English

Very weak carbonaceous asteroid simulants I: mechanical properties and response to hypervelocity impacts

Earth and Planetary Astrophysics 2021-12-01 v1 Instrumentation and Methods for Astrophysics Geophysics

Abstract

The two on-going sample return space missions, Hayabusa2 and OSIRIS-REx are going to return to Earth asteroid regolith from the carbonaceous near-Earth asteroids Ryugu and Bennu. The two main processes that lead to regolith production are the micrometeorite bombardment and the thermal cracking. Here we report the production of a weak simulant material, analogue to carbonaceous meteorites with a CM-like composition, following the preliminary compositional results for Bennu and Ryugu. This asteroid simulant has compressive and flexural strength 1.8+/-0.17 and 0.7+/-0.07 MPa, respectively. The thermal conductivity (in air) of the simulant at room temperature is between 0.43 and 0.47 W/m/K. In order to distinguish the type of regolith that is produced by each of these processes, we present and discuss the results of the experimental campaign focused on laboratory hypervelocity impacts, using the 2-stage light-gas gun of the University of Kent, that mimic the micrometeorite bombardment. We find that this process produces both monomineralic and multimineralic fragments, resulting in a difficulty to distinguish the two processes, at least on these weak materials.

Keywords

Cite

@article{arxiv.2111.15279,
  title  = {Very weak carbonaceous asteroid simulants I: mechanical properties and response to hypervelocity impacts},
  author = {Chrysa Avdellidou and Alice DiDonna and Cody Schultz and Barthelemy Harthong and Mark C. Price and Robert Peyroux and Daniel Britt and Mike Cole and Marco Delbo'},
  journal= {arXiv preprint arXiv:2111.15279},
  year   = {2021}
}