JPH073388A - Steel excellent in corrosion resistance - Google Patents
Steel excellent in corrosion resistanceInfo
- Publication number
- JPH073388A JPH073388A JP14804693A JP14804693A JPH073388A JP H073388 A JPH073388 A JP H073388A JP 14804693 A JP14804693 A JP 14804693A JP 14804693 A JP14804693 A JP 14804693A JP H073388 A JPH073388 A JP H073388A
- Authority
- JP
- Japan
- Prior art keywords
- steel
- corrosion resistance
- environment
- seawater
- corrosion
- 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
Landscapes
- Heat Treatment Of Steel (AREA)
Abstract
Description
【0001】[0001]
【産業上の利用分野】本発明は耐食性の優れた鋼に係わ
り、さらに詳しくは、例えば船舶等の内外に使用される
環境において優れた耐食性を有する鋼に関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a steel having excellent corrosion resistance, and more particularly to a steel having excellent corrosion resistance in environments used inside and outside a ship or the like.
【0002】[0002]
【従来の技術】従来、船舶等の内外に使用される鋼材
は、その使途環境に起因する腐食損傷問題が生じてい
た。環境汚染を抑制するためのタンカーのダブルハル化
に伴いバラストタンクの面積が増加するため、そのメン
テ、塗装等作業増大の観点から、海水に対する耐食性の
優れた鋼の需要が増加した。2. Description of the Related Art Conventionally, steel materials used inside and outside a ship or the like have had a problem of corrosion damage due to the environment in which they are used. Since the area of ballast tanks has increased with the use of double hull tankers to control environmental pollution, the demand for steel with excellent corrosion resistance to seawater has increased from the perspective of increasing maintenance and painting work.
【0003】現状の船舶用鋼では耐食性が十分でなく、
面積の増大がそのまま、メンテ作業の増大に結びついて
いる。さらに、Crを1%程度含有した耐海水性鋼の使
用も考えられるが、実際に船舶が使用される環境におい
ては、その耐食性が不十分である。一方、Crを多量に
含有した耐食性鋼の使用も考えられるが、素材コストが
大幅に上昇する。The current marine steel has insufficient corrosion resistance,
The increase in area is directly linked to the increase in maintenance work. Further, it is conceivable to use seawater-resistant steel containing about 1% of Cr, but its corrosion resistance is insufficient in an environment where ships are actually used. On the other hand, use of corrosion-resistant steel containing a large amount of Cr is also conceivable, but the material cost increases significantly.
【0004】[0004]
【発明が解決しようとする課題】本発明はこうした現状
を鑑みて、海水の腐食環境に対する抵抗が大きく、かつ
低コストの鋼を提供することを目的としている。SUMMARY OF THE INVENTION In view of the above situation, an object of the present invention is to provide a steel having a large resistance to the corrosive environment of seawater and a low cost.
【0005】[0005]
【課題を解決するための手段】本発明者らは上記の目的
を達成するために、海水のかかる環境をはじめとする腐
食環境において優れた耐食性を有する鋼を開発すべく、
種々の観点から検討した。先ず、船舶等の海水のかかる
環境における腐食は、海水による乾湿繰返しとその湿潤
環境で起こること、さらに、その腐食は40〜100℃
に加熱された環境において著しくなることを見出した。
つまり、船舶等の海水がかかる環境での長時間での腐食
現象を、高温に加熱した環境で短時間でシミュレーショ
ンすることができる。In order to achieve the above object, the inventors of the present invention have developed a steel having excellent corrosion resistance in a corrosive environment including an environment where sea water is involved.
Considered from various viewpoints. First, corrosion in an environment where seawater such as a ship is exposed occurs in a wet and dry environment caused by repeated seawater, and the corrosion is 40 to 100 ° C.
It was found that it becomes remarkable in an environment heated to a high temperature.
That is, it is possible to simulate a long-time corrosion phenomenon in an environment exposed to seawater such as a ship in a short time in an environment heated to a high temperature.
