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Composite wall structure applied to moon building

A composite wall and building technology, which is applied in the direction of building components, building structures, and supporting structures of photovoltaic modules, to achieve the effects of enhancing structural strength and mechanical properties, good protection effects, and reducing launch costs

Inactive Publication Date: 2021-08-27
BUILDING DESIGN RES INST HARBIN INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For deployable lunar buildings, there is currently no composite wall structure scheme for lightweight lunar buildings that can comprehensively consider radiation, high and low temperature, and micrometeoroid protection and combine the utilization of in-situ resources on the lunar surface.

Method used

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  • Composite wall structure applied to moon building

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Experimental program
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Effect test

specific Embodiment approach 1

[0022] Specific implementation mode one: combine figure 1 Describe this embodiment, a composite wall structure applied to lunar buildings, which includes a fiber optic system prefabricated layer 8, a flexible inner membrane layer 7, an inflatable structure reinforcement layer 6, a flexible insulation layer 5, and a flexible protective layer 4 arranged in sequence , lunar soil filling layer 3, lunar soil reinforcing layer 2 and flexible solar skin layer 1, wherein the optical fiber system prefabricated layer 8, flexible inner membrane layer 7, inflatable structure reinforcing layer 6, flexible thermal insulation layer 5 and flexible protective layer 4 All prefabricated on the ground, the lunar soil filling layer 3, the lunar soil reinforcement layer 2 and the flexible solar skin layer 1 are all constructed on the moon, and the optical fiber system prefabricated layer 8 is embedded with optical fibers and connected to the equipment in the room through joints. The inner membrane ...

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Abstract

The invention provides a composite wall structure applied to a moon building, and belongs to the technical field of moon building engineering. The problem that in an existing expandable moon building, a composite wall structure scheme of a light-weight moon building capable of comprehensively considering radiation, high-low temperature and micro-meteor protection and combining lunar surface in-situ resource utilization is lacking is solved. The structure comprises an optical fiber system prefabricated layer, a flexible inner film layer, an inflatable structure reinforcing layer, a flexible heat preservation layer, a flexible protection layer, a lunar soil filling layer, a lunar soil reinforcing layer and a flexible solar surface layer. The optical fiber system prefabricated layer, the flexible inner film layer, the inflatable structure reinforcing layer, the flexible heat preservation layer and the flexible protection layer are prefabricated on the ground. The lunar soil filling layer, the lunar soil reinforcing layer and the flexible solar surface layer are all built in the month. By using the multi-layer flexible composite material and structure and utilizing lunar soil, multiple protection on space high-energy radiation, lunar surface high and low temperature and micrometeoroids can be realized, and a better protection effect can be realized at a lower launching weight cost.

Description

technical field [0001] The invention relates to a composite wall structure applied to lunar construction, belonging to the technical field of lunar construction engineering. Background technique [0002] The moon is the first choice for humans to carry out deep space exploration. Its unique environment and resources make it an ideal place for basic research in space astronomy, space physics, planetary science, and material science. Carrying out manned lunar exploration and building lunar buildings on the lunar surface are important means and an inevitable way for human beings to realize living on the moon and the development and utilization of lunar resources in the future. [0003] The lunar habitation module can be divided into a rigid module and an expandable module according to different structural forms. Rigid capsules are usually made of metal materials. After being processed, manufactured and assembled on the earth, they are transported to the surface of the moon thr...

Claims

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Application Information

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IPC IPC(8): E04B2/00E04B1/76E04B1/62B32B27/28B32B9/00B32B9/04B32B27/34B32B15/20B32B15/088B32B27/02B32B27/36B32B33/00H02J7/35H02S20/26
CPCE04B2/00E04B1/76E04B1/62B32B5/18B32B9/00B32B9/046B32B9/045B32B27/34B32B15/20B32B15/088B32B5/02B32B9/047B32B33/00H02S20/26H02J7/35B32B2255/26B32B2266/0214B32B2307/304B32B2262/0261B32B2262/0284B32B2307/212Y02A30/244Y02E10/50Y02B10/10
Inventor 梅洪元刘鹏跃费腾潘文特陈禹李佳阳高懿婷刘益清华乃斯李喆靖徐尧覃彤
Owner BUILDING DESIGN RES INST HARBIN INST OF TECH
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