方法で熱間圧延したオーステナイト系ステンレス
鋼のホットコイルを焼鈍後もしくは焼鈍を省略した鋼板
を通常条件でショツトブラストあるいは砂鉄粒を含んだ
高圧水吹きっけにょシ機械的に脱スケールした。その後
酸洗ラインで酸洗槽を使用し、温水或いは中性塩を含有
した水溶液を昇温して第1表の通シ鋼板表面温度を予熱
した後、HNO,−HFの浸漬もしくはスプレーにより
酸洗を実施し、酸洗完了までの時間を測定し、更に酸洗
後鍋板の表面の粒界腐食を調査した。比較法としては予
熱を省略した酸洗結果を示した。After annealing a hot coil of austenitic stainless steel hot-rolled by a conventional method, or a steel plate without annealing, it was mechanically descaled by shot blasting or high-pressure water spraying containing iron sand particles under conventional conditions. After that, a pickling tank is used in the pickling line, and the temperature of hot water or an aqueous solution containing a neutral salt is raised to preheat the surface temperature of the steel plate shown in Table 1. Washing was carried out, the time taken to complete pickling was measured, and intergranular corrosion on the surface of the pot plate after pickling was investigated. As a comparative method, the pickling results without preheating are shown.
この結果から本発明によれば、予熱のない場合と比較し
半分の時間で、且つ25秒以内で酸洗が完了し、しかも
粒界腐食が発生しないことが明らかであり1本発明の高
速酸洗法による顕著な効果が確認された。From these results, it is clear that according to the present invention, pickling is completed in half the time compared to the case without preheating, and within 25 seconds, and intergranular corrosion does not occur. A significant effect of the washing method was confirmed.
本発明はオーステナイト系ステンレス鋼板の製造に際し
、熱延板を粒界腐食を発生させずに高速酸洗を可能なら
しめるもので生産性が高く、且つ表面性状に優れた製品
を提供できるのでその工業的効果は著しく大である。The present invention enables high-speed pickling of hot-rolled sheets without causing intergranular corrosion when producing austenitic stainless steel sheets, and provides products with high productivity and excellent surface properties, making it suitable for the industry. The effect is significantly large.
第1図は硝弗酸酸洗法において粒界腐食を発生しないH
NO,、IFの適性濃度範囲を示す図、第2図はオース
テナイト系ステンレス鋼板表面の金属組織を示す顕微鏡
写真図であり、(a)は粒界腐食のない表面、(b)は
粒界腐食の発生した表面である。
6青 酸 A(度 (1/l)
1a)
(JIS(lゆ…
第2図
(勢)Figure 1 shows H that does not cause intergranular corrosion in the nitric-fluoric acid pickling method.
Figure 2 is a diagram showing the appropriate concentration range of NO, IF. Figure 2 is a micrograph diagram showing the metal structure of the surface of an austenitic stainless steel plate. (a) is a surface without intergranular corrosion, (b) is a surface with intergranular corrosion. This is the surface where . 6 Hydrocyanic acid A (degree (1/l) 1a) (JIS (l...) Figure 2 (force)
Claims (1)
帯にメカニカルデスケーリングを施し、ついで該鋼板ま
たは鋼帯の表面温度を40〜150℃に予熱した後、H
NO_3として100〜400g/lとHFとして75
〜400g/lを含む硝ふっ酸水溶液を用いて酸洗する
ことを特徴とするオーステナイト系ステンレス鋼板また
は鋼帯の脱スケール方法。After performing mechanical descaling on a hot-rolled steel plate or hot-rolled steel strip of austenitic stainless steel, and then preheating the surface temperature of the steel plate or steel strip to 40 to 150°C, H
100-400g/l as NO_3 and 75 as HF
A method for descaling an austenitic stainless steel plate or steel strip, which comprises pickling using an aqueous solution of nitric and hydrofluoric acid containing up to 400 g/l.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8843085A JPS61245912A (en) | 1985-04-24 | 1985-04-24 | Method for descaling austenitic stainless steel plate or steel strip |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8843085A JPS61245912A (en) | 1985-04-24 | 1985-04-24 | Method for descaling austenitic stainless steel plate or steel strip |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS61245912A true JPS61245912A (en) | 1986-11-01 |
Family
ID=13942569
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP8843085A Pending JPS61245912A (en) | 1985-04-24 | 1985-04-24 | Method for descaling austenitic stainless steel plate or steel strip |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS61245912A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP0915185A1 (en) * | 1997-10-28 | 1999-05-12 | Kawasaki Steel Corporation | Method of making austenitic stainless steel sheet |
Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0250810A (en) * | 1988-08-12 | 1990-02-20 | Dainippon Ink & Chem Inc | How to make pallets |
-
1985
- 1985-04-24 JP JP8843085A patent/JPS61245912A/en active Pending
Patent Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0250810A (en) * | 1988-08-12 | 1990-02-20 | Dainippon Ink & Chem Inc | How to make pallets |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP0915185A1 (en) * | 1997-10-28 | 1999-05-12 | Kawasaki Steel Corporation | Method of making austenitic stainless steel sheet |
US6149744A (en) * | 1997-10-28 | 2000-11-21 | Kawasaki Steel Corporation | Method of making austenitic stainless steel sheet |
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