JPH06226410A - Insulating material for molten steel - Google Patents

Insulating material for molten steel

Info

Publication number
JPH06226410A
JPH06226410A JP1494593A JP1494593A JPH06226410A JP H06226410 A JPH06226410 A JP H06226410A JP 1494593 A JP1494593 A JP 1494593A JP 1494593 A JP1494593 A JP 1494593A JP H06226410 A JPH06226410 A JP H06226410A
Authority
JP
Japan
Prior art keywords
molten steel
insulating material
magnesia
cement
heat retaining
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
Application number
JP1494593A
Other languages
Japanese (ja)
Inventor
Masanobu Nameki
正信 行木
Kunihiro Isumi
邦弘 伊住
Takeo Imamura
武雄 今村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Denka Co Ltd
Original Assignee
Denki Kagaku Kogyo KK
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Denki Kagaku Kogyo KK filed Critical Denki Kagaku Kogyo KK
Priority to JP1494593A priority Critical patent/JPH06226410A/en
Publication of JPH06226410A publication Critical patent/JPH06226410A/en
Pending legal-status Critical Current

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Abstract

PURPOSE:To provide an insulating material having an excellent heat insulating effect of molten steel and excellent workability by making the insulating material consist of respectively specific concn. ranges of slaked lime or carbide slag, cement and magnesia and forming the insulating material of their respective moldings molded to the primary particle sizes of specific values or below. CONSTITUTION:This insulating material contains 10 to 40wt.% slaked lime or carbide slag, 30 to 60% cement and 10 to 50% magnesia. The insulating material consists of their moldings molded to <=1mm primary particle sizes. The slaked lime consists of calcium hydroxide used as the insulating material. Calcium silicate components, etc., are provided as the cement which includes Portland cement, etc., and acts as the binder for the moldings. The magnesia has a high m.p., does not contaminate the molten steel and is used as the insulating material. The magnesia includes magnesia clinker, etc. As a result, the excellent heat insulating effect of the molten steel is obtd. and the generation of power dust is lessened. In addition, the contamination with the carbon, silicon and hydrogen in the steel is not admitted and this insulating material is applicable to any kinds of the molten steel.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、製鋼工程で用いられ
る、取鍋等の容器内に収容した溶鋼の温度降下を防ぐた
めの保温剤に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a heat retaining agent used in a steelmaking process for preventing the temperature drop of molten steel contained in a container such as a ladle.

【0002】[0002]

【従来の技術】溶鋼保温剤として、従来、有機質を焼成
したもの(例えば、焼き籾殻、パルプ屑)と、SiO2を主
成分とする無機質のもの(例えば、パーライト)が用い
られてきた。保温剤として必要な性質は、断熱保温性が
大であること、溶鋼に投入する際に粉塵が発生しないも
のであること、溶鋼に対して炭素とケイ素が入り込まな
いものであること、などが要求されている。
2. Description of the Related Art Conventionally, as molten steel heat retaining agents, ones obtained by firing an organic substance (for example, burned rice husks, pulp scraps) and ones by an inorganic substance having SiO 2 as a main component (for example, pearlite) have been used. The properties required as a heat retaining agent are that it has a large heat insulating and heat retaining property, that it does not generate dust when charged into molten steel, and that carbon and silicon do not enter into molten steel. Has been done.

【0003】[0003]

【発明が解決しようとする課題】しかしながら、焼き籾
殻は、微細で軽いために溶鋼面に投入する際に飛散しや
すく、加炭しやすいという難点がある。 また、SiO2
主成分とするものは、ケイ素量を高めるという危険があ
る。 さらに、CaO 、MgO を主成分とするものは、嵩比
重が高く保温性に劣るという欠点がある。また、これら
を複合した保温剤も提案されているが、それぞれの成分
の調整が難しく、コストが高くなるなどの問題があっ
た。
However, since the chaff is fine and light, the chaff tends to scatter when charged on the surface of molten steel and to be easily carburized. Further, those containing SiO 2 as a main component have a risk of increasing the amount of silicon. Further, those containing CaO 2 and MgO 2 as main components have a drawback that they have high bulk specific gravity and poor heat retention. Further, a heat retaining agent in which these are combined has also been proposed, but there is a problem that it is difficult to adjust each component and the cost increases.

