Screening of liquid photopolymer resins exposed to high-vacuum

Отбор жидких фотополимерных смол, подвергнутых воздействию высокого вакуума
Michael Kringer, Jannik Pimpi, Thomas Sinn, Ugo Lafont, Philipp Reiss, Markus Pietras
2026-02-24

UV-curing efficiencyhigh vacuum exposureliquid photopolymer resinsoutgassingviscosity increase
Abstract Photopolymers are promising materials for in-space manufacturing, whether for continuous extrusion or structural bonding. However, they must be processed as a liquid under high vacuum, which can alter viscosity, curing behavior, or mechanical properties. Furthermore, high outgassing can contaminate spacecraft surfaces. To study the influence of high vacuum on the resins in their liquid phase, Delo Katiobond GE680, Delo Katiobond OB678, Polymer-G EPV9511, and Loctite AA3301 LC were exposed to high vacuum. Outgassing was quantified for both liquid and cured samples. Viscosity increased in all resins, and UV-curing efficiency generally decreased. EPV9511 maintained stable mechanical properties, whereas the Delo and Loctite resins exhibited reduced stiffness at 45 °C. All resins exceeded 1% total mass loss in their liquid state, but cured GE680 and OB678 met low-outgassing criteria. GE680 and EPV9511 showed the highest vacuum stability and appear suitable for in-space processing when volatile components are minimized through pre-degassing.
1
All resins in liquid state exhibited total mass loss greater than 1% under high vacuum.
2
Cured GE680 and OB678 met low-outgassing criteria despite high liquid-state mass loss.
3
Delo Katiobond GE680, Delo Katiobond OB678, and Loctite AA3301 LC showed reduced stiffness at 45 °C after vacuum exposure.
4
Exposure to high vacuum increased viscosity in all tested liquid photopolymer resins.
5
GE680 and EPV9511 demonstrated the highest vacuum stability and are promising for in-space processing if volatile components are minimized via pre-degassing.
6
Polymer-G EPV9511 maintained stable mechanical properties after vacuum exposure.
7
UV-curing efficiency generally decreased after high-vacuum exposure for the resins studied.

Liquid photopolymer resins (Delo Katiobond GE680, Delo Katiobond OB678, Polymer-G EPV9511, Loctite AA3301 LC) exposed to high vacuum

Effects of high-vacuum exposure on liquid-phase properties including outgassing (total mass loss), viscosity changes, UV-curing efficiency, and resulting mechanical properties/stability for suitability in in-space processing

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2026-02-24
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Michael Kringer
Jannik Pimpi
Thomas Sinn
Ugo Lafont
Philipp Reiss
Markus Pietras
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