【0006】さらに、該腐食環境において耐食性を向上
させる手段を種々検討した結果、Crを0.2〜5.5
%含有した成分で、Alを0.3〜4.0%添加した鋼
が、海水による乾湿繰返しとその湿潤環境の腐食環境で
非常に優れた耐食性を示すことを見出した。該腐食環境
で多量に添加したAlが鉄表面のCrの被膜の上にAl
の被膜を形成し、このAlの被膜がCrの被膜を大幅に
強化することで、耐食性が格段に向上することを発見し
た。[0006] Further, as a result of various studies on means for improving the corrosion resistance in the corrosive environment, Cr was 0.2 to 5.5.
It has been found that the steel containing 0.3 to 4.0% of Al contained in the steel has a very excellent corrosion resistance in repeated wet and dry cycles with seawater and its corrosive environment. In the corrosive environment, a large amount of Al was added on top of the Cr coating on the iron surface.
It was discovered that the corrosion resistance is remarkably improved by forming the coating film of No. 1 and the Al coating significantly strengthens the Cr coating.
【0007】本発明は上記の知見に基づいてなされたも
のであり、本発明の要旨とするところは、重量%で、
C:0.10%以下、Si:0.01〜1.20%、M
n:0.05〜1.70%、Cr:0.1〜5.5%、
Al:0.3〜4.0%を含有し、残部Feおよび不可
避不純物からなることを特徴とする耐食性の優れた鋼に
ある。さらに、本発明は重量%で、P:0.05〜0.
15%、Cu:0.05〜3.0%、Mo:0.05〜
2.0%、Ni:0.01〜7.0%の1種または2種
以上を含有する耐食性の優れた鋼にある。The present invention has been made on the basis of the above findings, and the gist of the present invention is that it is% by weight,
C: 0.10% or less, Si: 0.01 to 1.20%, M
n: 0.05 to 1.70%, Cr: 0.1 to 5.5%,
A steel having excellent corrosion resistance, which is characterized by containing Al: 0.3 to 4.0% and the balance being Fe and inevitable impurities. Furthermore, in the present invention, P: 0.05 to 0.
15%, Cu: 0.05 to 3.0%, Mo: 0.05 to
It is a steel excellent in corrosion resistance containing 2.0% and Ni: 0.01 to 7.0% of one kind or two or more kinds.
【0008】[0008]
【作用】以下に本発明において各成分の範囲を限定した
理由を述べる。 C:Cは鋼板の加工性を低下させる上に、CはCrと炭
化物を生成して耐食性を低下させるので、少ない方が望
ましいが、強度の面よりある程度は添加する必要がある
ため、上限を0.10%とする。 Si:脱酸剤および強化元素としての添加が有効である
が、含有量が0.01%未満ではその脱酸効果が十分で
はなく、1.2%以上を含有するともはやその効果は飽
和している上に加工性を低下させるので、含有量範囲を
0.01〜1.20%に限定する。The reason why the range of each component is limited in the present invention will be described below. C: C lowers the workability of the steel sheet, and C forms a carbide with Cr to lower the corrosion resistance. Therefore, it is preferable that the amount be small, but it is necessary to add C to some extent from the viewpoint of strength, so the upper limit is set. It is set to 0.10%. Si: Addition as a deoxidizing agent and a strengthening element is effective, but if the content is less than 0.01%, the deoxidizing effect is not sufficient, and if it is more than 1.2%, the effect is no longer saturated. In addition, since the workability is deteriorated, the content range is limited to 0.01 to 1.20%.
【0009】Mn:脱酸剤として必要な0.05%以上
を含有させる必要があるが、1.7%を超えて含有させ
ると加工性が低下するので上限含有量を1.7%とす
る。 Cr:耐食性を確保するため必要な元素であるため、
0.1%以上を含有させることが必要であるが、5.5
%を超えて含有させてもいたずらにコストを増すばかり
か、加工性が低下するので上限含有量を5.5%とす
る。Mn: It is necessary to contain 0.05% or more, which is necessary as a deoxidizing agent, but if it exceeds 1.7%, the workability is deteriorated, so the upper limit content is made 1.7%. . Cr: Since it is an element necessary for ensuring corrosion resistance,
It is necessary to contain 0.1% or more, but 5.5
If it is contained in excess of%, not only the cost is unnecessarily increased, but also the workability is deteriorated, so the upper limit content is made 5.5%.
