Materials design for hypersonics

Проектирование материалов для гиперзвуковых летательных аппаратов
Tresa M. Pollock, Corey Oses, Stefano Curtarolo, Adam B. Peters, Dajie Zhang, Samuel Chen, Catherine Ott, Ian McCue, Suhas Eswarappa Prameela
2024-04-18

aerothermal environmentshypersonic vehiclesmaterials designrefractory alloysthermal protection
Hypersonic vehicles must withstand extreme conditions during flights that exceed five times the speed of sound. These systems have the potential to facilitate rapid access to space, bolster defense capabilities, and create a new paradigm for transcontinental earth-to-earth travel. However, extreme aerothermal environments create significant challenges for vehicle materials and structures. This work addresses the critical need to develop resilient refractory alloys, composites, and ceramics. We will highlight key design principles for critical vehicle areas such as primary structures, thermal protection, and propulsion systems; the role of theory and computation; and strategies for advancing laboratory-scale materials to manufacturable flight-ready components.
1
Advancing laboratory-scale materials into flight-ready components requires strategies focused on manufacturability and scale-up.
2
Hypersonic vehicles experience extreme aerothermal conditions that pose major challenges for materials and structural systems.
3
Materials design must address distinct requirements across primary structures, thermal protection, and propulsion systems.
4
Resilient refractory alloys, composites, and ceramics are critical materials classes for enabling hypersonic vehicle operation.
5
Theory and computation play important roles in guiding the development of materials for hypersonic applications.

materials and structures for hypersonic vehicles, including refractory alloys, composites, and ceramics

design principles and development strategies for resilient, manufacturable, flight-ready materials and components that withstand extreme aerothermal conditions

Publication Details
Publication Date
2024-04-18
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Authors
Tresa M. Pollock
Corey Oses
Stefano Curtarolo
Adam B. Peters
Dajie Zhang
Samuel Chen
Catherine Ott
Ian McCue
Suhas Eswarappa Prameela
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