Multifunctional load-bearing aerostructures with integrated space debris protection

Author:

Schubert Martin,Dafnis Anthanasios

Abstract

In the project multiSat multifunctional composite structures for satellite application have been developed. Functions such as protection against space debris, radiation shielding and passive thermal control have been integrated into the load-bearing composite spacecraft structure by use of suitable materials and components. Sandwich panels have been studied as representative structural parts of a conventional satellite structure. Measures for increased space debris protection include the substitution of the conventional honeycomb core by 3D-printed aluminum cellular structures and the reinforcement of the sandwich panel by integration of high performance fabrics which effectively break up and catch impacting debris particles. This paper describes the development and design of multifunctional sandwich concepts with increased impact protection capability and presents the experimental results of hypervelocity impact testing with different types of CFRP sandwich panels.

Publisher

EDP Sciences

Subject

General Medicine

Reference5 articles.

1. Schubert M., Perfetto S., Dafnis A., Mayer D., Atzrodt H., Development and design of multifunctional lightweight structures for satellite applications, Proceedings of the 69th International Astronautical Congress (2018)

2. Ley W., Wittmann K., Hallmann W. (Ed.), Handbook of Space Technology, 1 (2009)

3. Christiansen E.L., Ryan S., Handbook for Designing MMOD Protection, NASA/TM-2009-214785 (2009)

4. Ryan S., Christiansen E.L., Micrometeoroid and Orbital Debris (MMOD) Shield Ballistic Limit Analysis Program, NASA/TM-2009-214789 (2010)

5. Ryan S., Christiansen E.L., Hypervelocity Impact Testing of Aluminum Foam Core Sandwich Panels, NASA/TM-2015-218593 (2015)

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