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Published on: May 17, 2024
Dilatometer setup for low coefficient of thermal expansion materials measurements in the 140 K-250 K temperature
Ruven Spannagel1, Ines Hamann1, Josep Sanjuan2
1University of Bremen, Center of Applied Space Technology and Microgravity (ZARM), 28359 Bremen, Germany.
Abstract:
Space applications demand light weight materials with excellent dimensional stability for telescopes, optical benches, optical resonators, etc. Glass-ceramics and composite materials can be tuned to reach very low coefficient of thermal expansion (CTE) at different temperatures. In order to determine such CTEs, very accurate setups are needed. Here we present a dilatometer that is able to measure the CTE of a large variety of materials in the temperature range of 140 K to 250 K. The dilatometer is based on a heterodyne interferometer with nanometer noise levels to measure the expansion of a sample when applying small amplitude controlled temperature signals. In this article, the CTE of a carbon fiber reinforced polymer sample has been determined with an accuracy in the 10-8 K-1 range.
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