Detail aplikovaného výsledku

Adaptive thermal structure demonstrator: aluminium 3D-printed part for space application

MAŠEK, J.; LÖFFELMANN, F.; ZEMEK, A.; MALÝ, M.; KOUTNÝ, D.

Originální název

Adaptive thermal structure demonstrator: aluminium 3D-printed part for space application

Anglický název

Adaptive thermal structure demonstrator: aluminium 3D-printed part for space application

Druh

Funkční vzorek

Abstrakt

Thermal structure with variable height to transfer heat between two surfaces in thermal management of spacecraft with discontinuous conductivity. It is a result of additive re-design of a heat switch being developed for the European Space Agency ESA. Shape of the ultralight component is driven by the thermal efficiency, manufacturability and applicability of surface treatment by unconventional technologies. Component was manufactured by additive technology Selective Laser Melting from aluminium alloy powder. Functional sample is used for further testing.

Abstrakt aglicky

Thermal structure with variable height to transfer heat between two surfaces in thermal management of spacecraft with discontinuous conductivity. It is a result of additive re-design of a heat switch being developed for the European Space Agency ESA. Shape of the ultralight component is driven by the thermal efficiency, manufacturability and applicability of surface treatment by unconventional technologies. Component was manufactured by additive technology Selective Laser Melting from aluminium alloy powder. Functional sample is used for further testing.

Klíčová slova

Additive design, 3D printing, selective laser melting, ALSi10Mg, heat switch, thermal structure, variable height, adaptive, mechanism

Klíčová slova anglicky

Additive design, 3D printing, selective laser melting, ALSi10Mg, heat switch, thermal structure, variable height, adaptive, mechanism

Umístění

Letecký ústav

Licenční poplatek

K využití výsledku jiným subjektem je vždy nutné nabytí licence