JP4420728B2 - Fireproof coating structure for seismic isolation devices - Google Patents

Fireproof coating structure for seismic isolation devices Download PDF

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JP4420728B2
JP4420728B2 JP2004138864A JP2004138864A JP4420728B2 JP 4420728 B2 JP4420728 B2 JP 4420728B2 JP 2004138864 A JP2004138864 A JP 2004138864A JP 2004138864 A JP2004138864 A JP 2004138864A JP 4420728 B2 JP4420728 B2 JP 4420728B2
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fireproof
seismic isolation
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英生 藤中
茂男 上原
義人 井出
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Takenaka Corp
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Description

この発明は、建築物の中間階免震層に設置された免震装置の耐火被覆構造の技術分野に属する。   This invention belongs to the technical field of the fireproof covering structure of the seismic isolation apparatus installed in the middle floor seismic isolation layer of the building.

建築物の中間階免震層に設置された免震装置の荷重支持能力が火災時に低下しないように、従来から免震装置を耐火被覆する技術は種々開発されており、公知である。そのなかでも代表的な被覆構造としては、分割摺動型(特許文献1)、多段スライド型(特許文献2)、提灯型(特許文献3)、巻き付け型(特許文献4)、パネル回転型(特許文献5)の被覆構造を挙げることができるが、免震装置の定期的なメンテナンスが困難であったり、意匠性が劣るなどの問題点を有していた。   Various techniques for fireproof coating of the seismic isolation device have been developed so far so that the load bearing capacity of the seismic isolation device installed in the seismic isolation layer of the intermediate floor of the building does not deteriorate during a fire. Among them, typical covering structures include a split sliding type (Patent Document 1), a multi-stage sliding type (Patent Document 2), a lantern type (Patent Document 3), a winding type (Patent Document 4), a panel rotating type ( Although the covering structure of patent document 5) can be mentioned, there existed problems, such as the periodic maintenance of a seismic isolation apparatus being difficult, or the design property being inferior.

そこで、本出願人は以下の被覆構造を開発し、特許出願している。当該被覆構造は、耐火パネルをけい酸カルシウム板とその両面の表面鋼板とで構成し、その上端部を上部構造体にヒンジ機構によって回転可能に取り付けた構造とすることで、意匠性に優れ、メンテナンスが容易な被覆構造を実現している(特許文献6)。   Therefore, the present applicant has developed the following coating structure and applied for a patent. The covering structure is composed of a calcium silicate plate and surface steel plates on both sides of the fireproof panel, and the upper end of the fireproof panel is structured to be rotatably attached to the upper structure by a hinge mechanism. A covering structure that is easy to maintain is realized (Patent Document 6).

特開平10−22715号公報Japanese Patent Laid-Open No. 10-22715 特開平11−71938号公報JP 11-71938 A 特開平3−87443号公報JP-A-3-87443 特開平10−18433号公報Japanese Patent Laid-Open No. 10-18433 実公平7−1369号公報No. 7-1369 特開2002−161594号公報JP 2002-161594 A

上記特許文献6の第5図には、耐火パネルの取り付け構造の一例として、同耐火パネルの上端部を外方からヒンジ機構によって上部構造体に取り付けた形態が開示されている。しかし、前記取り付け構造によれば、耐火パネルの重心が外側に位置し、同耐火パネルが自然に外方へ回転して開いてしまう虞がある。そのため、隣接する耐火パネル同士はスプリングなどの復元部材で連結して前記耐火パネルの不用意な回転を抑制する必要がある。従って、耐火パネルの取り付け構造の如何によっては、施工が煩雑になったり、前記スプリングなどの復元部材がメンテナンス時の弊害になったりする問題が生じる。また、前記ヒンジ機構は外方から視認されるので、意匠性を損なう問題も生じる。つまり、上記特許文献6の被覆構造は、未だ改良の余地が残された技術である。   FIG. 5 of Patent Document 6 discloses a form in which the upper end portion of the fireproof panel is attached to the upper structure from the outside by a hinge mechanism as an example of the fireproof panel mounting structure. However, according to the mounting structure, the center of gravity of the refractory panel is located outside, and the refractory panel may naturally rotate outward and open. Therefore, it is necessary to connect adjacent fireproof panels with a restoring member such as a spring to suppress inadvertent rotation of the fireproof panels. Accordingly, depending on the mounting structure of the refractory panel, there is a problem that the construction becomes complicated and the restoring member such as the spring becomes a harmful effect during maintenance. Further, since the hinge mechanism is visually recognized from the outside, there is a problem that the designability is impaired. That is, the coating structure of Patent Document 6 is a technique that still has room for improvement.

