Research in Computational Physics at MetodX is focused on the modeling of complex physical processes and the development of new materials technologies.
Particular attention is given to controlling the structure of matter at the atomic and crystalline levels, enabling the emergence of new classes of materials and advanced technological processes.
Key Areas
Modification of Crystalline Structure of Materials
Collaborative Research with the Nuclear Technology Park
MetodX conducts scientific research in collaboration with the Nuclear Technology Park of the Republic of Kazakhstan and Nazarbayev University, focusing on the modification of material structures through the воздействие accelerated particles.
The experiments investigate the effects of irradiation on the crystalline structure of metals and other materials.
One of the long-term goals of this research is the development of a new technological field — informational metallurgy.
Within this concept, the properties of materials are controlled not only through traditional technological parameters, but also through the controlled modification of matter at the micro- and nanoscale.
This approach may lead to fundamentally new technologies for the production of metals and advanced materials.
Achieved Results
The joint research has already produced positive experimental results, confirming the feasibility of controlled modification of material structures.
Modeling of Metallurgical Processes
MetodX conducts computational studies of metallurgical processes in collaboration with industrial partners and private technology organizations.
The objective of this research is to improve the quality characteristics of metals while simultaneously reducing production costs.
Key Materials Studied:
Copper
Aluminum
Industrial alloys
Specialized materials
The results obtained are aimed at developing more efficient technologies for metal production.
Research on Carbon Structures and Synthetic Diamonds
MetodX also participates in scientific research conducted in collaboration with scientists from Russia and Belarus, focused on the development of technologies for the production of synthetic diamonds.
Research Includes:
Analysis of carbon structure transformations
Modeling of diamond crystal growth
Mathematical modeling of CVD synthesis processes to improve efficiency
Investigation of the properties of graphite and carbon-based materials
These efforts are aimed at advancing technologies for the production of ultra-strong materials.