【0004】本発明は、保温剤の溶融温度を調整して保
温効果を高め、粉塵の発生を抑えて作業性を良くし、炭
素、ケイ素による鋼の汚染を防止する保温剤に係わるも
のである。
The present invention relates to a heat retaining agent which adjusts the melting temperature of the heat retaining agent to enhance the heat retaining effect, suppresses generation of dust to improve workability, and prevents steel from being contaminated by carbon and silicon. .

【0005】[0005]

【課題を解決するための手段】すなわち、本発明は消石
灰又はカーバイド滓10〜40重量%、セメント30〜
60重量%、及びマグネシア10〜50重量%を含有し
てなり、かつそれぞれの一次粒子径が1mm以下のものを
成形した成形物であることを特徴とする溶鋼保温剤であ
る。
That is, the present invention relates to slaked lime or carbide slag 10 to 40% by weight and cement 30 to 30% by weight.
It is a molten steel heat retaining agent comprising 60% by weight and 10 to 50% by weight of magnesia, which is a molded product formed by molding each having a primary particle diameter of 1 mm or less.

【0006】本発明に用いられる消石灰は、生石灰に水
を注いで消化して造られるものであり、従来の保温剤と
して用いられる生石灰の代わりの成分である。 生石灰
は、吸湿して消石灰となりやすく保存に問題がある。
[0006] The slaked lime used in the present invention is produced by pouring water into quick lime and digesting it, and is an alternative component of quick lime used as a conventional heat retaining agent. Quicklime easily absorbs moisture and becomes slaked lime, which is problematic in storage.

【0007】また、本発明に用いられるカーバイド滓
は、カルシウムカーバイドに水を反応させてアセチレン
ガスが発生した残留物で、水酸化カルシウム Ca(OH)2
5%以上からなっており、市販の消石灰 Ca(OH)296%
とは成分、粒子径もほぼ同じものである。以下、消石灰
を例にとって本発明を説明する。
The carbide slag used in the present invention is a residue in which acetylene gas is generated by reacting calcium carbide with water, and calcium hydroxide Ca (OH) 2 9
5% or more, commercially available slaked lime Ca (OH) 2 96%
And have almost the same components and particle diameters. Hereinafter, the present invention will be described by taking slaked lime as an example.

【0008】本発明の溶鋼保温剤において、消石灰が1
0重量%未満では、保温剤の溶融温度が低くなり、結果
として溶鋼の保温効果が劣るので好ましくない。 加え
て、ケイ素が入り込むので好ましくない。また、消石灰
が40重量%を越えた場合は、防塵効果が低下し好まし
くない。加えて、溶鋼の保温効果が劣るので好ましくな
い。
In the molten steel heat retaining agent of the present invention, slaked lime is 1
If it is less than 0% by weight, the melting temperature of the heat retaining agent becomes low, and as a result, the heat retaining effect of the molten steel becomes poor, which is not preferable. In addition, silicon is included, which is not preferable. On the other hand, when the content of slaked lime exceeds 40% by weight, the dustproof effect is lowered, which is not preferable. In addition, the heat retaining effect of molten steel is poor, which is not preferable.

【0009】本発明に用いられるセメントは、カルシウ
ムシリケート系成分、またはカルシウムアルミネート系
成分を供給し、成形物のバインダーとして働くものであ
る。保温剤に配合されるセメントは、ポルトランドセメ
ント、高炉セメント、シリカセメント、フライアッシュ
セメント、アルミナセメント、カルシウムアルミネート
系セメント等がある。
The cement used in the present invention supplies a calcium silicate-based component or a calcium aluminate-based component and acts as a binder for a molded product. Cement to be added to the heat retaining agent includes Portland cement, blast furnace cement, silica cement, fly ash cement, alumina cement, calcium aluminate cement and the like.

