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Skin light core material formwork of bionic insect elytra structure and construction method
The invention relates to a skin light core material formwork of a bionic insect elytra structure and a construction method. The skin light core material template of the bionic insect elytra structure comprises a light core material template body provided with a plurality of holes in the thickness direction. The skins are located on the upper surface and the lower surface of the light core material template, and the skins are provided with bionic insect elytra structures matched with the holes. The construction method comprises the following steps that the macroscopic geometrical characteristics of the light core material formwork and the sizes and position distribution of holes and mortise and tenon joint structures are determined, and the light core material formwork is prepared and spliced; preparing ultra-high ductility concrete, spraying the ultra-high ductility concrete to the inner and outer surfaces of the light core material template to a certain thickness, and filling the holes of the light core material template to form a bionic insect elytra structure; and the sprayed ultrahigh-ductility concrete is cured, and surface treatment is carried out. Compared with the prior art, the method has the advantages of energy conservation, environmental protection, reduction of labor cost, high construction mechanization degree and the like.
本发明涉及一种仿生昆虫鞘翅结构的蒙皮轻质芯材模板及施工方法。所述仿生昆虫鞘翅结构的蒙皮轻质芯材模板,包括:沿厚度方向布置有若干孔洞的轻质芯材模板;位于所述轻质芯材模板上下表面的蒙皮,所述蒙皮具有与所述孔洞匹配的仿生昆虫鞘翅结构。所述施工方法步骤如下:确定所述轻质芯材模板的宏观几何特征、孔洞和榫卯结构大小及位置分布,制备所述轻质芯材模板并进行拼装;制备超高延性混凝土,并将其喷射至所述轻质芯材模板内外表面至一定厚度,填补所述轻质芯材模板的孔洞形成仿生昆虫鞘翅结构;养护喷射的超高延性混凝土,并进行表面处理。与现有技术相比,本发明具有节能环保、减少人工成本、施工机械化程度高等优点。
Skin light core material formwork of bionic insect elytra structure and construction method
The invention relates to a skin light core material formwork of a bionic insect elytra structure and a construction method. The skin light core material template of the bionic insect elytra structure comprises a light core material template body provided with a plurality of holes in the thickness direction. The skins are located on the upper surface and the lower surface of the light core material template, and the skins are provided with bionic insect elytra structures matched with the holes. The construction method comprises the following steps that the macroscopic geometrical characteristics of the light core material formwork and the sizes and position distribution of holes and mortise and tenon joint structures are determined, and the light core material formwork is prepared and spliced; preparing ultra-high ductility concrete, spraying the ultra-high ductility concrete to the inner and outer surfaces of the light core material template to a certain thickness, and filling the holes of the light core material template to form a bionic insect elytra structure; and the sprayed ultrahigh-ductility concrete is cured, and surface treatment is carried out. Compared with the prior art, the method has the advantages of energy conservation, environmental protection, reduction of labor cost, high construction mechanization degree and the like.
本发明涉及一种仿生昆虫鞘翅结构的蒙皮轻质芯材模板及施工方法。所述仿生昆虫鞘翅结构的蒙皮轻质芯材模板,包括:沿厚度方向布置有若干孔洞的轻质芯材模板;位于所述轻质芯材模板上下表面的蒙皮,所述蒙皮具有与所述孔洞匹配的仿生昆虫鞘翅结构。所述施工方法步骤如下:确定所述轻质芯材模板的宏观几何特征、孔洞和榫卯结构大小及位置分布,制备所述轻质芯材模板并进行拼装;制备超高延性混凝土,并将其喷射至所述轻质芯材模板内外表面至一定厚度,填补所述轻质芯材模板的孔洞形成仿生昆虫鞘翅结构;养护喷射的超高延性混凝土,并进行表面处理。与现有技术相比,本发明具有节能环保、减少人工成本、施工机械化程度高等优点。
Skin light core material formwork of bionic insect elytra structure and construction method
一种仿生昆虫鞘翅结构的蒙皮轻质芯材模板及施工方法
YU JIANGTAO (Autor:in) / BAI YUXUAN (Autor:in) / LIU FEICHI (Autor:in)
02.01.2024
Patent
Elektronische Ressource
Chinesisch
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