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RU2313597C1 - Cast iron - Google Patents

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Publication number
RU2313597C1
RU2313597C1 RU2006112676/02A RU2006112676A RU2313597C1 RU 2313597 C1 RU2313597 C1 RU 2313597C1 RU 2006112676/02 A RU2006112676/02 A RU 2006112676/02A RU 2006112676 A RU2006112676 A RU 2006112676A RU 2313597 C1 RU2313597 C1 RU 2313597C1
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RU
Russia
Prior art keywords
cast iron
iron
vanadium
manganese
titanium
Prior art date
Application number
RU2006112676/02A
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Russian (ru)
Inventor
Юли Алексеевна Щепочкина (RU)
Юлия Алексеевна Щепочкина
Original Assignee
Юлия Алексеевна Щепочкина
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Application filed by Юлия Алексеевна Щепочкина filed Critical Юлия Алексеевна Щепочкина
Priority to RU2006112676/02A priority Critical patent/RU2313597C1/en
Application granted granted Critical
Publication of RU2313597C1 publication Critical patent/RU2313597C1/en

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  • Refinement Of Pig-Iron, Manufacture Of Cast Iron, And Steel Manufacture Other Than In Revolving Furnaces (AREA)

Abstract

FIELD: ferrous metallurgy.
SUBSTANCE: the present innovation deals with the composition of cast iron and manufacturing the rollers and the details of sand pumps. The cast iron in question contains the components in the following ratio, weight%: carbon 2.4-3.4; silicon 2.0-2.6; manganese 3.0-4.0; chromium 6.0-8.0; vanadium 1.5-2.0; zirconium 1.0-1.8; titanium 0.4-0.8; iron - the rest. The innovation provides increased strength of the cast iron.
EFFECT: increased strength.
1 tbl

Description

Изобретение относится к области черной металлургии, а именно к составам чугуна, который может быть использован, например, для изготовления прокатных валков, деталей песковых насосов.The invention relates to the field of ferrous metallurgy, and in particular to compositions of cast iron, which can be used, for example, for the manufacture of rolling rolls, parts of sand pumps.

Известен чугун следующего состава, мас.%: углерод 2,4-3,6; кремний 1,2-2,6; марганец 0,3-4,0; хром 6,6-8,9; ванадий 0,1-0,8; железо - остальное [1]. Предел прочности такого чугуна при изгибе составляет 52-59 кгс/мм2.Known cast iron of the following composition, wt.%: Carbon 2.4-3.6; silicon 1.2-2.6; manganese 0.3-4.0; chrome 6.6-8.9; vanadium 0.1-0.8; iron - the rest [1]. The tensile strength of such cast iron in bending is 52-59 kgf / mm 2 .

Задачей изобретения является повышение прочности чугуна.The objective of the invention is to increase the strength of cast iron.

Технический результат достигается тем, что чугун, содержащий углерод, кремний, марганец, хром, ванадий, железо, дополнительно содержит цирконий и титан, при следующем соотношении компонентов, мас. %: углерод 2,4-3,4; кремний 2,0-2,6; марганец 3,0-4,0; хром 6,0-8,0; ванадий 1,5-2,0; цирконий 1,0-1,8; титан 0,4-0,8; железо - остальное.The technical result is achieved by the fact that cast iron containing carbon, silicon, manganese, chromium, vanadium, iron, additionally contains zirconium and titanium, in the following ratio, wt. %: carbon 2.4-3.4; silicon 2.0-2.6; manganese 3.0-4.0; chrome 6.0-8.0; vanadium 1.5-2.0; zirconium 1.0-1.8; titanium 0.4-0.8; iron is the rest.

В таблице приведены составы чугуна.The table shows the composition of cast iron.

