TY - RPRT U1 - Arbeitspapier A1 - Artykova, Zhadyra T1 - Mathematical Modeling and Process Optimization of Composite Polymer Stabilizers N2 - This paper examines current mathematical modeling methods used for the development and optimization of composite polymer stabilizers. A review of key challenges related to the stability of polymer materials is provided, along with a discussion of modern computational approaches, including molecular dynamics, finite element analysis, thermodynamic modeling, and machine learning. The necessity of an interdisciplinary approach integrating chemistry, materials science, and computational technologies is justified. Perspectives on the further development of modeling methods to enhance the efficiency and stability of polymer stabilizers are presented. AB - This paper examines current mathematical modeling methods used for the development and optimization of composite polymer stabilizers. A review of key challenges related to the stability of polymer materials is provided, along with a discussion of modern computational approaches, including molecular dynamics, finite element analysis, thermodynamic modeling, and machine learning. The necessity of an interdisciplinary approach integrating chemistry, materials science, and computational technologies is justified. Perspectives on the further development of modeling methods to enhance the efficiency and stability of polymer stabilizers are presented. T3 - Constructor University Technical Reports - 59 KW - Polymerization KW - Mathematical Modeling KW - Polymer KW - Drilling fluid KW - Materials science Y1 - 2026 U6 - https://nbn-resolving.org/urn:nbn:de:gbv:579-opus-1013526 UN - https://nbn-resolving.org/urn:nbn:de:gbv:579-opus-1013526 ER -