JP4632408B2 - Sidewall lightning protection mechanism in existing buildings - Google Patents

Sidewall lightning protection mechanism in existing buildings Download PDF

Info

Publication number
JP4632408B2
JP4632408B2 JP2004192003A JP2004192003A JP4632408B2 JP 4632408 B2 JP4632408 B2 JP 4632408B2 JP 2004192003 A JP2004192003 A JP 2004192003A JP 2004192003 A JP2004192003 A JP 2004192003A JP 4632408 B2 JP4632408 B2 JP 4632408B2
Authority
JP
Japan
Prior art keywords
conductor
connecting member
shaped
linear
side wall
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2004192003A
Other languages
Japanese (ja)
Other versions
JP2006014567A (en
Inventor
憲治 神田
義明 森
信郷 小林
哲夫 遠藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Taisei Corp
Original Assignee
Taisei Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Taisei Corp filed Critical Taisei Corp
Priority to JP2004192003A priority Critical patent/JP4632408B2/en
Publication of JP2006014567A publication Critical patent/JP2006014567A/en
Application granted granted Critical
Publication of JP4632408B2 publication Critical patent/JP4632408B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Description

本発明は、既存建築物における側壁雷保護機構に関するものである。   The present invention relates to a side wall lightning protection mechanism in an existing building.

建築物等の避雷設備に関する従来からの規格としてはJIS A4201:1992(建築物等の避雷設備)があり、この規格には側壁雷に対する保護が規定されていないが、この規格は2003年7月8日にIEC61024-1(建築物の雷保護)に準拠する形で改訂され、改訂されたJIS A4201:2003には側壁雷に対する保護が規定されている。一方、建築基準法による避雷設備はJISにより設置されなければならないとされているが、現時点では旧建設省の告示により、JIS A4201:1992による設置が認められている。   There is JIS A4201: 1992 (lightning protection equipment for buildings, etc.) as a conventional standard for lightning protection equipment for buildings, etc., and this standard does not stipulate protection against side wall lightning. It was revised on the 8th in accordance with IEC61024-1 (Lightning protection for buildings), and revised JIS A4201: 2003 provides protection against side wall lightning. On the other hand, lightning protection equipment according to the Building Standards Law is required to be installed by JIS, but at present, installation by JIS A4201: 1992 is permitted according to the notification of the former Ministry of Construction.

JIS A4201:1992では側壁雷に対する保護が規定されていないため、現状では、60m(最高の保護レベルでは20m)を越えるような超高層建築物においても側壁雷に対する保護がないものが多く、側壁部がタイル打込PC板等のように表面に導電体が露出しない建築物では、側壁雷の雷撃により、側壁部の一部が破壊して落下する等の被害が発生している。   Since JIS A4201: 1992 does not stipulate protection against side wall lightning, at present, many high-rise buildings exceeding 60m (20m at the highest protection level) do not have side wall lightning protection. However, in a building where the conductor is not exposed on the surface, such as a tiled PC board, damages such as a part of the side wall portion being destroyed and falling due to a lightning strike on the side wall have occurred.

このような側壁雷による被害の発生を防ぐために、将来的に、JIS A4201:2003が適用されると、60m(最高の保護レベルでは20m)を越える建築物には、側壁面を雷撃から保護するために、側壁部に雷撃を受けた場合に雷電流を速やかに大地に流すための保護機構を設ける必要が生じる。   In order to prevent the occurrence of such damage due to side wall lightning, if JIS A4201: 2003 is applied in the future, the side wall surface will be protected from lightning strikes for buildings exceeding 60m (20m at the highest protection level). Therefore, it is necessary to provide a protection mechanism for promptly flowing a lightning current to the ground when a lightning strike is applied to the side wall.

一方、建築物における避雷設備の従来例としては例えば特許文献1〜4に記載されているものがある。特許文献1〜3は、建築物の屋根に、所定の長さに渡って避雷用の導電体を設置する構成の保護機構を開示しており、側壁雷からの保護については言及していない。一方、特許文献4は、側壁部を側壁雷から保護するための機構を開示しており、この保護機構は、建築物の側壁に取り付けられる表層板の側面に、上面を表層板の表面と同一面となるように垂直避雷導体を固定し、この垂直避雷導体と、表層板を外壁に固定するためのアンカーボルトとを接地用導線により電気的に接続して高層建築物の高層部用表層板を製作し、この表層板を高層建築物の高層部の外壁にアンカーボルトにて取り付けると共に、予め建築物の鉄筋あるいは鉄骨に電気的に接続されている接地用導線の端部をアンカーボルトに接続して構成するものである。   On the other hand, as conventional examples of lightning protection equipment in buildings, there are those described in Patent Documents 1 to 4, for example. Patent Documents 1 to 3 disclose a protection mechanism configured to install a lightning conductor on a roof of a building over a predetermined length, and do not mention protection from side wall lightning. On the other hand, Patent Document 4 discloses a mechanism for protecting the side wall portion from side wall lightning, and this protection mechanism is the same as the surface of the surface layer plate on the side surface of the surface layer plate attached to the side wall of the building. A vertical lightning conductor is fixed so that it becomes a surface, and the vertical lightning conductor and an anchor bolt for fixing the surface layer plate to the outer wall are electrically connected by a grounding conductor, and the surface layer plate for a high-rise part of a high-rise building Attach this surface layer plate to the outer wall of the high-rise building with anchor bolts, and connect the end of the grounding conductor that is electrically connected to the reinforcing bars or steel frames of the building in advance to the anchor bolts. Is configured.

