METHOD FOR OBTAINING COMPACT MATERIALS CONTAINING CHROME AND TITANIUM CARBIDES BY METHOD OF SELF-SPREADING HIGH-TEMPERATURE SYNTHESIS (VERSIONS) Russian patent published in 2017 - IPC C22C29/10 B22F3/23 

Abstract RU 2637198 C1

FIELD: technological processes.

SUBSTANCE: method includes preparing a reaction mixture from powdered components, compacting the mixture, and initiating the proceeding of self-propagating high-temperature synthesis (SHS). In the method according to version 1, a reaction mixture consisting of titanium and carbon ferrochromium powders is prepared at the weight ratio of titanium to carbon ferrochromium from 0.2 to 0.8. In the method according to version 2, a reaction mixture consisting of ferrotitanium with a titanium content of at least 60% and carbon ferrochrome powders, is prepared at the weight ratio of ferrotitanium to carbon ferrochromium of 0.2 to 0.8.

EFFECT: obtaining compact materials without using special reactors and applying external impacts on the reaction system, increasing the strength of compacted materials.

6 cl, 4 ex

Similar patents RU2637198C1

Title Year Author Number
METHOD FOR PRODUCING METAL-CERAMIC MATERIALS, INCLUDING VOLUMETRIC POROUS MATERIALS CONTAINING TITANIUM NITRIDE BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS 2022
  • Ovcharenko Pavel Georgievich
  • Tereshkina Svetlana Alfredovna
  • Anikin Andrej Aleksandrovich
  • Leshchev Andrej Yurevich
RU2809611C2
METHOD FOR PRODUCING COMPOSITE ALUMINIUM MATRIX MATERIALS CONTAINING CHROMIUM BORIDE COMPONENTS USING SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS 2022
  • Ovcharenko Pavel Georgievich
  • Mokrushina Marina Ivanovna
  • Nikonova Roza Muzafarovna
  • Ladyanov Vladimir Ivanovich
  • Anikin Andrej Aleksandrovich
RU2809613C1
METHOD FOR OBTAINING COMPACT MATERIALS CONTAINING TITANIUM DIBORIDE USING SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS 2016
  • Ovcharenko Pavel Georgievich
  • Leshchev Andrej Yurevich
  • Kuzminykh Evgenij Vasilevich
RU2658566C2
METHOD FOR PRODUCING COMPOSITE ALUMINIUM-MATRIX MATERIALS CONTAINING TITANIUM CARBIDE BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS 2022
  • Ovcharenko Pavel Georgievich
  • Mokrushina Marina Ivanovna
  • Nikonova Roza Muzafarovna
  • Anikin Andrej Aleksandrovich
RU2792903C1
METHOD FOR PRODUCING COMPOSITE ALUMINUM MATRIX MATERIALS CONTAINING TITANIUM CARBIDE BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS 2022
  • Ovcharenko Pavel Georgievich
  • Mokrushina Marina Ivanovna
  • Nikonova Roza Muzafarovna
  • Ladyanov Vladimir Ivanovich
  • Anikin Andrej Aleksandrovich
RU2793662C1
METHOD OF PRODUCING COMPOSITE METAL ALLOY CONTAINING TITANIUM CARBIDE 2020
  • Yakushev Oleg Stepanovich
  • Ladyanov Vladimir Ivanovich
  • Kuzminykh Evgenij Vasilevich
  • Tanygin Stanislav Veniaminovich
  • Ovcharenko Pavel Georgievich
  • Tanygin Igor Veniaminovich
  • Mokrushina Marina Ivanovna
  • Karev Vladislav Aleksandrovich
RU2739898C1
METHOD OF FORMING BORIDE COMPONENTS OF TITANIUM ON SURFACE OF ARTICLES FROM IRON-CARBON ALLOYS DURING LASER PROCESSING 2023
  • Ovcharenko Pavel Georgievich
  • Mokrushina Marina Ivanovna
  • Ladyanov Vladimir Ivanovich
  • Anikin Andrej Aleksandrovich
RU2819007C1
METHOD OF ALLOYING SURFACE OF ARTICLES MADE FROM TITANIUM OR ALLOYS ON ITS BASIS WITH FORMATION OF BORIDE COMPONENTS OF CHROMIUM AND TITANIUM BY LASER PROCESSING 2023
  • Ovcharenko Pavel Georgievich
  • Pushkarev Bazhen Evgenevich
  • Tereshkina Svetlana Alfredovna
  • Ladyanov Vladimir Ivanovich
  • Anikin Andrej Aleksandrovich
RU2819010C1
COMPOSITION OF SELF-PROTECTIVE POWDER WIRE FOR WEAR-RESISTANT WELDING 2015
  • Plomodyalo Roman Leonidovich
  • Shtokolov Sergej Sergeevich
RU2645828C2
METHOD OF PRODUCING COMPOSITE MATERIALS BASED ON TI-B-FE, AIN MODIFIED NANOPARTICLES 2020
  • Bolotskaya Anastasiya Vadimovna
  • Mikheev Maksim Valerevich
  • Bazhin Pavel Mikhajlovich
  • Stolin Aleksandr Moiseevich
RU2737185C1

RU 2 637 198 C1

Authors

Ovcharenko Pavel Georgievich

Leshchev Andrej Yurevich

Kuzminykh Evgenij Vasilevich

Dates

2017-11-30Published

2016-06-14Filed