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- Article name
- THE CAPABILITIES OF SPECIALIZED SOFTWARE FOR DESIGNING STRUCTURES MADE OF COMPOSITE MATERIALS, TAKING INTO ACCOUNT THE QUALITY REQUIREMENTS OF HIGH-TECH PRODUCTS
- Authors
- Zhdanov E. R., , zhdanov@ufanet.ru, MIREA - Russian Technological University, Moscow, Russia
Kharina O. S., , olgakharina12@yandex.ru, MIREA - Russian Technological University, Moscow, Russia
Yafizova R. A., , regina.yafizova@mail.ru, MIREA - Russian Technological University, Moscow, Russia
Kutsenko R. V., , kutsenko@ntckompas.ru, FSUE "The Scientific and Technical Center of the Defense Complex "Kompas", Moscow, Russia
Kryukov A. V., , minyyc@yandex.ru, MIREA - Russian Technological University, Moscow, Russia
- Keywords
- composite materials / finite element analysis / ANSYS Composite PrepPost / ACP / modeling of layered structures / fracture criteria / drapery / layering
- Year
- 2026 Issue 2 Pages 73 - 79
- Code EDN
- FUQCXF
- Code DOI
- 10.52190/1729-6552_2026_2_73
- Abstract
- The development of products made of composite materials is associated with unique challenges related to the anisotropy of properties, the complexity of laying layers and modeling the mechanisms of destruction. Specialized software tools are required to solve these problems. This article provides a detailed analysis of one of the leading solutions in this field, the ANSYS Composite PrepPost (ACP) module integrated into the ANSYS Workbench environment. Key software analogues such as Digimat, ESAComp and CAD-based solutions are considered. The main advantages of ACP are described in detail, including end-to-end modeling from design to production, an expanded set of destruction criteria, and tools for accounting for technological effects. Examples of applications in the aerospace and automotive industries, as well as in the design of underwater buildings, are given. In conclusion, a brief methodology for working in the program is presented, highlighting the main stages of creating a composite structure model.
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