【0010】Al:本発明において耐食性を確保するた
めに重要な元素であって、前述の通りAlの含有量が
0.3%未満では不働態膜を形成して腐食を抑制する効
果が十分ではなく、一方、4.0%を超えて添加すると
その効果は飽和するのに加工性を低下させるものである
から、Alの含有量は0.3〜4.0%に限定する。Al: An element which is important for ensuring corrosion resistance in the present invention, and as described above, when the Al content is less than 0.3%, the effect of forming a passive film and suppressing corrosion is not sufficient. On the other hand, if added in excess of 4.0%, the effect is saturated but the workability is deteriorated. Therefore, the Al content is limited to 0.3 to 4.0%.
【0011】P,Cu,Mo,Ni:Alを0.3%以
上含有する鋼にそれぞれ0.05%,0.05%,0.
05%,0.01%以上添加すると腐食に対する抵抗を
向上させる効果があるが、それぞれ0.15%,3.0
%,2.0%,7.0%を超えて添加してもその効果が
飽和するばかりか熱間加工性を低下させるので、上限含
有量はそれぞれ0.15%,3.0%,2.0%,7.
0%とする。Steel containing P, Cu, Mo, and Ni: Al in an amount of 0.3% or more is 0.05%, 0.05%, and 0.1%, respectively.
Addition of more than 05% and 0.01% has the effect of improving the resistance to corrosion, but 0.15% and 3.0% respectively.
%, 2.0%, and 7.0%, the effect is saturated and the hot workability is deteriorated. Therefore, the upper limit contents are 0.15%, 3.0%, and 2%, respectively. 0.0%, 7.
0%
【0012】本発明において提案する鋼は、船舶等海水
のかかる環境に使用するに際して、まず鋼板として製造
した後にそれをプレス等で所定の形状に成形し、さらに
加工、溶接して製品として製造してもよいし、鋼板を例
えばベンディングロールで鋼管の形状にした後に2次加
工および溶接等によって製品に使用してもよい。The steel proposed in the present invention is manufactured as a product by first manufacturing it as a steel plate, then forming it into a predetermined shape with a press or the like, and further processing and welding it when used in an environment where seawater such as ships is used. Alternatively, the steel sheet may be formed into a steel pipe with a bending roll and then used in a product by secondary processing, welding, or the like.
【0013】その他のプロセスを含めて本発明で限定す
る組成および元素の組合わせを有する鋼は、いずれも本
発明の対象とするところであって、コストや既存製造設
備の制約等によって最適な製品製造工程を選択すること
ができ、どの製造工程を選択したとしてもそれをもって
本発明の範囲を逸脱するものではない。また、本発明に
おいて提案する鋼は船舶等の海水のかかる環境の他、塩
化物等を含有する水溶液が高温に曝されたり、加熱・冷
却が繰返される環境等、種々の腐食環境に適用すること
ができる。Any steel having a composition and a combination of elements limited by the present invention, including other processes, is a subject of the present invention, and is an optimum product production due to the cost and constraints of existing production equipment. The process can be selected and which manufacturing process is selected does not depart from the scope of the invention. Further, the steel proposed in the present invention should be applied to various corrosive environments such as an environment in which an aqueous solution containing chloride is exposed to a high temperature, an environment in which heating and cooling are repeated, in addition to an environment in which seawater such as a ship is exposed. You can
【0014】[0014]
【実施例】表1に成分を示す鋼を溶製し、熱間圧延、焼
きならし熱処理等の通常の製造工程によって板厚10mm
の鋼板とした。次にこれらの鋼板から幅50mm、長さ7
0mmの試験片を採取して、腐食試験に供した。腐食試験
は40℃人工海水4分浸漬と80℃大気中26分乾燥の
サイクルで20日間の乾湿繰返し腐食試験、および、4
0℃人工海水4分浸漬と40℃湿度95%26分で20
日間の湿潤環境腐食試験を行い、浸漬前後の板厚減少量
を測定した。[Example] Steel having the composition shown in Table 1 was melted and subjected to a normal manufacturing process such as hot rolling, normalizing heat treatment, etc. to obtain a plate thickness of 10 mm.
Steel plate. Next, from these steel plates, width 50mm, length 7
A 0 mm test piece was sampled and subjected to a corrosion test. The corrosion test is a cycle of immersion in 40 ° C. artificial seawater for 4 minutes and drying at 80 ° C. in the atmosphere for 26 minutes.
