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Vibration-Damping Properties of 3D-Printed Auxetic Structures

Ming Wang, David R. Harding

Fusion Science and Technology / Volume 82 / Number 5 / July 2026 / Pages 1051-1061

Research Article / dx.doi.org/10.1080/15361055.2025.2562777

Received:February 18, 2025
Accepted:September 12, 2025
Published:June 15, 2026

Two-photon polymerization is a recently developed technique that is used to print millimeter-size cellular structures with micrometer resolution. The two-photon polymerization process discussed in this paper is used to build structures to stabilize direct-drive targets that are imploded at cryogenic temperatures. These targets are supported by a very thin stalk (10 to 18 µm diameter) that can be broken (or dislodged) by vibrations that occur when the target is transported or when the cryogenic shroud is removed. And any vibration at the moment of implosion affects how precisely the target is aligned to the focus of the laser beams. This study investigates the mechanical properties of different millimeter-sized cellular auxetic structures (~0.2 g/cm3) at room and cryogenic temperatures (20°C and −140°C) and how well the most promising structure dampens vibrations at room temperature.