本発明の目的は、耐火パネルを両側面部の上端部における厚さ方向の略中央位置で、回転可能に支持することで、耐火パネルの重心を厚さ方向の略中央に位置させ、不用意に外方へ回転して開くことがなく、そのため、スプリングなどの復元部材を省略することができ、施工が簡易で、メンテナンスが容易な免震装置の耐火被覆構造を提供することである。
本発明の次の目的は、耐火パネルの回転軸が外方から見えない構造とすることで、意匠性に優れた免震装置の耐火被覆構造を提供することである。
The object of the present invention is to support the refractory panel in a substantially central position in the thickness direction at the upper end portions of both side surfaces, so that the center of gravity of the refractory panel is positioned in the approximate center in the thickness direction. An object of the present invention is to provide a fireproof covering structure for a seismic isolation device that does not rotate outwardly and therefore can eliminate a restoring member such as a spring, is easy to construct, and is easy to maintain.
The next object of the present invention is to provide a fireproof covering structure for a seismic isolation device that is excellent in design by making the rotation axis of the fireproof panel invisible from the outside.

上記従来技術の課題を解決するための手段として、請求項1に記載した発明に係る免震装置の耐火被覆構造は、
建築物の中間階免震層で上部構造体と下部構造体との間に設置された免震装置の耐火被覆構造であって、
下部構造体の上面外周に沿って、免震装置の下側フランジを下部構造体に接合したボルト又はナットの天端よりも若干せいが高い耐火ボード等の耐火性を有する部材が設置されていること、
上部構造体の下面の四隅位置に、耐火パネルを支持するL型金物が、内隅部を上部構造体の対角線方向に向け、且つ同L型金物の各平面部が辺方向に隣接する他のL型金物の平面部と平行に相対峙する配置で取り付けられており、同L型金物の平面部の上端位置には、耐火パネルの回転軸となる軸ボルトを通すボルト穴が形成されていること、
隣接する前記L型金物の相互間に、両側面部の上端部における厚さ方向の略中央位置にナットを備えた耐火パネルが配置され、前記ナットにはL型金物のボルト穴に通された軸ボルトがネジ込まれて耐火パネルが回転可能に支持されていること、
L型金物はその外面部を耐火ブロックで被覆されていること、
L型金物の角部近傍、又は上部構造体における耐火パネルの内側面の四隅位置に、ストッパー金物が取り付けられていることを特徴とする。
As means for solving the problems of the prior art, the fireproof covering structure of the base isolation device according to the invention described in claim 1 is:
It is a fireproof covering structure of a seismic isolation device installed between the upper structure and the lower structure in the seismic isolation layer of the middle floor of the building,
A fire-resistant member such as a fire-resistant board that is slightly higher than the top end of the bolt or nut that joins the lower flange of the seismic isolation device to the lower structure is installed along the outer periphery of the upper surface of the lower structure. thing,
At the four corner positions of the lower surface of the upper structure, the L-shaped hardware supporting the fireproof panel is directed to the other corners in which the inner corner faces the diagonal direction of the upper structure and each plane portion of the L-shaped hardware is adjacent to the side direction. It is attached in an arrangement that faces the plane part of the L-shaped metal part in parallel with the flat part, and a bolt hole is formed at the upper end position of the flat part of the L-type metal part to pass the shaft bolt that becomes the rotation axis of the fireproof panel. thing,
Between the adjacent L-shaped metal parts, a fireproof panel provided with a nut is arranged at a substantially central position in the thickness direction at the upper end of both side surface parts, and the nut is passed through the bolt hole of the L-shaped metal part. The bolts are screwed in and the fireproof panel is rotatably supported,
L-shaped hardware has its outer surface covered with a fireproof block,
Stopper hardware is attached to the corners of the L-shaped hardware or at the four corners of the inner surface of the fireproof panel in the upper structure.