特開平5−161239号公報JP-A-5-161239 特開平7−264759号公報JP 7-264759 A 特開平10−219938号公報JP-A-10-219938 特開2001−86631号公報JP 2001-86631 A

JIS A4201:2003に従って側壁雷の保護機構を構成する場合、例えば最高の保護レベルでは、金属体によるメッシュを5mピッチ又はグリッドで側壁部に構成しなければならず、単に、側壁部に金属帯等の受雷部導電体を設置するのでは、建築物のファサードの美観に影響を与えることは必至であるので、その美観を損なわない側壁雷保護機構が強く求められている。   When constructing a protection mechanism for side wall lightning according to JIS A4201: 2003, for example, at the highest protection level, a metal mesh must be formed on the side wall with a 5 m pitch or grid, and simply a metal strip on the side wall, etc. However, it is inevitable to influence the aesthetics of the facade of the building. Therefore, there is a strong demand for a side-wall lightning protection mechanism that does not impair the aesthetics.

また、建築物の側壁部に受雷部導電体を設置する場合には、当然のこととして、それを如何に大地に接地するかが重要な点であり、例えば、側壁雷に対する保護を目的としている上記特許文献4では、上述したとおり、垂直避雷導体を固定している表層板を高層建築物の外壁にアンカーボルトにて取り付けた後に、建築物の鉄筋あるいは鉄骨に電気的に接続されている接地用導線の端部をアンカーボルトに接続する作業が必要となる。このような避雷導体と接地用導線との接続作業は、他の特許文献1〜3についても同様である。   In addition, when installing a lightning conductor on the side wall of a building, of course, it is important how to ground it to the earth. For example, for the purpose of protection against side lightning In the above-mentioned Patent Document 4, as described above, after attaching the surface layer plate fixing the vertical lightning conductor to the outer wall of the high-rise building with the anchor bolt, it is electrically connected to the reinforcing bar or steel frame of the building. The operation | work which connects the edge part of the conducting wire for grounding to an anchor bolt is needed. The connection work between the lightning conductor and the grounding conductor is the same for other Patent Documents 1 to 3.

従来は、このように側壁部を躯体に固定した作業を行った後に、受雷部導電体を接地する作業が必要であるので、工程が増えると共に高所作業のため危険でもある。   Conventionally, after performing the operation of fixing the side wall portion to the housing in this way, it is necessary to perform the operation of grounding the lightning-receiving portion conductor.

そこで出願人は、このような課題を解決するために、先に、図6〜図8に示すような建築物における側壁雷保護機構を提案した。(特願2003−423727)   Therefore, in order to solve such a problem, the applicant has previously proposed a side wall lightning protection mechanism in a building as shown in FIGS. (Japanese Patent Application No. 2003-423727)

即ち、この側壁雷保護機構は、外壁ユニットの取付金具を鉄骨躯体部材(図示省略)に固定することにより外壁を構成する建築物において、外壁ユニットの外面側に線状又は点状の受雷部導電体を設けると共に、これと取付金具との間を、外壁ユニットの内部を通した接続用導電体で接続した構成であり、この構成により、外壁ユニットの外面側の受雷部導電体を、接続用導電体、取付金具及び鉄骨躯体部材を介して接地するものである。   That is, this side wall lightning protection mechanism is a linear or dotted light-receiving section on the outer surface side of the outer wall unit in a building that forms the outer wall by fixing the mounting bracket of the outer wall unit to a steel frame member (not shown). A conductor is provided, and between this and the mounting bracket is connected with a connecting conductor passing through the inside of the outer wall unit. With this configuration, the lightning conductor on the outer surface side of the outer wall unit is It is grounded via a connecting conductor, a mounting bracket and a steel frame member.

しかしながら上記の側壁雷保護機構は新設の建築物に対応するものであり、上述したような外壁ユニットを用いていない既存建築物に対応させることはできない。   However, the above-mentioned side wall lightning protection mechanism corresponds to a new building, and cannot be applied to an existing building that does not use the outer wall unit as described above.

そこで、本発明では、既存の建築物に対応させた側壁雷保護機構を提供することを目的とするものである。   Accordingly, an object of the present invention is to provide a side wall lightning protection mechanism corresponding to an existing building.

上述した課題を解決するために、本発明では、線状導電体と、3本の線状導電体を同一平面上で接続するための接続腕部を設けた第1のT字型接続部材と、3本の線状導電体を直交平面上で接続するための接続腕部を設けた第2のT字型接続部材と、4本の線状導電体を同一平面上で接続するための接続腕部を設けた第1の十字型接続部材と、4本の線状導電体を直交平面上で接続するための接続腕部を設けた第2の十字型接続部材を側壁雷保護機構の要素とし、前記各接続部材の前記接続腕部の先端側と、前記線状導電体の先端側には取付穴を形成し、これらの取付穴を対応させた状態で壁面取付用のアンカーボルトを嵌合することにより、前記各接続部材と前記線状導電体を接続すると同時に、既存の建築物の側壁の表面に、屋上側から所定高さまで線状導電体を格子状に設置する構成とし、屋上側に配置したT字型接続部材に前記建築物の屋上に配設された既存の接地用導電体への接続部を構成した既存建築物における側壁雷保護機構を提案するものである。 In order to solve the above-described problem, in the present invention, a linear conductor and a first T-shaped connection member provided with a connection arm portion for connecting three linear conductors on the same plane; a connection for connecting the second T-shaped connecting member provided with connection arm portions for connecting the three linear conductors on orthogonal planes, the four linear conductors on the same plane a first cross connection member provided with arms, the elements of the second cross connecting member side walls lightning protection mechanism provided with a connecting arm portions for connecting on four linear conductors orthogonal planes Mounting holes are formed on the front end side of the connection arm portion of each connection member and the front end side of the linear conductor, and anchor bolts for wall mounting are fitted in a state in which these mounting holes correspond to each other. by coupling, at the same time it connects the said line-shaped conductor and each connection member, the surface of the side wall of the existing building, from the roof side A linear conductor to Jodaka of a structure to be installed in a grid pattern, to constitute a connection to the existing grounding conductor disposed on the roof of the T-shaped connecting member to the building disposed on the roof side It proposes a side wall lightning protection mechanism in existing buildings.