20 minutes at 0 ℃ artificial seawater 4 minutes and 40 ℃ humidity 95% 26 minutes
A wet environment corrosion test was conducted for one day, and the amount of reduction in plate thickness before and after immersion was measured.
【0015】表1から明らかなように本発明である実施
例1〜9は乾湿繰返しおよび湿潤環境の腐食試験での板
厚減少量は少なく、良好な結果が得られている。これに
対し、例10はCが高く、例11はCrが低く、例12
はAlが低く、それぞれ乾湿繰返しおよび湿潤環境の腐
食試験での板厚減少量が大きく、耐食性が劣っている。As is clear from Table 1, in Examples 1 to 9 of the present invention, the amount of reduction in sheet thickness in the corrosion test under repeated dry and wet conditions and a humid environment was small, and good results were obtained. In contrast, Example 10 has a high C, Example 11 has a low Cr, and Example 12
Has a low Al content, has a large amount of reduction in plate thickness in a corrosion test under repeated dry and wet conditions, and has a poor corrosion resistance.
【0016】[0016]
【表1】 [Table 1]
【0017】[0017]
【発明の効果】本発明は船舶等の内外に使用される環境
において優れた耐食性を有する鋼を低コストで提供する
ことを可能としたものであり、産業の発展に貢献すると
ころ大である。INDUSTRIAL APPLICABILITY The present invention makes it possible to provide a steel having excellent corrosion resistance in an environment used inside and outside a ship or the like at a low cost, and greatly contributes to industrial development.
Claims (2)
らなることを特徴とする耐食性の優れた鋼。1. By weight%, C: 0.10% or less, Si: 0.01 to 1.20%, Mn: 0.05 to 1.70%, Cr: 0.1 to 5.5%, Al: 0.3 to 4.0% A steel having excellent corrosion resistance, characterized by comprising the balance Fe and unavoidable impurities.
有する請求項1記載の耐食性の優れた鋼。2. In% by weight, P: 0.05 to 0.15%, Cu: 0.05 to 3.0%, Mo: 0.05 to 2.0%, Ni: 0.01 to 7. The steel having excellent corrosion resistance according to claim 1, containing 0% of one or more of them.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP14804693A JPH073388A (en) | 1993-06-18 | 1993-06-18 | Steel excellent in corrosion resistance |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP14804693A JPH073388A (en) | 1993-06-18 | 1993-06-18 | Steel excellent in corrosion resistance |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH073388A true JPH073388A (en) | 1995-01-06 |
Family
ID=15443935
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP14804693A Pending JPH073388A (en) | 1993-06-18 | 1993-06-18 | Steel excellent in corrosion resistance |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH073388A (en) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2392919A (en) * | 2002-09-12 | 2004-03-17 | Corus Uk Ltd | A corrosion resistant steel for marine applications |
WO2005087964A1 (en) * | 2004-03-15 | 2005-09-22 | Nippon Steel Corporation | Corrosion-resistant steel excellent in toughness of base metal and weld and process for producing the same |
EP2072630A1 (en) * | 2007-12-21 | 2009-06-24 | ArcelorMittal Commercial RPS S.à r.l. | Corrosion resistant steel for marine applications |
WO2014145536A1 (en) * | 2013-03-15 | 2014-09-18 | Am/Ns Calvert Llc | New high strength bake hardenable low alloy steel and process for manufacture thereof |
JP2022515155A (en) * | 2018-12-24 | 2022-02-17 | 宝山鋼鉄股▲分▼有限公司 | Seawater corrosive steel and its manufacturing method |
-
1993
- 1993-06-18 JP JP14804693A patent/JPH073388A/en active Pending
Cited By (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2392919A (en) * | 2002-09-12 | 2004-03-17 | Corus Uk Ltd | A corrosion resistant steel for marine applications |
GB2392919B (en) * | 2002-09-12 | 2005-01-19 | Corus Uk Ltd | Corrosion resistant steels |
WO2005087964A1 (en) * | 2004-03-15 | 2005-09-22 | Nippon Steel Corporation | Corrosion-resistant steel excellent in toughness of base metal and weld and process for producing the same |
EP1734142A1 (en) * | 2004-03-15 | 2006-12-20 | Nippon Steel Corporation | Corrosion-resistant steel excellent in toughness of base metal and weld and process for producing the same |
