ANTI-DYNATRON COATING BASED ON A POLYMER MATRIX WITH THE INCLUSION OF CARBON NANOTUBES AND A METHOD FOR ITS PREPARATION Russian patent published in 2021 - IPC C01B32/158 B82Y30/00 

Abstract RU 2745976 C1

FIELD: composite materials.

SUBSTANCE: invention relates to composite materials that can be applied to the surface of various details to create anti-dynatron coatings. The anti-dynatron coating formed on the surface of the detail is characterized by the presence of carbon nanotubes. In this case, the coating includes at least the first layer of a composite material, which is a polymer matrix with the inclusion of multi-walled oriented carbon nanotubes with a diameter of 8 nm and up to 250 nm, made with a thickness of 0.1 to 1 mm, with a density of an array of oriented carbon nanotubes from 0.5 to 1 g/cm3, with the number of nanotubes from 5 to 20 wt. % of the weight of the composite material. The method of obtaining the specified coverage is also stated.

EFFECT: invention provides a high-quality anti-dynatron coating on details having a complex shape, while simplifying the method of its application without the need for high-temperature processing of the detail.

6 cl, 3 dwg, 3 ex

Similar patents RU2745976C1

Title Year Author Number
FABRICATION OF POLYMER COMPOSITE ON BASIS OF ORIENTED CARBON NANOTUBES 2013
  • Moskvichev Aleksandr Nikolaevich
  • Moskvichev Aleksandr Aleksandrovich
  • Perevezentsev Vladimir Nikolaevich
  • Rodionov Aleksandr Sergeevich
RU2560382C2
GAS-SENSITIVE COMPOSITE AND METHOD OF ITS PRODUCTION 2018
  • Varfolomeev Andrej Evgenevich
  • Volkov Ivan Aleksandrovich
  • Solovej Valentin Romanovich
  • Tomas Meder
RU2688742C1
SUPER CONNECTOR ELECTRODE 2017
  • Saurov Aleksandr Nikolaevich
  • Kozlov Sergej Nikolaevich
  • Zhivikhin Aleksej Vasilevich
  • Pavlov Aleksandr Aleksandrovich
  • Bulyarskij Sergej Viktorovich
  • Svetukhin Vyacheslav Viktorovich
  • Risovanyj Vladimir Dmitrievich
RU2670281C1
METHOD OF MANUFACTURING POLYMER COMPOSITE WITH ALIGNED ARRAY OF CARBON NANOTUBES OF CONTROLLED DENSITY 2011
  • Konoplev Boris Georgievich
  • Ageev Oleg Alekseevich
  • Sjurik Julija Vital'Evna
RU2478563C2
RADIO-ABSORBING COMPOSITE MATERIAL BASED ON MULTILAYER CARBON NANOTUBES MODIFIED WITH FERRITE NANOPARTICLES 2019
  • Bykov Aleksandr Andreevich
RU2747932C2
METHOD OF MODIFYING CARBON NANOTUBES FOR PRODUCING HYDROPHILIC OR HYDROPHOBIC SURFACES 2018
  • Shemukhin Andrej Aleksandrovich
  • Kushkina Kseniya Dmitrievna
  • Vorobeva Ekaterina Andreevna
  • Balakshin Yurij Viktorovich
  • Chechenin Nikolaj Gavrilovich
RU2707930C1
COMPOSITE MATERIALS CONTAINING CONDUCTING NANOFILLERS 2012
  • Restuchcha Karmelo Luka
  • Lentsi Fiorentso
  • Frulloni Emiliano
  • Dzhordan Natali Deniz
  • Kharriman Mark Edvard
RU2611512C2
METHOD OF MANUFACTURING A SUPER-CAPACITOR ELECTRODE 2017
  • Saurov Aleksandr Nikolaevich
  • Kozlov Sergej Nikolaevich
  • Zhivikhin Aleksej Vasilevich
  • Pavlov Aleksandr Aleksandrovich
  • Bulyarskij Sergej Viktorovich
RU2660819C1
PROTECTIVE COATING BASED ON POLYMER COMPOSITE RADIO MATERIAL 2015
  • Zhuravleva Elena Vladimirovna
  • Kuleshov Grigorij Evgenevich
  • Dotsenko Olga Aleksandrovna
RU2606350C1
METHOD OF PRODUCING POLYMERIC COMPOSITE MATERIALS 2016
  • Krasnovskij Aleksandr Nikolaevich
  • Kuznetsov Andrej Gennadevich
  • Egorov Sergej Aleksandrovich
  • Kishchuk Petr Sergeevich
RU2637227C1

RU 2 745 976 C1

Authors

Shemukhin Andrej Aleksandrovich

Tatarintsev Andrej Andreevich

Vorobeva Ekaterina Andreevna

Chechenin Nikolaj Gavrilovich

Dates

2021-04-05Published

2020-04-13Filed