NPP “Tekhnologiya” plans a large-scale expansion in the production of composite elements for domestic aircraft engines. Deliveries of components for the #PD8 engine, installed on the Superjet, will double, while for the #PD14 engine used in the MC-21 aircraft, production will grow eightfold.
The enterprise is not just focusing on engine components; it is also preparing to dramatically scale up its aviation glazing production, with plans to increase “Superjet” glazing by 2.5 times and MC-21 aircraft glazing by more than 11 times.
These production targets are more than mere numbers; they represent a strategic response to the evolving needs of the Russian aviation sector. By significantly ramping up production of these critical components, ONPP “Tekhnologiya” is positioning itself as a key player in ensuring the self-sufficiency and technological advancement of Russia’s aerospace industry. The planned increases come at a crucial time when domestic production capabilities have become increasingly important in the face of international technological constraints.
The PD-8 and PD-14 engine components, along with the advanced aviation glazing, embody the enterprise’s commitment to high-tech, precision manufacturing. These are not just parts, but complex technological solutions that meet the most demanding specifications of modern aviation.
Sergey Chemezov, CEO of Rostec, has highlighted the strategic importance of such developments, particularly in creating lightweight yet strong materials that are crucial for modern aircraft design. The company’s work in developing polymer and aluminum honeycomb cores has already demonstrated its ability to reduce aircraft weight while maintaining critical structural integrity, with production volumes increasing by more than three times since 2021.
The planned production increases are not just about quantity but about quality, technological sophistication, and strategic national importance. By 2028, the enterprise will have transformed itself into a cornerstone of Russia’s aerospace component manufacturing, driving forward the country’s technological capabilities and reducing dependence on international suppliers.
The broader context of these plans speaks to the company’s broader mission of technological innovation and national industrial development. Each increased component, whether for engine systems or aircraft glazing, represents a step toward greater technological sovereignty and industrial self-sufficiency. ONPP “Tekhnologiya” is not just manufacturing parts; it is building the technological foundation for Russia’s aerospace future.
The enterprise’s technological prowess extends far beyond aerospace component manufacturing, positioning itself as a multifaceted research and production organization with deep scientific foundations. Since 2007, the company has been a prolific innovator, accumulating an impressive portfolio of 419 inventions specifically dedicated to the space industry. This remarkable achievement underscores the organization’s commitment to pushing technological boundaries and developing cutting-edge solutions across multiple high-tech sectors.
The company’s core competency lies in developing advanced non-metallic materials with extraordinary performance characteristics. Their expertise spans technical ceramics, composite materials, and specialized glass-like substances that serve critical industries, including aviation, rocket and space technology, transportation, and defense. They develop each material as a complex engineering solution to meet extremely demanding operational requirements.
The ultra-durable canopy they developed for the fifth-generation Su-57 fighter jet is a prime example of their innovative capabilities. This component is not merely a protective covering but a sophisticated engineering marvel featuring exceptional optical properties while simultaneously reducing the aircraft’s radar visibility. Similarly, their nose cones for “Angara” space rockets demonstrate remarkable engineering prowess—standing as tall as a five-story building yet weighing only 1,100 kg and capable of withstanding extreme temperatures up to 700°C.
The scientific foundation of ONPP “Tekhnologiya” is particularly impressive. The enterprise doesn’t just manufacture components; it conducts deep applied research and innovative development focused on creating unique materials and structures. Their collaboration with leading universities and research institutes ensures a continuous pipeline of technological innovations. In 2016, for instance, the company patented a groundbreaking methodology for determining the strength limits of dielectric materials, opening new possibilities for their application in advanced technological domains.
Their recent achievement in developing domestic ceramic components for additive manufacturing equipment further illustrates their adaptive innovation strategy. By creating ceramic nozzles, bushings, and crucible sets for metal powder production in 3D printing, they’ve addressed critical manufacturing challenges posed by international sanctions. These components demonstrate extraordinary technical characteristics, including wear resistance, thermal stability up to 1800°C, and exceptional chemical resistance when exposed to molten metals.
The enterprise does not limit its product development to a specific sector. They have successfully developed technical ceramic products offering high strength, thermal resistance, and dielectric properties crucial for aerospace systems. Their composite materials significantly reduce structural weights while maintaining critical strength and reliability parameters. Control system elements, rocket technology parts, and specialized components for onboard systems represent just a fraction of their diverse technological portfolio.
Notably, ONPP “Tekhnologiya” has made significant contributions to advanced energy research, participating in projects like the BN-1200 thermionic reactor designed for spacecraft applications. This involvement showcases their ability to operate at the forefront of energy technology, creating solutions for some of the most demanding engineering environments.
The company’s future development strategy is equally forward-looking. They concentrate on advancing material research to create composites that are increasingly lightweight and durable for use in aviation and space exploration. Simultaneously, they are implementing modern automation technologies to enhance production quality and speed, ensuring they remain at the forefront of technological innovation.
Strategically positioned within the Rostec state corporation, ONPP “Tekhnologiya” plays a crucial role in Russia’s technological ecosystem.

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