Design development and flight qualification of a supercritical composite shaft...
Design development and flight qualification of a supercritical composite shaft drive line for tiltrotor main drive system
The members of STEADIEST consortium (CONSEIL ET TECHNIQUE, Arts et Métiers university and Asquini MGP) have multidisciplinary competencies regarding composite materials, rotating drive shaft instabilities, design, manufacturing a...
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Información proyecto STEADIEST
Duración del proyecto: 43 meses
Fecha Inicio: 2019-02-18
Fecha Fin: 2022-09-30
Líder del proyecto
ASQUINI MGP SAS
No se ha especificado una descripción o un objeto social para esta compañía.
TRL
4-5
Presupuesto del proyecto
571K€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
The members of STEADIEST consortium (CONSEIL ET TECHNIQUE, Arts et Métiers university and Asquini MGP) have multidisciplinary competencies regarding composite materials, rotating drive shaft instabilities, design, manufacturing and testing for aeronautical business sector. Each of those three members is leading research and development work for innovative technologies or processes (composite manufacturing techniques, control of dynamic instabilities or concurrent engineering tool for early design). The attached proposal is developing the design, development and flight qualification of a supercritical composite shaft drive line for tilt rotor main drive system. STEADIEST is submitting two different architectures of drive line considering bending flexibility, supercritical damping technologies and monitoring capabilities while maintaining safety, reliability, maintainability and lightweight objectives.
Our main objectives will be to study and to develop innovative solutions on materials (use of composite shaft with metalic flanges and surface treatment issue), on drive line architecture (use of supercritical shaft coupled with subcritical shaft through flexible coupling) and on innovative device allowing high stability, high reliability and high safety.