請求項2記載の発明は、請求項1に記載した免震装置の耐火被覆構造において、
上部構造体の下面又は耐火パネルの上面、及び耐火ボード等の耐火性を有する部材の上面又は耐火パネルの下面、並びに耐火パネルの左右の側面又はL型金物の外側面の少なくとも一方にガスケット又は加熱発泡ゴムが設けられていることを特徴とする。
The invention according to claim 2 is the fireproof covering structure of the seismic isolation device according to claim 1,
Gasket or heating on at least one of the lower surface of the upper structure or the upper surface of the fireproof panel, the upper surface of a fireproof member such as a fireproof board or the lower surface of the fireproof panel, and the left and right side surfaces of the fireproof panel or the outer surface of the L-shaped hardware A foam rubber is provided.

請求項3記載の発明は、請求項1に記載した免震装置の耐火被覆構造において、
耐火パネルの内側面の下端部にL型金物等の水平部材が設けられており、同水平部材の下面に加熱発泡ゴムが設けられていることを特徴とする。
The invention according to claim 3 is the fireproof covering structure of the seismic isolation device according to claim 1,
A horizontal member such as an L-shaped metal piece is provided at the lower end portion of the inner side surface of the fireproof panel, and heated foam rubber is provided on the lower surface of the horizontal member.

請求項4記載の発明は、請求項1に記載した免震装置の耐火被覆構造において、
耐火パネルのナットの周辺部分は補強金物で補強されていることを特徴とする。
The invention according to claim 4 is the fireproof covering structure of the seismic isolation device according to claim 1,
A peripheral portion of the nut of the fireproof panel is reinforced with a reinforcing hardware.

請求項5記載の発明は、請求項1に記載した免震装置の耐火被覆構造において、
耐火パネルを支持するL型金物の上端部に水平方向のフランジ板が設けられており、同フランジ板が上部構造体へホールインアンカーなどの手段によって接合されていることを特徴とする。
The invention according to claim 5 is the fireproof covering structure of the seismic isolation device according to claim 1,
A horizontal flange plate is provided at the upper end portion of the L-shaped metal piece that supports the fireproof panel, and the flange plate is joined to the upper structure by means such as a hole-in anchor.

請求項6記載の発明は、請求項1に記載した免震装置の耐火被覆構造において、
耐火ブロックは、無機系接着剤とビスを併用して耐火パネルを支持するL型金物に接合されていることを特徴とする。
The invention according to claim 6 is the fireproof covering structure of the seismic isolation device according to claim 1,
The refractory block is characterized by being joined to an L-shaped metal piece that supports the refractory panel by using an inorganic adhesive and a screw together.

本発明に係る免震装置の耐火被覆構造は、耐火パネルが厚さ方向の略中央位置で回転可能に支持されているため、支持された耐火パネルの重心は厚さ方向の略中央に位置し、不用意に外方へ回転して開くことがない。そのため、スプリングなどの復元部材を設ける必要がなく、施工が簡易である。しかも、耐火ブロックを取り外し、ボルトを緩めるだけで、簡単に耐火パネルを取り外すことができ、免震装置のメンテナンスを容易にできる。
また、耐火パネルの軸ボルトが外方からほとんど見えないので、意匠性に優れている。
In the fireproof covering structure of the seismic isolation device according to the present invention, since the fireproof panel is rotatably supported at the approximate center position in the thickness direction, the center of gravity of the supported fireproof panel is positioned at the approximately center in the thickness direction. Inadvertently rotating outwards will not open. Therefore, it is not necessary to provide a restoring member such as a spring, and the construction is simple. In addition, the fireproof panel can be easily removed simply by removing the fireproof block and loosening the bolts, thereby facilitating maintenance of the seismic isolation device.
Moreover, since the axial bolt of a fireproof panel is hardly visible from the outside, it is excellent in design.

以下に、請求項1〜請求項6に記載した発明に係る免震装置の耐火被覆構造(以下、単に被覆構造と云う場合がある。)の実施例を、図1〜図7に基づいて説明する。本発明の被覆構造は、ビルやマンション等の建築物の中間階免震層で上部構造体と下部構造体との間に設置された免震装置1の荷重支持能力が火災時に低下しないように実施される。ちなみに、本実施形態では、断面が四角形状の上部柱2aと下部柱2bの間に設置された免震装置1を耐火被覆している。   Examples of the fireproof covering structure of the seismic isolation device according to the invention described in claims 1 to 6 (hereinafter sometimes simply referred to as a covering structure) will be described with reference to FIGS. To do. The covering structure of the present invention is such that the load bearing capacity of the seismic isolation device 1 installed between the upper structure and the lower structure in the seismic isolation layer in the middle floor of buildings such as buildings and condominiums does not decrease during a fire. To be implemented. Incidentally, in this embodiment, the seismic isolation device 1 installed between the upper column 2a and the lower column 2b having a quadrangular cross section is fireproof coated.

