JP2016084637A - Scaffold for roof, and installation structure for the same - Google Patents

Scaffold for roof, and installation structure for the same Download PDF

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JP2016084637A
JP2016084637A JP2014218665A JP2014218665A JP2016084637A JP 2016084637 A JP2016084637 A JP 2016084637A JP 2014218665 A JP2014218665 A JP 2014218665A JP 2014218665 A JP2014218665 A JP 2014218665A JP 2016084637 A JP2016084637 A JP 2016084637A
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solar energy
roof
energy collection
panel
eaves
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JP6343414B2 (en
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宏俊 岡崎
Hirotoshi Okazaki
宏俊 岡崎
安部 和広
Kazuhiro Abe
和広 安部
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EVER-SHOUKAI CO Ltd
Sekisui Chemical Co Ltd
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EVER-SHOUKAI CO Ltd
Sekisui Chemical Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/10Photovoltaic [PV]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Photovoltaic Devices (AREA)

Abstract

PROBLEM TO BE SOLVED: To prevent a scaffold for a roof, which is installed on a solar energy collection panel, from being scattered by a wind force.SOLUTION: A scaffold 10 for a roof, which is installed on a solar energy collection panel 200 fixed onto the sloped roof 101, includes a scattering prevention fitting 50 that is connected to a scaffold body 20 by a cord-like sway brace 60. The scattering prevention fitting 50 has a holding part 51 and a plate-like head 52 connected together by a shaft-like neck part 53.SELECTED DRAWING: Figure 5

Description

本発明は、太陽電池モジュール、太陽熱温水器等の太陽エネルギー収集パネルが固定された勾配屋根の上に設置される屋根用足場及びその設置構造に関する。   The present invention relates to a roof scaffold installed on a sloped roof to which a solar energy collecting panel such as a solar cell module and a solar water heater is fixed, and an installation structure thereof.

太陽エネルギー収集パネルは、太陽光を電力に変換する等の機能を有し、太陽光を受光するために勾配屋根に固定される。この太陽エネルギー収集パネルは天候の変化、塵埃や飛来物の影響を受け、パネル本体における受光面の透明性を損なわせて発電出力等を低下したり、損傷や故障を生ずるおそれがある。従って、太陽エネルギー収集パネルは清掃、修理等のメンテナンスが必要とされる。   The solar energy collection panel has functions such as converting sunlight into electric power, and is fixed to the sloped roof to receive sunlight. This solar energy collection panel is affected by changes in weather, dust and flying objects, and there is a risk that the transparency of the light receiving surface of the panel body will be impaired to reduce the power generation output, etc., or cause damage or failure. Therefore, maintenance such as cleaning and repair is required for the solar energy collecting panel.

このため、太陽エネルギー収集パネルが固定された屋根の上では、屋根自体のメンテナンスと、太陽エネルギー収集パネルのメンテナンスを行なうために、作業者のための特許文献1に記載の如くの屋根用足場が該太陽エネルギー収集パネルの上に設置されて用いられる。   For this reason, on the roof to which the solar energy collecting panel is fixed, a roof scaffolding as described in Patent Document 1 for an operator is provided for maintenance of the roof itself and maintenance of the solar energy collecting panel. It is used by being installed on the solar energy collection panel.

このとき、太陽エネルギー収集パネルは、パネル本体と該パネル本体の対向する少なくとも2辺に設けられる左右のフレームを有する。そして、屋根用足場は、太陽エネルギー収集パネルのパネル本体に対向して配置される天面部と、天面部の左右両側で該天面部から垂下される左右の側部と、左右の側部の下端に配置されて太陽エネルギー収集パネルの左右のフレームの上に載置される左右の載置部と、左右の側部の下端に配置されて上記左右のフレームの側面に係合する左右の係合部とを備える。   At this time, the solar energy collection panel has a panel body and left and right frames provided on at least two sides of the panel body facing each other. The roof scaffold includes a top surface portion disposed opposite to the panel body of the solar energy collecting panel, left and right side portions depending on the left and right sides of the top surface portion, and lower ends of the left and right side portions. The left and right placement parts placed on the left and right frames of the solar energy collecting panel and the left and right engagements arranged at the lower ends of the left and right side parts and engaged with the side surfaces of the left and right frames A part.

これにより、屋根用足場は、勾配屋根に固定された太陽エネルギー収集パネルの左右のフレームの上に載置部を載置する状態で、左右の係合部を太陽エネルギー収集パネルの勾配方向に沿う左右のフレームの側面に係合し、太陽エネルギー収集パネルに対してパネル本体から上方に離れた位置に天面部を配置することができる。作業者は、太陽エネルギー収集パネルのパネル本体に影響を与えることなく、各種の作業を天面部の上で容易に、効率良く行なうことができる。   As a result, the roof scaffold is placed in the state where the mounting portions are mounted on the left and right frames of the solar energy collection panel fixed to the sloped roof, and the left and right engaging portions are aligned along the gradient direction of the solar energy collection panel. The top surface portion can be disposed at a position that is engaged with the side surfaces of the left and right frames and is away from the panel main body with respect to the solar energy collection panel. The operator can easily and efficiently perform various operations on the top surface without affecting the panel body of the solar energy collection panel.

特開2014-1560号公報Japanese Unexamined Patent Publication No. 2014-1560

特許文献1に記載の屋根用足場は、太陽エネルギー収集パネルの左右のフレームの上に載置部を載置する状態で、左右の係合部を太陽エネルギー収集パネルの勾配方向に沿う左右のフレームの側面に単に係合して使用されるものであり、太陽エネルギー収集パネルが固定された屋根の上で簡易に取外して位置替えできるものの、突風等の風の吹き上げ力により持ち上げられ、吹飛ばされて周辺に飛散するおそれがある。   The roof scaffold described in Patent Document 1 has left and right frames that follow the gradient direction of the solar energy collection panel with the left and right engagement portions being placed on the left and right frames of the solar energy collection panel. The solar energy collection panel can be easily removed and repositioned on the fixed roof, but it is lifted and blown off by wind blowing force such as gusts. May splash around.

本発明の課題は、太陽エネルギー収集パネルの上に設置された屋根用足場の風力による飛散を防止することにある。   The subject of this invention is preventing the scattering by the wind force of the scaffold for roofs installed on the solar energy collection panel.

請求項1に係る発明は、勾配屋根の上に固定された太陽エネルギー収集パネルの上に設置される屋根用足場であって、足場本体に索状つなぎ材によりつながれた飛散防止金具を有し、飛散防止金具は、把持部と板状頭部とが軸状首部により連結されてなり、勾配屋根の勾配方向で相隣る軒側太陽エネルギー収集パネルの棟側端部と棟側太陽エネルギー収集パネルの軒側端部の間隙部に着脱自在にされ、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側端部及び棟側太陽エネルギー収集パネルの軒側端部を上下から挟み、それらの相隣る太陽エネルギー収集パネルに係止されるようにしたものである。   The invention according to claim 1 is a roof scaffolding installed on a solar energy collecting panel fixed on a sloped roof, having a scattering prevention metal fitting connected to the scaffold main body by a cord-like connecting material, The anti-scattering metal fitting has a gripping part and a plate-like head connected by a shaft-like neck part, and the ridge-side solar energy collection panel and the ridge-side solar energy collection panel adjacent to each other in the gradient direction of the sloped roof The eaves-side end portion is detachable, the grip portion is located above the gap portion, the axial neck portion is located in the gap portion, and the plate-like head portion is located below the gap portion. In the state, sandwich the ridge side end of the eaves side solar energy collection panel and the eave side end of the ridge side solar energy collection panel from above and below by the gripping part and the plate-shaped head that are rotated by a rotation operation applied to the gripping part, Locked to those adjacent solar energy collection panels In which was to so that.

