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STEEL FRAME, CIVIL ENGINEERING STRUCTURE, AND METHOD OF CONSTRUCTING CIVIL ENGINEERING STRUCTURE
To provide a steel frame capable of miniaturization while making it strong enough to withstand earth pressure.SOLUTION: A steel frame (10) that is formed into a three-dimensional frame and filled with filling material (40) includes an anchor part (8) partially buried in the ground (G). The anchor part (8) includes: a buried part (82) that is buried in the ground (G); a component member (13) of the steel frame (10); and a connection part (81) that connects the buried part (82).SELECTED DRAWING: Figure 9
【課題】土圧に耐えられる強度にしつつも小型化を図ること。【解決手段】立体枠状に形成され、内部に中詰材(40)が充填される鋼製枠(10)は、一部が地盤(G)に埋設されるアンカー部(8)を備えている。アンカー部(8)は、地盤(G)に埋設される埋設部(82)と、鋼製枠(10)の構成部材(13)と、埋設部(82)とを連結する連結部(81)と、を備える。【選択図】図9
STEEL FRAME, CIVIL ENGINEERING STRUCTURE, AND METHOD OF CONSTRUCTING CIVIL ENGINEERING STRUCTURE
To provide a steel frame capable of miniaturization while making it strong enough to withstand earth pressure.SOLUTION: A steel frame (10) that is formed into a three-dimensional frame and filled with filling material (40) includes an anchor part (8) partially buried in the ground (G). The anchor part (8) includes: a buried part (82) that is buried in the ground (G); a component member (13) of the steel frame (10); and a connection part (81) that connects the buried part (82).SELECTED DRAWING: Figure 9
【課題】土圧に耐えられる強度にしつつも小型化を図ること。【解決手段】立体枠状に形成され、内部に中詰材(40)が充填される鋼製枠(10)は、一部が地盤(G)に埋設されるアンカー部(8)を備えている。アンカー部(8)は、地盤(G)に埋設される埋設部(82)と、鋼製枠(10)の構成部材(13)と、埋設部(82)とを連結する連結部(81)と、を備える。【選択図】図9
STEEL FRAME, CIVIL ENGINEERING STRUCTURE, AND METHOD OF CONSTRUCTING CIVIL ENGINEERING STRUCTURE
鋼製枠、土木構造物及び土木構造物を構築する方法
NOZAKI YUSUKE (author)
2023-10-16
Patent
Electronic Resource
Japanese
STEEL FRAME, CIVIL ENGINEERING STRUCTURE, AND METHOD OF CONSTRUCTING CIVIL ENGINEERING STRUCTURE
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