【0010】本発明の溶鋼保温剤において、セメントが
30重量%未満では、防塵効果が低下するので好ましく
ない。 加えて、溶鋼の保温効果も劣る。また、セメン
トが60重量%を越えた場合、保温剤の溶融温度が低く
なり、結果として溶鋼の保温効果が劣るので好ましくな
い。加えて、ケイ素が入り込むので好ましくない。
In the molten steel heat retaining agent of the present invention, if the amount of cement is less than 30% by weight, the dustproof effect is lowered, which is not preferable. In addition, the heat retaining effect of molten steel is also poor. Further, when the amount of cement exceeds 60% by weight, the melting temperature of the heat retaining agent becomes low, and as a result, the heat retaining effect of the molten steel deteriorates, which is not preferable. In addition, silicon is included, which is not preferable.

【0011】本発明に用いられるマグネシアは、溶融点
が高く、溶鋼を汚染しないので、従来から保温剤成分と
して用いられてきた。マグネシア源としては、マグネシ
アクリンカー、苛性マグネシア、溶融マグネシア、ペリ
クレース、タルク、マグネサイト、水滑石等が上げられ
る。
The magnesia used in the present invention has a high melting point and does not contaminate the molten steel, so that it has been conventionally used as a heat retaining agent component. Examples of magnesia sources include magnesia clinker, caustic magnesia, molten magnesia, periclase, talc, magnesite, and hydrotalcite.

【0012】本発明の溶鋼保温剤において、マグネシア
が10重量%未満では、保温剤の溶融温度が低くなり、
結果として溶鋼の保温効果が低下するので好ましくな
い。加えて、ケイ素が入り込むので好ましくない。ま
た、マグネシアが50重量%を越えた場合、防塵効果が
低下するので好ましくない。 加えて、溶鋼の保温効果
が劣るので好ましくない。
In the molten steel heat retaining agent of the present invention, when the magnesia is less than 10% by weight, the melting temperature of the heat retaining agent becomes low,
As a result, the heat retaining effect of the molten steel decreases, which is not preferable. In addition, silicon is included, which is not preferable. Further, when the magnesia exceeds 50% by weight, the dustproof effect is deteriorated, which is not preferable. In addition, the heat retaining effect of molten steel is poor, which is not preferable.

【0013】このように、本発明の溶鋼保温剤は、消石
灰、セメント、及びマグネシアを主成分として構成され
るが、残部としてアルミナ等を1〜4重量%含有しても
さしつかえない。
As described above, the molten steel heat retaining agent of the present invention is composed mainly of slaked lime, cement, and magnesia, but it is acceptable to contain 1 to 4% by weight of alumina or the like as the balance.

【0014】次に、本発明の溶鋼保温剤は、構成する消
石灰又はカーバイド滓、セメント、マグネシアのそれぞ
れの一次粒子径が1mm以下のものを成形した成形物であ
る。
Next, the molten steel heat retaining agent of the present invention is a molded product obtained by molding slaked lime or carbide slag, cement and magnesia each having a primary particle diameter of 1 mm or less.

【0015】それぞれの一次粒子径が1mmを越えた場合
は、消石灰、セメント、マグネシアの均一な混合が充分
でないため成分の偏りが生じ、保温剤が溶融して保温効
果が低下するので好ましくない。また、成分の偏りによ
り、成形が充分でなくなり、粉塵の発生が生じやすく、
防塵効果が低下するので好ましくない。
If the primary particle diameter exceeds 1 mm, the uniform mixing of slaked lime, cement and magnesia is not sufficient, resulting in uneven distribution of the components, and the heat retaining agent is melted to lower the heat retaining effect, which is not preferable. In addition, due to the uneven distribution of the components, the molding becomes insufficient and dust is likely to be generated,
This is not preferable because the dustproof effect is reduced.

【0016】本発明の溶鋼保温剤は、各成分の偏りを防
止し、粉塵の発生を抑えるため、成形物として用いる。
成形物としては、造粒するか、または成形後破砕した
状態であれば、その形状を問わない。
The molten steel heat retaining agent of the present invention is used as a molded product in order to prevent uneven distribution of each component and suppress generation of dust.
The shape of the molded product is not limited as long as it is granulated or crushed after molding.