請求項2に係る発明は、請求項1に係る発明において更に、前記太陽エネルギー収集パネルが、パネル本体と該パネル本体の対向する少なくとも2辺に設けられるフレームを有し、それらの2辺に設けられたフレームが勾配屋根の棟側と軒側に配置されて該勾配屋根の上に固定され、前記足場本体が、太陽エネルギー収集パネルのパネル本体との間に隙間を介する状態で、そのフレームの上面に載置され、足場本体の一端部に設けられた引っ掛け部が、該足場本体が載置された太陽エネルギー収集パネルの棟側のフレームの棟側を向く側面に係合するようにしたものである。   The invention according to claim 2 is the invention according to claim 1, wherein the solar energy collecting panel further includes a panel body and a frame provided on at least two sides of the panel body facing each other, and provided on these two sides. The frame is disposed on the ridge side and the eave side of the sloped roof and fixed on the sloped roof, and the scaffold body has a gap between the solar energy collection panel panel body and the frame body. A hook portion placed on the upper surface and provided at one end of the scaffold main body is engaged with a side surface of the solar energy collection panel on which the scaffold main body is placed facing the ridge side of the frame. It is.

請求項3に係る発明は、請求項2に係る発明において更に、前記飛散防止金具が、勾配屋根の勾配方向で相隣る軒側太陽エネルギー収集パネルの棟側のフレームと、棟側太陽エネルギー収集パネルの軒側のフレームの間隙部に着脱自在にされ、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側のフレーム及び棟側太陽エネルギー収集パネルの軒側のフレームを上下から挟むようにしたものである。   The invention according to claim 3 is the invention according to claim 2, wherein the anti-scattering metal fitting further comprises a frame on the ridge side of the eaves-side solar energy collection panel adjacent to each other in the gradient direction of the gradient roof, and a ridge-side solar energy collection. It is detachably attached to the gap portion of the frame on the eaves side of the panel, the grip portion is located above the gap portion, the axial neck portion is located in the gap portion, and the plate-like head portion is located under the gap portion In this state, the ridge-side frame of the eaves-side solar energy collection panel and the eaves-side frame of the ridge-side solar energy collection panel are sandwiched from above and below by the gripping portion and the plate-shaped head that are rotated by a rotation operation applied to the gripping portion. It is what I did.

請求項4に係る発明は、請求項1〜3のいずれかに係る発明において更に、前記足場本体が、太陽エネルギー収集パネルと概ね同一長をなす2個の縦材を平行に配置し、両縦材に跨って複数の踏板を設け、相隣る踏板の間に開口を設けたものである。   The invention according to claim 4 is the invention according to any one of claims 1 to 3, wherein the scaffold main body is arranged in parallel with two longitudinal members having substantially the same length as the solar energy collecting panel. A plurality of treads are provided across the material, and openings are provided between adjacent treads.

請求項5に係る発明は、請求項1〜4のいずれかに係る発明において更に、前記足場本体が、太陽エネルギー収集パネルと概ね同一長をなす2個のコ型断面の縦材のコ型凹部を向い合せて配置し、両縦材の両端部のそれぞれに接合される横桟を各縦材のコ型凹部に差し込み、前記引っ掛け部を両縦材の一端部の下面に架け渡すようにその下面に設けてなり、前記引っ掛け部と横桟との間で、各縦材のコ型断面の板厚が形成する隙間に、前記飛散防止金具が差し込み保管されるようにしたものである。   The invention according to claim 5 is the invention according to any one of claims 1 to 4, wherein the scaffold main body has two U-shaped cross-section vertical recesses having substantially the same length as the solar energy collecting panel. So that the crosspieces to be joined to both ends of both vertical members are inserted into the U-shaped recesses of each vertical member, and the hooking portion is bridged to the lower surface of one end portion of both vertical members. The anti-scattering metal fitting is inserted and stored in the gap formed by the thickness of the U-shaped cross section of each vertical member between the hook portion and the horizontal rail.

請求項6に係る発明は、請求項1に記載の屋根用足場が勾配屋根の勾配方向に複数並置されてなる屋根用足場の設置構造であって、軒側に設置される屋根用足場の引っ掛け部が、軒側太陽エネルギー収集パネルの棟側端部と棟側太陽エネルギー収集パネルの軒側端部の間隙部に差し込まれ、該軒側太陽エネルギー収集パネルの棟側端部の棟側を向く側面に係合してなるとともに、飛散防止金具が上記間隙部に差し込まれ、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側端部及び棟側太陽エネルギー収集パネルの軒側端部を上下から挟んでなるようにしたものである。   The invention according to claim 6 is an installation structure of a roof scaffold in which a plurality of the roof scaffolds according to claim 1 are juxtaposed in the gradient direction of the sloped roof, and the hook of the roof scaffolds installed on the eaves side Is inserted into the gap between the ridge side end of the eaves side solar energy collection panel and the eave side end of the ridge side solar energy collection panel and faces the ridge side of the ridge side end of the eaves side solar energy collection panel The anti-scattering metal fitting is inserted into the gap portion, the gripping portion is located above the gap portion, the shaft neck is located at the gap portion, and the plate is located below the gap portion. The ridge-side end of the eaves-side solar energy collection panel and the eaves-side end of the ridge-side solar energy collection panel by the gripping portion and the plate-shaped head that are rotated by a rotation operation applied to the gripping portion with the ridge-shaped head located The part is sandwiched from above and below.

(請求項1、3)
(a)屋根用足場の足場本体につながれた飛散防止金具が、勾配屋根の上で相隣る軒側と棟側の太陽エネルギー収集パネルに係止される。従って、屋根用足場は、突風等の風の吹き上げ力により持ち上げられても、飛散防止金具の存在により相隣る軒側と棟側の太陽エネルギー収集パネルに係止され続け、吹飛ばされて周辺に飛散することがない。
(Claims 1 and 3)
(a) The anti-scattering metal fittings connected to the scaffolding body of the roof scaffold are locked to the solar energy collection panels on the eaves side and the building side on the sloped roof. Therefore, even if the roof scaffolding is lifted by wind blowing force such as gusts of wind, the presence of the anti-scattering metal fittings keeps it locked to the adjacent eaves side and ridge side solar energy collection panels, and is blown away to the surroundings. Will not scatter.

