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COLUMN-BEAM FRAME WITH WOODEN BEAM
To provide a column-beam frame in which a force from a damping member is transmitted in the fiber direction of a wooden beam and a relatively large opening can be taken.SOLUTION: A column-beam frame 1 includes a wooden beam 4, and a stud 6 erected on a base 2 and joined to an intermediate portion of the wooden beam 4. The stud 6 includes a damping device 5 and functions as a damping member. A joint portion 13 of the stud 6 to the wooden beam 4 is made of a steel member, and is crimped to the wooden beam 4 at a joint surface 7 orthogonal to the extending direction of the wooden beam 4 by the prestress of a tension member 7. Therefore, since the bending of the stud 6 is transmitted to the wooden beam 4 as a compressive force, the force is transmitted in the fiber direction of the wooden beam, and a large reaction force can be taken to the wooden beam 4. Further, as compared with the case where a brace extending in the oblique direction is used as the damping member, since the stud 6 is used as the damping member, the opening defined by the member constituting the frame becomes larger.SELECTED DRAWING: Figure 1
【課題】木質梁の繊維方向に制振部材からの力が伝わり、比較的大きな開口が取れる柱梁架構を提供する。【解決手段】柱梁架構1は、木質梁4と、土台2に立設されて木質梁4の中間部に接合された間柱6とを備える。間柱6は、制振装置5を含み制振部材として機能する。間柱6における木質梁4への接合部13は、鋼製の部材からなり、緊張材7のプレストレスによって、木質梁4の延在方向に直交する接合面7において木質梁4に圧着している。このため、間柱6の曲げが圧縮力として木質梁4に伝わるため、木質梁の繊維方向に力が伝わり、木質梁4に大きな反力をとれる。また、斜め方向に延在するブレースを制振部材として使用する場合に比べて、間柱6を制振部材として使用するため枠を構成する部材によって画成される開口が大きくなる。【選択図】図1
COLUMN-BEAM FRAME WITH WOODEN BEAM
To provide a column-beam frame in which a force from a damping member is transmitted in the fiber direction of a wooden beam and a relatively large opening can be taken.SOLUTION: A column-beam frame 1 includes a wooden beam 4, and a stud 6 erected on a base 2 and joined to an intermediate portion of the wooden beam 4. The stud 6 includes a damping device 5 and functions as a damping member. A joint portion 13 of the stud 6 to the wooden beam 4 is made of a steel member, and is crimped to the wooden beam 4 at a joint surface 7 orthogonal to the extending direction of the wooden beam 4 by the prestress of a tension member 7. Therefore, since the bending of the stud 6 is transmitted to the wooden beam 4 as a compressive force, the force is transmitted in the fiber direction of the wooden beam, and a large reaction force can be taken to the wooden beam 4. Further, as compared with the case where a brace extending in the oblique direction is used as the damping member, since the stud 6 is used as the damping member, the opening defined by the member constituting the frame becomes larger.SELECTED DRAWING: Figure 1
【課題】木質梁の繊維方向に制振部材からの力が伝わり、比較的大きな開口が取れる柱梁架構を提供する。【解決手段】柱梁架構1は、木質梁4と、土台2に立設されて木質梁4の中間部に接合された間柱6とを備える。間柱6は、制振装置5を含み制振部材として機能する。間柱6における木質梁4への接合部13は、鋼製の部材からなり、緊張材7のプレストレスによって、木質梁4の延在方向に直交する接合面7において木質梁4に圧着している。このため、間柱6の曲げが圧縮力として木質梁4に伝わるため、木質梁の繊維方向に力が伝わり、木質梁4に大きな反力をとれる。また、斜め方向に延在するブレースを制振部材として使用する場合に比べて、間柱6を制振部材として使用するため枠を構成する部材によって画成される開口が大きくなる。【選択図】図1
COLUMN-BEAM FRAME WITH WOODEN BEAM
木質梁を備える柱梁架構
SHIROYAMA TAKASHI (Autor:in) / TOKUTAKE SHIGETAKA (Autor:in) / SATO MARE (Autor:in)
30.04.2021
Patent
Elektronische Ressource
Japanisch
WOODEN BEAM AND STRUCTURE INCLUDING WOODEN BEAM AND CONCRETE COLUMN
Europäisches Patentamt | 2020
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