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DAMPER STRUCTURE AND LOAD-BEARING WALL
PROBLEM TO BE SOLVED: To provide a damper structure that can be manufactured at low manufacturing cost while securing stable energy absorbing performance.SOLUTION: A damper structure 1 to which the present invention is applied is to be provided to an axial force member 2 that a tensile load Pt or compressive load Pc is placed on, and comprises a bent part 4 which is protruded from a side face 25 of the axial force member 2 in an antiplane direction α. The bent part 4 has a neighbouring fold 41, bent in the antiplane direction α, formed at two places nearby a side face 25 of the axial force member 2, has an intermediate fold 42, bent in the antiplane direction α, formed at a plurality of places between the neighbouring folds 41 at the two places nearby, and further has a substantially planar outer face part 40 formed at a position most distal from the side face 25 of the axial force member 2 in the antiplane direction α and between intermediate folds 42 adjacent in the axial direction Z of the axial force member 2.SELECTED DRAWING: Figure 13
【課題】安定したエネルギー吸収性能を確保しながら低廉な製造コストで製造することのできるダンパー構造を提供する。【解決手段】本発明を適用したダンパー構造1は、引張荷重Pt又は圧縮荷重Pcが作用する軸力部材2に設けられるものであり、軸力部材2の側面25より面外方向αに突出させた折曲部4を備える。折曲部4は、軸力部材2の側面25の近傍で面外方向αに折曲した近傍折り目41が2箇所に形成されて、2箇所の近傍折り目41の間で面外方向αに折曲した中間折り目42が複数箇所に形成されるとともに、軸力部材2の側面25から面外方向αに最も離間した位置で、軸力部材2の軸方向Zに隣り合った中間折り目42の間に、略面状の外面部40が形成される。【選択図】図13
DAMPER STRUCTURE AND LOAD-BEARING WALL
PROBLEM TO BE SOLVED: To provide a damper structure that can be manufactured at low manufacturing cost while securing stable energy absorbing performance.SOLUTION: A damper structure 1 to which the present invention is applied is to be provided to an axial force member 2 that a tensile load Pt or compressive load Pc is placed on, and comprises a bent part 4 which is protruded from a side face 25 of the axial force member 2 in an antiplane direction α. The bent part 4 has a neighbouring fold 41, bent in the antiplane direction α, formed at two places nearby a side face 25 of the axial force member 2, has an intermediate fold 42, bent in the antiplane direction α, formed at a plurality of places between the neighbouring folds 41 at the two places nearby, and further has a substantially planar outer face part 40 formed at a position most distal from the side face 25 of the axial force member 2 in the antiplane direction α and between intermediate folds 42 adjacent in the axial direction Z of the axial force member 2.SELECTED DRAWING: Figure 13
【課題】安定したエネルギー吸収性能を確保しながら低廉な製造コストで製造することのできるダンパー構造を提供する。【解決手段】本発明を適用したダンパー構造1は、引張荷重Pt又は圧縮荷重Pcが作用する軸力部材2に設けられるものであり、軸力部材2の側面25より面外方向αに突出させた折曲部4を備える。折曲部4は、軸力部材2の側面25の近傍で面外方向αに折曲した近傍折り目41が2箇所に形成されて、2箇所の近傍折り目41の間で面外方向αに折曲した中間折り目42が複数箇所に形成されるとともに、軸力部材2の側面25から面外方向αに最も離間した位置で、軸力部材2の軸方向Zに隣り合った中間折り目42の間に、略面状の外面部40が形成される。【選択図】図13
DAMPER STRUCTURE AND LOAD-BEARING WALL
ダンパー構造及び耐力壁
ITO AYANA (author) / SATO KEIICHI (author) / SHIMIZU NOBUTAKA (author)
2018-02-15
Patent
Electronic Resource
Japanese
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