(b)飛散防止金具は、相隣る軒側と棟側の太陽エネルギー収集パネルの間隙部に板状頭部の側を差し込み、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側端部及び棟側太陽エネルギー収集パネルの軒側端部を上下から挟むことにより、相隣る軒側と棟側の太陽エネルギー収集パネルに確実に係止される。屋根用足場の飛散防止手段が太陽エネルギー収集パネルにねじ止めされる等に比して、簡便である。   (b) The anti-scattering metal fitting is inserted into the gap between the adjacent eaves side and ridge side solar energy collection panels, the plate-like head side is inserted into the gap, and the grip is located above the gap. The eaves-side solar energy collection panel is constructed by the gripping portion and the plate-like head that are rotated by a rotation operation applied to the gripping portion in a state where the shaft-like neck portion is located and the plate-like head portion is located below the gap portion. By sandwiching the eaves side end of the side end and the ridge side solar energy collection panel from above and below, the solar energy collection panels on the eave side and the ridge side adjacent to each other are securely locked. Compared to the case where the roof scaffolding scattering prevention means is screwed to the solar energy collecting panel or the like.

(請求項2)
(c)屋根用足場は、足場本体の一端側に設けられた引っ掛け部を、該足場本体が載置された太陽エネルギー収集パネルの棟側のフレームの棟側を向く側面に係合することで、勾配屋根の上における滑落を防ぐものになる。
(Claim 2)
(c) The roof scaffold is formed by engaging a hook provided on one end side of the scaffold main body with the side facing the ridge side of the frame on the ridge side of the solar energy collecting panel on which the scaffold main body is placed. It will prevent sliding on the sloped roof.

足場本体の一端部に設けられた引っ掛け部が、太陽エネルギー収集パネルの棟側のフレームの棟側の一側面だけに係合するように設置すれば足り、設置作業性は簡易である。   It is sufficient to install the hook provided at one end of the scaffold body so as to engage with only one side of the ridge side frame of the solar energy collection panel, and the installation workability is simple.

足場本体の一端部に設けられた引っ掛け部は、太陽エネルギー収集パネルの棟側のフレームの棟側を向く側面に係合して滑落阻止され、他の滑落防止用部材の存在を必要とせず、設置構造は簡素になる。   The hook portion provided at one end of the scaffold body is engaged with the side facing the ridge side of the frame on the ridge side of the solar energy collection panel and is prevented from sliding down, and does not require the presence of other anti-sliding members, The installation structure is simplified.

(請求項4)
(d)屋根用足場が、相隣る踏板の間に開口を設けたから、突風等の風の吹き上げ力を上記開口から逃がすことにより、そのような吹き上げ力による持ち上がりを抑制し、ひいては周辺への飛散を一層防止できる。
(Claim 4)
(d) Since the roof scaffolding has an opening between the adjacent treads, the lifting force of the wind, such as a gust, is released from the opening to suppress the lifting due to such a blowing force. Spattering can be further prevented.

(請求項5)
(e)屋根用足場が、両縦材の両端部のそれぞれに接合される横桟を各縦材のコ型凹部に差し込み、前記引っ掛け部を両縦材の一端部の下面に架け渡すようにその下面に設けてなり、前記引っ掛け部と横桟との間で、各縦材のコ型断面の板厚が形成する隙間に、前記飛散防止金具が差し込み保管されるものとした。屋根用足場の移動時等に、足場本体と索状つなぎ材によりつながれた飛散防止金具が上記引っ掛け部と横桟との間の隙間に差し込み保管されるから、飛散防止金具が自由に揺れ動いて足場本体に当たって損傷を生じたり、異音を生ずることもない。
(Claim 5)
(e) The roof scaffold is inserted into the U-shaped concave portion of each vertical member with a horizontal beam to be joined to each of both ends of both vertical members, and the hook is bridged to the lower surface of one end portion of both vertical members. The anti-scattering metal fitting is inserted and stored in a gap formed between the hook portion and the cross rail and formed by the thickness of the U-shaped cross section of each vertical member. When the roof scaffolding is moved, the scattering prevention bracket connected by the scaffolding and the cord-like connecting material is inserted and stored in the gap between the hook and the side rail, so that the scattering prevention bracket can freely swing There is no damage or abnormal noise when hitting the body.

(請求項6)
(f)軒側に設置される屋根用足場の引っ掛け部が、軒側太陽エネルギー収集パネルの棟側のフレームと棟側太陽エネルギー収集パネルの軒側のフレームとの間隙部に差し込まれ、該軒側太陽エネルギー収集パネルの棟側のフレームの棟側を向く側面に係合するように設置される。また、各屋根用足場につながれた飛散防止金具が上記間隙部に差し込まれ、それらの相隣る軒側と棟側の太陽エネルギー収集パネルに係止される。これにより、複数の屋根用足場を勾配屋根の上に固定された複数の太陽エネルギー収集パネルの上でそれらの勾配方向に整然と並置し、かつ各屋根用足場の風力による飛散を防止できる。
(Claim 6)
(f) The hook of the roof scaffolding installed on the eaves side is inserted into the gap between the eaves side solar energy collection panel ridge side frame and the eaves side solar energy collection panel eave side frame, It is installed so as to engage with the side face of the side solar energy collection panel facing the ridge side of the wing side. In addition, the anti-scattering metal fittings connected to the roof scaffolds are inserted into the gaps and locked to the adjacent eaves side and ridge side solar energy collecting panels. Thereby, a plurality of roof scaffolds can be arranged in order on the plurality of solar energy collection panels fixed on the slope roof in the direction of the slopes, and scattering of the roof scaffolds by wind power can be prevented.

図1は勾配屋根の上に並置された複数の太陽エネルギー収集パネルを示す模式図である。FIG. 1 is a schematic diagram showing a plurality of solar energy collection panels juxtaposed on a sloped roof. 図2は太陽エネルギー収集パネルの上に設置された屋根用足場を示す模式図である。FIG. 2 is a schematic diagram showing a roof scaffold installed on a solar energy collecting panel. 図3は屋根用足場の引っ掛け部が相隣る太陽エネルギー収集パネルの間隙部に差し込まれた状態を示す模式図である。FIG. 3 is a schematic view showing a state in which the hooks of the roof scaffold are inserted into the gaps between adjacent solar energy collection panels. 図4は飛散防止金具が相隣る太陽エネルギー収集パネルの間隙部に差し込まれた状態を示す模式図である。FIG. 4 is a schematic view showing a state in which the anti-scattering metal fitting is inserted into the gap between adjacent solar energy collection panels. 図5は飛散防止金具が相隣る太陽エネルギー収集パネルの間隙部に差し込まれ、回転操作される状態を示す模式図である。FIG. 5 is a schematic view showing a state where the anti-scattering metal fitting is inserted into the gap between adjacent solar energy collection panels and rotated. 図6は屋根用足場を示す斜視図である。FIG. 6 is a perspective view showing a roof scaffold. 図7は屋根用足場を示す平面図である。FIG. 7 is a plan view showing a roof scaffold. 図8は屋根用足場を示す正面図である。FIG. 8 is a front view showing a roof scaffold. 図9は屋根用足場を示す側面図である。FIG. 9 is a side view showing a roof scaffold. 図10は飛散防止金具が屋根用足場の足場本体に設けた隙間に差し込み保管される状態を示す斜視図である。FIG. 10 is a perspective view showing a state in which the anti-scattering metal fitting is inserted and stored in a gap provided in the scaffold main body of the roof scaffold.