また本発明では、上記の構成において、T字型接続部材又は十字型接続部材に、それらの接続腕部が配置される平面に対して直角方向に棒状導電体を突設するための取り付け部を設けることを提案する。
According to the present invention, in the above configuration, the T-shaped connection member or the cross-shaped connection member is provided with a mounting portion for projecting the rod-shaped conductor in a direction perpendicular to the plane on which the connection arm portions are arranged. Propose to provide.

また本発明では、上記の構成において、線状導電体の一部を伸縮可能な構成とすることを提案する。   Further, the present invention proposes that a part of the linear conductor can be expanded and contracted in the above configuration.

本発明では、線状導電体と、3本の線状導電体を同一平面上で接続する第1のT字型接続部材と、3本の線状導電体を直交平面上で接続する第2のT字型接続部材と、4本の線状導電体を同一平面上で接続する第1の十字型接続部材と、4本の線状導電体を直交平面上で接続する第2の十字型接続部材とから建築物の側壁の表面に、屋上側から所定高さまで線状導電体を格子状に設置することができ、また大地への接地は、屋上側のT字型接続部材に設けた接続部を建築物の屋上に配設された既存の接地用導電体に接続すれば良いので、アンカーボルトの設置等の工事を必要とせずに、既存の建築物の側壁部に、簡単な工事で容易に側壁雷保護機構を構成することができる。   In the present invention, the linear conductor, the first T-shaped connecting member that connects the three linear conductors on the same plane, and the second that connects the three linear conductors on the orthogonal plane. The T-shaped connecting member, the first cross-shaped connecting member that connects the four linear conductors on the same plane, and the second cross-shaped that connects the four linear conductors on the orthogonal plane Linear conductors can be installed in a grid pattern from the rooftop to a predetermined height on the side wall of the building from the connecting member, and grounding to the ground is provided on the T-shaped connecting member on the rooftop Since it is only necessary to connect the connecting part to the existing grounding conductor on the roof of the building, it is not necessary to install anchor bolts, etc. The side wall lightning protection mechanism can be configured easily.

この構成においては、格子状の線状導電体を受雷部導電体とすることができる他、T字型接続部材又は十字型接続部材に棒状導電体の取り付け部を設ければ、この取り付け部により棒状導電体を突設して、この棒状導電体を受雷部導電体とすることができる。   In this configuration, a grid-like linear conductor can be used as a lightning-receiving portion conductor, and if the T-shaped connection member or the cross-shaped connection member is provided with a rod-shaped conductor attachment portion, the attachment portion By projecting a rod-shaped conductor, the rod-shaped conductor can be used as a lightning conductor.

また線状導電体の一部を伸縮可能な構成とすれば、熱による伸縮を吸収することができる。   Further, if a part of the linear conductor is configured to be able to expand and contract, the expansion and contraction due to heat can be absorbed.

次に本発明の側壁雷保護機構の実施例を添付図面を参照して説明する。
まず図1は本発明を適用して既存の建築物Bの側壁の表面に側壁雷保護機構を構成した状態を示すもので、この側壁雷保護機構は、図中1点鎖線の円で一部を示した各部材から構成したものである。
Next, an embodiment of the side wall lightning protection mechanism of the present invention will be described with reference to the accompanying drawings.
First, FIG. 1 shows a state where a side wall lightning protection mechanism is constructed on the surface of a side wall of an existing building B by applying the present invention. This side wall lightning protection mechanism is partly shown by a one-dot chain line circle in the figure. It is comprised from each member which showed.

即ち、この側壁雷保護機構は、線状導電体1(1a,1b,1c)と、3本の線状導電体1を同一平面上で接続する第1のT字型接続部材2(2a,2b)と、3本の線状導電体1を直交平面上で接続する第2のT字型接続部材3と、4本の線状導電体を同一平面上で接続する第1の十字型接続部材4と、4本の線状導電体を直交平面上で接続する第2の十字型接続部材5とから建築物の側壁の表面に、屋上側から所定高さまで線状導電体1を格子状に設置すると共に、大地への接地は、接続部を設けた屋上側のT字型接続部材6の、この接続部を介して建築物の屋上に配設された既存の接地用導電体7に接続して構成するものである。   That is, this side wall lightning protection mechanism includes a first T-shaped connection member 2 (2a, 1a, 1b, 1c) that connects the three linear conductors 1 on the same plane. 2b), the second T-shaped connecting member 3 that connects the three linear conductors 1 on an orthogonal plane, and the first cross-shaped connection that connects the four linear conductors on the same plane. From the member 4 and the second cross-shaped connecting member 5 that connects the four linear conductors on an orthogonal plane, the linear conductors 1 are arranged in a lattice pattern from the roof to the predetermined height on the surface of the side wall of the building. The grounding conductor is grounded to the existing grounding conductor 7 disposed on the roof of the building via the connecting portion of the T-shaped connecting member 6 on the roof side provided with the connecting portion. Connect and configure.

