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A Reusable Sample Feeding and Sealing Mechanism for Lunar Regolith In-situ Analysis

  • China Aerospace Science and Technology Corporation
  • Shenyang Aerospace University
  • National Key Laboratory of Deep Space Exploration

Research output: Contribution to journalConference articlepeer-review

Abstract

The Chang'e-7 mission will achieve a landing on the lunar South Pole to explore the surface characteristics, internal properties, and space environment of the lunar South Pole region. The Lunar Soil Volatile Analyzer is mounted on the rover. It uses the robotic arm's digging tool to establish lunar soil profiles at different depths on the lunar surface. After quantitatively collecting lunar soil in-situ, the analyzer transfers the soil to an induction heating furnace for heating. The released volatiles are continuously measured at multiple temperature points to obtain the volatile compositions derived from lunar soil adsorption, solar wind implantation, cosmic ray causes, and radioactive causes. This provides a scientific basis for exploring the source of nitrogen on the lunar surface, regional geological chronology, and lunar soil maturity. This paper mainly introduces the processes of the lunar soil volatile preparation unit, as well as the main structural designs and working principles involved in the key preparation units. The processes mainly include sample receiving, sample transfer, sample preparation, and sample discarding. In the introduction of the process flow, the design of key components in each process and the results of characteristic test verification for these components will be emphasized, providing theoretical support for the preparation and measurement of volatiles.

Original languageEnglish
Pages (from-to)732-737
Number of pages6
JournalProceedings of the IEEE International Conference on Control Science and Systems Engineering/ICCSSE
Issue number2025
DOIs
StatePublished - 2025
Event11th IEEE International Conference on Control Science and Systems Engineering, ICCSSE 2025 - Beijing, China
Duration: 17 Oct 202519 Oct 2025

Keywords

  • In-situ lunar soil collection
  • Lunar soil volatile preparation unit
  • Sample preparation
  • Sample receiving
  • Sample transfer

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