免震装置1は、積層ゴム3の上下にフランジ4、5を有する通例の免震装置であり、その上側フランジ4は上部柱2aにボルト6で剛強に連結され、下側フランジ5は下部柱2bにボルト6で剛強に連結されている。   The seismic isolation device 1 is a conventional seismic isolation device having flanges 4 and 5 on the upper and lower sides of a laminated rubber 3, the upper flange 4 is rigidly connected to the upper column 2 a with bolts 6, and the lower flange 5 is the lower column. The bolt 2 is rigidly connected to 2b.

下部柱2bの上面外周に沿って、すなわち前記免震装置1の下側フランジ5の周辺部には、同フランジ5を下部柱2bに接合したボルト6の天端よりも若干せいが高い耐火ボード7が設置されている。耐火ボード7はけい酸カルシウム板などの耐火部材で構成されており、上面は平滑な仕上げ面に加工されている。そして、この外周側面は、意匠性を良くするために化粧鋼板又はステンレス鋼板が設けられている(図示を省略)。   A refractory board along the outer periphery of the upper surface of the lower column 2b, that is, at the periphery of the lower flange 5 of the seismic isolation device 1, slightly higher in height than the top end of the bolt 6 joining the flange 5 to the lower column 2b. 7 is installed. The refractory board 7 is composed of a refractory member such as a calcium silicate plate, and the upper surface is processed into a smooth finished surface. And this outer peripheral side surface is provided with a decorative steel plate or a stainless steel plate to improve the design (not shown).

前記耐火ボード7と上部柱2aの間で免震装置1の四方を取り囲むように、すなわち上下の柱2a、2bの外周に沿って配置される4枚の耐火パネル8…を支持するL型金物(アングル材)9が、上部柱2aの下面の四隅位置に取り付けられている(図2及び図3を参照)。具体的には、L型金物9は前記耐火ボード7と上部柱2aとの間の高さと略等しく、その上端部には上部柱2aに接合するための水平方向のフランジ板10が設けられている(図4を参照)。このL型金物9は、上下の柱2a、2bの外周に沿って配置される耐火パネル8を一辺とする四角形の各隅部において、L型金物9の内隅部9aを上部柱2aの対角線方向に向け、且つL型金物9の平面部9bが辺方向に隣接するL型金物9の平面部9bと平行に相対峙するように配置され、その上端部のフランジ板10が上部柱2aにホールインアンカーなどの手段11によって接合されている(請求項5記載の発明)。そして、このL型金物9の平面部9bの上端位置には、耐火パネル8の回転軸となる軸ボルト12を通すボルト穴13が形成されている。   An L-shaped hardware that supports four refractory panels 8 arranged so as to surround the four sides of the seismic isolation device 1 between the refractory board 7 and the upper pillar 2a, that is, along the outer peripheries of the upper and lower pillars 2a and 2b. (Angle members) 9 are attached to the four corner positions on the lower surface of the upper column 2a (see FIGS. 2 and 3). Specifically, the L-shaped metal piece 9 is substantially equal to the height between the fireproof board 7 and the upper column 2a, and a horizontal flange plate 10 for joining to the upper column 2a is provided at the upper end portion thereof. (See FIG. 4). The L-shaped metal piece 9 has a rectangular corner with one side of the fireproof panel 8 arranged along the outer peripheries of the upper and lower pillars 2a and 2b, and the inner corner 9a of the L-shaped metal piece 9 is a diagonal line of the upper pillar 2a. And the flat portion 9b of the L-shaped metal piece 9 is disposed so as to face the parallel to the flat surface portion 9b of the L-shaped metal piece 9 adjacent in the side direction, and the flange plate 10 at the upper end thereof is disposed on the upper column 2a. They are joined by means 11 such as a hole-in anchor (the invention according to claim 5). And the bolt hole 13 which lets the axial bolt 12 used as the rotating shaft of the fireproof panel 8 is formed in the upper end position of the plane part 9b of this L-shaped metal fixture 9. FIG.