【0017】本発明の溶鋼保温剤の製造方法は、例えば
所定量の消石灰とセメントとマグネシアとをボールミ
ル、振動ミル、ローラミル等で粉砕し、1mm以下に篩い
分け、次にドラム型、パン型、押し出し型等の成形機を
用い、バインダーとして水、水ガラス、ポリビニルアル
コール水溶液、メチルセルローズ水溶液等を15〜70
重量%の範囲で加えて成形する。これを乾燥し、2〜3
0mmの成形物とする。もう一つの製造方法として、1mm
以下に篩い分けた原料混合物に、上記バインダーを15
〜70重量%加えて、乾燥固化し、これを破砕機で破砕
し、2〜30mmの成形物とする。
In the method for producing a molten steel heat retaining agent of the present invention, for example, a predetermined amount of slaked lime, cement and magnesia are crushed by a ball mill, a vibration mill, a roller mill or the like and sieved to 1 mm or less, then a drum type, a pan type, Using a molding machine such as an extrusion type machine, water, water glass, aqueous solution of polyvinyl alcohol, aqueous solution of methylcellulose, etc. are used as a binder for 15 to 70.
Add and mold in the range of wt%. Dry this, 2-3
The molded product is 0 mm. Another manufacturing method is 1mm
15 parts of the above-mentioned binder was added to the raw material mixture screened below.
˜70 wt% is added, dried and solidified, and crushed by a crusher to give a molded product of 2 to 30 mm.

【0018】[0018]

【実施例】消石灰(市販品、Ca(OH)2 96.1%、最大粒
径0.8mm)、普通ポルトランドセメント(市販品、SiO2
22.0%、最大粒径0.3mm)、マグネシアクリンカー
(市販品、MgO 93.0%、最大粒径0.5mm)を用いて、
本発明の所定量を混合粉砕し、1mm以下に篩い分け、次
にパン型造粒機を用い、バインダーとして水を40重量
%を加えて造粒した。 その後乾燥し、約10mmの造粒
物を調整した。次に、この保温剤を溶鋼(市販品、SS4
1、mpt 1600℃)の上に、溶鋼1t当たり1.0Kg投
入した。 保温剤投入後、溶鋼温度が1600℃から1
550℃までの冷却時間、投入時の保温剤の発塵状態の
観察結果、及び保温剤投入前後の溶鋼のケイ素、炭素の
分析値を求めた。ただし、発塵状態を表すために、○は
殆ど発塵していない状態、△は少し発塵している状態、
×は発塵している状態を示すものとする。以上の結果を
表1に示す。 同表中の実験番号1〜8は本発明の実施
例を示し、実験番号9〜18は本発明の比較例、実験番
号19〜20は従来の保温剤による比較例、実験番号2
1は保温剤無添加の比較例を示す。同表中のセメントは
普通ポルトランドセメント、マグネシアはマグネシアク
リンカーを示し、従来の保温剤として、パーライト(市
販品、SiO274.0%、Al2O 3 16.0%、粒径5mm)、焼
き籾殻(市販品、SiO240.0%、 C45.0%、粒径1mm
以下)を用いた。
[Example] Slaked lime (commercial product, Ca (OH)296.1%, maximum grain
0.8 mm diameter, ordinary Portland cement (commercial item, SiO2
22.0%, maximum particle size 0.3mm), magnesia clinker
(Commercial product, MgO 93.0%, maximum particle size 0.5 mm)
A predetermined amount of the present invention is mixed and pulverized, sieved to 1 mm or less, and then
Using a pan-type granulator, 40 weight of water as a binder
% Was added for granulation. Then dry and granulate to about 10 mm
I adjusted things. Next, apply this heat retaining agent to molten steel (commercial product, SS4
1, mpt 1600 ℃), 1.0kg per 1t of molten steel
I entered. After the heat insulating agent was added, the molten steel temperature increased from 1600 ° C to 1
Cooling time up to 550 ℃,
Observed results and of the silicon and carbon of molten steel before and after adding the heat insulating agent
The analytical value was determined. However, in order to show the dust generation state, ○ is
Almost no dust is generated, △ is a little dust is generated,
X indicates that dust is generated. The above results
It shows in Table 1. Experiment Nos. 1 to 8 in the table are the implementations of the present invention.
Examples are shown, and experiment numbers 9 to 18 are comparative examples of the present invention, and experiment numbers.
Nos. 19 to 20 are comparative examples using a conventional heat retaining agent, Experiment No. 2
Reference numeral 1 shows a comparative example in which no heat insulating agent was added. The cement in the table is
Ordinary Portland cement, magnesia is magnesiac
Linker is shown as a traditional warming agent, perlite
Merchandise, SiO274.0%, Al2O 316.0%, grain size 5 mm), baked
Rice husk (commercial item, SiO240.0%, C45.0%, particle size 1mm
The following) was used.

