CONSUMABLE ELECTRODE FOR PRODUCING HIGH TITANIUM FERRO ALLOY BY MEANS OF ELECTRO SLAG MELTING Russian patent published in 2008 - IPC C22B9/18 H05B7/07 C22C33/04 

Abstract RU 2335553 C2

FIELD: metallurgy.

SUBSTANCE: consumable electrode contains as titanium containing filler mixture of slag with contents of titanium oxides not less, than 78 wt %, obtained by melting of ilmenite in electric furnace, reducer and binding agent; at that ratio of area of cross section of steel coat to area of cross section of filler in consumable electrode is not more, than 0.024, density of filler mixture packing in steel coat is not less, than 2.7 t/m3.

EFFECT: reduction of prime cost of product weight unit; simplification of process of electrode fabrication; avoiding possibility of contaminating ferroalloy with air oxygen at melting of consumable electrode.

5 cl, 2 tbl, 3 dwg

Similar patents RU2335553C2

Title Year Author Number
METHOD OF PRODUCING HIGH TITANIUM FERROALLOY OUT OF ILMENITE 2005
  • Chepel' Sergej Nikolaevich
  • Zvezdin Aleksandr Afanas'Evich
  • Poletaev Evgenij Borisovich
RU2329322C2
HIGH TITANIUM FERRO ALLOY PRODUCED BY TWO STAGES REDUCTION OUT OF ILMENITE 2005
  • Zvezdin Aleksandr Afanas'Evich
  • Chepel' Sergej Nikolaevich
  • Poletaev Evgenij Borisovich
RU2335564C2
INSTALLATION FOR PRODUCTION OF FERROTITANIUM BY ELECTRIC-ARC MELT OF TITANIUM CONTAINING MATERIAL UNDER LAYER OF PROTECTIVE FLUX 2007
  • Chepel' Sergej Nikolaevich
  • Zvezdin Aleksandr Afanas'Evich
  • Svjatnenko Inna Nikolaevna
  • Medved' Sergej Nikolaevich
  • Poletaev Evgenij Borisovich
RU2398908C2
METHOD OF FERROTITANIUM INGOT OBTAINMENT BY ELECTRIC ARC FUSION OF RUTILE UNDER PROTECTIVE FLUX LAYER 2007
  • Chepel' Sergej Nikolaevich
  • Zvezdin Aleksandr Afanas'Evich
  • Svjatnenko Inna Nikolaevna
  • Tarasevich Ivan Nikolaevich
  • Poletaev Evgenij Borisovich
RU2392336C2
METHOD FOR ALUMINOTHERMIC PRODUCTION OF FERROTITANIUM 2020
  • Tsikarev Vladislav Grigorevich
  • Ershov Egor Vladimirovich
  • Filippenkov Anatolij Anatolevich
  • Opaev Egor Vladimirovich
  • Bryakov Artem Vyacheslavovich
RU2755187C1
TANK-CASTING MOULD OF INSTALLATION FOR RECEIVING OF FERROTITANIUM BY MEANS OF ELECTROARC MELTING OF RUTILE UNDER LAYER OF PROTECTIVE FLUX 2007
  • Zvezdin Aleksandr Afanas'Evich
  • Chepel' Sergej Nikolaevich
  • Tarasevich Ivan Nikolaevich
  • Poletaev Evgenij Borisovich
  • Medved' Sergej Nikolaevich
RU2377325C2
TITANIUM-CONTAINING CHARGE FOR ALUMINOTHERMAL PRODUCTION OF FERROTITANIUM, METHOD OF ALUMINOTHERMAL PRODUCTION OF FERROTITANIUM AND METHOD OF ALUMINOTHERMAL PRODUCTION OF TITANIUM-CONTAINING SLAG AS COMPONENT OF TITANIUM-CONTAINING CHARGE FOR ALUMINOTHERMAL PRODUCTION OF FERROTITANIUM 2012
  • Gil'Varg Sergej Igorevich
  • Grigor'Ev Vjacheslav Georgievich
  • Kuz'Min Nikolaj Vladimirovich
  • Mal'Tsev Jurij Borisovich
RU2516208C2
METHOD OF PRODUCING TITANIUM-IRON ALLOY AND DEVICE FOR IMPLEMENTATION THEREOF 2019
  • Lysenko Andrej Pavlovich
  • Kondrateva Darya Sergeevna
  • Kondratev Sergej Vladimirovich
  • Nalivajko Anton Yurevich
RU2734610C1
METHOD FOR FURNACE MELTING OF FERROTITANIUM FROM TITANIUM OXIDES 2000
  • Trubin A.N.
  • Al'Tman P.S.
  • Demidov B.A.
  • Karasev V.N.
  • Makhonin A.S.
RU2196843C2
MIXTURE AND METHOD FOR ALUMINOTHERMIC PRODUCTION OF FERROTITANIUM USING SAME 2015
  • Gilvarg Sergej Igorevich
  • Kuzmin Nikolaj Vladimirovich
  • Maltsev Yurij Borisovich
RU2608936C2

RU 2 335 553 C2

Authors

Chepel' Sergej Nikolaevich

Zvezdin Aleksandr Afanas'Evich

Poletaev Evgenij Borisovich

Dates

2008-10-10Published

2005-05-19Filed