隣接する前記L型金物9と9の相互間に耐火パネル8が配置され、同耐火パネル8は回転した際に上下縁が柱2a、2bへ接触しないように、上下に所定の高さのクリアランスHを開けて回転可能に支持されている(図4を参照)。耐火パネル8は、けい酸カルシウム板などの耐火部材を芯材とし、その内外両面を化粧鋼板又はステンレス鋼板で被覆したサンドイッチ構造とされている。耐火パネル8の高さは、上下に所定の高さのクリアランスHを形成することができるように、耐火ボード7と上部柱2aの間の高さより若干低く形成されている。両側面部の上端部における厚さ方向の略中央位置にナット14が埋め込まれており、その周辺部分が補強金物15で補強されている(請求項4記載の発明)。このナット14には上記L型金物9のボルト穴13に通された軸ボルト12がネジ込まれている。耐火パネル8は厚さ方向の略中央位置で支持されているため、支持された耐火パネル8の重心は厚さ方向の略中央に位置し、不用意に外方へ回転して開くことがない。そのため、スプリングなどの復元部材を設ける必要がなく、施工が簡易である。   A refractory panel 8 is disposed between the adjacent L-shaped metal pieces 9 and 9, and the refractory panel 8 has a predetermined height clearance so that the upper and lower edges do not come into contact with the pillars 2a and 2b when rotated. It is supported so that it can be rotated by opening H (see FIG. 4). The refractory panel 8 has a sandwich structure in which a refractory member such as a calcium silicate plate is used as a core, and both inner and outer surfaces thereof are covered with a decorative steel plate or a stainless steel plate. The height of the fireproof panel 8 is slightly lower than the height between the fireproof board 7 and the upper column 2a so that a clearance H having a predetermined height can be formed vertically. A nut 14 is embedded at a substantially central position in the thickness direction at the upper end portions of both side surface portions, and the peripheral portion thereof is reinforced by a reinforcing metal 15 (the invention according to claim 4). A shaft bolt 12 passed through the bolt hole 13 of the L-shaped metal piece 9 is screwed into the nut 14. Since the refractory panel 8 is supported at a substantially central position in the thickness direction, the center of gravity of the supported refractory panel 8 is located at a substantially central position in the thickness direction, and does not inadvertently rotate outward. . Therefore, it is not necessary to provide a restoring member such as a spring, and the construction is simple.

L型金物9はその外面部を耐火ブロック16で被覆されている。耐火ブロック16も、上記耐火ボード7と同様にけい酸カルシウム板などの耐火部材で構成されており、外周側面は意匠性を良くするために化粧鋼板又はステンレス鋼板が設けられている。この耐火ブロック16は、無機系接着剤17とビス18を併用してL型金物9に接合されており(請求項6記載の発明)、同耐火ブロック16は、ビス18を緩め、L型金物9との境界部分をマイナスドライバー等でこじると、取り外すことができる。そのため、耐火ブロック16を取り外し、軸ボルト12を緩めるだけで、簡単に耐火パネル8を取り外すことができ、免震装置1のメンテナンスを容易にできる。また、軸ボルト12の頭部分は耐火ブロック16によって完全に隠れ、しかも同軸ボルト12の軸部分は耐火パネル8の厚さ方向の略中央位置にあるので、外方からほとんど見えず、意匠性に優れている。   The outer surface of the L-shaped metal piece 9 is covered with a fireproof block 16. The refractory block 16 is also composed of a refractory member such as a calcium silicate plate in the same manner as the refractory board 7, and a decorative steel plate or a stainless steel plate is provided on the outer peripheral side surface to improve the design. The refractory block 16 is joined to the L-shaped metal piece 9 by using the inorganic adhesive 17 and the screw 18 together (the invention according to claim 6), and the refractory block 16 loosens the screw 18 and the L-shaped metal piece. It can be removed by prying the border with 9 with a flathead screwdriver. Therefore, the fireproof panel 8 can be easily removed simply by removing the fireproof block 16 and loosening the shaft bolt 12, and the maintenance of the seismic isolation device 1 can be facilitated. Further, the head portion of the shaft bolt 12 is completely hidden by the fireproof block 16, and the shaft portion of the coaxial bolt 12 is located at a substantially central position in the thickness direction of the fireproof panel 8, so that it is hardly visible from the outside, and the design is improved. Are better.