図2は建築物Bの側壁の平面部に配置する金属体による線状導電体1a,1bの例を示すもので、(a)は丸棒状、(b)は角棒状、(c)は帯板状である。尚、図においては、符号1aにより縦方向に配置する線状導電体、1bにより横方向に配置する線状導電体を示しているが、これらは相互に使用可能である。   FIG. 2 shows an example of the linear conductors 1a and 1b made of metal disposed on the flat portion of the side wall of the building B. (a) is a round bar, (b) is a square bar, and (c) is a belt. It is plate-shaped. In the drawing, the linear conductors arranged in the vertical direction are denoted by reference numeral 1a, and the linear conductors arranged in the horizontal direction are denoted by 1b, but these can be used mutually.

また図3は建築物Bの側壁の角部に配置する金属体による線状導電体1cの例を示すもので、この線状導電体1cは建築物Bの角部仕上げ材を包み込むような形状、即ち(a)は断面L形状、(c)は断面円弧状に形成している。   FIG. 3 shows an example of a linear conductor 1c made of a metal body arranged at the corner of the side wall of the building B. The linear conductor 1c is shaped so as to wrap the corner finishing material of the building B. That is, (a) is formed in a cross-sectional L shape, and (c) is formed in a cross-sectional arc shape.

また図4は建築物Bの側壁の平面部に配置する金属体による線状導電体1a,1bの一部に使用する伸縮可能な線状導電体であり、(a)では帯板状の一対の金属体8間に編組9を接続して伸縮可能に構成している。また(b)では一対の帯板状の金属体8を、長溝10と、これに移動可能に係合するねじ11とにより接続して伸縮可能に構成している。   FIG. 4 shows a stretchable linear conductor used for a part of the linear conductors 1a and 1b made of a metal body disposed on the flat portion of the side wall of the building B. In FIG. A braid 9 is connected between the metal bodies 8 so as to be stretchable. In (b), a pair of band-like metal bodies 8 are connected to each other by a long groove 10 and a screw 11 movably engaged with the long groove 10 so as to be stretchable.

次に図5は、3本の線状導電体1を同一平面上で接続する第1のT字型接続部材2の中、格子状の最も下側に位置する第1のT字型接続部材2bの例を記すものである。この第1のT字型接続部材2bでは、これと3本の線状導電体1b,1c及び側壁の表面に同一平面上に配置するために、各接続腕部12の先端に段部13を形成しており、この段部13に取付穴14を形成している。このような構成において、この第1のT字型接続部材2bにより接続する線状導電体1a,1bの先端側に上記取付穴14に対応する取付穴(図示省略)を形成し、後述するように、段部13の取付穴14から線状導電体1a,1bに形成した取付穴にアンカーボルト等を嵌合し、その先端を建築物の壁面に螺合することにより、3本の線状導電体1を第1のT字型接続部材2bにより接続すると同時に、これらを建築物Bの壁面に固定することができる。尚、第1のT字型接続部材2bは上下逆に配置することにより、屋上側の第1のT字型接続部材2aとして使用することができる。   Next, FIG. 5 shows a first T-shaped connecting member positioned at the lowest side of the lattice in the first T-shaped connecting member 2 that connects the three linear conductors 1 on the same plane. This is an example of 2b. In the first T-shaped connecting member 2b, the stepped portion 13 is provided at the tip of each connecting arm portion 12 in order to arrange it on the surface of the three linear conductors 1b and 1c and the side wall on the same plane. The mounting hole 14 is formed in the step portion 13. In such a configuration, a mounting hole (not shown) corresponding to the mounting hole 14 is formed on the distal end side of the linear conductors 1a and 1b connected by the first T-shaped connecting member 2b, which will be described later. Next, by fitting anchor bolts or the like into the mounting holes formed in the linear conductors 1a and 1b from the mounting holes 14 of the stepped portion 13, and screwing the tips of the anchor bolts to the wall surface of the building, At the same time that the conductor 1 is connected by the first T-shaped connecting member 2b, these can be fixed to the wall surface of the building B. In addition, the 1st T-shaped connection member 2b can be used as the 1st T-shaped connection member 2a of a rooftop by arrange | positioning upside down.

次に図6は3本の線状導電体1を直交平面上で接続する第2のT字型接続部材3の例を示すもので、この第2のT字型接続部材3は建築物Bの側壁の角部に配置するものである。この第2のT字型接続部材3は、直交平面上に配置する線状導電体1b,1bに対応して、直交して突出する接続腕部を形成しており、また角部に対応する断面L形状の線状導電体1cに対応して断面L形状の接続腕部12を形成している。そして各接続腕部の先端には図5に示す例と同様に段部13を設け、この段部13に取付穴14を設けている。   Next, FIG. 6 shows an example of a second T-shaped connecting member 3 that connects three linear conductors 1 on an orthogonal plane, and this second T-shaped connecting member 3 is a building B. It arrange | positions at the corner | angular part of a side wall. The second T-shaped connecting member 3 forms a connecting arm portion projecting orthogonally corresponding to the linear conductors 1b, 1b arranged on the orthogonal plane, and also corresponds to the corner portion. A connecting arm portion 12 having an L-shaped cross section is formed corresponding to the linear conductor 1c having an L-shaped cross section. And the step part 13 is provided in the front-end | tip of each connection arm part similarly to the example shown in FIG. 5, and the attachment hole 14 is provided in this step part 13. As shown in FIG.