EP1734142A4 (en) * | 2004-03-15 | 2007-04-25 | Nippon Steel Corp | Corrosion-resistant steel excellent in toughness of base metal and weld and process for producing the same |
KR100831115B1 (en) * | 2004-03-15 | 2008-05-20 | 신닛뽄세이테쯔 카부시키카이샤 | Corrosion-resistant steel excellent in toughness of base metal and weld and process for producing the same |
EP2072630A1 (en) * | 2007-12-21 | 2009-06-24 | ArcelorMittal Commercial RPS S.à r.l. | Corrosion resistant steel for marine applications |
WO2009080714A1 (en) * | 2007-12-21 | 2009-07-02 | Arcelormittal Commercial Rps S.À R.L. | Corrosion resistant steel for marine applications |
EA018178B1 (en) * | 2007-12-21 | 2013-06-28 | Арселормитталь Коммерсиаль Эр-Пэ-Эс С.А.Р.Л. | Corrosion resistant steel for marine applications |
US9506130B2 (en) | 2007-12-21 | 2016-11-29 | Arcelormittal Commercial Rps S.A.R.L. | Corrosion resistant steel for marine applications |
WO2014145536A1 (en) * | 2013-03-15 | 2014-09-18 | Am/Ns Calvert Llc | New high strength bake hardenable low alloy steel and process for manufacture thereof |
JP2022515155A (en) * | 2018-12-24 | 2022-02-17 | 宝山鋼鉄股▲分▼有限公司 | Seawater corrosive steel and its manufacturing method |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
JP4319817B2 (en) | Low alloy steel excellent in hydrochloric acid corrosion resistance and sulfuric acid corrosion resistance and its welded joint | |
DE60313820T2 (en) | Method for producing a corrosion-resistant fuel tank and fuel filler hose for motor vehicles | |
JP7062973B2 (en) | Steel for mooring chains and mooring chains | |
JP4811277B2 (en) | Corrosion resistant steel for holding coal and ore carrier | |
JP4790423B2 (en) | Welded structural steel excellent in seawater corrosion resistance and ship ballast tank anticorrosion method using the same | |
JP5058574B2 (en) | Anti-corrosion steel plate for ship ballast tanks to be anticorrosive and rust prevention method for ship ballast tanks | |
KR20120118067A (en) | Ferrite-based stainless steel for use in components of automobile exhaust system | |
JP2007270196A (en) | Steel material for cargo oil tank | |
JP2006037201A (en) | Marine steel material superior in corrosion resistance | |
JPH073388A (en) | Steel excellent in corrosion resistance | |
JP5018257B2 (en) | Ferritic stainless steel sheet excellent in abrasiveness and corrosion resistance and method for producing the same | |
JP4119941B2 (en) | Marine steel with excellent crevice corrosion resistance in humid air | |
JP3923962B2 (en) | Marine steel with excellent corrosion resistance | |
JP4444924B2 (en) | High tensile steel for marine vessels with excellent corrosion resistance and base metal toughness | |
JP4659626B2 (en) | High tensile steel for marine vessels with excellent corrosion resistance and base metal toughness | |
WO2019146748A1 (en) | Steel for mooring chain, and mooring chain | |
EP1361290B1 (en) | Use of a steel for chemical tank, excellent in sulfuric acid corrosion resistance and pitting corrosion resistance | |
WO2019146749A1 (en) | Net for mooring chain, and mooring chain | |
JP6973117B2 (en) | Steel for mooring chains and mooring chains | |
JP3174196B2 (en) | Steel with excellent corrosion resistance | |
JP6891830B2 (en) | Steel for mooring chains and mooring chains | |
JP6973118B2 (en) | Steel for mooring chains and mooring chains | |
JPS6012419B2 (en) | Corrosion-resistant structural steel for seawater desalination plants by flash distillation | |
JPH0417615A (en) | Production of stainless steel sheet having excellent corrosion resistance and working moldability | |
US20130199657A1 (en) | Steel plate for producing pipe highly resistant to fuel vapor corrosion, pipe using same and method for producing pipe |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
A02 | Decision of refusal |
Free format text: JAPANESE INTERMEDIATE CODE: A02 Effective date: 20011002 |