屋根用足場10は、図1、図2に示す如く、ユニット建物等の建物100の勾配屋根101の上に固定された太陽電池モジュールである太陽エネルギー収集パネル200の上に設置される。本実施例において、太陽エネルギー収集パネル200は、勾配屋根101の勾配方向(上下方向)に複数段、本実施例では上下5段をなして並置され、勾配屋根101の勾配方向に直交する方向(左右方向)に複数列、本実施例では例えば左右5列をなして並置され、結果として、全25個の太陽エネルギー収集パネル200が勾配屋根101の上に固定されている。   As shown in FIGS. 1 and 2, the roof scaffold 10 is installed on a solar energy collection panel 200 that is a solar cell module fixed on a gradient roof 101 of a building 100 such as a unit building. In the present embodiment, the solar energy collection panel 200 is arranged in a plurality of stages in the gradient direction (vertical direction) of the gradient roof 101, and in the present embodiment in five vertical levels, and is orthogonal to the gradient direction of the gradient roof 101 ( A plurality of solar energy collecting panels 200 are juxtaposed in a plurality of rows in the left and right direction, for example, 5 rows on the left and right sides in this embodiment. As a result, a total of 25 solar energy collecting panels 200 are fixed on the sloped roof 101.

太陽エネルギー収集パネル200は、平面視で矩形状とされるパネル本体201と、パネル本体201の外周の対向する少なくとも上下2辺、本実施例では全周の左右上下4辺に固定化されたフレーム202を有する。   The solar energy collecting panel 200 includes a panel body 201 that is rectangular in a plan view, and a frame that is fixed to at least two upper and lower sides facing the outer periphery of the panel body 201, in this embodiment, four left and right upper and lower sides of the entire circumference. 202.

太陽エネルギー収集パネル200は、不図示の固定具により勾配屋根101の上に固定される。本実施例において、太陽エネルギー収集パネル200は、勾配屋根101の勾配方向の棟側と軒側に位置することとなる棟側フレーム202Uと軒側フレーム202Dのそれぞれが、不図示の固定具を介して勾配屋根101の棟側と軒側に配置され、勾配屋根101の上に固定される。太陽エネルギー収集パネル200は、不図示の固定具により勾配屋根101の上に固定されたとき、勾配屋根101の上面との間に一定の間隔を介する。   The solar energy collection panel 200 is fixed on the sloped roof 101 by a fixture (not shown). In the present embodiment, the solar energy collection panel 200 has a ridge-side frame 202U and an eaves-side frame 202D, which are positioned on the ridge side and the eaves side in the gradient direction of the gradient roof 101, via fixtures (not shown). Are arranged on the ridge side and eave side of the sloped roof 101 and fixed on the sloped roof 101. When the solar energy collection panel 200 is fixed on the sloped roof 101 by a fixture (not shown), the solar energy collection panel 200 is spaced from the upper surface of the sloped roof 101 by a certain distance.

屋根用足場10は、図6に示す如く、足場本体20と引っ掛け部30とを有する。足場本体20は、太陽エネルギー収集パネル200のパネル本体201の上面201Eとの間に後述する隙間Gを介する状態で、そのフレーム202の上面202Eに載置される。引っ掛け部30は、足場本体20の一端部に設けられ、該足場本体20が載置された太陽エネルギー収集パネル200の棟側フレーム202Uの棟側を向く側面202Fに、棟側から係合する(図2)。   As shown in FIG. 6, the roof scaffold 10 includes a scaffold body 20 and a hook portion 30. The scaffold main body 20 is placed on the upper surface 202E of the frame 202 with a gap G described later between the solar energy collecting panel 200 and the upper surface 201E of the panel main body 201 of the solar energy collecting panel 200. The hook portion 30 is provided at one end of the scaffold main body 20 and engages with the side surface 202F facing the ridge side of the ridge side frame 202U of the solar energy collection panel 200 on which the scaffold main body 20 is placed from the ridge side ( Figure 2).

本実施例では、勾配屋根101の勾配方向に直交する方向において左右5列をなして並置されている各列で、勾配屋根101の勾配方向において上下5段をなして並置されている5個の太陽エネルギー収集パネル200のそれぞれに対し、各1個の屋根用足場10が設置される。作業者は、左右5列をなして並置されている太陽エネルギー収集パネル200の各列で、はしごを用いて勾配屋根101の軒先から最下段である1段目の太陽エネルギー収集パネル200の上に1段目となる屋根用足場10を設置し、1段目の屋根用足場10の上に乗って2段目の太陽エネルギー収集パネル200の上に2段目となる屋根用足場10を設置し、この繰り返しによって上下5段をなす全ての太陽エネルギー収集パネル200の上に各屋根用足場10を設置する。   In the present embodiment, five rows arranged side by side in five rows in the gradient direction of the gradient roof 101 in each row arranged in five rows on the left and right in the direction orthogonal to the gradient direction of the gradient roof 101. One roof scaffold 10 is installed for each solar energy collection panel 200. An operator uses each ladder of the solar energy collection panels 200 arranged side by side in five rows on the left and right sides of the eaves of the sloped roof 101 on the first stage solar energy collection panel 200 using the ladder. The first stage roof scaffolding 10 is installed, and the second stage roof scaffolding 10 is installed on the second stage solar energy collecting panel 200 on the first stage roof scaffolding 10. By repeating this, each roof scaffold 10 is installed on all the solar energy collecting panels 200 that form the upper and lower stages.

複数の屋根用足場10を、上述の如くに、勾配屋根101の勾配方向の棟側と軒側に配置されて該勾配屋根101の上に固定されている太陽エネルギー収集パネル200の上に並置するとき、軒側に設置される屋根用足場10の引っ掛け部30は以下の如くに配置される。即ち、軒側に設置される屋根用足場10の引っ掛け部30は、図3に示す如く、軒側の太陽エネルギー収集パネル200Lの棟側フレーム202Uと棟側の太陽エネルギー収集パネル200Hの軒側フレーム202Dとの間隙部Kに差し込まれ、該軒側の太陽エネルギー収集パネル200Lの棟側フレーム202Uの棟側を向く側面202Fに棟側から係合する。   As described above, the plurality of roof scaffolds 10 are juxtaposed on the solar energy collection panel 200 that is arranged on the ridge side and the eave side in the gradient direction of the gradient roof 101 and fixed on the gradient roof 101. The hook 30 of the roof scaffold 10 installed on the eave side is arranged as follows. That is, as shown in FIG. 3, the hook portion 30 of the roof scaffold 10 installed on the eaves side includes the ridge side frame 202U of the eaves side solar energy collection panel 200L and the eave side frame of the ridge side solar energy collection panel 200H. It is inserted into the gap K with 202D, and engages with the side surface 202F facing the ridge side of the ridge side frame 202U of the solar energy collection panel 200L on the eave side from the ridge side.

以下、屋根用足場10の詳細な構成について説明する(図3〜図10)。
屋根用足場10の足場本体20は、太陽エネルギー収集パネル200と概ね同一長をなす2個のコ型断面のアルミ型材からなる縦材21のコ型凹部21Aを向い合せて配置され、両縦材21、21の長手方向の両端部のそれぞれに接合される各1本のアルミ角パイプからなる横桟22の左右の端部を各縦材21のコ型凹部21Aに差し込んで構成される。横桟22は縦材21のコ型凹部21Aへの差し込み部で該縦材21に溶接される。
Hereinafter, the detailed structure of the scaffold 10 for roofs is demonstrated (FIGS. 3-10).
The scaffold main body 20 of the roof scaffold 10 is disposed so as to face the U-shaped concave portion 21A of the vertical member 21 made of two aluminum-shaped members having a substantially U-shaped cross section, which is substantially the same length as the solar energy collecting panel 200. The left and right end portions of the horizontal rail 22 made of one aluminum square pipe joined to each of both end portions in the longitudinal direction of 21 and 21 are inserted into the U-shaped concave portions 21 </ b> A of the vertical members 21. The horizontal bar 22 is welded to the vertical member 21 at the insertion portion of the vertical member 21 into the U-shaped recess 21A.