次に図7は4本の線状導電体1を同一平面上で接続する第1の十字型接続部材4の例を示すものであり、この第1の十字型接続部材4は建築物Bの側壁の平面部に配置するものである。この第1の十字型接続部材4は、同一平面上に十字状に接続筒部15を突出しており、この接続筒部15内に線状導電体1a,1bを嵌合して接続する構成である。この接続筒部15にも取付穴14を設けている。   Next, FIG. 7 shows an example of a first cross-shaped connecting member 4 that connects four linear conductors 1 on the same plane. It arrange | positions in the plane part of a side wall. The first cross-shaped connecting member 4 has a configuration in which a connecting tube portion 15 protrudes in a cross shape on the same plane, and the linear conductors 1a and 1b are fitted and connected in the connecting tube portion 15. is there. The connection tube portion 15 is also provided with a mounting hole 14.

次に図8は4本の線状導電体1を直交平面上で接続する第2の十字型接続部材5の例を示すものであり、この第2の十字型接続部材5は建築物Bの側壁の角部に配置するものである。この第2のT字型接続部材3は、直交平面上に配置する横方向の線状導電体1b,1bに対応して、直交して突出する接続腕部12を形成しており、また角部に対応する断面L形状の線状導電体1c,1cに対応して断面L形状の接続腕部12を形成している。そして各接続腕部12の先端には図5に示す例と同様に段部13を設け、段部13に取付穴14を設けている。   Next, FIG. 8 shows an example of a second cruciform connection member 5 that connects four linear conductors 1 on an orthogonal plane. It is arranged at the corner of the side wall. The second T-shaped connecting member 3 forms connecting arm portions 12 projecting orthogonally corresponding to the linear conductors 1b, 1b arranged in the orthogonal plane in the orthogonal direction. A connecting arm portion 12 having an L-shaped cross section is formed corresponding to the linear conductors 1c, 1c having an L-shaped cross section corresponding to the portion. And the step part 13 is provided in the front-end | tip of each connection arm part 12 similarly to the example shown in FIG.

この図8には(a)のB方向の矢視、C方向の矢視に対応する(b)、(c)の断面図により、第2の十字型接続部材5における線状導電体1の具体的接続例を記載している。即ち、図8に示すように、第2の十字型接続部材5の各接続腕部12の段部13に形成している取付穴14から線状導電体1a,1bに形成した取付穴16にアンカーボルト17等を嵌合し、その先端を建築物Bの壁面18に螺合することにより、4本の線状導電体1を第2の十字型接続部材5により接続すると同時に、これらを建築物Bの壁面18に固定することができる。   FIG. 8 is a cross-sectional view of (b) and (c) corresponding to the arrow in the B direction and the arrow in the C direction of (a), and shows the linear conductor 1 in the second cross-shaped connecting member 5. A specific connection example is described. That is, as shown in FIG. 8, from the mounting hole 14 formed in the step portion 13 of each connecting arm portion 12 of the second cross-shaped connecting member 5 to the mounting hole 16 formed in the linear conductors 1a and 1b. By fitting the anchor bolts 17 and the like and screwing the tips of the anchor bolts 17 to the wall surface 18 of the building B, the four linear conductors 1 are connected by the second cross-shaped connecting member 5 and are simultaneously constructed. It can be fixed to the wall surface 18 of the object B.

上述したとおり、このような接続方法は、上述した構成や、後述する構成にも適用できるものである。   As described above, such a connection method can be applied to the above-described configuration and the configuration described later.

次に図9は屋上側のT字型接続部材6の例を示すものであり、このT字型接続部材6は上記第1のT字型接続部材2(2a,2b)と同様な基本的な構成に加えて、建築物Bの屋上に配設された既存の接地用導電体7への接続部19を設けている。この接続部19は、既存の接地用導電体7に接続可能であれば、適宜の構成で良く、この際、既存の接地用導電体7は、そのまま接続可能としたり、切断して接続可能とする等、適宜である。尚、符号20は屋上パラペットを示すものである。   Next, FIG. 9 shows an example of the T-shaped connecting member 6 on the roof side. This T-shaped connecting member 6 is basically the same as the first T-shaped connecting member 2 (2a, 2b). In addition to this configuration, a connection 19 to the existing grounding conductor 7 provided on the roof of the building B is provided. The connecting portion 19 may have an appropriate configuration as long as it can be connected to the existing grounding conductor 7. At this time, the existing grounding conductor 7 can be connected as it is or can be disconnected and connected. And so on. Reference numeral 20 denotes a roof parapet.

次に図10、図11は屋上側における既存の接地用導電体7の接続機構の他例を示すものである。この例では、屋上パラペット20の横方向の角部に、第1のT字型接続部材2aにより、一対の断面L形状の線状導電体1cを直線状に接続すると共に帯板状の線状導電体1aを直交して支持する構成としている。このため第1のT字型接続部材2aは、上記断面L形状の線状導電体1cに対応して断面L形状として、屋上パラペット20の上面対応部分21に取付穴22を形成し、この取付穴22を通して屋上パラペット20にアンカーボルト17を打ち込んで第1のT字型接続部材2aを固定する構成としている。そしてこのように第1のT字型接続部材2aを屋上パラペット20に固定する際、図11に示すように、接続用導電体23の一端側を固定し、そしてその他端側を既存の接地用打込金物24にボルト25により接続して電気的接続を行う。   Next, FIGS. 10 and 11 show another example of the connection mechanism of the existing grounding conductor 7 on the roof side. In this example, a pair of L-shaped linear conductors 1c are linearly connected to the corners in the lateral direction of the roof parapet 20 by the first T-shaped connecting member 2a, and a strip-shaped linear shape is used. It is set as the structure which supports the conductor 1a orthogonally. For this reason, the first T-shaped connecting member 2a has an L-shaped section corresponding to the linear conductor 1c having the L-shaped section, and a mounting hole 22 is formed in the upper surface corresponding portion 21 of the roof parapet 20. An anchor bolt 17 is driven into the roof parapet 20 through the hole 22 to fix the first T-shaped connecting member 2a. When the first T-shaped connecting member 2a is fixed to the rooftop parapet 20 in this way, as shown in FIG. 11, one end side of the connecting conductor 23 is fixed, and the other end side is used for the existing grounding. Electrical connection is made by connecting to the driving hardware 24 with bolts 25.

