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To improve an earthquake resistance effectively even in a case of a deep ceiling structure by arranging a whole ceiling part as a semi-structure.MEANS FOR SOLVING THE PROBLEM: An aseismatic ceiling comprises a main structure in a shelf shape mounted to a building structure, a substructure coupled integrally to a lower part of the main structure and a ceiling frame mounted to a lower part of the substructure. An aseismatic ceiling in a semi-structure type as a whole ceiling part is constructed by configuring the main structure with a plurality of structure materials in a closed cross section with high strength extending in a horizontal direction, and configuring the substructure with a plurality of semi-structure materials in the closed cross section in light-weight and with high strength extending in a vertical direction. Rigidity and bearing force are improved by coupling a plurality of horizontal reinforcement materials to the semi-structure constituting the substructure in the middle of the vertical direction in a crossed state and providing a corner member functioning as a brace material at the coupling part.SELECTED DRAWING: Figure 1
【課題】天井部全体を準構造体化することによって、懐が深い天井構造の場合にも有効に耐震性を向上させる。【課題解決手段】建物構造体に取り付けられる棚型の主構造体と、該主構造体の下部に連結一体化される副構造体と、該副構造体の下部に取り付けられる天井枠とを備え、上記主構造体を水平方向に延びる強度の高い閉断面構造の複数本の構造材、上記副構造体を鉛直方向に延びる軽量で強度の高い閉断面構造の複数本の準構造材により構成することによって、天井部全体として準構造型の耐震天井を構成し、上記副構造体を構成する準構造材の鉛直方向途中に複数本の水平補強材をクロス状態で連結すると共に、同連結部にブレース材として機能するコーナー部材を設けて、剛性、耐力を向上させた。【選択図】 図1
To improve an earthquake resistance effectively even in a case of a deep ceiling structure by arranging a whole ceiling part as a semi-structure.MEANS FOR SOLVING THE PROBLEM: An aseismatic ceiling comprises a main structure in a shelf shape mounted to a building structure, a substructure coupled integrally to a lower part of the main structure and a ceiling frame mounted to a lower part of the substructure. An aseismatic ceiling in a semi-structure type as a whole ceiling part is constructed by configuring the main structure with a plurality of structure materials in a closed cross section with high strength extending in a horizontal direction, and configuring the substructure with a plurality of semi-structure materials in the closed cross section in light-weight and with high strength extending in a vertical direction. Rigidity and bearing force are improved by coupling a plurality of horizontal reinforcement materials to the semi-structure constituting the substructure in the middle of the vertical direction in a crossed state and providing a corner member functioning as a brace material at the coupling part.SELECTED DRAWING: Figure 1
【課題】天井部全体を準構造体化することによって、懐が深い天井構造の場合にも有効に耐震性を向上させる。【課題解決手段】建物構造体に取り付けられる棚型の主構造体と、該主構造体の下部に連結一体化される副構造体と、該副構造体の下部に取り付けられる天井枠とを備え、上記主構造体を水平方向に延びる強度の高い閉断面構造の複数本の構造材、上記副構造体を鉛直方向に延びる軽量で強度の高い閉断面構造の複数本の準構造材により構成することによって、天井部全体として準構造型の耐震天井を構成し、上記副構造体を構成する準構造材の鉛直方向途中に複数本の水平補強材をクロス状態で連結すると共に、同連結部にブレース材として機能するコーナー部材を設けて、剛性、耐力を向上させた。【選択図】 図1
ASEISMATIC CEILING
耐震天井
SATO KIMIAKI (Autor:in)
21.04.2022
Patent
Elektronische Ressource
Japanisch
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS