JP2016050472A - Air-permeable base isolation floor - Google Patents

Air-permeable base isolation floor Download PDF

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Publication number
JP2016050472A
JP2016050472A JP2014190508A JP2014190508A JP2016050472A JP 2016050472 A JP2016050472 A JP 2016050472A JP 2014190508 A JP2014190508 A JP 2014190508A JP 2014190508 A JP2014190508 A JP 2014190508A JP 2016050472 A JP2016050472 A JP 2016050472A
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air
base frame
breathable
square pipe
seismic isolation
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金澤 光雄
Mitsuo Kanazawa
光雄 金澤
彰司 増子
Shoji Masuko
彰司 増子
英輔 吉村
Eisuke Yoshimura
英輔 吉村
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Kanazawa Manufacturing Co Ltd
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Kanazawa Manufacturing Co Ltd
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Priority to JP2014190508A priority Critical patent/JP2016050472A/en
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Abstract

PROBLEM TO BE SOLVED: To provide an air-permeable base isolation floor that discharges air-conditioned air from a surface of an air-permeable flooring material, eliminating a need on an air-conditioner outlet on a ceiling or a duct in an attic space, reducing costs, allowing a wide space to be used, eliminating a strong air current that is felt in a case with conventional air-conditioners because air-conditioned air is discharged from a floor surface, and allowing distribution cables to be housed under floor.SOLUTION: An air-permeable base isolation floor is configured with a square pipe base frame made by assembling a square pipe 30 in a grid form or a light-weight section steel base frame made by connecting light-weight section steel, a punching plate 20 with a cavity part fitted and fixed on the base frame, and an air-permeable flooring material 10 laid on a top surface of the punching plate 20. An air-conditioned air flow is connected to a cavity part 21 of the square pipe 30 or the light-weight section steel and the cavity part 21 of the punching plate 20, to enable discharge of the air-conditioned air flow from a vent hole 31 of both, such that the air-conditioned air flow is discharged from the surface of the air-permeable flooring material 10.SELECTED DRAWING: Figure 1

Description

本発明は通気性免震フロアに関し、特に空調用送風を通気性床材表面より吐出するように構成し、天井の空調吹出口や天井裏のダクトが不要となり、コストを低減し、空間を広く利用することができ、床面からの吹出しとなるので従来のような空調時の強い空気流を感じることがなく、また、配線ケーブル等を床下へ収納することができる通気性免震フロアに関するものである。  The present invention relates to a breathable seismic isolation floor, and is particularly configured to discharge air-conditioning air from the surface of the breathable flooring, eliminating the need for a ceiling air-conditioning outlet and a duct on the back of the ceiling, reducing costs and widening the space. It can be used and blows off from the floor, so it does not feel the strong air flow during air conditioning as in the past, and it relates to a breathable seismic isolation floor that can store wiring cables etc. under the floor It is.

従来、二重床を用いて、上床を形成する脚部間を空調用の通気路として上床より空気を吹き出す通気フロアが開発されており、材質の軽量化、運搬、施工性等を改善するために合成樹脂で上床板部と下方に向かって突設した脚部を有するユニットが提案されている。  Conventionally, a ventilation floor has been developed that uses a double floor to blow air from the upper floor using airflow passages between the legs forming the upper floor, to improve material weight reduction, transportation, workability, etc. In addition, a unit having an upper floor plate portion and a leg portion projecting downward from a synthetic resin has been proposed.

特開2013−83105号公報  JP2013-83105A

本発明の通気性免震フロアの課題は、免震機能を有すると共に空調用空気を部屋全体にムラなく送出できるように構成する通気性免震フロアを提供することである。  The subject of the air permeable seismic isolation floor of this invention is providing the air permeable seismic isolation floor which has a seismic isolation function, and is comprised so that air for air conditioning can be sent out uniformly to the whole room.

本発明の通気性免震フロアは、角パイプ又は軽量形鋼を升目状に組み合わせて構成した角パイプベース枠体又は軽量形鋼ベース枠体に空洞付きパンチングプレートを取り付けて固定し、該パンチングプレートの上面に通気性床材を敷設し、角パイプの空洞部又は軽量形鋼空洞部及びパンチングプレートの空洞部に空調用送風を接続し、双方の通気孔より空調用送風を可能とし、該空調用送風を通気性床材表面より吐出するように構成したことを特徴とし、角パイプベース枠体又は軽量形鋼ベース枠体を保持プレートで保持し、該保持プレートが支持脚によって支持され、該保持プレートと該支持脚との間に免震ユニットが配置されていることを特徴とし、交差する角パイプの双方に切欠部が形成され、該切欠部が相互に組合わされて角パイプベース枠体を構成したことを特徴とし、軽量形鋼ベース枠体が連結部材によって連結された軽量形鋼で構成されていることを特徴とし、角パイプを升目状に組み合わせて構成した角パイプベース枠体及び空洞付きパンチングプレートを鋼製又は軽金属又はプラスチック又は木製で構成したことを特徴とし、パンチングプレートコーナー部に固定座金を嵌着して固定ネジを角パイプに締めつけることにより、隣接する空洞付きパンチングプレートを相互に係止するように構成したことを特徴とし、且つ、角パイプ又は軽量形鋼を升目状に組み合わせて構成した角パイプベース枠体又は軽量形鋼ベース枠体に穴付きベニヤ板を取り付けて固定し、該穴付きベニヤ板の上面に通気性床材を敷設し、角パイプの空洞部又は軽量形鋼空洞部に空調用送風を接続し、穴付きベニヤ板の通気孔より空調用送風を可能とし、該空調用送風を通気性床材表面より吐出するように構成したことを特徴とする通気性免震フロアを提供する。  The breathable seismic isolation floor according to the present invention is a square pipe base frame or a lightweight shape steel base frame constructed by combining square pipes or lightweight steel in a grid shape, and is fixed by attaching a punching plate with a cavity. Air permeable flooring is laid on the upper surface of the pipe, air conditioning air blow is connected to the hollow part of the square pipe or the lightweight steel hollow part and the hollow part of the punching plate, and air blowing for air conditioning is made possible through both air holes. It is characterized in that it is configured to discharge the air flow from the surface of the breathable flooring, and the square pipe base frame or the lightweight steel base frame is held by a holding plate, and the holding plate is supported by a support leg, A seismic isolation unit is disposed between the holding plate and the support leg, and a notch is formed in both of the intersecting square pipes, and the notches are combined with each other to form the square pipe. A square pipe constructed by combining square pipes in a grid pattern, characterized in that a lightweight frame steel base frame is constructed of lightweight steel connected by a connecting member. The base frame and the punching plate with a cavity are made of steel, light metal, plastic, or wood, and the adjacent cavity is formed by fitting a fixed washer to the corner of the punching plate and tightening the fixing screw to the square pipe. A rectangular pipe base frame or a lightweight shaped steel base frame, which is constructed by combining square punched plates or lightweight shaped steel in a grid shape, and is configured to lock the punched plates with each other. The air ventilating flooring is laid on the upper surface of the plywood with holes, and the air-conditioning air blows into the hollow part of the square pipe or the lightweight steel hollow part. Connect, to allow the air conditioning blower than vent holes with plywood, a blowing the air conditioning to provide breathability seismic isolation floor, characterized by being configured to discharge from breathable flooring surface.

以上説明したように本発明に係る通気性免震フロアによれば、天井の空調吹出口や天井裏のダクトが不要となり、コストを低減し、空間を広く利用することができ、床面からのムラの無い吹出しとなるので従来のような空調時の強い空気流を感じることがなく、また、本発明の通気性免震フロアでは配線ケーブル等を床下へ収納することができる。  As described above, according to the breathable seismic isolation floor according to the present invention, the air conditioning outlet and the duct on the back of the ceiling are unnecessary, the cost can be reduced, the space can be widely used, Since the blowout has no unevenness, it does not feel a strong air flow during air conditioning as in the prior art, and the air-permeable seismic isolation floor according to the present invention can store a wiring cable or the like under the floor.

本発明に係る通気性免震フロアの部分断面図である。  It is a fragmentary sectional view of the air permeable seismic isolation floor concerning the present invention. 本発明に係る通気性免震フロアの部分斜視図である。  It is a fragmentary perspective view of the air permeable seismic isolation floor concerning this invention. 組立て角パイプの分解斜視図である。  It is a disassembled perspective view of an assembly square pipe. ベース枠体に取付けた通気性免震フロアの部分斜視図である。  It is a fragmentary perspective view of the air permeable seismic isolation floor attached to the base frame. 軽量形鋼ベース枠体に取付けた通気性免震フロアの部分斜視図である。  It is a fragmentary perspective view of the air permeable seismic isolation floor attached to the lightweight shape steel base frame. 連結部品の取付説明図である。  It is attachment explanatory drawing of a connection component. 連結部品の取付説明図である。  It is attachment explanatory drawing of a connection component. 穴付きベニヤ板を用いた通気性免震フロアの部分断面図である。  It is a fragmentary sectional view of a breathable seismic isolation floor using a plywood with a hole. 穴付きベニヤ板を用いた通気性免震フロアの部分断面図である。  It is a fragmentary sectional view of a breathable seismic isolation floor using a plywood with a hole.

図1乃至図4に示すように、角パイプ30を升目状に組み合わせて構成した角パイプベース枠体3に空洞付きパンチングプレート20を取り付けて固定し、該パンチングプレート20の上面に通気性床材10を敷設し、角パイプ30の空洞部301及びパンチングプレートの空洞部21に空調用送風を接続し、双方の通気孔22及び通気孔31より空調用送風を可能とし、該空調用送風を通気性床材10の表面より吐出するように構成されている。  As shown in FIGS. 1 to 4, a punching plate 20 with a cavity is attached and fixed to a square pipe base frame 3 configured by combining square pipes 30 in a grid shape, and a breathable flooring is provided on the upper surface of the punching plate 20. 10 is laid, air-conditioning air is connected to the hollow portion 301 of the square pipe 30 and the hollow portion 21 of the punching plate, and air-conditioning air can be blown from both the air holes 22 and 31 and the air-conditioning air is ventilated. It discharges from the surface of the flooring 10.

図1に示すように、角パイプベース枠体3を免震ユニット50で保持し、該免震ユニット50はマーブル部材53によって支持され、地震発生時に免震機能を生じるように配置されている。  As shown in FIG. 1, the square pipe base frame 3 is held by a seismic isolation unit 50, and the seismic isolation unit 50 is supported by a marble member 53 and is arranged so as to generate a seismic isolation function when an earthquake occurs.

図2及び図4に示すように、交差する角パイプ30,30の双方に切欠部32,32が形成されており、該切欠部32,32が相互に組合わされて角パイプベース枠体3が構成されている。  As shown in FIGS. 2 and 4, notches 32, 32 are formed in both of the intersecting square pipes 30, 30, and the notches 32, 32 are combined with each other to form the square pipe base frame 3. It is configured.

図2乃至図4に示すように、角パイプ30を升目状に組み合わせて構成した角パイプベース枠体3及び空洞付きパンチングプレート20は鋼製又は軽金属で構成されている。  As shown in FIGS. 2 to 4, the square pipe base frame 3 and the hollow punching plate 20 formed by combining square pipes 30 in a grid pattern are made of steel or light metal.

図1に示すようにパンチングプレートコーナー部201の係止部231に固定座金23を嵌着して固定ネジ24を角パイプ30に締めつけることにより、隣接する空洞付きパンチングプレート20を相互に係止することができる。  As shown in FIG. 1, the fixed washer 23 is fitted to the locking portion 231 of the punching plate corner portion 201 and the fixing screw 24 is fastened to the square pipe 30, thereby locking the adjacent punching plates 20 with cavities to each other. be able to.

前記せるように、隣接する空洞付きパンチングプレート20を相互に平面状に固定した上に通気性床材10を敷設する。  As described above, the air-permeable flooring 10 is laid on the punching plates 20 with cavities which are adjacent to each other and fixed to each other in a planar shape.

図1に示すように、角パイプベース枠体3を免震ユニット50で保持し、該免震ユニット50はコンクリート不下面70によって支持され、該免震ユニット50はレベルアンカーによってレベル調整されてコンクリート床面70に固定されている。  As shown in FIG. 1, the square pipe base frame 3 is held by a seismic isolation unit 50, the seismic isolation unit 50 is supported by a concrete non-bottom surface 70, and the level of the seismic isolation unit 50 is adjusted by a level anchor. It is fixed to the floor surface 70.

免震ユニット50は、先に本出願人が特許出願している公知の免震ユニット50を援用しており、下側皿部材と上側皿部材間に介在しているマーブル部材53が地震発生時に移動し、且つ、振動が治まった時点で元の位置に復元するように構成されている。  The seismic isolation unit 50 uses a known seismic isolation unit 50 previously filed by the present applicant, and the marble member 53 interposed between the lower plate member and the upper plate member is used when an earthquake occurs. It is configured to move back and restore to the original position when the vibration is resolved.

図5に示すように、軽量形鋼81によって形成される軽量形鋼ベース枠体311に空洞付きパンチングプレート20を取り付けて固定し、パンチングプレート20の上面に通気性床材10を敷設し、軽量形鋼ベース枠体311の空洞部及びパンチングプレートの空洞部21に空調用送風を接続し、双方の通気孔22及び通気孔31より空調用送風を可能とし、該空調用送風を通気性床材10の表面より吐出するように構成されている。  As shown in FIG. 5, a punching plate 20 with a cavity is attached and fixed to a lightweight steel base frame 311 formed by a lightweight steel 81, and a breathable flooring 10 is laid on the upper surface of the punching plate 20. Air-conditioning air is connected to the hollow portion of the shape steel base frame 311 and the hollow portion 21 of the punching plate, and air-conditioning air can be sent from both the air holes 22 and 31. It is comprised so that it may discharge from the surface of 10.

空調用送風は、角パイプ30の空洞部301又は軽量形鋼及びパンチングプレートの空洞部21の前面に渡って均等圧で送風されるので、双方の通気孔31及び通気孔22よりムラなく空調用送風を可能とし、該空調用送風を通気性床材10の表面より吐出するように構成されている。  The air-conditioning air is blown at a uniform pressure over the front surface of the hollow portion 301 of the square pipe 30 or the light-weight shaped steel and the hollow portion 21 of the punching plate. Blowing is enabled, and the air-conditioning air is discharged from the surface of the breathable flooring 10.

図6に示すように、軽量形鋼81への連結部品8の嵌着は図中矢印のように押圧して取付けることができ、連結部品8には空洞部82が形成されており、通気性床材10への通気を可能にしている。  As shown in FIG. 6, the fitting of the connecting part 8 to the lightweight section 81 can be carried out by pressing as shown by the arrow in the figure, and the connecting part 8 has a cavity 82, which is air permeable. The ventilation to the flooring 10 is enabled.

図7では角パイプ30を連結する場合の他の連結部品9の実施例を示しており、同様に空洞部91を有しており、連結部品先端を各パイプ30へ差し込んで角パイプベース枠体3を形成することができる。  FIG. 7 shows an embodiment of another connecting component 9 for connecting the square pipe 30, which similarly has a hollow portion 91, and inserts the tip of the connecting component into each pipe 30 to form a square pipe base frame. 3 can be formed.

この連結形状でも角パイプ間の通気性が保たれる構造になっている。Even in this connection shape, the air permeability between the square pipes is maintained.

図8乃至図9に示す実施例では、穴付きベニヤ板を用いた実施例が示されている。  In the embodiment shown in FIGS. 8 to 9, an embodiment using a plywood with a hole is shown.

角パイプ30又は軽量形鋼81を升目状に組み合わせて構成した角パイプベース枠体3又は軽量形鋼ベース枠体311に穴付きベニヤ板400を取り付けて固定し、該穴付きベニヤ板400の上面に通気性床材10が敷設されており、角パイプ30の空洞部又は軽量形鋼空洞部に空調用送風を接続し、穴付きベニヤ板400の通気孔22より空調用送風を可能とし、該空調用送風を通気性床材10の表面より吐出するように構成されている。  A square pipe base frame 3 or a lightweight shape steel base frame 311 configured by combining square pipes 30 or lightweight shaped steels 81 in a grid shape is attached and fixed to a veneer plate 400 with holes, and air is passed through the upper surface of the veneer plate 400 with holes. The flooring 10 is laid, and air-conditioning air is connected to the hollow portion of the square pipe 30 or the lightweight steel hollow portion, and air-conditioning air can be sent from the vent hole 22 of the holed plywood plate 400. Is discharged from the surface of the breathable flooring 10.

本発明は、以上説明したような構成であるので、OAフロアシステム等に使用する場合従来型天井吹出空調のように室内にいる人に空気流を強く感じさせることもなく、室内の空気をかき混ぜるようなこともなく、ダクト工事や天井工事などのコストを削減することができる。  Since the present invention is configured as described above, when used in an OA floor system or the like, the air in the room is agitated without causing the person in the room to feel a strong air flow unlike the conventional ceiling air-conditioning system. There is no such thing, and it is possible to reduce costs such as duct work and ceiling work.

10 通気性床材
20 空洞部付きパンチングプレート
201 パンチングプレートコーナー部
21 空洞部
22 通気孔
23 固定座金
231 座金係止部
24 固定ネジ
3 角パイプベース枠体
30 角パイプ
300 ダクト兼根太
301 空洞部
311 軽量形鋼ベース枠体
31 通気孔
32 切欠部
40 保持プレート
400 穴付きベニヤ板
50 免震ユニット
51 上側皿部材
52 下側皿部材
53 マーブル部材
60 支持脚
61 ベースプレート
62 レベルアンカー
70 コンクリート床面
8 連結部品
81 軽量形鋼
82 空洞部
9 連結部品
91 空洞部
W 送風方向
DESCRIPTION OF SYMBOLS 10 Breathable flooring 20 Punching plate with cavity part 201 Punching plate corner part 21 Cavity part 22 Vent hole 23 Fixed washer 231 Washer latching part 24 Fixing screw 3 Square pipe base frame 30 Square pipe 300 Duct and joist 301 Cavity part 311 Lightweight steel base frame 31 Ventilation hole 32 Notch 40 Holding plate 400 Veneer plate with hole 50 Seismic isolation unit 51 Upper plate member 52 Lower plate member 53 Marble member 60 Support leg 61 Base plate 62 Level anchor 70 Concrete floor 8 Connecting parts 81 Lightweight section steel 82 Cavity part 9 Connecting part 91 Cavity part W Air blowing direction

Claims (7)

角パイプ又は軽量形鋼を升目状に組み合わせて構成した角パイプベース枠体又は軽量形鋼ベース枠体に空洞付きパンチングプレートを取り付けて固定し、該パンチングプレートの上面に通気性床材を敷設し、角パイプの空洞部又は軽量形鋼空洞部及びパンチングプレートの空洞部に空調用送風を接続し、双方の通気孔より空調用送風を可能とし、該空調用送風を通気性床材表面より吐出するように構成したことを特徴とする通気性免震フロア。  A punching plate with a cavity is attached and fixed to a square pipe base frame or a lightweight steel base frame constructed by combining square pipes or lightweight steel in a grid pattern, and a breathable flooring is laid on the upper surface of the punching plate. Air conditioning air blower is connected to the hollow part of the square pipe or the lightweight steel hollow part and the hollow part of the punching plate, and the air blower for air conditioning is made possible through both vent holes, and the air flow for air conditioning is discharged from the surface of the breathable flooring. Breathable seismic isolation floor, characterized in that it is constructed. 角パイプベース枠体又は軽量形鋼ベース枠体を保持プレートで保持し、該保持プレートが支持脚によって支持され、該保持プレートと該支持脚との間に免震ユニットが配置されていることを特徴とする請求項1記載の通気性免震フロア。  A square pipe base frame or a lightweight steel base frame is held by a holding plate, the holding plate is supported by a support leg, and a seismic isolation unit is disposed between the holding plate and the support leg. The breathable seismic isolation floor according to claim 1. 交差する角パイプの双方に切欠部が形成され、該切欠部が相互に組合わされて角パイプベース枠体を構成したことを特徴とする請求項1記載の通気性免震フロア。  2. The breathable seismic isolation floor according to claim 1, wherein notched portions are formed in both of the intersecting square pipes, and the notched portions are combined with each other to form a square pipe base frame. 軽量形鋼ベース枠体が連結部材によって連結された軽量形鋼で構成されていることを特徴とする請求項1記載の通気性免震フロア。  The breathable seismic isolation floor according to claim 1, wherein the lightweight steel base frame is made of lightweight steel connected by a connecting member. 角パイプを升目状に組み合わせて構成した角パイプベース枠体及び空洞付きパンチングプレートを鋼製又は軽金属又はプラスチック又は木製で構成したことを特徴とする請求項1記載の通気性免震フロア。  The breathable seismic isolation floor according to claim 1, wherein the square pipe base frame and the hollow punching plate made by combining square pipes in a grid pattern are made of steel, light metal, plastic or wood. パンチングプレートコーナー部に固定座金を嵌着して固定ネジを角パイプに締めつけることにより、隣接する空洞付きパンチングプレートを相互に係止するように構成したことを特徴とする請求項1記載の通気性免震フロア。  2. The air permeability according to claim 1, wherein a fixing washer is fitted to the corner of the punching plate and the fixing screw is fastened to the square pipe so that the adjacent punching plates with cavities are engaged with each other. Seismic isolation floor. 角パイプ又は軽量形鋼を升目状に組み合わせて構成した角パイプベース枠体又は軽量形鋼ベース枠体に穴付きベニヤ板を取り付けて固定し、該穴付きベニヤ板の上面に通気性床材を敷設し、角パイプの空洞部又は軽量形鋼空洞部に空調用送風を接続し、穴付きベニヤ板の通気孔より空調用送風を可能とし、該空調用送風を通気性床材表面より吐出するように構成したことを特徴とする通気性免震フロア。  Attach and fix a plywood with holes to a square pipe base frame or a lightweight steel base frame constructed by combining square pipes or lightweight steel in a grid, and lay a breathable flooring on the top of the holed plywood. The air pipe for air conditioning is connected to the hollow portion of the square pipe or the lightweight steel hollow portion, the air blow for air conditioning is made possible through the vent hole of the holed veneer plate, and the air blow for air conditioning is configured to be discharged from the surface of the breathable flooring. Breathable seismic isolation floor characterized by
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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS57198233U (en) * 1981-06-15 1982-12-16
JPS6157759A (en) * 1984-08-28 1986-03-24 元旦ビユーティ工業株式会社 Floor structure
JPS6462550A (en) * 1987-09-02 1989-03-09 Maeda Construction Floor structure of clean room
JPH0449368A (en) * 1990-06-15 1992-02-18 Daiken Trade & Ind Co Ltd Double floor construction
JPH04363460A (en) * 1991-06-10 1992-12-16 Kimura Giken:Kk Floor structure of building
JPH11247418A (en) * 1998-02-27 1999-09-14 Osaka Gas Co Ltd Floor blowout air conditioning system

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS57198233U (en) * 1981-06-15 1982-12-16
JPS6157759A (en) * 1984-08-28 1986-03-24 元旦ビユーティ工業株式会社 Floor structure
JPS6462550A (en) * 1987-09-02 1989-03-09 Maeda Construction Floor structure of clean room
JPH0449368A (en) * 1990-06-15 1992-02-18 Daiken Trade & Ind Co Ltd Double floor construction
JPH04363460A (en) * 1991-06-10 1992-12-16 Kimura Giken:Kk Floor structure of building
JPH11247418A (en) * 1998-02-27 1999-09-14 Osaka Gas Co Ltd Floor blowout air conditioning system

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