足場本体20は、各縦材21、21の中間部の複数位置のそれぞれに溶接される広幅アルミ平板材からなる平板状踏板23の左右の端部を、各縦材21のコ型凹部21Aに差し込み、縦材21のコ型凹部21Aへの差し込み部で該縦材21に溶接して構成される。両縦材21、21の中間部の平板状踏板23が接合されない複数位置のそれぞれに接合されるアルミ等辺アングルからなる山型断面の山形踏板24の左右の端部が、各縦材21の中間部の上面に溶接される。山形踏板24は、二等辺アングルの山型断面の両端部を各縦材21の中間部の上面に載せて溶接され、両縦材21、21の上面から山型をなすように突出する(図6、図8)。   The scaffold main body 20 has left and right end portions of a flat tread 23 made of a wide aluminum flat plate welded to each of a plurality of positions in the middle of each vertical member 21, 21 as a U-shaped recess 21 A of each vertical member 21. The vertical member 21 is welded to the vertical member 21 at the insertion portion into the U-shaped recess 21A. The left and right ends of the chevron shaped cross-shaped chevron treads 24 made of aluminum equilateral angles joined to each of a plurality of positions where the flat treads 23 in the middle of the longitudinal members 21 and 21 are not joined are the middles of the longitudinal members 21. Welded to the upper surface of the part. The chevron tread 24 is welded with both ends of an isosceles angle chevron cross section placed on the upper surface of the middle part of each longitudinal member 21 and protrudes from the upper surfaces of both longitudinal members 21 and 21 so as to form a chevron (see FIG. 6, FIG. 8).

足場本体20は、両縦材21、21の両端部に各1本の横桟22を接合した四角枠内の平面視で、相隣る横桟22と平板状踏板23の間、相隣る平板状踏板23と平板状踏板23の間、相隣る平板状踏板23と山形踏板24の間のそれぞれに、上下に貫通する開口Fを設けている。開口Fは足場本体20に作用する突風等の風の吹き上げ力を逃がすものである。   The scaffold main body 20 is adjacent to each other between the adjacent horizontal beams 22 and the flat plate 23 in a plan view in a square frame in which one horizontal beam 22 is joined to both ends of both vertical members 21 and 21. Openings F penetrating vertically are provided between the flat tread 23 and the flat tread 23 and between the adjacent flat tread 23 and the mountain-shaped tread 24. The opening F is for releasing a wind blowing force such as a gust that acts on the scaffold body 20.

屋根用足場10の引っ掛け部30は、足場本体20を構成する両縦材21、21の一端部の下面に架け渡すように、その下面に固定される。引っ掛け部30は、図3に示す如く、L型断面のアルミ型材からなり、L型断面の一辺からなる取付辺31の上面が足場本体20の一端部の下面、本実施例では足場本体20を構成している横桟22の下面に溶接され、L型断面の他辺からなる引っ掛け辺32が足場本体20の反対方向へ突き出るように配置される。この引っ掛け辺32が太陽エネルギー収集パネル200の棟側フレーム202Uの棟側を向く側面202Fに、棟側から係合するものになる。   The hook portion 30 of the roof scaffold 10 is fixed to the lower surface so as to span the lower surfaces of one end portions of the vertical members 21 and 21 constituting the scaffold body 20. As shown in FIG. 3, the hook portion 30 is made of an aluminum mold having an L-shaped cross section, and the upper surface of the attachment side 31 consisting of one side of the L-shaped cross section is the lower surface of one end of the scaffold body 20, in this embodiment, the scaffold body 20. It is welded to the lower surface of the horizontal rail 22 that constitutes, and is arranged so that a hook side 32 formed of the other side of the L-shaped cross section protrudes in the opposite direction of the scaffold body 20. This hook side 32 is engaged with the side surface 202F facing the ridge side of the ridge side frame 202U of the solar energy collection panel 200 from the ridge side.

尚、足場本体20の他端部の下面、本実施例では足場本体20を構成している横桟22の下面に、例えばアルミ板からなる取付板33が溶接される。取付板33は引っ掛け部30の取付辺31と同一板厚をなす。   A mounting plate 33 made of, for example, an aluminum plate is welded to the lower surface of the other end portion of the scaffold body 20, in this embodiment, the lower surface of the horizontal rail 22 constituting the scaffold body 20. The mounting plate 33 has the same thickness as the mounting side 31 of the hook portion 30.

屋根用足場10は、足場用本体20が緩衝材40を介して太陽エネルギー収集パネル200のフレーム202の上面に載置される。緩衝材40は、本実施例では、例えばゴム板からなり、引っ掛け部30の取付辺31の下面と取付板33の下面のそれぞれに接着される。この緩衝材40が、太陽エネルギー収集パネル200のフレーム202の上面202Eとの接触による太陽エネルギー収集パネル200のキズつきを防止する。   In the roof scaffold 10, the scaffold main body 20 is placed on the upper surface of the frame 202 of the solar energy collection panel 200 via the cushioning material 40. In the present embodiment, the buffer material 40 is made of, for example, a rubber plate, and is bonded to each of the lower surface of the attachment side 31 of the hook portion 30 and the lower surface of the attachment plate 33. This buffer material 40 prevents the solar energy collection panel 200 from being scratched by contact with the upper surface 202E of the frame 202 of the solar energy collection panel 200.

従って、屋根用足場10が太陽エネルギー収集パネル200におけるフレーム202の上面202Eに設置されたとき、屋根用足場10における足場本体20の縦材21と太陽エネルギー収集パネル200のパネル本体201の上面201Eとの間には、図3に示す如く、フレーム202の上面202Eがパネル本体201の上面201Eとの間になす段差、緩衝材40の板厚、引っ掛け部30の取付辺31の板厚の合計寸法からなる隙間Gが形成され、パネル本体201を保護する。   Therefore, when the roof scaffold 10 is installed on the upper surface 202E of the frame 202 in the solar energy collection panel 200, the vertical member 21 of the scaffold body 20 in the roof scaffold 10 and the upper surface 201E of the panel body 201 of the solar energy collection panel 200 3, as shown in FIG. 3, the total dimension of the step formed between the upper surface 202E of the frame 202 and the upper surface 201E of the panel main body 201, the thickness of the cushioning material 40, and the thickness of the attachment side 31 of the hook portion 30. A gap G is formed to protect the panel body 201.

更に、屋根用足場10は、図4、図5に示す如く、足場本体20にスチールワイヤ、プラスチックワイヤ等の索状つなぎ材60によりつながれた飛散防止金具50を有する。飛散防止金具50がつながれたつなぎ材60は、本実施例では、足場本体20の縦材21に取着されている。   Further, as shown in FIGS. 4 and 5, the roof scaffold 10 includes a scattering prevention metal fitting 50 connected to the scaffold body 20 by a cord-like connecting material 60 such as a steel wire or a plastic wire. In the present embodiment, the connecting member 60 to which the anti-scattering metal fitting 50 is connected is attached to the vertical member 21 of the scaffold body 20.