L型金物9の内隅部9a近傍には、耐火パネル8の内方への回転を防ぐためのストッパー金物19が設置されている。通常時及び火災時に耐火パネル8を安定させるためである(図3を参照)。   In the vicinity of the inner corner portion 9 a of the L-shaped metal piece 9, a stopper metal piece 19 for preventing inward rotation of the fireproof panel 8 is installed. This is to stabilize the fireproof panel 8 during normal times and fires (see FIG. 3).

上部柱2aの下面、及び耐火ボード7の上面、並びに耐火パネル8の左右の側面には、火災時における火熱の流入を防止するために、所定の耐火性能を有するブチルゴム系等の加熱発泡ゴム20(但し、シリコーン系等のガスケットでも良い。)が設けられている(請求項2記載の発明)。火災時には、前記加熱発泡ゴム20が発泡し、耐火パネル8の上下のクリアランスH及び左右の小口からの火熱の流入を防ぐことができる。   On the lower surface of the upper column 2a, the upper surface of the fireproof board 7, and the left and right side surfaces of the fireproof panel 8, in order to prevent the inflow of fire heat in the event of a fire, a heated foam rubber 20 such as a butyl rubber system having a predetermined fire resistance performance. (However, a silicone gasket or the like may be used.) (Invention of Claim 2). In the event of a fire, the heated foamed rubber 20 is foamed, and the inflow of fire heat from the upper and lower clearances H and the left and right fore ends of the fireproof panel 8 can be prevented.

上記構成の被覆構造は、地震などで水平変位が生じると、図5に示すように、水平変形側に位置する耐火パネル8が、上記ストッパー金物19によって内方への回転が防がれ、略鉛直状態を保ったまま水平移動する。他方側の耐火パネル8は、免震装置1に接触するまで略鉛直状態を保ったまま水平移動し、接触してからは免震装置1に押し出されるように外方へ回転追従する。揺れ戻しの際には、回転追従した耐火パネル8は、重心が厚さ方向の略中央位置にあるので、同耐火パネル8の自重によって自然に内方へ回転し、ストッパー金物19に接触して元の形態に復元される。そのため、スプリングなどの復元部材がやはり不要である。また、免震装置1を損傷したり、水平変位を妨害することがない。   When the horizontal displacement due to an earthquake or the like occurs in the covering structure having the above configuration, as shown in FIG. 5, the fireproof panel 8 positioned on the horizontal deformation side is prevented from rotating inward by the stopper hardware 19. Move horizontally while maintaining a vertical state. The fireproof panel 8 on the other side moves horizontally while maintaining a substantially vertical state until it comes into contact with the seismic isolation device 1, and after contact comes to rotate outward so as to be pushed out by the seismic isolation device 1. At the time of swinging back, the fire-resistant panel 8 that has followed the rotation has a center of gravity at a substantially central position in the thickness direction. Therefore, the fire-resistant panel 8 naturally rotates inward due to its own weight and comes into contact with the stopper hardware 19. Restored to its original form. Therefore, a restoring member such as a spring is still unnecessary. Further, the seismic isolation device 1 is not damaged and the horizontal displacement is not disturbed.

ちなみに、火熱の流入を確実に防ぐべく、図6に示すように、耐火パネル8の内側面の下端部にL型金物21(但し、水平方向に延長できる部材であれば良い。)を設け、同L型金物21の下面にも加熱発泡ゴム20を設けると良い(請求項3記載の発明)。加熱発泡ゴム20の水平方向への設置領域が広がり、図7に示すように、万一、火災時に耐火パネル8が外方に開いても、確実に耐火ボード7と耐火パネル8とのクリアランスを塞いで、火熱の流入を防ぐことができる。   Incidentally, in order to reliably prevent the inflow of fire heat, as shown in FIG. 6, an L-shaped hardware 21 (however, any member that can be extended in the horizontal direction) is provided at the lower end portion of the inner surface of the fireproof panel 8. It is preferable to provide the heat-foamed rubber 20 also on the lower surface of the L-shaped metal piece 21. As shown in FIG. 7, the installation area of the heated foam rubber 20 in the horizontal direction is widened, and even if the fireproof panel 8 opens to the outside in the event of a fire, the clearance between the fireproof board 7 and the fireproof panel 8 is ensured. It can be blocked to prevent the inflow of fire.

