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Hexagonal inflatable expansion building module applied to moon building
The invention discloses a hexagonal inflatable expansion building module applied to a moon building, and belongs to the technical field of moon residential building construction. The problem that existing spherical and cylindrical cabin structures are not beneficial to modular expansion is solved. The hexagonal inflatable expansion building module comprises a folding and unfolding support and an air inflation film, wherein three top side plates are evenly distributed in the circumferential direction of a regular hexagon top plate and hinged to three side faces of the regular hexagon top plate correspondingly, and three bottom side plates are evenly distributed in the circumferential direction of a regular hexagon bottom plate, and three sets of bottom sliding rails and the three bottom side plates are arranged in a staggered mode and correspondingly hinged to the six side faces of the regular hexagon bottom plate. When the building module is in a folded state, the top side plates, the bottom side plates, push-pull cabin doors, top sliding rails and the bottom sliding rails are all vertically arranged; when the building module is in an unfolded state, the regular hexagon bottom plate, the three bottom side plates and the three sets of bottom sliding rails are all located on the same horizontal plane, the three push-pull cabin doors slide to the other ends of the bottom sliding rails, and the air inflation film is inflated and unfolded, and the cross section of the unfolded air inflation film is of a hexagonal structure.
一种应用于月球建筑的六边形充气展开建筑模块,属于月球居住建筑建造技术领域。本发明解决了现有的球体、圆柱体舱体结构不利于实现模块化拓展的问题。包括折展支架以及充气膜,正六边形顶板的周向均布三个顶部侧板,三个顶部侧板对应与正六边形顶板的三个侧面铰接,正六边形底板的周向均布三个底部侧板,且三组底部滑轨与三个底部侧板交错布置且对应与正六边形底板的六个侧面铰接;建筑模块折叠状态下,顶部侧板、底部侧板、推拉舱门、顶部滑轨及底部滑轨均竖向布置,建筑模块展开状态下,正六边形底板、三个底部侧板以及三组底部滑轨均位于同一水平面,三个推拉舱门滑动至底部滑轨的另一端,充气膜充气展开且展开后的充气膜横截面呈六边形结构。
Hexagonal inflatable expansion building module applied to moon building
The invention discloses a hexagonal inflatable expansion building module applied to a moon building, and belongs to the technical field of moon residential building construction. The problem that existing spherical and cylindrical cabin structures are not beneficial to modular expansion is solved. The hexagonal inflatable expansion building module comprises a folding and unfolding support and an air inflation film, wherein three top side plates are evenly distributed in the circumferential direction of a regular hexagon top plate and hinged to three side faces of the regular hexagon top plate correspondingly, and three bottom side plates are evenly distributed in the circumferential direction of a regular hexagon bottom plate, and three sets of bottom sliding rails and the three bottom side plates are arranged in a staggered mode and correspondingly hinged to the six side faces of the regular hexagon bottom plate. When the building module is in a folded state, the top side plates, the bottom side plates, push-pull cabin doors, top sliding rails and the bottom sliding rails are all vertically arranged; when the building module is in an unfolded state, the regular hexagon bottom plate, the three bottom side plates and the three sets of bottom sliding rails are all located on the same horizontal plane, the three push-pull cabin doors slide to the other ends of the bottom sliding rails, and the air inflation film is inflated and unfolded, and the cross section of the unfolded air inflation film is of a hexagonal structure.
一种应用于月球建筑的六边形充气展开建筑模块,属于月球居住建筑建造技术领域。本发明解决了现有的球体、圆柱体舱体结构不利于实现模块化拓展的问题。包括折展支架以及充气膜,正六边形顶板的周向均布三个顶部侧板,三个顶部侧板对应与正六边形顶板的三个侧面铰接,正六边形底板的周向均布三个底部侧板,且三组底部滑轨与三个底部侧板交错布置且对应与正六边形底板的六个侧面铰接;建筑模块折叠状态下,顶部侧板、底部侧板、推拉舱门、顶部滑轨及底部滑轨均竖向布置,建筑模块展开状态下,正六边形底板、三个底部侧板以及三组底部滑轨均位于同一水平面,三个推拉舱门滑动至底部滑轨的另一端,充气膜充气展开且展开后的充气膜横截面呈六边形结构。
Hexagonal inflatable expansion building module applied to moon building
一种应用于月球建筑的六边形充气展开建筑模块
MEI HONGYUAN (author) / LIU PENGYUE (author) / FEI TENG (author) / PAN WENTE (author) / CHEN YU (author) / LI JIAYANG (author) / GAO YITING (author) / LIU YIQING (author) / HUA NAISI (author) / FANG JIAXI (author)
2021-07-30
Patent
Electronic Resource
Chinese
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