飛散防止金具50は、図4に示す如く、把持部51と板状頭部52とが軸状首部53により連結されて構成される。本実施例において、把持部51と板状頭部52は同一面上に位置する平板状をなす。   As shown in FIG. 4, the anti-scattering metal fitting 50 is configured by connecting a grip portion 51 and a plate-like head portion 52 by a shaft-like neck portion 53. In the present embodiment, the grip portion 51 and the plate-like head 52 have a flat plate shape located on the same plane.

飛散防止金具50は、勾配屋根101の勾配方向で相隣る軒側太陽エネルギー収集パネル200Lの棟側フレーム202U(棟側端部)と棟側太陽エネルギー収集パネル200Hの軒側フレーム202D(軒側端部)の間隙部K(前述の引っ掛け部30が差し込まれていない位置の間隙部K)に着脱自在にされる。そして、飛散防止金具50は、図4、図5に示す如く、間隙部Kの上部に把持部51を位置し、間隙部Kに軸状首部53を位置し、間隙部Kの下部に板状頭部52を位置した状態で、把持部51に加える回転操作により回動される把持部51と板状頭部52によって軒側太陽エネルギー収集パネル200Lの棟側フレーム202Uと棟側太陽エネルギー収集パネル200Hの軒側フレーム202Dを上下から挟み、それらの相隣る太陽エネルギー収集パネル200L、200Hに係止される。   The anti-scattering metal fitting 50 includes a ridge side frame 202U (ridge side end) of the eaves side solar energy collection panel 200L adjacent to each other in the gradient direction of the sloped roof 101 and an eave side frame 202D (eave side) of the ridge side solar energy collection panel 200H. The gap portion K (the gap portion K at the position where the hook portion 30 is not inserted) is detachable. As shown in FIGS. 4 and 5, the anti-scattering metal fitting 50 has a gripping portion 51 located above the gap K, a shaft neck 53 located at the gap K, and a plate-like shape below the gap K. With the head 52 positioned, the ridge side frame 202U of the eaves side solar energy collection panel 200L and the ridge side solar energy collection panel are rotated by the grip 51 and the plate-like head 52 that are rotated by a rotation operation applied to the grip 51. The eaves side frame 202D of 200H is sandwiched from above and below and is locked to the solar energy collection panels 200L and 200H adjacent to each other.

ここで、屋根用足場10は、引っ掛け部30を前述の如くに足場本体20の両縦材21、21の一端部の下面に設けたとき、引っ掛け部30と足場本体20の横桟22との間に、各縦材21のコ型断面の板厚が形成する隙間Jを設ける(図9)。そして、飛散防止金具50は、図10に示す如く、上記隙間Jに差し込み保管される。   Here, the roof scaffold 10 includes the hook 30 and the horizontal beam 22 of the scaffold body 20 when the hook 30 is provided on the lower surface of one end of the vertical members 21 and 21 of the scaffold body 20 as described above. A gap J formed by the thickness of the U-shaped cross section of each longitudinal member 21 is provided between them (FIG. 9). The anti-scattering metal fitting 50 is inserted and stored in the gap J as shown in FIG.

従って、屋根用足場10が軒側太陽エネルギー収集パネル200Lの棟側フレーム202Uの上面202Eと棟側太陽エネルギー収集パネル200Hの軒側フレーム202Dの上面202Eに設置されたとき、飛散防止金具50が前記間隙部Kに差し込まれ、それらの相隣る太陽エネルギー収集パネル200L、200Hに係止される。このとき、屋根用足場10は索状つなぎ材60を介して上記飛散防止金具50につながれるものになる。   Therefore, when the roof scaffold 10 is installed on the upper surface 202E of the ridge-side frame 202U of the eaves-side solar energy collection panel 200L and the upper surface 202E of the eaves-side frame 202D of the ridge-side solar energy collection panel 200H, the scattering prevention metal fitting 50 is It is inserted into the gap K and locked to the solar energy collecting panels 200L and 200H adjacent to each other. At this time, the roof scaffold 10 is connected to the anti-scattering metal fitting 50 via the cord-like connecting material 60.

従って、本実施例によれば以下の作用効果を奏する。
(a)屋根用足場10の足場本体20につながれた飛散防止金具50が、勾配屋根101の上で相隣る軒側と棟側の太陽エネルギー収集パネル200L、200Hに係止される。従って、屋根用足場10は、突風等の風の吹き上げ力により持ち上げられても、飛散防止金具50の存在により相隣る軒側と棟側の太陽エネルギー収集パネル200L、200Hに係止され続け、吹飛ばされて周辺に飛散することがない。
Therefore, according to the present embodiment, the following operational effects can be obtained.
(a) The anti-scattering metal fitting 50 connected to the scaffold body 20 of the roof scaffold 10 is locked to the solar energy collection panels 200L and 200H on the eaves side and the ridge side on the sloped roof 101. Therefore, even if the roof scaffold 10 is lifted by a wind blowing force such as a gust of wind, the roof-side scaffolding 10 continues to be locked to the solar energy collection panels 200L and 200H on the adjacent eaves side and the ridge side due to the presence of the anti-scattering metal fitting 50, It will not be blown away and scattered around.

(b)飛散防止金具50は、相隣る軒側と棟側の太陽エネルギー収集パネル200L、200Hの間隙部Kに板状頭部52の側を差し込み、該間隙部Kの上部に把持部51を位置し、該間隙部Kに軸状首部53を位置し、該間隙部Kの下部に板状頭部52を位置した状態で、把持部51に加える回転操作により回動される把持部51と板状頭部52によって軒側太陽エネルギー収集パネル200Lの棟側フレーム202U及び棟側太陽エネルギー収集パネル200Hの軒側フレーム202Dを上下から挟むことにより、相隣る軒側と棟側の太陽エネルギー収集パネル200L、200Hに確実に係止される。屋根用足場10の飛散防止手段が太陽エネルギー収集パネル200にねじ止めされる等に比して、簡便である。   (b) The anti-scattering metal fitting 50 is formed by inserting the plate-like head 52 side into the gap K between the adjacent eaves and ridge-side solar energy collection panels 200L and 200H and holding the grip 51 over the gap K. , The shaft-like neck portion 53 is located in the gap portion K, and the plate-like head portion 52 is located in the lower portion of the gap portion K. By sandwiching the ridge-side frame 202U of the eaves-side solar energy collection panel 200L and the eaves-side frame 202D of the ridge-side solar energy collection panel 200H from above and below by the plate-like head 52, solar energy on the adjacent eaves side and ridge side It is securely locked to the collecting panels 200L and 200H. Compared to the case where the scattering prevention means of the roof scaffold 10 is screwed to the solar energy collecting panel 200, etc., it is simpler.