この構成において、接続用導電体23は、金属棒体、フラットバー、又は鬼撚硬銅線を両端圧着端子処理したジャンパー線等の構成とすることができる。   In this configuration, the connecting conductor 23 can be configured as a metal rod, a flat bar, or a jumper wire or the like obtained by treating both ends with crimped terminals.

以上に説明した実施例では、格子状の線状導電体1(1a,1b,1c,…)及びそれらの接続部材3,4,5,6が受雷部導電体となるが、これらの接続部材3,4,5,6に棒状導電体の取り付け部を設ければ、この取り付け部により棒状導電体を突設して、この棒状導電体を受雷部導電体とすることができる。   In the embodiment described above, the grid-like linear conductors 1 (1a, 1b, 1c,...) And their connecting members 3, 4, 5, 6 are lightning-receiving conductors. If the member 3, 4, 5, 6 is provided with a rod-shaped conductor mounting portion, the rod-shaped conductor can be projected by this mounting portion, and this rod-shaped conductor can be used as a lightning-receiving portion conductor.

図12、図13はその一例を示すもので、この例は、上記第1の十字型接続部材3に雌ねじ部26を形成し、この雌ねじ部26に棒状導電体27に形成した雄ねじ部28を螺合して取り付ける構成である。この例の第1の十字型接続部材3自体は、図7の構成とは異なり、4本の線状導電体1a,1bを同一平面上に配置するために、十字状に接続腕部12を突設すると共に、それらの先端に段部13を形成し、この段部13に取付穴14を形成した構成である。   FIGS. 12 and 13 show an example. In this example, a female thread portion 26 is formed on the first cross-shaped connecting member 3, and a male thread portion 28 formed on a rod-shaped conductor 27 is formed on the female thread portion 26. It is the structure attached by screwing. The first cross-shaped connecting member 3 itself in this example is different from the configuration of FIG. 7 in order to arrange the four linear conductors 1a and 1b on the same plane. In addition to projecting, a stepped portion 13 is formed at the front end thereof, and a mounting hole 14 is formed in the stepped portion 13.

図14は、他の例を示すもので、この例は、前例と同様に、雌雄ねじ部の螺合により棒状導電体27を第1の十字型接続部材3に取り付けるものであるが、この例では前例とは異なり、4本の線状導電体1a,1bを同一平面上に配置するために、十字状に挟持腕部29を突設すると共に、それらの先端に上記と同様に取付穴14を形成した構成である。   FIG. 14 shows another example. In this example, as in the previous example, the rod-shaped conductor 27 is attached to the first cross-shaped connecting member 3 by screwing the male and female screw portions. However, unlike the previous example, in order to arrange the four linear conductors 1a and 1b on the same plane, the holding arm portion 29 is projected in a cross shape, and the mounting holes 14 are formed at the tips thereof in the same manner as described above. It is the structure which formed.

本発明は以上のとおり、本発明では、線状導電体と、3本の線状導電体を同一平面上で接続する第1のT字型接続部材と、3本の線状導電体を直交平面上で接続する第2のT字型接続部材と、4本の線状導電体を同一平面上で接続する第1の十字型接続部材と、4本の線状導電体を直交平面上で接続する第2の十字型接続部材とから建築物の側壁の表面に、屋上側から所定高さまで線状導電体を格子状に設置することができ、また大地への接地は、屋上側のT字型接続部材に設けた接続部を建築物の屋上に配設された既存の接地用導電体に接続すれば良いので、既存外壁表層板を貫通し、接地に供するアンカーボルトの設置等の工事を必要とせずに、既存の建築物の側壁部に、簡単な工事で容易に側壁雷保護機構を構成することができることにより利用可能性が極めて高いものである。   As described above, according to the present invention, the linear conductor, the first T-shaped connecting member that connects the three linear conductors on the same plane, and the three linear conductors are orthogonal to each other. A second T-shaped connecting member that connects on a plane, a first cross-shaped connecting member that connects four linear conductors on the same plane, and four linear conductors on an orthogonal plane A linear conductor can be installed in a grid pattern from the roof top to a predetermined height on the surface of the side wall of the building from the second cross-shaped connecting member to be connected. Since it is only necessary to connect the connecting part provided on the letter-shaped connecting member to the existing grounding conductor arranged on the roof of the building, construction such as installation of anchor bolts that penetrate the existing outer wall surface plate and provide grounding The side wall lightning protection mechanism can be easily configured with simple construction on the side wall of an existing building without the need for More availability is extremely high.

格子状の線状導電体を受雷部導電体とすることができる他、T字型接続部材又は十字型接続部材に棒状導電体の取り付け部を設ければ、この取り付け部により棒状導電体を突設して、この棒状導電体を受雷部導電体とすることもできる。   In addition to the grid-shaped linear conductors being lightning-receiving conductors, if a T-shaped connecting member or a cross-shaped connecting member is provided with a rod-shaped conductor mounting portion, the mounting portion allows the rod-shaped conductor to be By projecting, this rod-shaped conductor can be used as a lightning conductor.