なお、上記実施形態では、免震装置1の下側フランジ5の周辺部に耐火ボード7を設置したが、耐火性能を有する部材、例えばモルタルを設置しても同様に実施できる。   In addition, in the said embodiment, although the fireproof board 7 was installed in the peripheral part of the lower flange 5 of the seismic isolation apparatus 1, even if it installs the member which has fireproof performance, for example, mortar, it can implement similarly.

また、上記実施形態では、けい酸カルシウム板を芯材とし、その内外両面を化粧鋼板又はステンレス鋼板で被覆したサンドイッチ構造とされた耐火パネル8を用いたが、化粧鋼板又はステンレス鋼板で被覆していない耐火パネルを用いて実施することもできる。   Moreover, in the said embodiment, although the fireproof panel 8 made into the sandwich structure which made the calcium silicate board the core material and coat | covered the inner and outer surfaces with the decorative steel plate or the stainless steel plate was used, it coat | covered with the decorative steel plate or the stainless steel plate. It can also be implemented with no fireproof panel.

本発明に係る免震装置の耐火被覆構造を概念的に示した立面図である。It is the elevation which showed notionally the fireproof covering structure of the seismic isolation apparatus which concerns on this invention. 本発明に係る免震装置の耐火被覆構造を概念的に示した水平断面図である。It is the horizontal sectional view which showed notionally the fireproof covering structure of the seismic isolation apparatus which concerns on this invention. 耐火パネルとL型金物及び耐火ブロックの取り合い構造を示した図である。It is the figure which showed the joint structure of a fireproof panel, an L-shaped metal fitting, and a fireproof block. 図3のA−A矢視断面図である。It is AA arrow sectional drawing of FIG. 本発明に係る免震装置の耐火被覆構造の水平変位時を概念的に示した立面図である。It is the elevation which showed notionally the time of horizontal displacement of the fireproof covering structure of the seismic isolation device concerning the present invention. 異なる耐火パネルの下部構造を示した立面図である。It is the elevation which showed the lower structure of a different fireproof panel. 図6の耐火パネルの下部構造において、火災時に外方に回転して開いた状態を示した立面図である。FIG. 7 is an elevational view showing a state where the lower structure of the fireproof panel of FIG. 6 is rotated outward in the event of a fire.

符号の説明Explanation of symbols

1 免震装置
2a 上部柱(上部構造体)
2b 下部柱(下部構造体)
3 積層ゴム
4、5 フランジ
6 ボルト
7 耐火ボード
8 耐火パネル
9 L型金物
12 軸ボルト
13 ボルト穴
14 ナット
15 補強金物
16 耐火ブロック
17 無機系接着剤
18 ビス
19 ストッパー金物
20 加熱発泡ゴム
21 L型金物
1 Seismic isolation device 2a Upper column (upper structure)
2b Lower pillar (lower structure)
3 Laminated rubber 4, 5 Flange 6 Bolt 7 Fireproof board 8 Fireproof panel 9 L-shaped hardware 12 Shaft bolt 13 Bolt hole 14 Nut 15 Reinforcement hardware 16 Fireproof block 17 Inorganic adhesive 18 Screw 19 Stopper hardware 20 Heating foam rubber 21 L-shaped hardware

Claims (6)