ТаблицаTable КомпонентыComponents Состав, мас.%:Composition, wt.%: 1one 22 33 УглеродCarbon 2,42,4 3,03.0 3,43.4 КремнийSilicon 2,62.6 2,42,4 2,02.0 МарганецManganese 4,04.0 3,53,5 3,03.0 ХромChromium 6,06.0 7,07.0 8,08.0 ВанадийVanadium 2,02.0 1,81.8 1,91.9 ЦирконийZirconium 1,81.8 1,41.4 1,01,0 ТитанTitanium 0,40.4 0,60.6 0,80.8 ЖелезоIron остальноеrest остальноеrest остальноеrest Предел прочности при изгибе,
кгс/мм2
Bending strength
kgf / mm 2
~85~ 85 ~85~ 85 ~85~ 85

Повышенная прочность чугуна достигается за счет мелкозернистой структуры сплава и комплексного влияния компонентов, входящих в его состав. Цирконий и титан способствуют измельчению зерна. Хром стабилизирует карбиды. Ванадий упрочняет твердый раствор.The increased strength of cast iron is achieved due to the fine-grained structure of the alloy and the complex influence of the components included in its composition. Zirconium and titanium contribute to the grinding of grain. Chrome stabilizes carbides. Vanadium strengthens the solid solution.

Чугун выплавляют в электропечах и отливают формы. Отливки подвергают низкотемпературному отжигу при температуре 600°С.Cast iron is smelted in electric furnaces and molds are cast. The castings are subjected to low-temperature annealing at a temperature of 600 ° C.

Источники информацииInformation sources

1. SU 829710, С22С 37/10, 1981.1. SU 829710, C22C 37/10, 1981.

Claims (1)

Чугун, содержащий углерод, кремний, марганец, хром, ванадий и железо, отличающийся тем, что он дополнительно содержит цирконий и титан при следующем соотношении компонентов, мас.%:Cast iron containing carbon, silicon, manganese, chromium, vanadium and iron, characterized in that it additionally contains zirconium and titanium in the following ratio of components, wt.%: углеродcarbon 2,4-3,42.4-3.4 кремнийsilicon 2,0-2,62.0-2.6 марганецmanganese 3,0-4,03.0-4.0 хромchromium 6,0-8,06.0-8.0 ванадийvanadium 1,5-2,01.5-2.0 цирконийzirconium 1,0-1,81.0-1.8 титанtitanium 0,4-0,80.4-0.8 железоiron остальноеrest
RU2006112676/02A 2006-04-17 2006-04-17 Cast iron RU2313597C1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
RU2006112676/02A RU2313597C1 (en) 2006-04-17 2006-04-17 Cast iron

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
RU2006112676/02A RU2313597C1 (en) 2006-04-17 2006-04-17 Cast iron

Publications (1)

Publication Number Publication Date
RU2313597C1 true RU2313597C1 (en) 2007-12-27

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103757524A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 High temperature-resistance multi-element alloy casting ball material and preparation method thereof
CN103757526A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 High-hardness corrosion-resistance casting ball material and preparation method thereof
CN103757525A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 High-carbon low-chromium multi-element alloy casting ball material and preparation method thereof
CN103757521A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 Multi-element alloy casting ball material and preparation method thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2428821A1 (en) * 1974-06-14 1975-12-18 Goetzewerke WEAR-RESISTANT CAST IRON ALLOY WITH LAMELLAR TO BONE-SHAPED GRAPHITE EXECUTION
EP0014655A1 (en) * 1979-02-05 1980-08-20 ACIERIES THOME CROMBACK Société anonyme dite: Process for the manufacture of grinding members of an iron alloy
SU1289904A1 (en) * 1986-11-20 1987-02-15 Брянский технологический институт Cast iron
SU1513936A3 (en) * 1987-09-18 2000-01-27 Новомейский Юрий Донатович CAST IRON

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2428821A1 (en) * 1974-06-14 1975-12-18 Goetzewerke WEAR-RESISTANT CAST IRON ALLOY WITH LAMELLAR TO BONE-SHAPED GRAPHITE EXECUTION
EP0014655A1 (en) * 1979-02-05 1980-08-20 ACIERIES THOME CROMBACK Société anonyme dite: Process for the manufacture of grinding members of an iron alloy
SU1289904A1 (en) * 1986-11-20 1987-02-15 Брянский технологический институт Cast iron
SU1513936A3 (en) * 1987-09-18 2000-01-27 Новомейский Юрий Донатович CAST IRON

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103757524A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 High temperature-resistance multi-element alloy casting ball material and preparation method thereof
CN103757526A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 High-hardness corrosion-resistance casting ball material and preparation method thereof
CN103757525A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 High-carbon low-chromium multi-element alloy casting ball material and preparation method thereof
CN103757521A (en) * 2013-12-13 2014-04-30 芜湖金鹰机械科技开发有限公司 Multi-element alloy casting ball material and preparation method thereof

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