一方、線状導電体の一部を伸縮可能な構成とすれば、熱による伸縮を吸収することができる。   On the other hand, if a part of the linear conductor is configured to be able to expand and contract, the expansion and contraction due to heat can be absorbed.

本発明を適用して既存の建築物の側壁の表面に側壁雷保護機構を構成した状態を示す斜視図である。It is a perspective view which shows the state which applied the present invention and comprised the side wall lightning protection mechanism on the surface of the side wall of the existing building. 線状導電体の例を示す斜視図である。It is a perspective view which shows the example of a linear conductor. 線状導電体の他の例を示す斜視図である。It is a perspective view which shows the other example of a linear conductor. 線状導電体の更に他の例を示す斜視図である。It is a perspective view which shows another example of a linear conductor. 第1のT字型接続部材の例を示す斜視図である。It is a perspective view which shows the example of a 1st T-shaped connection member. 第2のT字型接続部材の例を示す斜視図である。It is a perspective view which shows the example of a 2nd T-shaped connection member. 第1の十字型接続部材の例を示す斜視図である。It is a perspective view which shows the example of a 1st cross-shaped connection member. 第2の十字型接続部材の例を示す斜視図と断面図である。It is the perspective view and sectional drawing which show the example of the 2nd cross-shaped connection member. 屋上側のT字型接続部材の例を示す斜視図である。It is a perspective view which shows the example of the T-shaped connection member of a roof side. 屋上側における既存の接地用導電体との接続機構を構成する要素の他例を示す斜視図である。It is a perspective view which shows the other example of the element which comprises a connection mechanism with the existing conductor for grounding in a roof side. 図10の構成要素を用いた、屋上側における既存の接地用導電体との接続機構を示す断面図である。It is sectional drawing which shows the connection mechanism with the existing conductor for grounding on the roof side using the component of FIG. 棒状導電体を取付可能とした接続部材の例を示す斜視図である。It is a perspective view which shows the example of the connection member which enabled attachment of a rod-shaped conductor. 図12の接続部材に棒状導電体を取付けた状態の斜視図である。It is a perspective view of the state which attached the rod-shaped conductor to the connection member of FIG. 棒状導電体を取付けた接続部材の他の例を示す斜視図である。It is a perspective view which shows the other example of the connection member which attached the rod-shaped conductor.

符号の説明Explanation of symbols

1(1a,1b,1c,…) 線状導電体
2(2a,2b,…) 第1のT字型接続部材
3 第2のT字型接続部材
4 第1の十字型接続部材
5 第2の十字型接続部材
6 屋上側T字型接続部材
7 既存の接地用導電体
8 金属体(帯板状)
9 編組
10 長溝
11 ねじ
12 接続腕部
13 段部
14 取付穴
15 接続筒部
16 取付穴
17 アンカーボルト等
18 壁面
19 接続部
20 屋上パラペット
21 上面対応部分
22 取付穴
23 接続用導電体
24 接地用打込金物
25 ボルト
26 雌ねじ部
27 棒状導電体
28 雄ねじ部
29 挟持腕部
1 (1a, 1b, 1c,...) Linear conductor 2 (2a, 2b,...) First T-shaped connecting member 3 Second T-shaped connecting member 4 First cross-shaped connecting member 5 Second Cross-shaped connecting member 6 Roof side T-shaped connecting member 7 Existing conductor for grounding 8 Metal body (band-like)
9 Braid 10 Long groove 11 Screw 12 Connection arm portion 13 Step portion 14 Mounting hole 15 Connection cylinder portion 16 Mounting hole 17 Anchor bolt, etc. 18 Wall surface 19 Connection portion 20 Roof parapet 21 Upper surface corresponding portion 22 Mounting hole 23 Connecting conductor 24 For grounding Driving hardware 25 Bolt 26 Female thread part 27 Bar-shaped conductor 28 Male thread part 29 Clamping arm part

Claims (3)

