Institute of Chemistry of New Materials

http://ichnm.by/  
220141 Minsk, F.Skaryna str., 36

Technology for the production of composite materials with nano- and microfillers for sheet plastic and high-temperature 3D printing

COUNTRY OF ORIGIN

Belarus

IDENTIFIER

TO12460

PUBLISHED

2024-12-18

LAST UPDATE

2024-12-18

DEADLINE

Linked profile in other language
Responsible
Darya Boika
+375 17 265 8843
dashik92_1992@mail.ru
Summary
Institute of Chemistry of New Materials offers consumers technology for the production of composite materials with nano- and micro-fillers for sheet plastic and high-temperature 3D printing under a commercial agreement with technical assistance and is looking for partners to conclude a technical cooperation agreement for the development of materials with other functional additives.
Description
Our own import-substituting technology for manufacturing sheet plastic and rods for low- and high-temperature 3D printing with carbon nano- and microfillers has been created.

The technology was developed within the framework of the Scientific and Technical Progress Program “Innovative Technologies and Technology”, contract 2018-26-052/3 “Develop a technology for manufacturing composite materials with nano- and microfillers for sheet plastic, low- and high-temperature 3D printing” (with OJSC SvetlogorskKhimvolokno).
The created technology will satisfy the needs of enterprises for sheet plastic and rods for low- and high-temperature 3D printing with carbon nano- and microfillers and will allow to refuse the purchase of imported materials.

The scope of application is mechanical engineering and machine tool manufacturing enterprises, light industry, defense enterprises, other industries, educational organizations (schools, universities), individuals.

Information is posted in  Album of promising developments of the NAS of Belarus organizations for the real sector of the economy (2023), p. 213-214. (in Russian)
Advantages and Innovations
Carbon-filled thermoplastics, depending on the type of carbon fiber, its parameters and concentration in the composition of composite materials for the production of rods for 3D printing and sheets, improve the physical and mechanical parameters of the rod and the produced polymer sheet.

Rods for 3D printing and sheets based on polymer materials with carbon nano- and microparticles have increased wear resistance and mechanical properties.
The developed technology for the production of sheet plastic and rods is environmentally friendly and does not cause significant damage to the environment.
The use of the developed materials allows you to get products at a world level.
Stage of development
Already on the market
Funding source
State budged
Internal
Investor
IPR status
Exclusive rights
Secret know-how
Comments regarding IPS status
Technical documentation with the litera "O1" for the production of 3D rods and plastic sheets made of PCM with nano- and microfillers, including Amendments to TU BY 100289145.022-2015 (as amended on 07.12.2017) dated 05.22.2019, pilot industrial regulations for 3D rods and sheets dated 12.23.2020.
Sector group
Materials
Nano and micro technologies

Client information

Type
R&D institution
Year established
1998
NACE keywords
C.20.59 - Manufacture of other chemical products n.e.c.
C.22.29 - Manufacture of other plastic products
M.72.19 - Other research and experimental development on natural sciences and engineering
M.74.90 - Other professional, scientific and technical activities n.e.c.
Turnover (in EUR)
10-20M
Already engaged in transnational cooperation
Yes
Additional comments
The Institute of Chemistry of New Materials is the leading institute in the Republic of Belarus and one of the leaders in fundamental and applied research in the field of creating thin-film and nanostructured organic materials, new composite materials with specified properties, methods for synthesizing new organic compounds as potential physiologically active substances.

Currently, the main objective of the Institute is to conduct scientific research in the field of high technologies for obtaining new chemical materials for various functional purposes, including:
- creating thin-film (including nanostructured) organic materials with specified properties;
- developing new composite materials with specified properties based on forest and petrochemical products and technologies for their production.

The scientific and scientific-technical activities of the Institute are also aimed at solving problems in the interests of enterprises: the Ministry of Industry, Belneftekhim Concern, Bellesbumprom Concern, State Military Industrial Committee, Ministry of Agriculture and Food, Ministry of Health and Belbiopharm Concern, RUE Cryptotech and the Minsk Printing Factory of the Goznak Department of the Ministry of Finance of the Republic of Belarus.

The Institute has high scientific and technical potential, has a modern research base, the latest experimental equipment, allowing to carry out complex scientific research in the areas of activity, is able to ensure high-quality performance of scientific research and development, practical development of results and conduct training of highly qualified scientific personnel.

Over the years of the Institute's existence, the results of scientific developments of the Institute of Chemistry of New Materials have been exported to Saudi Arabia, the Republic of Korea, China, India, Vietnam and other countries.

The Institute conducts research in broad international scientific cooperation with scientific centers of Russia, Azerbaijan, China, Vietnam, Saudi Arabia, the USA, Poland, Germany, regularly holds international conferences on the problems of obtaining science-intensive low-tonnage chemical products of various functional purposes.
Languages spoken
English
Russian

Information about partnership

Type of partnership considered
Commercial agreement with technical assistance
Technical cooperation agreement
Type and role of partner sought
Consumers interested in purchasing the technology for manufacturing composite materials with nano- and microfillers for sheet plastic and high-temperature 3D printing under a commercial agreement with technical assistance.

Partners interested in developing composite materials with nano- and microfillers for sheet plastic and high-temperature 3D printing with other functional additives under a technical cooperation agreement.
Type and size of partner sought
> 500
251-500
SME 51-250
SME 11-50
SME <= 10
R&D Institution
University
Sole proprietor

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