(c)屋根用足場10は、足場本体20の一端側に設けられた引っ掛け部30を、該足場本体20が載置された太陽エネルギー収集パネル200の棟側フレーム202Uの棟側を向く側面に係合することで、勾配屋根101の上における滑落を防ぐものになる。   (c) The roof scaffold 10 has a hook portion 30 provided on one end side of the scaffold body 20 on a side surface facing the ridge side of the ridge side frame 202U of the solar energy collection panel 200 on which the scaffold body 20 is placed. By engaging, sliding on the sloped roof 101 is prevented.

足場本体20の一端部に設けられた引っ掛け部30が、太陽エネルギー収集パネル200の棟側フレーム202Uの棟側の一側面だけに係合するように設置すれば足り、設置作業性は簡易である。   It is sufficient to install the hook 30 provided at one end of the scaffold main body 20 so as to engage with only one side of the building side frame 202U of the solar energy collection panel 200, and the installation workability is simple. .

足場本体20の一端部に設けられた引っ掛け部30は、太陽エネルギー収集パネル200の棟側フレーム202Uの棟側を向く側面に係合して滑落阻止され、他の滑落防止用部材の存在を必要とせず、設置構造は簡素になる。   The hook portion 30 provided at one end portion of the scaffold body 20 is engaged with the side surface of the solar energy collection panel 200 facing the ridge side of the ridge side frame 202U and is prevented from sliding, and the presence of other members for preventing the sliding is necessary. However, the installation structure is simplified.

(d)屋根用足場10が、相隣る横桟22と平板状踏板23の間、相隣る平板状踏板23と平板状踏板23の間、相隣る平板状踏板23と山形踏板24の間のそれぞれに開口Fを設けたから、突風等の風の吹き上げ力を上記開口Fから逃がすことにより、そのような吹き上げ力による持ち上がりを抑制し、ひいては周辺への飛散を一層防止できる。   (d) The roof scaffold 10 is formed between the adjacent horizontal rail 22 and the flat plate 23, between the adjacent flat plate 23 and the flat plate 23, between the adjacent flat plate 23 and the mountain-shaped step plate 24. Since the openings F are provided in the respective spaces, by lifting the blowing force of wind such as a gust from the opening F, the lifting due to such blowing force can be suppressed and further scattering to the surroundings can be further prevented.

(e)屋根用足場10が、両縦材21の両端部のそれぞれに接合される横桟22を各縦材21のコ型凹部に差し込み、前記引っ掛け部30を両縦材21の一端部の下面に架け渡すようにその下面に設けてなり、前記引っ掛け部30と横桟22との間で、各縦材21のコ型断面の板厚が形成する隙間Jに、前記飛散防止金具50が差し込み保管されるものとした。屋根用足場10の移動時等に、足場本体20と索状つなぎ材60によりつながれた飛散防止金具50が上記引っ掛け部30と横桟22との間の隙間Jに差し込み保管されるから、飛散防止金具50が自由に揺れ動いて足場本体20に当たって損傷を生じたり、異音を生ずることもない。   (e) The roof scaffold 10 is inserted into the U-shaped recesses of the vertical members 21 with the crosspieces 22 joined to both ends of the vertical members 21, and the hook 30 is connected to one end of the vertical members 21. The anti-scattering metal fitting 50 is provided on the lower surface so as to be bridged on the lower surface, and in the gap J formed by the thickness of the U-shaped cross section of each vertical member 21 between the hook portion 30 and the horizontal rail 22. Inserted and stored. When the roof scaffolding 10 is moved, the scattering prevention metal fitting 50 connected by the scaffold body 20 and the cord-like connecting material 60 is inserted and stored in the gap J between the hook portion 30 and the horizontal rail 22 to prevent scattering. The metal fitting 50 does not sway freely and hit the scaffold body 20 to cause damage or abnormal noise.

(f)軒側に設置される屋根用足場10の引っ掛け部30が、軒側太陽エネルギー収集パネル200Lの棟側フレーム202Uと棟側太陽エネルギー収集パネル200Hの軒側フレーム202Dとの間隙部Kに差し込まれ、該軒側太陽エネルギー収集パネル200Lの棟側フレーム202Uの棟側を向く側面に係合するように設置される。また、各屋根用足場10につながれた飛散防止金具50が上記間隙部Kに差し込まれ、それらの相隣る軒側と棟側の太陽エネルギー収集パネル200L、200Hに係止される。これにより、複数の屋根用足場10を勾配屋根101の上に固定された複数の太陽エネルギー収集パネル200の上でそれらの勾配方向に整然と並置し、かつ各屋根用足場10の風力による飛散を防止できる。   (f) The hook 30 of the roof scaffold 10 installed on the eaves side is located in the gap K between the ridge side frame 202U of the eaves side solar energy collection panel 200L and the eaves side frame 202D of the ridge side solar energy collection panel 200H. The eaves-side solar energy collection panel 200L is installed so as to engage with the side surface facing the ridge side of the ridge side frame 202U. In addition, the anti-scattering metal fitting 50 connected to each roof scaffold 10 is inserted into the gap K and is locked to the solar energy collecting panels 200L and 200H on the adjacent eaves side and the ridge side. As a result, the plurality of roof scaffolds 10 are neatly arranged in the gradient direction on the plurality of solar energy collecting panels 200 fixed on the gradient roof 101, and scattering of the roof scaffolds 10 by wind power is prevented. it can.

以上、本発明の実施例を図面により詳述したが、本発明の具体的な構成はこの実施例に限られるものではなく、本発明の要旨を逸脱しない範囲の設計の変更等があっても本発明に含まれる。例えば、本発明の屋根用足場が設置される太陽エネルギー収集パネルは、太陽熱温水器等であっても良い。   The embodiment of the present invention has been described in detail with reference to the drawings. However, the specific configuration of the present invention is not limited to this embodiment, and even if there is a design change or the like without departing from the gist of the present invention. It is included in the present invention. For example, the solar energy collection panel on which the roof scaffold of the present invention is installed may be a solar water heater or the like.

本発明によれば、太陽エネルギー収集パネルの上に設置された屋根用足場の風力による飛散を防止することができる。   ADVANTAGE OF THE INVENTION According to this invention, the scattering by the wind force of the scaffold for roofs installed on the solar energy collection panel can be prevented.

10 屋根用足場
20 足場本体
21 縦材
21A コ型凹部
22 横桟
23、24 踏板
30 引っ掛け部
40 緩衝材
50 飛散防止金具
51 把持部
52 板状頭部
53 軸状首部
60 索状つなぎ材
101 勾配屋根
200 太陽エネルギー収集パネル
200L 軒側太陽エネルギー収集パネル
200U 棟側太陽エネルギー収集パネル
201 パネル本体
201E 上面
202 フレーム
202D 軒側フレーム
202U 棟側フレーム
202E 上面
K 間隙部
J 隙間
F 開口
DESCRIPTION OF SYMBOLS 10 Roof scaffolding 20 Scaffolding body 21 Vertical member 21A U-shaped concave part 22 Horizontal crosspieces 23, 24 Footboard 30 Hooking part 40 Buffering material 50 Scattering prevention metal fitting 51 Grasping part 52 Plate-like head part 53 Shaft-like neck part 60 Cord-like connecting material 101 Gradient Roof 200 Solar energy collection panel 200L Eaves side solar energy collection panel 200U Building side solar energy collection panel 201 Panel body 201E Upper surface 202 Frame 202D Eaves side frame 202U Building side frame 202E Upper surface K Gap J Clearance F Opening