線状導電体と、3本の線状導電体を同一平面上で接続するための接続腕部を設けた第1のT字型接続部材と、3本の線状導電体を直交平面上で接続するための接続腕部を設けた第2のT字型接続部材と、4本の線状導電体を同一平面上で接続するための接続腕部を設けた第1の十字型接続部材と、4本の線状導電体を直交平面上で接続するための接続腕部を設けた第2の十字型接続部材を側壁雷保護機構の要素とし、前記各接続部材の前記接続腕部の先端側と、前記線状導電体の先端側には取付穴を形成し、これらの取付穴を対応させた状態で壁面取付用のアンカーボルトを嵌合することにより、前記各接続部材と前記線状導電体を接続すると同時に、既存の建築物の側壁の表面に、屋上側から所定高さまで線状導電体を格子状に設置する構成とし、屋上側に配置したT字型接続部材に前記建築物の屋上に配設された既存の接地用導電体への接続部を構成したことを特徴とする既存建築物における側壁雷保護機構 A first T-shaped connecting member provided with a connecting arm for connecting the linear conductor and the three linear conductors on the same plane, and the three linear conductors on an orthogonal plane a second T-shaped connecting member provided with connection arm portions for connecting a first cross connecting member provided with connection arm portions for connecting the four linear conductors on the same plane A second cross-shaped connecting member provided with a connecting arm portion for connecting four linear conductors on an orthogonal plane is used as an element of the side wall lightning protection mechanism, and the tip of the connecting arm portion of each connecting member Side and the tip end side of the linear conductor are formed with mounting holes, and by fitting anchor bolts for wall mounting in a state in which these mounting holes correspond to each other, the connecting members and the linear at the same time to connect the conductors, configured to be installed on the surface of the side wall of the existing building, a linear conductor from the roof side to a predetermined height in a grid pattern And then, the side wall lightning protection mechanism in existing buildings, characterized in that to constitute a connection to the existing grounding conductor disposed on the roof of the T-shaped connecting member to the building disposed on the roof side. T字型接続部材又は十字型接続部材に、それらの接続腕部が配置される平面に対して直角方向に棒状導電体を突設するための取り付け部を設けたことを特徴とする請求項1に記載の既存建築物における側壁雷保護機構 2. A T-shaped connecting member or a cross-shaped connecting member is provided with a mounting portion for projecting a rod-shaped conductor in a direction perpendicular to a plane on which the connecting arm portions are arranged. Sidewall lightning protection mechanism for existing buildings described in 1 . 線状導電体の一部を伸縮可能な構成としたことを特徴とする請求項1に記載の既存建築物における側壁雷保護機構 The side lightning protection mechanism for an existing building according to claim 1, wherein a part of the linear conductor is extendable and contractible .
JP2004192003A 2004-06-29 2004-06-29 Sidewall lightning protection mechanism in existing buildings Expired - Fee Related JP4632408B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004192003A JP4632408B2 (en) 2004-06-29 2004-06-29 Sidewall lightning protection mechanism in existing buildings

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004192003A JP4632408B2 (en) 2004-06-29 2004-06-29 Sidewall lightning protection mechanism in existing buildings

Publications (2)

Publication Number Publication Date
JP2006014567A JP2006014567A (en) 2006-01-12
JP4632408B2 true JP4632408B2 (en) 2011-02-16

Family

ID=35781118

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2004192003A Expired - Fee Related JP4632408B2 (en) 2004-06-29 2004-06-29 Sidewall lightning protection mechanism in existing buildings

Country Status (1)

Country Link
JP (1) JP4632408B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101022142B1 (en) 2009-06-15 2011-03-17 조인현 Lighting rod for side-thunderbolt
JP6507570B2 (en) * 2014-10-30 2019-05-08 株式会社Ihi Tank pull-down conductor

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5293945A (en) * 1976-02-02 1977-08-08 Toyo Bearing Mfg Co Thunder arresting method
JPS57140451A (en) * 1981-02-21 1982-08-31 Hisashi Ikushima Assembling of iron skeletal structure
JPS593729U (en) * 1982-06-28 1984-01-11 大阪避雷針工業株式会社 Expansion and contraction absorption structure of lightning conductor
JPH08163761A (en) * 1994-11-30 1996-06-21 Osaka Hiraishin Kogyo Kk Lightning prevention and device thereof

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5293945A (en) * 1976-02-02 1977-08-08 Toyo Bearing Mfg Co Thunder arresting method
JPS57140451A (en) * 1981-02-21 1982-08-31 Hisashi Ikushima Assembling of iron skeletal structure
JPS593729U (en) * 1982-06-28 1984-01-11 大阪避雷針工業株式会社 Expansion and contraction absorption structure of lightning conductor
JPH08163761A (en) * 1994-11-30 1996-06-21 Osaka Hiraishin Kogyo Kk Lightning prevention and device thereof

Also Published As

Publication number Publication date
JP2006014567A (en) 2006-01-12

Similar Documents

Publication Publication Date Title
JP5172039B2 (en) Mounting method for mounting
JP6046302B1 (en) Stiffening fixtures and concrete structure peeling prevention structure
JP4632408B2 (en) Sidewall lightning protection mechanism in existing buildings
KR101798342B1 (en) Lighting rod for side thunderbolt having an improved mounting structure
JP2011174301A (en) Method for ensuring safety of work on roof and mounting tool for safety measures used therefor
JP5105151B2 (en) Lightning protection equipment for building side walls
JP3251928B2 (en) Lightning protection method for the outer wall side of high-rise building.
JP3197136U (en) Solar panel for snow-free roof
JP4188285B2 (en) Sidewall lightning protection mechanism in glass facade buildings
JP4083110B2 (en) Side wall lightning protection outer wall unit and side wall lightning protection mechanism in buildings
JP4350601B2 (en) Side wall lightning protection outer wall unit in building
KR101057833B1 (en) Waterproofing device of building wall with exterior material
KR102077845B1 (en) Deck and deck constructing method
KR101719128B1 (en) Earthquake-proof type cable tray and duct system of wire base for earthquake-proof design
JP3111387U (en) Vertical lightning section in high-rise building
CN214884686U (en) Mounting structure of grid
JP3178836U (en) Connecting device for height installation members
JP5789169B2 (en) Joint structure and method for forming joint structure
JP2007005194A (en) Side face lightning arrester system, and installation method of side face lightning arrester system
JP4121482B2 (en) Sidewall lightning protection mechanism in buildings
JP2004265791A (en) Flexible terminal
JP6824634B2 (en) Louver device with solar cell
JP2007218033A (en) Continuous roof holding implement and its mounting structure
JP2017145607A (en) Strut mounting structure of wooden flat roof
JPH08163761A (en) Lightning prevention and device thereof

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20070508

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20100201

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20100401

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20101115

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20101115

R150 Certificate of patent or registration of utility model

Ref document number: 4632408

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20131126

Year of fee payment: 3

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

LAPS Cancellation because of no payment of annual fees