建築物の中間階免震層で上部構造体と下部構造体との間に設置された免震装置の耐火被覆構造であって、
下部構造体の上面外周に沿って、免震装置の下側フランジを下部構造体に接合したボルト又はナットの天端よりも若干せいが高い耐火ボード等の耐火性を有する部材が設置されていること、
上部構造体の下面の四隅位置に、耐火パネルを支持するL型金物が、内隅部を上部構造体の対角線方向に向け、且つ同L型金物の各平面部が辺方向に隣接する他のL型金物の平面部と平行に相対峙する配置で取り付けられており、同L型金物の平面部の上端位置には、耐火パネルの回転軸となる軸ボルトを通すボルト穴が形成されていること、
隣接する前記L型金物の相互間に、両側面部の上端部における厚さ方向の略中央位置にナットを備えた耐火パネルが配置され、前記ナットにはL型金物のボルト穴に通された軸ボルトがネジ込まれて耐火パネルが回転可能に支持されていること、
L型金物はその外面部を耐火ブロックで被覆されていること、
L型金物の角部近傍、又は上部構造体における耐火パネルの内側面の四隅位置に、ストッパー金物が取り付けられていることを特徴とする、免震装置の耐火被覆構造。
It is a fireproof covering structure of a seismic isolation device installed between the upper structure and the lower structure in the seismic isolation layer of the middle floor of the building,
A fire-resistant member such as a fire-resistant board that is slightly higher than the top end of the bolt or nut that joins the lower flange of the seismic isolation device to the lower structure is installed along the outer periphery of the upper surface of the lower structure. thing,
At the four corner positions of the lower surface of the upper structure, the L-shaped hardware supporting the fireproof panel is directed to the other corners in which the inner corner faces the diagonal direction of the upper structure and each plane portion of the L-shaped hardware is adjacent to the side direction. It is attached in an arrangement that faces the plane part of the L-shaped metal piece parallel to the plane part, and a bolt hole is formed at the upper end position of the plane part of the L-type metal part to pass the shaft bolt that becomes the rotation axis of the fireproof panel. thing,
Between the adjacent L-shaped metal parts, a fireproof panel provided with a nut is disposed at a substantially central position in the thickness direction at the upper end of both side surface parts, and the nut is passed through the bolt hole of the L-shaped metal object. The bolts are screwed in and the fireproof panel is rotatably supported,
L-shaped hardware has its outer surface covered with a fireproof block,
A fireproof covering structure for a seismic isolation device, characterized in that stopper hardware is attached in the vicinity of the corners of the L-shaped hardware or at the four corner positions of the inner surface of the fireproof panel in the upper structure.
上部構造体の下面又は耐火パネルの上面、及び耐火ボード等の耐火性を有する部材の上面又は耐火パネルの下面、並びに耐火パネルの左右の側面又はL型金物の外側面の少なくとも一方にガスケット又は加熱発泡ゴムが設けられていることを特徴とする、請求項1に記載した免震装置の耐火被覆構造。   Gasket or heating on at least one of the lower surface of the upper structure or the upper surface of the fireproof panel, the upper surface of a fireproof member such as a fireproof board or the lower surface of the fireproof panel, and the left and right side surfaces of the fireproof panel or the outer surface of the L-shaped hardware The fireproof covering structure for a seismic isolation device according to claim 1, wherein foamed rubber is provided. 耐火パネルの内側面の下端部にL型金物等の水平部材が設けられており、同水平部材の下面に加熱発泡ゴムが設けられていることを特徴とする、請求項1に記載した免震装置の耐火被覆構造。   The seismic isolation system according to claim 1, wherein a horizontal member such as an L-shaped hardware is provided at the lower end portion of the inner side surface of the fireproof panel, and heated foam rubber is provided on the lower surface of the horizontal member. Equipment fireproof coating structure. 耐火パネルのナットの周辺部分は補強金物で補強されていることを特徴とする、請求項1に記載した免震装置の耐火被覆構造。   2. The fireproof covering structure for a seismic isolation device according to claim 1, wherein a peripheral portion of the nut of the fireproof panel is reinforced with a reinforcing metal. 耐火パネルを支持するL型金物の上端部に水平方向のフランジ板が設けられており、同フランジ板が上部構造体へホールインアンカーなどの手段によって接合されていることを特徴とする、請求項1に記載した免震装置の耐火被覆構造。   A horizontal flange plate is provided at an upper end portion of an L-shaped metal member that supports the fireproof panel, and the flange plate is joined to the upper structure by means such as a hole-in anchor. The fireproof covering structure of the seismic isolation device described in 1. 耐火ブロックは、無機系接着剤とビスを併用して耐火パネルを支持するL型金物に接合されていることを特徴とする、請求項1に記載した免震装置の耐火被覆構造。   The fireproof covering structure for a seismic isolation device according to claim 1, wherein the fireproof block is joined to an L-shaped metal piece that supports the fireproof panel by using an inorganic adhesive and a screw together.
JP2004138864A 2004-05-07 2004-05-07 Fireproof coating structure for seismic isolation devices Expired - Lifetime JP4420728B2 (en)

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