Claims (6)

勾配屋根の上に固定された太陽エネルギー収集パネルの上に設置される屋根用足場であって、
足場本体に索状つなぎ材によりつながれた飛散防止金具を有し、
飛散防止金具は、把持部と板状頭部とが軸状首部により連結されてなり、勾配屋根の勾配方向で相隣る軒側太陽エネルギー収集パネルの棟側端部と棟側太陽エネルギー収集パネルの軒側端部の間隙部に着脱自在にされ、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側端部及び棟側太陽エネルギー収集パネルの軒側端部を上下から挟み、それらの相隣る太陽エネルギー収集パネルに係止される屋根用足場。
A roof scaffolding installed on a solar energy collection panel fixed on a sloped roof,
Has anti-scattering brackets connected to the scaffolding body by cord-like connecting material,
The anti-scattering metal fitting has a gripping part and a plate-like head connected by a shaft-like neck part, and the ridge-side solar energy collection panel and the ridge-side solar energy collection panel adjacent to each other in the gradient direction of the sloped roof The eaves-side end portion is detachable, the grip portion is located above the gap portion, the axial neck portion is located in the gap portion, and the plate-like head portion is located below the gap portion. In the state, sandwich the ridge side end of the eaves side solar energy collection panel and the eave side end of the ridge side solar energy collection panel from above and below by the gripping part and the plate-shaped head that are rotated by a rotation operation applied to the gripping part, Roof scaffolds locked to their adjacent solar energy collection panels.
前記太陽エネルギー収集パネルが、パネル本体と該パネル本体の対向する少なくとも2辺に設けられるフレームを有し、それらの2辺に設けられたフレームが勾配屋根の棟側と軒側に配置されて該勾配屋根の上に固定され、
前記足場本体が、太陽エネルギー収集パネルのパネル本体との間に隙間を介する状態で、そのフレームの上面に載置され、
足場本体の一端部に設けられた引っ掛け部が、該足場本体が載置された太陽エネルギー収集パネルの棟側のフレームの棟側を向く側面に係合する請求項1に記載の屋根用足場。
The solar energy collecting panel has a panel body and a frame provided on at least two sides facing the panel body, and the frames provided on the two sides are disposed on the ridge side and the eave side of the sloped roof, Fixed on a sloped roof,
The scaffold body is placed on the upper surface of the frame with a gap between the solar energy collection panel and the panel body,
The roof scaffold according to claim 1, wherein a hook provided at one end of the scaffold main body engages a side surface of the solar energy collecting panel on which the scaffold main body is placed facing a ridge side of the ridge side frame.
前記飛散防止金具が、勾配屋根の勾配方向で相隣る軒側太陽エネルギー収集パネルの棟側のフレームと、棟側太陽エネルギー収集パネルの軒側のフレームの間隙部に着脱自在にされ、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側のフレーム及び棟側太陽エネルギー収集パネルの軒側のフレームを上下から挟む請求項2に記載の屋根用足場。   The scattering prevention metal fittings are detachably attached to a gap between the eaves-side solar energy collection panel adjacent to the eaves-side solar energy collection panel and the eaves-side frame of the eaves-side solar energy collection panel in the gradient direction of the sloped roof. A gripping part that is rotated by a rotation operation applied to the gripping part in a state where a gripping part is located at the top of the part, an axial neck is located at the gap, and a plate-like head is located at the bottom of the gap The roof scaffolding according to claim 2, wherein the eaves-side solar energy collection panel ridge-side frame and the eaves-side solar energy collection panel eaves-side frame are sandwiched from above and below by the plate-shaped head. 前記足場本体が、
太陽エネルギー収集パネルと概ね同一長をなす2個の縦材を平行に配置し、
両縦材に跨って複数の踏板を設け、
相隣る踏板の間に開口を設けた請求項1〜3のいずれかに記載の屋根用足場。
The scaffold body is
Two vertical members that are approximately the same length as the solar energy collection panel are arranged in parallel,
A plurality of treads are provided across both vertical members,
The roof scaffold according to claim 1, wherein an opening is provided between adjacent treads.
前記足場本体が、
太陽エネルギー収集パネルと概ね同一長をなす2個のコ型断面の縦材のコ型凹部を向い合せて配置し、
両縦材の両端部のそれぞれに接合される横桟を各縦材のコ型凹部に差し込み、
前記引っ掛け部を両縦材の一端部の下面に架け渡すようにその下面に設けてなり、
前記引っ掛け部と横桟との間で、各縦材のコ型断面の板厚が形成する隙間に、前記飛散防止金具が差し込み保管される請求項1〜4のいずれかに記載の屋根用足場。
The scaffold body is
The two U-shaped cross-sections of the vertical section with the same length as the solar energy collecting panel are placed facing each other,
Insert the horizontal beam to be joined to both ends of both vertical members into the U-shaped recess of each vertical member,
The hook is provided on the lower surface so as to span the lower surface of one end of both longitudinal members,
The roof scaffolding according to any one of claims 1 to 4, wherein the anti-scattering metal fitting is inserted and stored in a gap formed by the plate thickness of the U-shaped cross section of each vertical member between the hook portion and the horizontal rail. .
請求項1に記載の屋根用足場が勾配屋根の勾配方向に複数並置されてなる屋根用足場の設置構造であって、
軒側に設置される屋根用足場の引っ掛け部が、軒側太陽エネルギー収集パネルの棟側端部と棟側太陽エネルギー収集パネルの軒側端部の間隙部に差し込まれ、該軒側太陽エネルギー収集パネルの棟側端部の棟側を向く側面に係合してなるとともに、
飛散防止金具が上記間隙部に差し込まれ、該間隙部の上部に把持部を位置し、該間隙部に軸状首部を位置し、該間隙部の下部に板状頭部を位置した状態で、把持部に加える回転操作により回動される把持部と板状頭部によって軒側太陽エネルギー収集パネルの棟側端部及び棟側太陽エネルギー収集パネルの軒側端部を上下から挟んでなる屋根用足場の設置構造。
The roof scaffold according to claim 1 is a roof scaffold installation structure in which a plurality of the scaffolds are juxtaposed in the gradient direction of the gradient roof,
The hook portion of the roof scaffolding installed on the eaves side is inserted into the gap between the ridge side end of the eaves side solar energy collection panel and the eave side end of the ridge side solar energy collection panel, and the eaves side solar energy collection While engaging the side facing the ridge side of the ridge side end of the panel,
With the anti-scattering metal fitting inserted into the gap, the gripping part is located above the gap, the shaft neck is located at the gap, and the plate-like head is located below the gap, For roofs that sandwich the ridge side end of the eaves-side solar energy collection panel and the eaves-side end of the ridge-side solar energy collection panel from above and below by a gripping part and a plate-shaped head that are rotated by a rotation operation applied to the gripping part. Scaffolding installation structure.
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CN109025240A (en) * 2018-08-17 2018-12-18 中建八局第二建设有限公司 A kind of safety scaffold disassembly siphunculus
CN109025240B (en) * 2018-08-17 2023-12-05 中建八局第二建设有限公司 Safety scaffold dismantles siphunculus
CN113266179A (en) * 2021-05-20 2021-08-17 王娅 Green energy-conserving fire prevention building steel construction

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