【0019】[0019]

【表1】 [Table 1]

【0020】[0020]

【発明の効果】本発明による溶鋼保温剤は、溶鋼の保温
効果に優れ、粉塵の発生が少ないので作業性にも優れて
おり、かつ鋼中の炭素、ケイ素、水素等の汚染が見られ
ないので、製鋼工程における、保温の必要な容器内のい
かなる溶鋼にも適用できるものである。
INDUSTRIAL APPLICABILITY The molten steel heat retaining agent according to the present invention has an excellent heat retaining effect on molten steel and is excellent in workability because it produces little dust, and is free from contamination by carbon, silicon, hydrogen, etc. in the steel. Therefore, it can be applied to any molten steel in a container that needs to be kept warm in the steelmaking process.

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 消石灰又はカーバイド滓10〜40重量
%、セメント30〜60重量%、及びマグネシア10〜
50重量%を含有してなり、かつそれぞれの一次粒子径
が1mm以下のものを成形した成形物であることを特徴と
する溶鋼保温剤。
1. Slaked lime or carbide slag 10 to 40% by weight, cement 30 to 60% by weight, and magnesia 10 to 10.
A molten steel heat retaining agent comprising 50% by weight and a molded product formed by molding each having a primary particle diameter of 1 mm or less.
JP1494593A 1993-02-01 1993-02-01 Insulating material for molten steel Pending JPH06226410A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1494593A JPH06226410A (en) 1993-02-01 1993-02-01 Insulating material for molten steel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1494593A JPH06226410A (en) 1993-02-01 1993-02-01 Insulating material for molten steel

Publications (1)

Publication Number Publication Date
JPH06226410A true JPH06226410A (en) 1994-08-16

Family

ID=11875112

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1494593A Pending JPH06226410A (en) 1993-02-01 1993-02-01 Insulating material for molten steel

Country Status (1)

Country Link
JP (1) JPH06226410A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100521454B1 (en) * 1998-12-29 2006-01-27 재단법인 포항산업과학연구원 Manufacture method of calcium silicate plate using seawater magnesia waste as lime raw material
CN101811178A (en) * 2010-04-16 2010-08-25 马宪忠 Self-heating type thermal insulation covering agent
JP2015196629A (en) * 2014-04-02 2015-11-09 ゴウダ株式会社 Heat insulator for fusion furnace, production method of heat insulator for fusion furnace, and heat insulation method of fusion furnace
CN106077546A (en) * 2016-08-25 2016-11-09 贺州市创伟冶金耐材有限公司 A kind of covering slag in steelmaking process
CN107855479A (en) * 2017-12-08 2018-03-30 攀枝花钢城集团有限公司 A kind of molten steel covering agent and its production method
CN108145107A (en) * 2017-06-27 2018-06-12 贺州市创伟冶金耐材有限公司 A kind of low viscosity crystallizer protecting residue

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100521454B1 (en) * 1998-12-29 2006-01-27 재단법인 포항산업과학연구원 Manufacture method of calcium silicate plate using seawater magnesia waste as lime raw material
CN101811178A (en) * 2010-04-16 2010-08-25 马宪忠 Self-heating type thermal insulation covering agent
JP2015196629A (en) * 2014-04-02 2015-11-09 ゴウダ株式会社 Heat insulator for fusion furnace, production method of heat insulator for fusion furnace, and heat insulation method of fusion furnace
CN106077546A (en) * 2016-08-25 2016-11-09 贺州市创伟冶金耐材有限公司 A kind of covering slag in steelmaking process
CN108145107A (en) * 2017-06-27 2018-06-12 贺州市创伟冶金耐材有限公司 A kind of low viscosity crystallizer protecting residue
CN107855479A (en) * 2017-12-08 2018-03-30 攀枝花钢城集团有限公司 A kind of molten steel covering agent and its production method

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